Product Description
Product Description
Features:
1. The main body is made of high-strength aluminum alloy
2. Zero rotation interval, suitable for positive and negative rotation
3. The gel is made of polyurethane and has good wear resistance
4. Oil resistance and electrical insulation, intermediate elastomer can absorb vibration
5. Radial, angular and axial deviation compensation
6. Dismountable design for easy installation
7. Clamping screw fastening method
Techncial Date
Size | Type | Standard bore | Bore metric | Bore inch | Dimensions | Torgue needed | Rotational speed | Mass | ||||||
Min | Max | Min | Max | A | B | C | D | E | Nm | rpm | kg | |||
L035 | 1 | 3 | 3 | 8 | 1/8″ | 3/8″ | 16 | 20.2 | 7.8 | 6.6 | – | 0.5 | 30./8822 0571 -57152031 Fax: 86~/8822 0571 -57152030
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Contribution of Jaw Coupling to Equipment LongevityJaw couplings play a vital role in enhancing the longevity and reliability of connected equipment in mechanical power transmission systems. The design and features of jaw couplings contribute to minimizing wear, reducing downtime, and protecting the equipment from harmful forces. Here’s how jaw couplings contribute to equipment longevity:
Overall, jaw couplings contribute to equipment longevity by providing protection against shock loads, compensating for misalignment, preventing overloads, reducing backlash, and offering resilience to environmental factors. By selecting the right jaw coupling for the application and following proper maintenance practices, users can maximize the lifespan of connected equipment and improve the overall efficiency of their mechanical systems. What are the cost implications of using jaw couplings compared to other coupling types?When considering the cost implications of using jaw couplings compared to other coupling types, several factors come into play. Jaw couplings offer certain advantages and disadvantages in terms of initial cost, maintenance, and overall performance. Here’s a breakdown of the cost considerations:
In summary, jaw couplings generally offer a cost advantage in terms of their lower initial cost and relatively low maintenance requirements. However, the most cost-effective choice depends on the specific application and its performance demands. It is essential to evaluate factors such as torque requirements, misalignment compensation, maintenance needs, and operating conditions to determine the best coupling type that balances performance and cost-effectiveness. Handling Misalignment with Jaw CouplingsJaw couplings are designed to handle certain degrees of misalignment between shafts. They are flexible couplings that can accommodate both angular and radial misalignment to some extent. The elastomeric element in the jaw coupling provides the necessary flexibility to compensate for misalignment while transmitting torque between the shafts. Angular Misalignment: Jaw couplings can handle small amounts of angular misalignment, typically up to a few degrees. However, excessive angular misalignment should be avoided as it can lead to increased wear on the coupling and connected equipment. Radial Misalignment: Similar to angular misalignment, jaw couplings can also tolerate small amounts of radial misalignment. The elastomeric material allows the coupling to flex and adjust to minor shaft misalignments. It’s important to note that while jaw couplings are suitable for handling some degree of misalignment, the actual allowable misalignment depends on the specific design and material of the coupling. Therefore, it is essential to refer to the manufacturer’s specifications and guidelines for the particular jaw coupling being used in an application. For applications with significant misalignment or where precise alignment is critical, other types of flexible couplings, such as beam couplings or disc couplings, may be more appropriate. Proper alignment and regular maintenance are key factors in ensuring the optimal performance and longevity of the jaw coupling and the connected machinery.
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