Product Description
Product Name
American Type Hose Clamp
Product Parameters
Item(Small American Type) | Model | Brand width(mm) | Thickness(mm) | PCS/Bag | PCS/BOX |
CZX-CLA-001 | 6-12mm | 8 | 0.6 | 100 | 5000 |
CZX-CLA-002 | 10-16mm | 8 | 0.6 | 100 | 5000 |
CZX-CLA-003 | 13-19mm | 8 | 0.6 | 100 | 5000 |
CZX-CLA-004 | 16-25mm | 8 | 0.6 | 100 | 5000 |
CZX-CLA-005 | 19-29mm | 8 | 0.6 | 100 | 5000 |
Item(large American Type) | Model | Brand width(mm) | Thickness(mm) | KG/100PCS | PCS/BOX |
CZX-CLA-001 | 14-27 | 12 | 0.6 | 1 | 2000 |
CZX-CLA-002 | 18-32 | 12 | 0.6 | 1.3 | 2000 |
CZX-CLA-003 | 21-38 | 12 | 0.6 | 1.55 | 2000 |
CZX-CLA-004 | 21-44 | 12 | 0.6 | 1.61 | 2000 |
CZX-CLA-005 | 27-51 | 12 | 0.6 | 1.7 | 2000 |
CZX-CLA-006 | 33-57 | 12 | 0.6 | 1.8 | 2000 |
CZX-CLA-007 | 40-63 | 12 | 0.6 | 1.9 | 1500 |
CZX-CLA-008 | 46-70 | 12 | 0.6 | 2 | 1200 |
CZX-CLA-009 | 52-76 | 12 | 0.6 | 2.2 | 1000 |
CZX-CLA-571 | 59-82 | 12 | 0.6 | 2.36 | 1000 |
CZX-CLA-011 | 65-89 | 12 | 0.6 | 2.5 | 800 |
CZX-CLA-012 | 72-95 | 12 | 0.6 | 2.6 | 800 |
CZX-CLA-013 | 78-101 | 12 | 0.6 | 2.7 | 700 |
CZX-CLA-014 | 84-108 | 12 | 0.6 | 2.75 | 600 |
CZX-CLA-015 | 91-114 | 12 | 0.6 | 2.8 | 600 |
CZX-CLA-016 | 105-127 | 12 | 0.6 | 3 | 600 |
CZX-CLA-017 | 118-140 | 12 | 0.6 | 3.4 | 500 |
CZX-CLA-018 | 130-152 | 12 | 0.6 | 3.5 | 500 |
CZX-CLA-019 | 141-165 | 12 | 0.6 | 3.7 | 500 |
CZX-CLA-571 | 155-178 | 12 | 0.6 | 4 | 500 |
CZX-CLA-571 | 175-197 | 12 | 0.6 | 4.3 | 400 |
CZX-CLA-571 | 194-216 | 12 | 0.6 | 4.4 | 400 |
CZX-CLA-571 | 213-235 | 12 | 0.6 | 4.9 | 400 |
CZX-CLA-571 | 232-254 | 12 | 0.6 | 5.3 | 400 |
CZX-CLA-571 | 251-273 | 12 | 0.6 | 5.6 | 400 |
CZX-CLA-026 | 270-292 | 12 | 0.6 | 6 | 400 |
CZX-CLA-571 | 289-311 | 12 | 0.6 | 6.2 | 400 |
CZX-CLA-571 | 100 | 12 | 0.6 | ||
CZX-CLA-571 | 200 | 12 | 0.6 | ||
CZX-CLA-030 | 300 | 12 | 0.6 | ||
CZX-CLA-031 | 350 | 12 | 0.6 | ||
CZX-CLA-032 | 400 | 12 | 0.6 | ||
CZX-CLA-033 | 450 | 12 | 0.6 | ||
CZX-CLA-034 | 500 | 12 | 0.6 | ||
CZX-CLA-035 | 550 | 12 | 0.6 | ||
CZX-CLA-036 | 600 | 12 | 0.6 |
Product name | stainless steel clamp(201,304,316 is optional) |
Features | Exquisite workmanship, no rust |
Product properties | see parameter table |
Product color | Stainless steel color |
Product material | Authentic stainless steel all steel (including screws) |
Product Specifications | Various specifications (various sizes can be customized) |
Product Usage | Widely used in stainless steel, wire and cable, new energy vehicles, hoses, ships, chemicals and other industries |
The hose clamp is relatively small and its value is relatively low, but the role of the hose clamp is huge. American hose clamp, also known as clamp. American stainless steel hose clamps: divided into small American hose clamps and large American hose clamps. The width of the hose clamps is 12.7mm and 14.2mm respectively. Using through-hole technology, the hose clamp has a wide range of applications. It is suitable for fasteners for connecting soft and hard pipes with a thickness of 30mm or more. The appearance after assembly is beautiful. Features: The worm has low friction, which is suitable for middle and high-end vehicles, pole-holding equipment or the connection of anti-corrosion materials. | |
American type hose clamp: divided into 2 types: iron galvanized and stainless steel. The main difference is that the button pitch is perforated (ie through-hole button). The market is mainly made of stainless steel, which is mainly used in high-end markets such as auto parts and poles. The price Higher than the other two. |
Detailed Photos
Product Application
Production Workshop
International Experiance
Certifications
After Sales Service
1.Reply in 24 hours.
2.In time response and professional suggestions.
3.Replacement product and tailor-made product both can do.
4.Small trial order accepted.
5.Certification, complete certificates,like CE, EU,Rohs, FDA.
6.Good quality and competitive price.
Contact Person
Celina Du
HangZhou Xihu (West Lake) Dis. Rubber & Plastic New Material Co., Ltd
How do you install and align a flexible coupling properly to ensure optimal performance?
Proper installation and alignment of a flexible coupling are essential to ensure its optimal performance and longevity. Incorrect installation can lead to premature wear, increased vibrations, and potential equipment failure. Below are the steps to install and align a flexible coupling properly:
1. Pre-Installation Inspection:
Before installation, inspect the flexible coupling and its components for any visible damage or defects. Check that the coupling’s size and specifications match the application requirements. Ensure that the shafts and equipment connected to the coupling are clean and free from debris.
2. Shaft Preparation:
Prepare the shafts by removing any oil, grease, or contaminants from the surfaces that will come into contact with the coupling. Ensure that the shaft ends are smooth and free from burrs that could affect the fit of the coupling.
3. Coupling Hub Installation:
Slide the coupling hubs onto the shafts, ensuring they are positioned securely and evenly on each shaft. Use a lubricant recommended by the manufacturer to facilitate the installation and ensure a proper fit.
4. Alignment:
Proper alignment is critical for the performance and longevity of the flexible coupling. Align the shafts by checking both angular and parallel misalignment. Utilize precision alignment tools, such as dial indicators or laser alignment systems, to achieve accurate alignment. Follow the manufacturer’s alignment specifications and tolerance limits.
5. Tightening Fasteners:
Once the shafts are properly aligned, tighten the coupling’s fasteners to the manufacturer’s recommended torque values. Gradually tighten the fasteners in a cross pattern to ensure even distribution of the load on the coupling hubs. Avoid over-tightening, as it may cause distortion or damage to the coupling.
6. Run-Out Check:
After installation, perform a run-out check to verify that the coupling’s rotating components are balanced and aligned. Excessive run-out can lead to vibrations and reduce the coupling’s performance. If significant run-out is detected, recheck the alignment and address any issues that may be causing it.
7. Lubrication:
Ensure that the flexible coupling is adequately lubricated, following the manufacturer’s recommendations. Proper lubrication reduces friction and wear, enhancing the coupling’s efficiency and reliability.
8. Periodic Inspection and Maintenance:
Regularly inspect the flexible coupling for signs of wear, misalignment, or damage. Address any issues promptly to prevent further problems. Depending on the coupling type and application, scheduled maintenance may include re-greasing, re-alignment, or replacing worn components.
Summary:
Proper installation and alignment are crucial for ensuring the optimal performance and longevity of a flexible coupling. Following the manufacturer’s guidelines, inspecting the components, achieving accurate alignment, and using the appropriate lubrication are key steps in the installation process. Regular inspection and maintenance help to identify and address potential issues, ensuring the coupling continues to operate smoothly and efficiently in the mechanical system.
Can flexible couplings be used in pumps, compressors, and fans?
Yes, flexible couplings can be used in pumps, compressors, and fans, and they are commonly employed in these types of rotating machinery. Flexible couplings offer several advantages that make them suitable for such applications:
- Misalignment Compensation: Pumps, compressors, and fans often experience misalignments due to various factors, such as thermal expansion, foundation settling, or component wear. Flexible couplings can accommodate angular, parallel, and axial misalignments, helping to maintain proper alignment between the driving and driven components.
- Vibration Damping: Flexible couplings help dampen vibrations in rotating machinery, which is essential for smooth operation and reduced wear on components. In pumps, compressors, and fans, vibration control is crucial to prevent premature failure and maintain reliable performance.
- Shock Load Absorption: These rotating machines may encounter shock loads during startup or shutdown, especially in reciprocating equipment like reciprocating pumps or compressors. Flexible couplings can absorb and mitigate the impact of such loads, protecting the connected equipment from damage.
- Reduced Maintenance: Flexible couplings with elastomeric elements or other self-lubricating features require minimal maintenance, leading to cost savings and reduced downtime in pumps, compressors, and fans.
- Energy Efficiency: Certain flexible coupling designs, such as beam couplings or certain elastomeric couplings, have low mass and inertia. This characteristic helps improve the energy efficiency of rotating machinery, which is particularly beneficial in large-scale pumps, compressors, and fans used in industrial applications.
- Adaptability: Pumps, compressors, and fans often have varying operating conditions and load profiles. Flexible couplings are adaptable to different operating environments, making them suitable for diverse applications.
In summary, flexible couplings offer several performance-enhancing features that make them well-suited for use in pumps, compressors, and fans. Their ability to accommodate misalignment, dampen vibrations, absorb shocks, and reduce maintenance requirements contributes to improved reliability, efficiency, and longevity of the connected rotating machinery.
How do you select the appropriate flexible coupling for a specific application?
Choosing the right flexible coupling for a specific application requires careful consideration of various factors to ensure optimal performance, reliability, and longevity. Here are the key steps to select the appropriate flexible coupling:
- Application Requirements: Understand the specific requirements of the application, including torque and speed specifications, misalignment conditions, operating environment (e.g., temperature, humidity, and presence of corrosive substances), and space limitations.
- Torque Capacity: Determine the maximum torque that the coupling needs to transmit. Choose a flexible coupling with a torque rating that exceeds the application’s requirements to ensure a safety margin and prevent premature failure.
- Misalignment Compensation: Consider the type and magnitude of misalignment that the coupling needs to accommodate. Different coupling designs offer varying degrees of misalignment compensation. Select a coupling that can handle the expected misalignment in the system.
- Vibration Damping: If the application involves significant vibrations, choose a flexible coupling with good damping properties to reduce vibration transmission to connected equipment and improve system stability.
- Environmental Factors: Take into account the environmental conditions in which the coupling will operate. For harsh environments, consider couplings made from corrosion-resistant materials.
- Torsional Stiffness: Depending on the application’s requirements, decide on the desired torsional stiffness of the coupling. Some applications may require high torsional stiffness for precise motion control, while others may benefit from a more flexible coupling for shock absorption.
- Cost and Life-Cycle Considerations: Evaluate the overall cost-effectiveness of the coupling over its expected life cycle. Consider factors such as initial cost, maintenance requirements, and potential downtime costs associated with coupling replacement.
- Manufacturer Recommendations: Consult coupling manufacturers and their technical specifications to ensure the selected coupling is suitable for the intended application.
- Installation and Maintenance: Ensure that the selected flexible coupling is compatible with the equipment and shaft sizes. Follow the manufacturer’s installation guidelines and recommended maintenance practices to maximize the coupling’s performance and longevity.
By following these steps and carefully evaluating the application’s requirements, you can select the most appropriate flexible coupling for your specific needs. The right coupling choice will lead to improved system performance, reduced wear on equipment, and enhanced overall reliability in various mechanical systems and rotating machinery.
editor by CX 2023-10-08