Descripción del Producto
ISO16949: 2009 Approved Industrial Chain
¿Por qué elegirnos?
1. HangZhou Xihu (West Lake) Dis.hua Chain Group Co., Ltd established in 1991, we have 5 subsidiaries in china and have 6 subsidiaries abroad;
2. we covering a production area of 200,100 square meters, have more than 1,800 sets of advanced equipment and over 3,100 highly skilled employees, the annual production capacity has exceeded 20,000,000meters;
3. we specialized in producing all kinds of standard chains and special chains, such as A or B series chains, driving chains, conveyor chains, hoisting chains, agricultural chains, sprockets, industrial chains, sprockets, gears, wheels and so on;
4. we have obtained ISO9001, ISO14001, ISO16969, AAA and API certificates.
5. Our partners among world top enterprises, such as JOHNDEERE, NEW HOLLAND, CLAAS, HONDA, KUBOTA, YANMAR, etc.
1. Industrial Chain Parts
2. Production flow chart
1. Incoming material
2. Inspection
3. Production of chain board (cold roll steel/punch/heat treatment/shot blasting/cleaning)
4. Production of roller(burr wiping & smear/heat treatment/wiping grinding/cleaning)
5. Production of quill(burr wiping & smear/centerless cylindrical grinding/heat treatment/shining)
6. Production of shaft(cutting/chamfering/heat treatment/ centerless cylindrical grinding/cleaning)
7. Assembling
8. Final inspection
9. Packing
3. Certificate
4. Company Information
HangZhou Xihu (West Lake) Dis.hua Chain Group Co., Ltd was founded in 1 9 9 1, and now it has five wholly owned subsidiaries, one in ZheJiang province, other four in HangZhou, ZHangZhoug province, it is a professional manufacturer of chains, sprockets, tooth gears and various power transmission products.
The group has XIHU (WEST LAKE) DIS.HUA, ZIQIANG brands, is focused on producing all variety of standard roller chains and special chains, such as conveyor chain, stainless steel chain, agricultural chain. With Xihu (West Lake) Dis.hua brand registered in more than 70 countries like America, Europe, Japan, it is building long term cooperation with these world top enterprises, such as JOHNDEERE, NEW HOLLAND, CLAAS, HONDA, KUBOTA, YANMAR.
There is a technical center of province level, Xihu (West Lake) Dis.hua academician working station, experiment station for Xihu (West Lake) Dis.hua post doctors, and national hundreds of program set up in Xihu (West Lake) Dis.hua group. With these platforms and strong technical ability, the more than hundreds of Engineers and technicians have developed all variety of special high precise and high strength products, conducted mold programs for key components in the car and national industry revitalizing program.
Great attention has been paid on environmental protection and energy saving. The product well displays environmental protection and energy saving. In the year of 2 0 0 0, Xihu (West Lake) Dis.hua took the lead in gaining I S O 1 4 0 0 1 environment management certificate and thereafter passed the inspection of clean production and recycling economy, winning the title of “ZHangZhoug Green Enterprise”.
“We are always serving our customers with our best products.”
| Uso: | Cadena transportadora |
|---|---|
| Material: | Acero aleado/al carbono |
| Tratamiento de superficie: | Galvanoplastia |
| Característica: | Resistente al calor |
| Tamaño de la cadena: | 1/2"*11/128" |
| Estructura: | Cadena de rodillos |
| Personalización: |
Disponible
| Solicitud personalizada |
|---|

How do you calculate the required horsepower for a conveyor chain drive?
The calculation of required horsepower for a conveyor chain drive involves considering various factors related to the conveyor system and the specific application. Here is a step-by-step process:
1. Determine the Total Resistance:
– Calculate the total resistance that the conveyor chain needs to overcome during operation. This includes the resistance due to the load being conveyed, frictional losses, elevation changes, and any other resistances in the system.
2. Convert the Resistance to Equivalent Inertia:
– Convert the total resistance to an equivalent inertia by multiplying it by the square of the chain speed.
3. Calculate the Total Inertia:
– Determine the total inertia of the system by considering the inertia of all the rotating components, such as the conveyor chain, sprockets, and any other driven elements.
4. Determine the Required Torque:
– Calculate the required torque by multiplying the total inertia by the desired acceleration or deceleration rate.
5. Convert Torque to Horsepower:
– Convert the required torque to horsepower by dividing it by the motor speed (in RPM) and multiplying by a conversion factor.
6. Consider Safety Factors and Efficiency:
– Apply safety factors to the calculated horsepower to account for variations, contingencies, and future growth.
– Consider the efficiency of the drive system, including the motor, gearbox, and other transmission components, to ensure accurate power transmission.
It’s important to note that the above calculation method provides an estimate of the required horsepower. Consulting with conveyor system manufacturers, engineers, or industry-specific guidelines is recommended for precise calculations and to ensure the selected conveyor chain drive meets the application requirements.

¿Cómo influye una cadena transportadora en el flujo de materiales en una línea de producción?
Una cadena transportadora desempeña un papel crucial para facilitar el flujo fluido y eficiente de materiales en una línea de producción. A continuación, se describen las principales maneras en que una cadena transportadora influye en el flujo de materiales:
1. Movimiento continuo: Una cadena transportadora permite el movimiento continuo de materiales a lo largo de la línea de producción. Al sujetar y transportar los materiales de forma segura, la cadena garantiza un flujo constante sin interrupciones ni demoras.
2. Control de velocidad: La velocidad de la cadena transportadora se puede ajustar para que coincida con el ritmo de producción deseado. Esto permite un control preciso del flujo de material, asegurando su sincronización con los procesos posteriores y evitando cuellos de botella o sobrecargas.
3. Orientación y posicionamiento: Las cadenas transportadoras pueden diseñarse con accesorios o fijaciones específicas para orientar y posicionar los materiales de la manera deseada. Esto garantiza que los materiales se presenten correctamente para su procesamiento, ensamblaje o empaquetado, optimizando así el flujo de producción general.
4. Clasificación y divergencia: En ciertas aplicaciones, las cadenas transportadoras pueden equiparse con mecanismos para clasificar o divergir materiales según criterios predeterminados. Esto permite un enrutamiento eficiente de los diferentes productos o componentes a sus respectivos destinos, optimizando el flujo de materiales.
5. Acumulación y almacenamiento: Las cadenas transportadoras pueden incorporar zonas de acumulación o áreas de almacenamiento donde los materiales pueden detenerse o acumularse temporalmente. Esta función es útil cuando los procesos posteriores sufren interrupciones temporales o cuando es necesario equilibrar el flujo entre las diferentes etapas de producción.
6. Integración con equipos: Las cadenas transportadoras pueden integrarse con otros equipos o máquinas de la línea de producción, como brazos robóticos, sistemas de embalaje automatizados o estaciones de inspección. Esta integración perfecta permite una manipulación sincronizada de los materiales, optimizando el flujo y la eficiencia de todo el proceso de producción.
7. Personalización para necesidades específicas: Las cadenas transportadoras se pueden personalizar para satisfacer requisitos específicos de manipulación de materiales. Esto incluye aspectos como el ancho, la longitud y la altura de la cadena, así como la inclinación o el descenso, y la incorporación de accesorios o guías especializadas. Dicha personalización garantiza que el flujo de materiales se adapte a las necesidades particulares de la línea de producción.
Al proporcionar un método de transporte de materiales fiable y controlado, una cadena transportadora influye significativamente en el flujo de materiales en una línea de producción. Mejora la productividad, reduce la manipulación manual, minimiza el riesgo de errores o daños y, en definitiva, contribuye a la eficiencia y el éxito general del proceso de fabricación.

What are the cost considerations when purchasing a conveyor chain?
When purchasing a conveyor chain, there are several cost considerations that need to be taken into account to ensure an optimal investment and operational efficiency.
1. Initial Cost: The initial cost of the conveyor chain includes the cost of the chain itself, as well as any additional components such as sprockets, attachments, and connecting links. It is important to compare prices from different suppliers and evaluate the overall value for the money.
2. Maintenance and Repair Costs: Consider the long-term maintenance and repair costs associated with the conveyor chain. Some chains may require more frequent lubrication or replacement of components, which can add to the overall operating expenses.
3. Service Life: The service life of the conveyor chain is an essential factor in determining its cost-effectiveness. Chains with longer service life may have a higher initial cost but can result in lower replacement and downtime costs in the long run.
4. Energy Efficiency: Energy consumption is an ongoing cost to consider. Conveyor chains that offer lower friction and efficient power transmission can contribute to energy savings and reduce operating expenses.
5. Maintenance Ease: Consider the ease of maintenance when selecting a conveyor chain. Chains that are easier to clean, inspect, and maintain can reduce labor costs and increase operational efficiency.
6. Compatibility and Integration: Ensure that the selected conveyor chain is compatible with the existing conveyor system or equipment. Retrofitting or modifying the system to accommodate a specific chain may incur additional costs.
7. Supplier Support and Warranty: Evaluate the level of technical support provided by the supplier and the warranty coverage offered for the conveyor chain. This can impact the overall cost of ownership and provide peace of mind in case of any unforeseen issues.
It is important to consider these factors holistically and make a cost-benefit analysis based on the specific requirements of the application. Choosing a conveyor chain that aligns with the budget, performance needs, and long-term cost considerations will help optimize the investment and ensure efficient material handling operations.


editor by CX 2023-10-16