Product Description
American/NH/ANSI Pin type fire hose coupling for fire hose
Description
A Fire hose coupling is connector on the end of hose to connect or couple it with another hose or with a tap or hose appliance, such as irrigation sprinkler. It is usually made of steel,brass,stainless steel,aluminium or plastic.Used for combining water band with water band ,fire hydrant ,water lance and the fire-fighting truck so that they are to supply water or foam misture for putting out fire.
Technical Specification
Model | KD | KY | KN | KJ | |||||
Diameter(mm) | DN50 | DN65 | DN80 | DN50 | DN65 | DN50 | DN65 | DN50/ DN65 |
DN65/ DN80 |
Working Pressure(Mpa) | 1.6 | ||||||||
Testing Pressure(Mpa) | 2.4 | ||||||||
Available Medium | Clear Water, Foam mixed liquid |
Fire Hose Coupling Type | Inlet | Outlet |
British/John Morris Coupling |
2.5″BS336 | Φ63.5 |
2″BS336 | Φ51 | |
1.5″BS336 | Φ38 | |
2.5″BS336 | Φ51 | |
2.5″BS336 | Φ38 | |
2″BS336 | Φ38 |
Fire Hose Coupling Type | Inlet | Outlet |
American(ANSI Pin)Fire Hose Coupling |
2.5″NH | Φ63.5 |
2″NH | Φ51 | |
1.5″NH | Φ38 |
Fire Hose Coupling Type | Inlet | Outlet |
Nakajima(Machino) fire hose coupling |
2.5″ | Φ63.5 |
2″ | Φ51 | |
1.5″ | Φ38 |
Fire Hose Coupling Type | Inlet | Outlet |
Forestry Fire Hose Coupling |
1.5″ | Φ38 |
1.5″ | 1.5″ BSP | |
1.5″ | 1.5″ NPSH | |
1.5″ | F1.5″ BSP |
Fire Hose Coupling Type | Inlet | Outlet |
Gost(Russian) Fire Hose Coupling |
2″ | Φ50 |
2.5″ | Φ70 | |
3″ | Φ80 | |
4″ | Φ100 |
Fire Hose Coupling Type | Inlet | Outlet |
UNI Fire Hose Coupling | UNI70 | Φ70 |
UNI45 | Φ45 |
Fire Hose Coupling Type | Inlet | Outlet |
Storz Fire Hose Coupling | 4″ STORZ | Φ100 |
3″ STORZ | Φ75.5 | |
2.5″ STORZ | Φ63.5 | |
2″ STORZ | Φ51 | |
1 3/4″ STORZ | Φ44.5 | |
1″ STORZ | Φ38 |
Photoes
Package&Shipping
Our Company
We could supply fire hose, fire hose fittings, spray nozzle, coupling, automatic fire sprinkler system products, gate valves, check valves, ball valves, etc. All these products strictly confirming to JIS, API ans BS standards. All of our products comply with international quality standards and are greatly appreciate in avariety of markets around world. Our factory is covering an area of 15900 square meters, we now over 300 workers. Our well-equipped facilities and excellent quality control throughout all stages of production enable us to guarteen total customer satisfaction. As a result of our high quality products and outstanding customer service, we have gained a globe sales network CHINAMFG the North America, South America, Mideast, Southeast Asia, East Europe, etc.
Certificate
Other Fire Fighting Equipment
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Certification: | GB8013-2005, CCCF, CCC |
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Surface Treatment: | Chrome Plated/Brass |
Material: | Aluminum/Brass |
Type: | British/John Morris/ American/Nh/Nakajima(Machino) |
Application: | Fire Hose Coupling |
Transport Package: | Bags/Cartons |
Samples: |
US$ 2/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
| Customized Request |
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What Are the Maintenance Requirements for Pin Couplings?
Pin couplings are known for their simplicity and ease of maintenance. Regular maintenance helps ensure the longevity and optimal performance of pin couplings in various mechanical systems. Here are the key maintenance requirements for pin couplings:
- Lubrication: Most pin couplings require periodic lubrication to reduce friction between the pins and the coupling hubs. Lubrication helps prevent wear and corrosion, ensuring smooth operation.
- Inspection: Regular visual inspections are essential to identify any signs of wear, misalignment, or damage. Inspecting the pins, coupling hubs, and surrounding components can help detect potential issues early on.
- Torque Check: It is crucial to periodically check and retighten the bolts or screws that secure the coupling to the shafts. Loose fasteners can lead to misalignment and coupling failure.
- Alignment: Proper shaft alignment is critical for the effective functioning of pin couplings. Regularly check and adjust the alignment if necessary to minimize wear and vibrations.
- Environmental Protection: In harsh environments or corrosive conditions, take measures to protect the pin coupling from contaminants or chemicals that could cause damage.
- Replacement of Worn Components: When any of the coupling components, such as pins or hubs, show signs of significant wear, they should be replaced promptly to prevent further damage.
It is important to follow the manufacturer’s maintenance guidelines and recommendations for the specific type of pin coupling used in the application. Regular maintenance not only ensures the smooth operation of the coupling but also helps prevent unexpected breakdowns and reduces the risk of costly downtime. Proper maintenance can extend the service life of pin couplings and contribute to the overall reliability of the connected equipment.
Impact of Pin Coupling on the Overall Reliability of Connected Equipment
A pin coupling plays a crucial role in enhancing the overall reliability and performance of connected equipment in various industrial applications. Its design and construction contribute to several factors that influence reliability:
1. Torque Transmission: Pin couplings efficiently transmit torque between the driving and driven shafts, ensuring smooth power transfer without slippage or loss. This consistent torque transmission helps maintain the stability and reliability of the system during operation.
2. Misalignment Compensation: Pin couplings are designed to accommodate small amounts of angular, parallel, and axial misalignment between shafts. By tolerating misalignment, the coupling reduces stress on connected equipment, bearings, and seals, thereby enhancing reliability and extending the service life of these components.
3. Shock and Vibration Absorption: In applications with dynamic loads, such as pumps, compressors, and heavy machinery, pin couplings help dampen shock and vibrations. By absorbing and reducing these impact forces, the coupling minimizes stress on the system and prevents premature component failure.
4. Simplified Maintenance: Pin couplings generally have a simple design, making them easy to install and maintain. The ease of maintenance ensures that the coupling can be regularly inspected, lubricated, and replaced when necessary, reducing downtime and increasing the overall reliability of the equipment.
5. Corrosion Resistance: Depending on the materials used, pin couplings can be highly resistant to corrosion, making them suitable for use in harsh or corrosive environments. This corrosion resistance prevents degradation of the coupling and its components, enhancing reliability and longevity.
6. Enhanced Durability: High-quality pin couplings are manufactured from robust materials and undergo precise machining processes. These attributes contribute to the coupling’s durability, allowing it to withstand heavy loads and harsh conditions over an extended period.
7. Balanced Design: The design of a pin coupling ensures that the load is evenly distributed between the driving and driven shafts. This balanced load distribution reduces stress concentrations, minimizes wear, and increases the reliability of connected equipment.
8. Compliance with Standards: Reputable pin coupling manufacturers ensure their products comply with industry standards and regulations. Meeting these standards ensures that the coupling is designed and manufactured to specific quality criteria, enhancing reliability and safety.
Overall, a well-selected and properly installed pin coupling can significantly improve the reliability and performance of connected equipment. It helps prevent unexpected failures, reduces downtime, and contributes to the overall efficiency of industrial processes.
Can Pin Couplings Handle Misalignment Between Shafts?
Yes, pin couplings are designed to accommodate a certain degree of misalignment between shafts in rotating machinery. They are considered flexible couplings, which means they can provide some degree of angular, parallel, and axial misalignment capability.
Pin couplings typically consist of two hubs, each connected to a shaft, and a central sleeve with pins that transmit torque between the hubs. The pins allow for a limited range of movement, which helps to compensate for slight misalignments between the shafts.
The angular misalignment capacity of a pin coupling is achieved through the bending of the pins. When the shafts are misaligned at an angle, the pins on one side of the coupling experience bending while those on the opposite side are in tension. The pins are designed to withstand these bending and tension forces within their elastic limits, ensuring proper functioning and longevity of the coupling.
Similarly, the pins can accommodate parallel misalignment by sliding within the pin holes of the coupling’s central sleeve. This sliding action allows the hubs to move slightly relative to each other, compensating for any offset between the shafts.
However, it is essential to note that pin couplings have limitations in terms of the amount of misalignment they can handle. Excessive misalignment beyond their specified limits can lead to increased wear on the pins and other coupling components, reducing the coupling’s effectiveness and potentially causing premature failure.
While pin couplings are suitable for applications with moderate misalignment requirements, they may not be the best choice for applications with significant misalignment or where precise alignment is critical. In such cases, more flexible couplings like gear or elastomeric couplings may be more appropriate.
Overall, when considering the use of pin couplings, it is essential to carefully evaluate the specific misalignment requirements of the application and select a coupling that can adequately accommodate those misalignments while ensuring reliable and efficient power transmission.
editor by CX 2024-03-10