Descripción del Producto
CZPT rollers enhance rotation on the bushing while reducing impact loads on the sprocket tooth during operation.
All components are heat treated to achieve maximum strength. All components are heat treated to achieve maximum strength.
Pre-loaded during the manufacturing process to minimize initial elongation.
Hot dipped lubrication ensures 100% lubrication of all chain components to extend wear life and reduce maintenance costs.
| CHC NO. |
PITCH | BUSH WIDTH |
ROLLER DIA |
PIN | PLATE | MIN. STRENGTH |
AVG. STRENGTH |
MAX. STRENGTH |
TRANS PITCH |
|||
| d | L | LC | H | T | ||||||||
| mm | mm | mm | mm | mm | mm | mm | mm | kgf | kgf | kgf | mm | |
| C35-1 | 9.525 | 4.68 | 5.08 | 3.60 | 12.15 | 13.40 | 8.80 | 1.25 | 800 | 1,100 | 220 | NIL |
| C40-1 | 12.700 | 7.85 | 7.92 | 3.98 | 17.80 | 21.00 | 12.00 | 1.50 | 1,420 | 1,950 | 370 | NIL |
| C50-1 | 15.875 | 9.40 | 10.16 | 5.09 | 21.80 | 25.00 | 15.00 | 2.00 | 2,200 | 3,100 | 650 | NIL |
| C60-1 | 19.050 | 12.58 | 11.91 | 5.96 | 26.90 | 31.00 | 18.00 | 2.35 | 3,190 | 4,200 | 920 | NIL |
| C80-1 | 25.400 | 15.75 | 15.87 | 7.94 | 33.50 | 38.00 | 24.10 | 3.20 | 5,680 | 7,500 | 1,500 | NIL |
| C100-1 | 31.750 | 18.90 | 19.05 | 9.54 | 41.10 | 47.00 | 30.10 | 4.00 | 8,870 | 12,100 | 2,300 | NIL |
| C120-1 | 38.100 | 25.23 | 22.22 | 11.11 | 50.80 | 57.00 | 36.20 | 4.70 | 12,770 | 16,000 | 3,100 | NIL |
| C140-1 | 44.450 | 25.23 | 25.40 | 12.71 | 54.90 | 62.00 | 42.20 | 5.50 | 17,380 | 21,000 | 4,100 | NIL |
| C160-1 | 50.800 | 31.55 | 25.87 | 14.29 | 65.50 | 73.00 | 48.20 | 6.40 | 22,700 | 30,000 | 5,400 | NIL |
| C40-2 | 12.700 | 7.85 | 7.92 | 3.98 | 32.30 | 36.20 | 12.00 | 1.50 | 2,840 | 3,900 | 630 | 14.38 |
| C50-2 | 15.875 | 9.40 | 10.16 | 5.09 | 39.90 | 44.00 | 15.00 | 2.00 | 4,440 | 6,200 | 1,100 | 18.11 |
| C60-2 | 19.050 | 12.58 | 11.92 | 5.96 | 49.80 | 54.40 | 18.00 | 2.35 | 6,380 | 8,400 | 1,530 | 22.78 |
| C80-2 | 25.400 | 15.75 | 15.87 | 7.94 | 62.70 | 68.10 | 24.10 | 3.20 | 11,360 | 15,000 | 2,550 | 29.29 |
| C100-2 | 31.750 | 18.90 | 19.05 | 9.54 | 77.00 | 83.10 | 30.10 | 4.00 | 17,740 | 24,200 | 3,900 | 35.76 |
| C120-2 | 38.100 | 25.23 | 22.22 | 11.11 | 96.30 | 102.90 | 36.20 | 4.70 | 25,540 | 32,000 | 5,250 | 45.44 |
| C140-2 | 44.450 | 25.23 | 25.40 | 12.71 | 103.60 | 111.00 | 42.20 | 5.50 | 347,600 | 42,000 | 6,970 | 48.87 |
| C160-2 | 50.800 | 31.55 | 28.57 | 14.29 | 124.20 | 132.10 | 48.20 | 6.40 | 57,460 | 60,000 | 9,150 | 58.55 |
| Uso: | Transmission Chain, Conveyor Chain, Roller Chain |
|---|---|
| Material: | Acero aleado/al carbono |
| Tratamiento de superficie: | Pulido |
| Característica: | Resistente al calor |
| Tamaño de la cadena: | 3/8"*2" |
| Estructura: | Cadena de rodillos |
| Personalización: |
Disponible
| Solicitud personalizada |
|---|

What are the benefits of using a self-lubricating conveyor chain?
Self-lubricating conveyor chains offer several advantages over traditional lubricated chains. Here are some key benefits:
1. Reduced Maintenance: Self-lubricating chains eliminate the need for regular lubrication, reducing the time and effort required for maintenance. This is particularly beneficial in applications where access to the chain is difficult or time-consuming.
2. Cost Savings: By eliminating the need for external lubrication, self-lubricating chains can help reduce lubrication costs over the lifetime of the chain. This includes the cost of lubricants, as well as the labor and equipment required for lubrication maintenance.
3. Clean and Environmentally Friendly: Self-lubricating chains do not require external lubricants, resulting in a cleaner working environment. There is no risk of lubricant spills or contamination of the surrounding area, making them ideal for applications that require strict cleanliness standards, such as food processing or pharmaceutical industries.
4. Extended Chain Life: Self-lubricating chains are designed with built-in lubrication systems that provide a continuous and controlled supply of lubricant to the chain components. This helps reduce friction, wear, and heat generation, resulting in longer chain life and improved performance.
5. Improved Reliability: With consistent and reliable lubrication, self-lubricating chains maintain optimal performance and minimize the risk of chain failure or breakdown. They are less susceptible to premature wear, elongation, and corrosion, ensuring a more reliable and efficient conveyor system.
It’s important to note that the specific benefits of self-lubricating chains may vary depending on the manufacturer and the design of the chain. It’s recommended to consult with the chain manufacturer or an industry expert to understand the suitability and advantages of self-lubricating chains for a particular application.

What are the different attachment options available for a conveyor chain?
Conveyor chains can be equipped with various types of attachments or accessories to accommodate specific material handling needs. Here are some common attachment options:
1. Cleats or Flights: Cleats or flights are raised sections attached to the conveyor chain to prevent materials from slipping or sliding off the chain. They are commonly used in incline or decline applications or when handling loose or bulk materials.
2. Side Plates or Side Guards: Side plates or side guards are installed along the edges of the conveyor chain to provide containment and prevent materials from spilling or falling off the sides. They are particularly useful when conveying small or irregularly shaped items.
3. Pusher Bars: Pusher bars are extensions mounted on the conveyor chain that can be pneumatically or mechanically actuated to push materials onto a different conveyor line or divert them to a specific location. They are often used for sorting or diverting applications.
4. Hold-Downs or Brackets: Hold-downs or brackets are devices attached to the conveyor chain to secure and stabilize the transported materials. They ensure that the materials remain in a fixed position during the conveying process, especially when encountering vibrations or changes in speed.
5. Guide Rails: Guide rails are installed alongside the conveyor chain to provide guidance and alignment for the materials being conveyed. They help maintain the desired path and prevent lateral movement or misalignment.
6. Magnetic Attachments: Magnetic attachments are used when handling ferrous materials. They allow the conveyor chain to attract and hold magnetic objects, ensuring effective transport and separation.
7. Tooling Plates: Tooling plates are platforms or mounting surfaces attached to the conveyor chain to accommodate specific equipment, such as fixtures, sensors, or robotic arms. They provide a convenient and customizable interface for integrating additional functionalities into the conveyor system.
8. Diverters or Transfer Units: Diverters or transfer units are specialized attachments that enable the seamless transfer of materials from one conveyor line to another, or between different processing stations. They ensure smooth transitions and precise material flow control.
These attachment options offer flexibility and versatility in conveyor chain applications, allowing customization based on the specific requirements of the material being transported or the production process. By selecting the appropriate attachments, conveyor chains can effectively handle a wide range of materials and optimize material flow within a conveyor system.

¿Cuáles son los niveles de ruido asociados a las cadenas transportadoras?
Los niveles de ruido asociados a las cadenas transportadoras pueden variar dependiendo de varios factores:
1. Tipo de cadena: Los distintos tipos de cadenas transportadoras producen diferentes niveles de ruido. Por ejemplo, las cadenas de rodillos tienden a generar más ruido que las cadenas silenciosas o las cadenas modulares de plástico.
2. Velocidad: La velocidad a la que opera la cadena transportadora puede influir en el nivel de ruido. Generalmente, las velocidades más altas generan mayor ruido debido al impacto y la fricción entre la cadena y otros componentes.
3. Estado de la cadena: El estado de la cadena transportadora influye en la generación de ruido. Las cadenas desgastadas o con un mantenimiento inadecuado pueden producir más ruido debido al aumento de la fricción y la vibración.
4. Entorno circundante: Los niveles de ruido también pueden verse afectados por el entorno en el que opera el sistema de transporte. Factores como la presencia de otra maquinaria, la acústica de las instalaciones y las medidas de aislamiento acústico pueden influir en el nivel de ruido general.
5. Diseño y componentes: El diseño del sistema de transporte y la selección de componentes pueden influir en los niveles de ruido. Factores como el uso de materiales fonoabsorbentes, la correcta alineación de los componentes y las medidas de amortiguación de vibraciones pueden contribuir a reducir el ruido.
Es importante destacar que los niveles excesivos de ruido en el lugar de trabajo pueden tener efectos adversos en el bienestar de los empleados y requerir medidas de control de ruido para cumplir con las normas de seguridad y salud laboral. La implementación de estrategias de reducción de ruido, como el uso de materiales amortiguadores, la lubricación adecuada, el mantenimiento de la tensión de la cadena y la aplicación de técnicas de aislamiento de vibraciones, puede ayudar a minimizar el ruido asociado con las cadenas transportadoras.


editor by CX 2023-07-20