Product Description
Flexible flex Fluid Chain Jaw flange Gear Rigid Spacer PIN HRC MH NM universal Fenaflex Oldham spline clamp tyre grid hydraulic servo motor shaft Coupling
Product Description
The function of Shaft coupling:
1. Shafts for connecting separately manufactured units such as motors and generators.
2. If any axis is misaligned.
3. Provides mechanical flexibility.
4. Absorb the transmission of impact load.
5. Prevent overload
We can provide the following couplings.
Rigid coupling | Flange coupling | Oldham coupling |
Sleeve or muff coupling | Gear coupling | Bellow coupling |
Split muff coupling | Flexible coupling | Fluid coupling |
Clamp or split-muff or compression coupling | Universal coupling | Variable speed coupling |
Bushed pin-type coupling | Diaphragm coupling | Constant speed coupling |
Company Profile
We are an industrial company specializing in the production of couplings. It has 3 branches: steel casting, forging, and heat treatment. Main products: cross shaft universal coupling, drum gear coupling, non-metallic elastic element coupling, rigid coupling, etc.
The company mainly produces the industry standard JB3241-91 swap JB5513-91 swc. JB3242-93 swz series universal coupling with spider type. It can also design and produce various non-standard universal couplings, other couplings, and mechanical products for users according to special requirements. Currently, the products are mainly sold to major steel companies at home and abroad, the metallurgical steel rolling industry, and leading engine manufacturers, with an annual production capacity of more than 7000 sets.
The company’s quality policy is “quality for survival, variety for development.” In August 2000, the national quality system certification authority audited that its quality assurance system met the requirements of GB/T19002-1994 IDT ISO9002:1994 and obtained the quality system certification certificate with the registration number 0900B5711. It is the first enterprise in the coupling production industry in HangZhou City that passed the ISO9002 quality and constitution certification.
The company pursues the business purpose of “reliable quality, the supremacy of reputation, commitment to business and customer satisfaction” and welcomes customers at home and abroad to choose our products.
At the same time, the company has established long-term cooperative relations with many enterprises and warmly welcomes friends from all walks of life to visit, investigate and negotiate business!
How to use the coupling safely
The coupling is an intermediate connecting part of each motion mechanism, which directly impacts the regular operation of each motion mechanism. Therefore, attention must be paid to:
1. The coupling is not allowed to have more than the specified axis deflection and radial displacement so as not to affect its transmission performance.
2. The bolts of the LINS coupling shall not be loose or damaged.
3. Gear coupling and cross slide coupling shall be lubricated regularly, and lubricating grease shall be added every 2-3 months to avoid severe wear of gear teeth and serious consequences.
4. The tooth width contact length of gear coupling shall not be less than 70%; Its axial displacement shall not be more significant than 5mm
5. The coupling is not allowed to have cracks. If there are cracks, it needs to be replaced (they can be knocked with a small hammer and judged according to the sound).
6. The keys of LINS coupling shall be closely matched and shall not be loosened.
7. The tooth thickness of the gear coupling is worn. When the lifting mechanism exceeds 15% of the original tooth thickness, the operating mechanism exceeds 25%, and the broken tooth is also scrapped.
8. If the elastic ring of the pin coupling and the sealing ring of the gear coupling is damaged or aged, they should be replaced in time.
Certifications
Packaging & Shipping
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Is It Possible to Replace a Shaft Coupling Without Professional Assistance?
Yes, it is possible to replace a shaft coupling without professional assistance, especially if you have some mechanical knowledge and the necessary tools. However, the ease of replacement can vary depending on the type of coupling and the complexity of the equipment. Here are some general steps to guide you through the process:
1. Safety First:
Before starting any work, ensure that the equipment is turned off and disconnected from the power source. Use appropriate personal protective equipment (PPE) to protect yourself from potential hazards.
2. Assess the Coupling Type:
Different types of couplings may have specific installation and removal methods. Identify the type of coupling you need to replace, and consult the manufacturer’s documentation or online resources for guidance.
3. Gather Tools and Materials:
Collect the necessary tools, such as wrenches, sockets, and a puller (if required), to safely remove the old coupling. Have the new coupling ready for installation, ensuring it matches the specifications of the old one.
4. Disassembly:
If your coupling is a split or clamp-style coupling, you may be able to replace it without fully disassembling the connected equipment. Otherwise, you may need to remove other components to access the coupling.
5. Remove Fasteners:
Loosen and remove any fasteners, such as set screws, that secure the old coupling to the shafts. Take care not to damage the shafts during this process.
6. Extraction:
If the old coupling is tightly fitted on the shafts, you may need to use a coupling puller or other appropriate extraction tools to safely remove it.
7. Clean and Inspect:
After removing the old coupling, clean the shaft ends and inspect them for any signs of damage or wear. Also, check for any misalignment issues that may have contributed to the old coupling’s failure.
8. Install New Coupling:
Follow the manufacturer’s instructions for installing the new coupling. Apply appropriate lubrication and ensure the coupling is correctly aligned with the shafts.
9. Fasten Securely:
Tighten the fasteners to the manufacturer’s recommended torque values to securely attach the new coupling to the shafts.
10. Test Run:
After installation, perform a test run of the equipment to ensure the new coupling operates smoothly and without issues.
While it is possible to replace a shaft coupling without professional assistance, keep in mind that some couplings and equipment may require specialized knowledge and tools for safe and proper replacement. If you are uncertain about the process or encounter any difficulties, it is advisable to seek help from a qualified professional or technician to avoid potential damage to the equipment or injury to yourself.
“`
Explaining the Concept of Backlash and How It Affects Shaft Coupling Performance
Backlash is the angular movement or play between the mating components of a mechanical system when the direction of motion is reversed. In the context of shaft couplings, backlash refers to the free rotational movement between the connected shafts before the coupling transmits torque from one shaft to the other.
Backlash occurs in certain coupling designs that have features allowing relative movement between the coupling’s mating parts. Common coupling types that may exhibit some degree of backlash include elastomeric couplings (such as jaw couplings), gear couplings, and Oldham couplings.
How Backlash Affects Shaft Coupling Performance:
1. Loss of Precision: In applications requiring precise motion control, backlash can lead to inaccuracies and reduced positional accuracy. For example, in CNC machines or robotics, any rotational play due to backlash can result in positioning errors and decreased machining or movement precision.
2. Reversal Impact: When a reversing load is applied to a coupling, the presence of backlash can lead to a brief period of rotational play before the coupling re-engages, causing a momentary jolt or impact. This impact can lead to increased stress on the coupling and connected components, potentially reducing their lifespan.
3. Dynamic Response: Backlash can affect the dynamic response of the mechanical system. In systems requiring rapid acceleration or deceleration, the initial play due to backlash may create a delay in torque transmission, affecting the system’s responsiveness.
4. Noise and Vibration: Backlash can cause noise and vibration in the system, leading to increased wear and potential fatigue failure of components.
5. Misalignment Compensation: In some flexible coupling designs, a certain amount of backlash is intentionally incorporated to allow for misalignment compensation. While this is a beneficial feature, excessive backlash can compromise the coupling’s performance.
Minimizing Backlash:
Manufacturers often design couplings with specific features to minimize backlash. For instance, some gear couplings employ crowned gear teeth to reduce clearance, while elastomeric couplings may have preloaded elastomeric elements. Precision couplings like zero-backlash or torsionally rigid couplings are engineered to eliminate or minimize backlash for applications requiring high accuracy and responsiveness.
When selecting a coupling, it’s essential to consider the application’s specific requirements regarding precision, speed, reversing loads, and misalignment compensation, as these factors will determine the acceptable level of backlash for optimal performance.
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Best Practices for Installing a Shaft Coupling for Optimal Performance
Proper installation of a shaft coupling is crucial for ensuring optimal performance and preventing premature wear or failure. Follow these best practices to install a shaft coupling correctly:
1. Shaft Alignment:
Ensure that both the driving and driven shafts are properly aligned before installing the coupling. Misalignment can lead to increased stress on the coupling and other connected components, reducing efficiency and causing premature wear. Use alignment tools, such as dial indicators or laser alignment systems, to achieve accurate shaft alignment.
2. Cleanliness:
Before installation, clean the shaft ends and the coupling bore thoroughly. Remove any dirt, debris, or residue that could interfere with the coupling’s fit or cause misalignment.
3. Lubrication:
Apply the recommended lubricant to the coupling’s contact surfaces, such as the bore and shaft ends. Proper lubrication ensures smooth installation and reduces friction during operation.
4. Correct Fit:
Ensure that the coupling is the correct size and type for the application. Use couplings with the appropriate torque and speed ratings to match the equipment’s requirements.
5. Fastening:
Use the recommended fastening methods, such as set screws or keyways, to securely attach the coupling to the shafts. Make sure the fasteners are tightened to the manufacturer’s specifications to prevent loosening during operation.
6. Spacer or Adapter:
If required, use a spacer or adapter to properly position the coupling on the shafts and maintain the desired distance between the driving and driven components.
7. Avoid Shaft Damage:
Be careful during installation to avoid damaging the shaft ends, especially when using set screws or other fastening methods. Shaft damage can lead to stress concentrations and eventual failure.
8. Check Runout:
After installation, check the coupling’s runout using a dial indicator to ensure that it rotates smoothly and without wobbling. Excessive runout can indicate misalignment or improper fit.
9. Periodic Inspection:
Regularly inspect the coupling and its components for signs of wear, misalignment, or damage. Perform routine maintenance as recommended by the manufacturer to prevent issues from worsening over time.
10. Follow Manufacturer’s Guidelines:
Always follow the manufacturer’s installation instructions and guidelines. Different types of couplings may have specific installation requirements that need to be adhered to for optimal performance and safety.
By following these best practices, you can ensure that your shaft coupling is installed correctly, maximizing its efficiency and reliability in your mechanical power transmission system.
“`
editor by CX 2024-04-11
China manufacturer ISOA 08SF close type G1 hydraulic quick coupling coupling bearing
Product Description
Product Description
Applications:
The ZM -ISOASeries bring to the industry a proven design foruse on construction equipment, forestry equipment, agricultural machinery, oil tools, oil equipment steel mill machinery, and other demanding hydraulic applications.
Socket:
IS0 | PART N0 | LS | D | HEX1 | A | T |
6.3 | ZM-1S0A-02SF | 50 | φ26 | 19 | 13 | G1/4 NPT1/4 |
10 | ZM-IS0A-03SF | 57.1 | φ31.5 | 22 | 16 | G3/8 NPT3/8 |
12.5 | ZM-IS0A-04SF | 66 | φ38.5 | 27 | 18 | G1/2 NPT1/2 |
20 | ZM-IS0A-06SF | 82.5 | φ48 | 34 | 20.5 | G3/4 NPT3/4 |
25 | ZM-1S0A-08SF | 100 | φ56 | 41 | 20.5 | G1 NPT1 |
Plug:
IS0 | PART N0 | LP | d | C | HEX2 | A | T |
6.3 | ZM-1S0A-02PF | 38.5 | 11.8 | 15 | 19 | 13 | G1/4 NPT1/4 |
10 | ZM-IS0A-03PF | 39 | 17.3 | 19 | 22 | 16 | G3/8 NPT3/8 |
12.5 | ZM-1S0A-04PF | 44 | 20.5 | 29 | 27 | 18 | G1/2 NPT1/2 |
20 | 2M-1S0A-06PF | 55 | 29 | 29 | 34 | 20.5 | G3/4 NPT3/4 |
25 | ZM-1S0A-08PF | 66 | 34.3 | 35 | 41 | 20.5 | G1 NPT1 |
Coupling Fitting:
IS0 | PART N0 | L | D | HEX1 | HEX2 | T |
6.3 | ZM-IS0A-02 | 74.2 | φ26 | 19 | 19 | G1/4 NPT1/4 |
10 | ZM-IS0A-03 | 78.5 | φ31.5 | 22 | 22 | G3/8 NPT3/8 |
12.5 | ZM-IS0A-04 | 88.2 | φ38.5 | 27 | 27 | G1/2 NPT1/2 |
20 | ZM-IS0A-06 | 110.4 | φ48 | 34 | 34 | G3/4 NPT3/4 |
25 | ZM-I S0A-08 | 132.9 | φ56 | 41 | 41 | G1 NPT1 |
Detailed Photos
Features:
New valve design, it can resistance damage from high flow and the pressure of impulse that providing advanced performance.
·Poppet valves available to prevent uncoupled leakage.
·Poppet valves open automatically when coupled, within rated working pressure, to keep the flow expeditely.
·Critical parts are hardened for durability.
·Dependable ball-locking mechanism holds the mating halves together.
·Socket and plug are precision machined from CZPT bar stock.
·New Chrome plating treatment provides advanced anti-rust performance
·ZM-ISOAseries conforms to the standard of ISO7241-A.
·Compatible with PARKER6600 Series,FASTERANV Series,AEROQUIP5600 Series and CZPT HA 15000 Series
After-sales Service: | Quality Service |
---|---|
Warranty: | Three Months |
Type: | Coupling |
Application: | Machine |
Certification: | ISO9001: 2000 |
Condition: | New |
Samples: |
US$ 3.99/Piece
1 Piece(Min.Order) | |
---|
Customization: |
Available
| Customized Request |
---|
Functions and Modifications of Couplings
A coupling is a mechanical device that connects two shafts and transmits power. Its main purpose is to join two rotating pieces of equipment together, and it can also be used to allow some end movement or misalignment. There are many different types of couplings, each serving a specific purpose.
Functions
Functions of coupling are useful tools to study the dynamical interaction of systems. These functions have a wide range of applications, ranging from electrochemical processes to climate processes. The research being conducted on these functions is highly interdisciplinary, and experts from different fields are contributing to this issue. As such, this issue will be of interest to scientists and engineers in many fields, including electrical engineering, physics, and mathematics.
To ensure the proper coupling of data, coupling software must perform many essential functions. These include time interpolation and timing, and data exchange between the appropriate nodes. It should also guarantee that the time step of each model is divisible by the data exchange interval. This will ensure that the data exchange occurs at the proper times.
In addition to transferring power, couplings are also used in machinery. In general, couplings are used to join two rotating pieces. However, they can also have other functions, including compensating for misalignment, dampening axial motion, and absorbing shock. These functions determine the coupling type required.
The coupling strength can also be varied. For example, the strength of the coupling can change from negative to positive. This can affect the mode splitting width. Additionally, coupling strength is affected by fabrication imperfections. The strength of coupling can be controlled with laser non-thermal oxidation and water micro-infiltration, but these methods have limitations and are not reversible. Thus, the precise control of coupling strength remains a major challenge.
Applications
Couplings transmit power from a driver to the driven piece of equipment. The driver can be an electric motor, steam turbine, gearbox, fan, or pump. A coupling is often the weak link in a pump assembly, but replacing it is less expensive than replacing a sheared shaft.
Coupling functions have wide applications, including biomedical and electrical engineering. In this book, we review some of the most important developments and applications of coupling functions in these fields. We also discuss the future of the field and the implications of these discoveries. This is a comprehensive review of recent advances in coupling functions, and will help guide future research.
Adaptable couplings are another type of coupling. They are made up of a male and female spline in a polymeric material. They can be mounted using traditional keys, keyways, or taper bushings. For applications that require reversal, however, keyless couplings are preferable. Consider your process speed, maximum load capacity, and torque when choosing an adaptable coupling.
Coupling reactions are also used to make pharmaceutical products. These chemical reactions usually involve the joining of two chemical species. In most cases, a metal catalyst is used. The Ullmann reaction, for instance, is an important example of a hetero-coupling reaction. This reaction involves an organic halide with an organometallic compound. The result is a compound with the general formula R-M-R. Another important coupling reaction involves the Suzuki coupling, which unites two chemical species.
In engineering, couplings are mechanical devices that connect two shafts. Couplings are important because they enable the power to be transmitted from one end to the other without allowing a shaft to separate during operation. They also reduce maintenance time. Proper selection, installation, and maintenance, will reduce the amount of time needed to repair a coupling.
Maintenance
Maintenance of couplings is an important part of the lifecycle of your equipment. It’s important to ensure proper alignment and lubrication to keep them running smoothly. Inspecting your equipment for signs of wear can help you identify problems before they cause downtime. For instance, improper alignment can lead to uneven wear of the coupling’s hubs and grids. It can also cause the coupling to bind when you rotate the shaft manually. Proper maintenance will extend the life of your coupling.
Couplings should be inspected frequently and thoroughly. Inspections should go beyond alignment checks to identify problems and recommend appropriate repairs or replacements. Proper lubrication is important to protect the coupling from damage and can be easily identified using thermography or vibration analysis. In addition to lubrication, a coupling that lacks lubrication may require gaskets or sealing rings.
Proper maintenance of couplings will extend the life of the coupling by minimizing the likelihood of breakdowns. Proper maintenance will help you save money and time on repairs. A well-maintained coupling can be a valuable asset for your equipment and can increase productivity. By following the recommendations provided by your manufacturer, you can make sure your equipment is operating at peak performance.
Proper alignment and maintenance are critical for flexible couplings. Proper coupling alignment will maximize the life of your equipment. If you have a poorly aligned coupling, it may cause other components to fail. In some cases, this could result in costly downtime and increased costs for the company.
Proper maintenance of couplings should be done regularly to minimize costs and prevent downtime. Performing periodic inspections and lubrication will help you keep your equipment in top working order. In addition to the alignment and lubrication, you should also inspect the inside components for wear and alignment issues. If your coupling’s lubrication is not sufficient, it may lead to hardening and cracking. In addition, it’s possible to develop leaks that could cause damage.
Modifications
The aim of this paper is to investigate the effects of coupling modifications. It shows that such modifications can adversely affect the performance of the coupling mechanism. Moreover, the modifications can be predicted using chemical physics methods. The results presented here are not exhaustive and further research is needed to understand the effects of such coupling modifications.
The modifications to coupling involve nonlinear structural modifications. Four examples of such modifications are presented. Each is illustrated with example applications. Then, the results are verified through experimental and simulated case studies. The proposed methods are applicable to large and complex structures. They are applicable to a variety of engineering systems, including nonlinear systems.
editor by CX 2023-04-28
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a specialized provider of a entire assortment of chains, sprockets, gears, gear racks, V-belts, couplings and reducers. With many years’ encounter in these traces, we have been distinguished from other suppliers in China by our rewards in aggressive pricing, on-time supply, prompt responses, on-hand engineering support and great soon after-sales solutions. we offer you 1-end remedy for the obtain of mechanical energy transmission items in China. EPT four roller cone rolling bending EPTT plate rolling EPTT
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2.The primary construction of the gear incEPTTs upper roller, lower roller and horizontal motion system, supporting system,principal EPT system,downturn method, still left and rigEPTT EPTT body, chassis and stability system, EPT and EPT manage programs.
three.The design MH has equally the upper and the decrease roll EPTTed with EPT motor and planetary EPT box.
four. EPT precision pre-bending, freely set up the width of plate. Upper roller presses the plate conclude for pre-bending.
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CBN-E314 CBN-E314L | ||
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EPT 204 | EPTTma 204 | YTO 304 | DQ 404 | Bomr 304 | 490B | LR4105 | Y380 | LL380 |
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small eyelet bending guide EPT press EPTT
Parameter of little manual push EPTT
parameter title | Unit | Ym-20T | Ym-40T | Ym-63T | Ym-100T |
Nominal power | KN | two hundred | four hundred | 630 | a thousand |
Successful vacation | mm | 200 | two hundred | 220 | 220 |
Max opening length | mm | 560 | 560 | 560 | 600 |
Workbench effective spot(Remaining to appropriate) | mm | four hundred | 500 | four hundred | 550 |
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Blanking hole diameter | mm | 60 | eighty | one hundred | a hundred and forty |
EPT program maXiHu (West EPT) Dis.mum strain | Mpa | 31.five | 31.5 | 31.five | 31.five |
functions
40ton tiny Portal EPT Push EPTT’s desk can go up and down, significantly expXiHu (West EPT) Dis.Hu (West EPT) Dis. the opening and closing heigEPTT of the EPTT, the use of a lot more handy. By the grasp cylinder, EPT EPTT technique and EPT factors and other parts.
perform of 40ton little Portal EPT Press EPTT
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three, correction of the front axle
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five, detachable cylindrical cone bearings
6, substitute the auto clutch film EPT
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EPTT and shipping and delivery
Internal plastic moisture-evidence anti-rust EPTT,
Exterior wood EPTT,
Exceptional container transport.
Shipping and delivery Time:
30 daEPTTafter orEPTTEPT press EPTT
FAQ
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four.when was our firm estabEPTTd?
Our business EPTTizing in the production of EPT push EPTTs, with a lot more than 10 years of expertise.
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SHC Sequence EPT-performance One Cylinder EPT Cone Crusher EPTT
Description:
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Functions:
Substantial Productivity
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EPTT
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High LOADING CAPAEPTT
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Broad APPLICABILITY
There are two kinds of cone crusher: stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd kind and limited head variety. There are numerous sorts of chamber can be selected for each and every sort. Diverse chambers can be modified by ECC. The adjusting of products’ classifying can be reached by changing the driving shaft speed to maXiHu (West EPT) Dis.mize the equipment’s worth in use.
Reduced Managing Sounds AND Minimal VIBRATION
The driving framework of high precision arc-condition spiral EPT has rewards of low running sounds, higher driving ratio and EPTT toughness. Minimal vibration itself and fleXiHu (West EPT) Dis.bility supporting of the steel structure make sure bare minimum vibration which is triggered by EPTT from EPTT to foundation and reduced basis EPT.
Minimal Installation Expense
SHC200(s) and SHC300(s) cone crusher’s EPTd compound cup-type piston design has gain of low installation heigEPTT and the integral metal foundation frame make certain easy set up, short time-EPT and bare minimum installation EPT.
Low Operating Value
The liner use ratio and sturdiness can be increased by EPTT crushing chamber, liner composition and liner content. The stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd positive stress dustproof technique assures pure lubrication oil all the time, which extends the provider daily life and lower the EPT of labor because of much less regular lubrication oil modify. Most of the parts can be disassembled in top and aspect which is secure, practical and effective.
EPTnical Technical specs:
SEPTTNDARY CRUSHING
Model | Eccentricity Price (mm) |
Max. EPTT (kw) |
Throughput Potential(t/h) | ||||||
CSS (mm) |
25 | thirty | 35 | forty | 45 | fifty | |||
SHC100S | twenty | 90 | one hundred fifteen-one hundred twenty five | 140-150 | 155-one hundred seventy five | one hundred sixty five-195 | a hundred and eighty-210 | ||
25 | a hundred and eighty-190 | 195-215 | 205-225 | ||||||
SHC200S | twenty five | one hundred sixty | a hundred sixty five-215 | 185-235 | 205-255 | 225-275 | |||
32 | 225-275 | 265-315 | 275-345 | ||||||
SHC300S | 32 | 250 | 350-390 | 370-410 | 390-430 | ||||
40 | 440-490 | 470-520 | |||||||
SHC400S | 36 | 280 | 400-450 | 440-490 | 480-520 | 500-540 | 550-600 | ||
42 | 520-570 | 550-630 | 620-670 | 650-seven-hundred |
Good CRUSHING
Model | Eccentricity Worth (mm) |
Max. EPTT (kw) |
Throughput Capacity(t/h) | ||||||||
CSS (mm) |
8 | 10 | fifteen | 20 | twenty five | 30 | 35 | 40 | |||
SHC100 | twenty | ninety | forty five-50 | fifty-fifty five | 65-75 | 90-one hundred | |||||
twenty five | 50-sixty | 70-85 | a hundred-a hundred and fifteen | ||||||||
SHC200 | 25 | one hundred sixty | 85-one zero five | 105-one hundred twenty five | one hundred twenty five-150 | one hundred fifty five-a hundred seventy five | one hundred eighty-205 | ||||
32 | 135-155 | one hundred sixty five-185 | 185-215 | ||||||||
SHC300 | 32 | 250 | a hundred-a hundred and twenty | 110-a hundred and forty | a hundred and fifty five-185 | 185-215 | 220-250 | 255-285 | 290-320 | ||
40 | one hundred forty-one hundred sixty | 195-225 | 235-265 | 280-310 | 315-345 | ||||||
SHC400 | 36 | 280 | 150-180 | two hundred-240 | 260-285 | 290-320 | 330-365 | 370-four hundred | 410-440 | ||
forty two | 260-290 | 320-350 | 355-385 | 390-420 | 430-460 | 470-five hundred |
Model | Max. Feed Opening (mm) |
Max. EPTT (kw) |
Throughput Capacity(t/h) | ||||||
CSS (mm) |
13 | sixteen | 19 | 22 | 25 | 32 | |||
SHC500 | 275 | 315 |
|
172 | 185-333 | 198-431 | 211-460 | 241-542 | |
215 | 165-185 | a hundred and eighty-362 | 190-475 | 204-505 | 237-580 | ||||
175 | 157-248 | a hundred and seventy-421 | 181-450 | 193-480 | 220-550 | ||||
135 | 192-290 | 206-435 | 221-465 | 235-495 | 270-497 | ||||
one hundred fifteen | 188 | 202-364 | 217-391 | 232-418 | 247-445 | 282-446 | |||
85 | 190-three hundred | 205-323 | 220-347 | 236-371 | 251-395 | 287-396 | |||
65 | 206-288 | 222-311 | 240-293 | 256-290 | |||||
SHC800 | 300 |
560
|
443-584 | 472-844 | 540-963 | ||||
240 | four hundred | 428-631 | 456-888 | 520-1013 | |||||
195 | 375-435 | 401-718 | 427-832 | 487-950 | |||||
one hundred fifty five | 400-563 | 423-780 | 455-836 | 514-948 | |||||
one hundred | 374-420 | 402-711 | 429-760 | 457-809 | 522-923 | ||||
90 | 352-390 | 380-650 | 410-700 | 437-747 | 465-795 | 530-907 | |||
eighty | 300-511 | 323-553 | 347-593 | 371-635 | 395-675 | 450-770 | |||
SHC1000 | 370 |
750 |
390-454 | 444-1304 | |||||
330 | 392 | 417-770 | 477-1400 | ||||||
three hundred | 337-508 | 360-847 | 384-1227 | 438-1400 | |||||
230 | 262-306 | 282-665 | 302-946 | 321-1101 | 367-1256 | ||||
a hundred and sixty | 200 | 215-509 | 232-685 | 248-916 | 264-975 | three hundred-1112 | |||
a hundred and twenty | 243-284 | 263-665 | 282-833 | 302-890 | 321-947 | 367-1080 | |||
one hundred | 208-418 | 223-661 | 240-710 | 247-758 | 273-807 | 312-921 | |||
eighty five | 196-580 | 211-626 | 227-673 | 238-715 | 260-765 | 296-873 | |||
seventy five | 188-560 | 204-603 | 220-648 | 234-692 | 250-737 | 285-841 |
Product | Max. Feed Opening (mm) |
Max. EPTT (kw) |
Throughput Capacity(t/h) | ||||||
CSS (mm) |
38 | forty four | fifty one | 57 | sixty four | 70 | |||
SHC500 | 275 | 315 |
|
267-600 | 293-657 | 328-511 | |||
215 | 258-638 | 283-507 | 317-353 | ||||||
175 | 244-494 | 268-360 | |||||||
one hundred thirty five | 297-398 | ||||||||
a hundred and fifteen | 314-358 | ||||||||
eighty five | 318 | ||||||||
65 | |||||||||
SHC800 | three hundred |
560
|
596-1065 | 653-1167 | 720-1286 | 777-1388 | 844-1506 | 901-1326 | |
240 | 576-1120 | 631-1227 | 695-1352 | 751-1460 | 815-1456 | 871-1281 | |||
195 | 540-1050 | 591-1150 | 652-1267 | 703-1368 | 764-1365 | 816-1201 | |||
a hundred and fifty five | 568-1050 | 623-1150 | 687-1266 | 741-1367 | 805-1243 | 860-1093 | |||
a hundred | 847-937 | 633-784 | 697 | ||||||
ninety | 587-852 | 644-713 | |||||||
80 | 498-728 | 546-664 | |||||||
SHC1000 | 370 |
750 |
490-1441 | 538-1580 | 593-1740 | 641-1878 | 696-2038 | 743-2176 | |
330 | 527-1547 | 578-1695 | 637-1868 | 688-2015 | 747-2188 | 798-2137 | |||
300 | 485-1547 | 531-1695 | 586-1868 | 632-2015 | 687-2000 | 798-1734 | |||
230 | 406-1390 | 445-1521 | 491-1676 | 530-1810 | 575-1795 | 715-1560 | |||
one hundred sixty | 334-1230 | 366-1347 | 404-1485 | 436-1602 | 593-1391 | 633-1165 | |||
one hundred twenty | 406-1160 | 445-1046 | 491-822 | 530-620 | |||||
a hundred | 346-990 | 380-891 | 418-seven-hundred | 452-528 | |||||
eighty five | 328-965 | 360-1058 | 396-1165 | 428-1005 | 465-857 | 497-664 | |||
75 | 316-850 | 346-756 | 382-575 | 412 |
Be aware: CSS signifies discharge opening dimensions. The earlier mentioned capacity is based mostly on rock with bulk density 1.6t/mthree. This ability will be affected by variables this sort of as picked eccentricity, crushing ratio, material hardness, feed particle dimensions composition, humidity and sEPTT material and many others. For much more comprehensive information you should get in touch with us.
Structure:
Discharging Granularity Curves:
Observe: The figures on the curves are for the discharging opening dimensions and examination of square gap.
Crusher Cavity Choice:
Design | Cavity Sort | Feed Opening (mm) |
Max. Feed Measurement (mm) |
Min. Discharge Opening (mm) |
SHC100S | EC | 250 | two hundred | twenty five |
SHC200S | EC | 330 | 264 | thirty |
SHC300S | EC | 380 | 304 | 35 |
SHC400S | EC | 450 | 360 | 30 |
SHC100 |
EF | forty | 35 | eight |
F | 50 | 40 | 8 | |
MF | 100 | eighty | 13 | |
M | one hundred thirty | a hundred | 16 | |
EC | one hundred fifty | a hundred and twenty | eighteen | |
SHC200 | F | 70 | 60 | 10 |
M | a hundred thirty | a hundred | sixteen | |
EC | 210 | a hundred sixty five | 25 | |
SHC300 |
F | 60 | 50 | 8 |
MF | a hundred | eighty | thirteen | |
M | a hundred thirty | a hundred | sixteen | |
C | 180 | a hundred and forty | twenty five | |
EC | 260 | 210 | thirty | |
SHC400 | MF | a hundred | 80 | thirteen |
M | a hundred thirty | a hundred | sixteen | |
C | 180 | one hundred forty | twenty five | |
EC | 260 | 210 | thirty |
Observe: EF = Additional Fantastic, F = Good, MF = Medium Wonderful, M = Medium, C = Coarse, EC = Extra Coarse
Proportions:
Apps:
Workshop:
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2007 infiniti m35x entrance drive shaft EPG king kutter generate shaft areas Equipment tractor pto spline shaft is ford 3000 pto shaft removing positioned pto reducer adapter in pto shaft shields XiHu kubota snowblower pto shaft Region pto travel shaft clutch HangZhou spicer driveshaft Zhejiang drive shaft u joint vibration ,China. It is 30km from our manufacturing unit to HangZhou international airport. Principal goods include: manure spreading truck, potato planting/harvesting equipment, disc plough, disc harrow, grass Mower/slasher, corn and wheat thershers, seeder, mouldboard plow, deep subsoiler machines, rotary tiller, rear blade, fertilizer spreader, blend rice harvester, corn thresher, farm trailer, ridger, trencher, stubble cleaner, earth auger, cultivator and its equipment: Plow disc blades, harrowing movie, plough suggestion and share, cultivator tine, casting elements and many others. Machining Capabilities
Machined Sleeve & Ring | Machined Hubs & Disks | Machined Shaft & Roll | Machined Bar & Block |
OD max 1700 mm | D max 1600 mm | D max 100 mm | D max 650 mm |
ID max 1500 mm | d max 100 mm | L max 8000 mm | L max 4400 mm |
H max 500 mm | H max 800 mm | H max 900 mm | Weight max 7500 kg |
Weight max 1500 kg | Weight max 1000 kg | Weight max 4000 kg |
Item Details
Machining Range | CNC machining customzied Large Precision pto shaft with splines |
Market Served | Construction machinery parts,oilfield petroleum parts,engine parts,marine parts,Spare Parts for Mining Machinery,Coal Mine Drill,Forklift,Agricultural machinery,Railway and train,Excavator,Hydraulic Field Parts,Shipbuilding parts,Pump spare parts,Industrial Machines,Grinding,Roller Press |
Steel Treatment | Forging,Q+T(Quenching+Tempering),Solution treatment,Heat treatment |
Forging Technique | Forging,open die forging,free forging,ring forging,hot rolling. |
Machining Service | Rough machining,Precision machining,Milling,Rolling,Hole Drilling,Stamping |
Products: | CNC Machining Centres |
Substance: | Carbon steel ,Alloy steel ,Stainless steel |
Surface treatment: | Heat Treatment,Oxide coating,plating,finishing,portray,galvanized,plated chrome |
Software: | Oil and gas,Oilfield,Petrochemcial,Engineering Construction Machinery,Equipment |
Chrome thickness: | 20~30micron |
Max Length of bar | 6000mm |
Max Weight of Machined | 8000-10000kg |
Max OD of Ring | 2000mm |
Roughness: | Ra 0.2micron (max) |
Yield Strength: | ≥320 Mpa |
Tensile Strength: | ≥580 Mpa |
Main Products: | Machined Forging Rings,Machined Shafts,Machined Flat Round Bars,Machined Sleeves,Bushes,Bushing, Machined Parts,Blocks, Machined shells,Shaft Axle Scroll Axis Rotor Roll |
Primary Equipment Record(Forging & Machining Middle )
Factory Machine | Amount/Set | Problem |
5 Ton Hydraulic Hammer | 1 | Exceptional |
2500 Ton Friction Press | 1 | Excellent |
Heating Furnace | two | Excellent |
Procedure | 1 | Great |
Cutting Machine | 5 | Excellent |
CNC Machining Center | four | Excellent |
CNC Lathe | 15 | Great |
CNC Drilling | three | Exceptional |
CNC milling Machine | ten | Excellent |
Grinding Machine | 2 | Exceptional |
Pneumatic Marking Machine | 1 | Excellent |
CNC Packing Machine | one | Very good |
Process
Ingot→heat → forging → Heat treatment (Normalizing+ tempering) → Inspection
→rough machining→UT →2nd Heat treatment →finishing machining →Inspection → area treatment→Packing →Shipping
Machining Benefit
30 many years encounter in forging and machining
Exceptional Production system
Offer sample, one particular piece is a single orderCustomized you the most appropriate items