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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| Standard Or Nonstandard: | Nonstandard |
|---|---|
| Shaft Hole: | 19-32 |
| Torque: | <10N.M |
| Bore Diameter: | 19mm |
| Speed: | 8000r/M |
| Structure: | Rigid |
| Samples: |
US$ 999/Piece
1 Piece(Min.Order) | |
|---|


Can Pin Couplings Be Used in Both Horizontal and Vertical Shaft Arrangements?
Yes, pin couplings can be used in both horizontal and vertical shaft arrangements. These couplings are designed to accommodate angular misalignment, parallel misalignment, and axial movement, making them versatile for various shaft orientations.
In horizontal shaft arrangements, where the shafts are aligned on the same horizontal plane, pin couplings can efficiently transmit torque while allowing for flexibility to accommodate minor misalignments and shaft movements. The pins and flexible elements in the coupling enable angular displacement and radial flexibility, ensuring smooth power transmission even if the shafts are not perfectly aligned.
In vertical shaft arrangements, where the shafts are aligned on a vertical plane, pin couplings can also be used effectively. The coupling design allows for axial movement, which is crucial in vertical applications where the shafts may experience expansion or contraction due to thermal changes or other factors. The flexible nature of pin couplings allows them to handle these axial movements without compromising the coupling’s performance.
Whether in horizontal or vertical arrangements, pin couplings are commonly used in various industrial applications, including pumps, compressors, conveyors, and other rotating machinery. They are known for their simplicity, ease of installation, and ability to provide reliable power transmission while accommodating misalignment and shaft movement.
When using pin couplings in either arrangement, it is essential to ensure proper alignment and regular maintenance to maximize their performance and service life. Additionally, considering factors like torque requirements, operating conditions, and environmental considerations will help in selecting the appropriate pin coupling for a specific application.

How Does a Pin Coupling Handle Angular, Parallel, and Axial Misalignment?
A pin coupling is designed to handle different types of misalignment, including angular, parallel, and axial misalignment. The unique construction of pin couplings allows them to accommodate these misalignments without compromising the efficiency and performance of the connected equipment.
1. Angular Misalignment: Angular misalignment occurs when the axes of the driving and driven shafts are not parallel but intersect at an angle. Pin couplings can tolerate angular misalignment because of their flexible and floating pin design. The two coupling halves are connected by a series of pins, which can pivot and move within the pin holes. This flexibility allows the coupling to bend slightly, adjusting to the angle of misalignment between the shafts.
2. Parallel Misalignment: Parallel misalignment happens when the axes of the driving and driven shafts are parallel, but they are laterally displaced from each other. Pin couplings can handle parallel misalignment to some extent due to the floating nature of the pins. The pins can move laterally within the pin holes, allowing the coupling to adapt to the offset between the shafts.
3. Axial Misalignment: Axial misalignment occurs when there is a linear displacement along the axis of one shaft concerning the other. While pin couplings primarily focus on handling angular and parallel misalignment, they may offer limited axial misalignment capabilities. The floating pins provide a small degree of axial movement, but excessive axial misalignment is best avoided to prevent additional stresses on the coupling.
It is important to note that while pin couplings can accommodate some degree of misalignment, excessive misalignment should be avoided to prevent premature wear and potential failure of the coupling and connected equipment. Regular inspection and maintenance can help identify and address any misalignment issues, ensuring the optimal performance and longevity of the pin coupling in power transmission applications.

Limitations and Disadvantages of Using Pin Couplings
While pin couplings offer various advantages and are suitable for many applications, they also have some limitations and disadvantages to consider:
- Misalignment Restrictions: Pin couplings can accommodate a certain degree of misalignment, but excessive misalignment can lead to increased wear and stress on the coupling components. They are not as effective at handling large angular or parallel misalignments compared to other flexible couplings like gear or elastomeric couplings.
- Less Damping Capacity: Pin couplings have limited damping capacity, which means they may not effectively absorb and reduce vibrations in the system. In applications where vibration damping is critical, elastomeric or flexible couplings may be more suitable.
- Noisy Operation: The rigid nature of pin couplings can lead to increased noise during operation, especially at high speeds or in applications with significant misalignment. This noise can be a concern in environments where noise levels need to be minimized.
- Higher Maintenance: Compared to maintenance-free couplings like certain types of elastomeric couplings, pin couplings may require more frequent inspection and maintenance. The pins and other components may experience wear over time and need replacement.
- Environmental Limitations: Some pin couplings may not be suitable for use in corrosive or high-temperature environments, depending on the materials used. Stainless steel or other corrosion-resistant materials can help mitigate this limitation.
- Size and Weight: In certain applications, the size and weight of pin couplings may be larger and heavier compared to other types of couplings. This can be a consideration in applications where weight is a concern or space is limited.
Despite these limitations, pin couplings remain a popular choice for many applications where their advantages, such as simplicity, durability, and cost-effectiveness, outweigh their disadvantages. It is crucial to carefully assess the specific requirements of the application and consider factors like misalignment, vibration, maintenance needs, and environmental conditions when selecting a coupling type.


editor by CX 2024-01-23
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In this way, our goods have continued to acquire industry acceptance and clients gratification above the earlier couple of many years.ISO EPG has been efficiently accredited by ISO9002 Good quality Administration Method, ISO9001 High quality Management Technique, API certification, ISO/TS16949:2002 and ISO10012 measurement management system. 9001, ISO/TS 16949 and AS9100 qualified. Maker of standard and custom made roller chains for use in a broad selection of programs. Roller chains are accessible in solitary-pitch, double-pitch and precision kinds. Fulfills or exceed ANSI standards. engineering class chains & precision roller chains. One strand chain, multi-strand chains, double pitch chains, corrosion resistant chains, self-lubricating chains, attachment chains, leaf chains, and specialty chains.
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The use of original equipment manufacturer’s (OEM) component numbers or trademarks , e.g. CASE® and John Deere® are for reference purposes only and for indicating product use and compatibility. Our company and the detailed alternative components contained herein are not sponsored, accredited, or created by the OEM.




Roller made in China – replacement parts – in Johor Bahru Malaysia Chain Flexible Couplings Chain Gear Coupling with ce certificate top quality low price

We – EPG Group the bigge EPT Chain and agricultural gearbox factory in China with 5 different branches. For far more details: Cell/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778 0571 88828
Solution Description
At any time-electrical power speciali EPT in creating all sorts of mechanical transmission and hydraulic transmission like: planetary gearboxes, worm reducers, in-line helical gear velocity reducers, parallel shaft helical equipment reducers, helical bevel reducers, helical worm equipment reducers, agricultural gearboxes, tractor gearboxes, auto gearboxes, pto generate shafts, particular reducer & connected gear factors and EPT related items, sprockets, hydraulic program, vaccum pumps, fluid coupling, gear racks, chains, timing pulleys, udl speed variators, v pulleys, hydraulic cylinder, gear pumps, screw air compressors, shaft collars lower backlash worm reducers and so on. furthermore, we can generate custom-made variators, geared motors, electric motors and EPT hydraulic merchandise according to customers’ drawings.
The business supplies a reputable gurantee for the product’ s quality by superior inspection and screening tools. expert complex group, exquisite processing engineering and strict manage program.
In recent a long time, the company has been establishing rapidly by its abundant knowledge in generation, adcanced managemant program, standardized administration technique, sturdy technological force. We often adhere the notion of survial by quality, and decelopment by innovation in science and technologies.
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As prolonged as the’relative displacement between shafts is kept within the specified tolerance, the coupling will operate the be EPT operate and a longer doing work life, thus it is greatly demanded in medium and minorpower transmission systems travel by moters.
|
Dimensions |
N.m |
r/min |
D |
D1 |
d1 |
L |
C |
n-M |
KG |
|
90 |
4 |
4000 |
90 |
35.five |
eleven |
28 |
3 |
4-M8*fifty |
1.7 |
|
100 |
ten |
4000 |
100 |
40 |
eleven |
35.5 |
3 |
4-M10*fifty six |
2.three |
|
112 |
16 |
4000 |
112 |
45 |
13 |
40 |
3 |
4-M10*fifty six |
two.8 |
|
a hundred twenty five |
twenty five |
4000 |
one hundred twenty five |
50 |
13 |
45 |
three |
4-M12*64 |
4. |
|
one hundred forty |
fifty |
4000 |
one hundred forty |
63 |
thirteen |
50 |
three |
6-M12*64 |
5.4 |
|
one hundred sixty |
a hundred and ten |
4000 |
one hundred sixty |
80 |
fifteen |
fifty six |
3 |
eight-M12*64 |
eight. |
|
a hundred and eighty |
157 |
3500 |
a hundred and eighty |
ninety |
15 |
63 |
three |
8-M12*sixty four |
10.5 |
|
two hundred |
245 |
3200 |
200 |
a hundred |
21 |
seventy one |
4 |
eight-M20*85 |
sixteen.2 |
|
224 |
392 |
2850 |
224 |
112 |
21 |
eighty |
4 |
eight-M20*85 |
21.3 |
|
250 |
618 |
2550 |
250 |
one hundred twenty five |
twenty five |
ninety |
4 |
eight-M24*a hundred |
31.6 |
|
280 |
980 |
2300 |
280 |
140 |
34 |
a hundred |
four |
8-M24*116 |
forty four. |
|
315 |
1568 |
2050 |
315 |
one hundred sixty |
41 |
112 |
four |
10-M24*116 |
57.seven |
|
355 |
2450 |
1800 |
355 |
one hundred eighty |
60 |
125 |
five |
eight-M30*150 |
89.5 |
|
four hundred |
3920 |
1600 |
four hundred |
200 |
60 |
one hundred twenty five |
five |
ten-M30*a hundred and fifty |
89.five |
|
450 |
6174 |
1400 |
450 |
224 |
sixty five |
a hundred and forty |
five |
12-M30*a hundred and fifty |
one hundred forty five |
|
560 |
9800 |
1150 |
560 |
250 |
eighty five |
160 |
five |
fourteen-M30*one hundred fifty |
229 |
|
630 |
15680 |
a thousand |
630 |
280 |
ninety five |
a hundred and eighty |
5 |
eighteen-M30*one hundred fifty |
296 |
The use of original gear manufacturer’s (OEM) element numbers or logos , e.g. CASE® and John Deere® are for reference functions only and for indicating solution use and compatibility. Our organization and the shown substitute components contained herein are not sponsored, approved, or created by the OEM.


