Description du produit
Sprockets for Drop Forged Chains
| Chain Model |
Pitch (mm) |
Gear Number Z |
D2 (mm) |
D (mm) |
D3 (mm) |
D1 (mm) |
D4 (mm) |
A (mm) |
Number of Bolts |
Bolt Size |
B (mm) |
C (mm) |
| P100 | 100 | 6 | 197.8 | 70 | 105 | 143 | 135 | 83 | 6 | M12 | 16 | 36 |
| 100 | 7 | 228.2 | 70 | 108 | 146 | 173 | 83 | 6 | M12 | 16 | 36 | |
| 100 | 8 | 259.1 | 85 | 144 | 170 | 196 | 83 | 6 | M12 | 16 | 36 | |
| 100 | 9 | 290.4 | 105 | 174 | 200 | 232 | 83 | 6 | M12 | 16 | 36 | |
| 100 | 10 | 321.9 | 105 | 179 | 241.3 | 264 | 83 | 8 | M12 | 16 | 36 | |
| P142 | 142 | 6 | 284 | 85 | 136.5 | 168.3 | 190.5 | 112 | 6 | M12 | 16 | 46 |
| 142 | 7 | 327.3 | 105 | 162 | 200 | 234 | 112 | 6 | M16 | 16 | 46 | |
| 142 | 8 | 371.1 | 115 | 187.3 | 241.3 | 282 | 127 | 8 | M20 | 16 | 46 | |
| 142 | 9 | 415.2 | 150 | 240 | 285.8 | 330 | 127 | 8 | M20 | 16 | 46 | |
| 142 | 10 | 459.5 | 150 | 240 | 285.8 | 330 | 127 | 8 | M20 | 16 | 46 | |
| 142 | 11 | 504 | 170 | 310 | 368.3 | 419 | 150 | 8 | M20 | 16 | 46 | |
| 142 | 12 | 548.6 | 170 | 345 | 415 | 465 | 150 | 8 | M20 | 16 | 46 | |
| 142 | 13 | 593.4 | 170 | 380 | 470 | 521 | 150 | 8 | M20 | 16 | 46 | |
| 142 | 14 | 638.1 | 170 | 380 | 470 | 546 | 150 | 10 | M20 | 16 | 46 | |
| P142H | 142 | 7 | 327.3 | 105 | 162 | 200 | 234 | 127 | 6 | M16 | 18 | 69 |
| 142 | 8 | 371.1 | 115 | 187.3 | 241.3 | 282 | 150 | 8 | M20 | 18 | 69 | |
| 142 | 9 | 415.2 | 150 | 240 | 285.8 | 330 | 150 | 8 | M20 | 18 | 69 | |
| 142 | 10 | 459.5 | 150 | 240 | 285.8 | 330 | 150 | 8 | M20 | 18 | 69 | |
| 142 | 11 | 504 | 170 | 310 | 368.3 | 419 | 150 | 8 | M20 | 18 | 69 | |
| 142 | 12 | 548.6 | 170 | 345 | 415 | 465 | 150 | 8 | M20 | 18 | 69 | |
| 142 | 13 | 593.4 | 170 | 380 | 470 | 520 | 180 | 8 | M20 | 18 | 69 | |
| 142 | 14 | 638.1 | 170 | 380 | 470 | 546 | 180 | 10 | M20 | 18 | 69 |
Trailers for Drop Forged Chains
| Chain Model | Gear Number Z |
D1 (mm) |
D (mm) |
A (mm) |
C (mm) |
| P100 | 6 | 197.8 | 65 | 57 | 35 |
| 7 | 228.2 | 65 | 57 | 35 | |
| 8 | 259.1 | 65 | 57 | 35 | |
| 9 | 290.4 | 65 | 57 | 35 | |
| 10 | 321.9 | 65 | 57 | 35 | |
| P142 | 6 | 284 | 85 | 74 | 45 |
| 7 | 327.3 | 85 | 74 | 45 | |
| 8 | 371.1 | 85 | 77 | 45 | |
| 9 | 415.2 | 115 | 77 | 45 | |
| 10 | 459.5 | 115 | 77 | 45 | |
| 11 | 504 | 115 | 105 | 45 | |
| 12 | 548.6 | 115 | 105 | 45 | |
| 13 | 593.4 | 115 | 120 | 45 | |
| 14 | 638.1 | 115 | 120 | 45 | |
| P142H | 7 | 327.3 | 115 | 110 | 75 |
| 8 | 371.1 | 115 | 110 | 75 | |
| 9 | 415.2 | 115 | 110 | 75 | |
| 10 | 459.5 | 115 | 120 | 75 | |
| 11 | 504 | 140 | 120 | 75 | |
| 12 | 548.6 | 140 | 120 | 75 | |
| 13 | 593.4 | 140 | 120 | 75 | |
| 14 | 638.1 | 140 | 140 | 75 |
Note: Customized sizes and material are available CZPT request
Sprockets for Roller Conveyor Chains
| Model | Pitch(mm) | Gear Number Z |
d1 (mm) |
d (mm) |
D (mm) |
D1 (mm) |
A (mm) |
B (mm) |
| 66.675 | 66.675 | 6 | 22.23 | 133.41 | 40 | 75 | 80 | 22.8 |
| 66.675 | 7 | 22.23 | 153.74 | 40 | 75 | 80 | 22.8 | |
| 66.675 | 8 | 22.23 | 174.31 | 50 | 100 | 100 | 22.8 | |
| 66.675 | 9 | 22.23 | 195.04 | 50 | 100 | 100 | 22.8 | |
| 66.675 | 10 | 22.23 | 215.87 | 60 | 110 | 100 | 22.8 | |
| 66.675 | 11 | 22.23 | 236.78 | 60 | 110 | 100 | 22.8 | |
| 66.675 | 12 | 22.23 | 257.74 | 60 | 110 | 100 | 22.8 | |
| 100 | 100 | 8 | 36 | 261.44 | 60 | 110 | 100 | 33.2 |
| 100 | 9 | 36 | 292.52 | 70 | 120 | 100 | 33.2 | |
| 100 | 10 | 36 | 323.77 | 70 | 120 | 100 | 33.2 |
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The full range of our conveyor products:
| Transport Package: | Pallet |
|---|---|
| Specification: | Drop Forged Chain Sprockets, Roller Chain Sprocket |
| Trademark: | Yutung |
| Origin: | China |
| Samples: |
US$ 10/Piece
1 Piece(Min.Order) | |
|---|
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

Comment identifier et résoudre les problèmes courants liés aux roues et aux pignons
Identifier et résoudre les problèmes courants des roues et des pignons vous permettra d'assurer leur bon fonctionnement et de prévenir d'éventuels problèmes. Voici quelques étapes à suivre :
- Bruit anormal : Si vous remarquez un bruit inhabituel pendant le fonctionnement, cela peut indiquer un mauvais alignement, des pignons usés ou une chaîne détendue. Vérifiez le serrage des boulons et des fixations et assurez-vous du bon alignement des pignons.
- Glissement de la chaîne : Le déraillement de la chaîne peut être dû à une tension insuffisante ou à des dents de pignon usées. Vérifiez la tension de la chaîne et ajustez-la au niveau recommandé. Inspectez les dents du pignon et remplacez-les si nécessaire.
- Usure irrégulière : Une usure irrégulière des dents du pignon peut être due à un mauvais alignement ou à une chaîne usée. Vérifiez l'alignement des pignons et ajustez-le si nécessaire. Si la chaîne est détendue ou présente des maillons endommagés, remplacez-la.
- Vibrations excessives : Des vibrations excessives peuvent être causées par des roues déséquilibrées ou des pignons mal alignés. Vérifiez que les roues ne sont ni voilées ni endommagées et assurez-vous du bon alignement des pignons.
- Sauter la chaîne : Si la chaîne saute des dents du pignon pendant le fonctionnement, cela peut être dû à des dents de pignon usées ou à une chaîne détendue. Vérifiez l'état des dents du pignon et remplacez-les si nécessaire. Ajustez la tension de la chaîne.
- Blocage de chaîne : Un blocage de la chaîne peut survenir en présence de débris ou de saletés entre la chaîne et les pignons. Nettoyez soigneusement la chaîne et les pignons afin d'éliminer toute obstruction.
- Usure excessive de la chaîne : Inspectez régulièrement la chaîne afin de détecter tout signe d'usure, comme un allongement, des maillons endommagés ou de la rouille. Remplacez la chaîne si elle est fortement usée afin d'éviter d'endommager les pignons.
- Surchauffe: La surchauffe peut être due à un frottement important entre la chaîne et les pignons ou à une lubrification insuffisante. Assurez-vous d'une lubrification adéquate et vérifiez l'absence de défauts d'alignement ou de points de blocage dans le système.
En identifiant ces problèmes courants et en effectuant des inspections régulières, vous pouvez diagnostiquer les problèmes rapidement et prendre les mesures correctives appropriées, assurant ainsi le bon fonctionnement et la longévité de l'ensemble pignon de roue.

Temperature Limits for wheel sprocket System’s Operation
The temperature limits for a wheel sprocket system’s operation depend on the materials used in the construction of the components. Different materials have varying temperature tolerances, and exceeding these limits can lead to reduced performance, premature wear, and even system failure.
Here are some common materials used in wheel sprocket systems and their general temperature limits:
- Steel: Steel sprockets and wheels, which are widely used in many applications, typically have a temperature limit ranging from -40°C to 500°C (-40°F to 932°F). However, the specific temperature range may vary based on the grade of steel and any coatings or treatments applied.
- Stainless Steel: Stainless steel sprockets and wheels offer improved corrosion resistance and can withstand higher temperatures than regular steel. Their temperature limit is typically between -100°C to 600°C (-148°F to 1112°F).
- Plastics: Plastic sprockets and wheels are commonly used in low-load and low-speed applications. The temperature limit for plastic components varies widely depending on the type of plastic used. In general, it can range from -40°C to 150°C (-40°F to 302°F).
- Aluminum: Aluminum sprockets and wheels have a temperature limit of approximately -40°C to 250°C (-40°F to 482°F). They are often used in applications where weight reduction is critical.
It’s essential to consult the manufacturer’s specifications and material data sheets for the specific components used in the wheel sprocket system to determine their temperature limits accurately. Factors such as load, speed, and environmental conditions can also influence the actual temperature tolerance of the system.
When operating a wheel sprocket system near its temperature limits, regular monitoring and maintenance are necessary to ensure the components’ integrity and overall system performance. If the application involves extreme temperatures beyond the typical limits of the materials, specialized high-temperature materials or cooling measures may be required to maintain reliable operation.

How Does a wheel sprocket Assembly Transmit Power?
In a mechanical system, a wheel sprocket assembly is a common method of power transmission, especially when dealing with rotary motion. The process of power transmission through a wheel sprocket assembly involves the following steps:
1. Input Source:
The power transmission process begins with an input source, such as an electric motor, engine, or human effort. This input source provides the necessary rotational force (torque) to drive the system.
2. Wheel Rotation:
When the input source applies rotational force to the wheel, it starts to rotate around its central axis (axle). The wheel’s design and material properties are essential to withstand the applied load and facilitate smooth rotation.
3. Sprocket Engagement:
Connected to the wheel is a sprocket, which is a toothed wheel designed to mesh with a chain. When the wheel rotates, the sprocket’s teeth engage with the links of the chain, creating a positive drive system.
4. Chain Rotation:
As the sprocket engages with the chain, the rotational force is transferred to the chain. The chain’s links transmit this rotational motion along its length.
5. Driven Component:
The other end of the chain is connected to a driven sprocket, which is attached to the component that needs to be powered or driven. This driven component could be another wheel, a conveyor belt, or any other machine part requiring motion.
6. Power Transmission:
As the chain rotates due to the engagement with the sprocket, the driven sprocket also starts to rotate, transferring the rotational force to the driven component. The driven component now receives the power and motion from the input source via the wheel, sprocket, and chain assembly.
7. Output and Operation:
The driven component performs its intended function based on the received power and motion. For example, in a bicycle, the chain and sprocket assembly transmit power from the rider’s pedaling to the rear wheel, propelling the bicycle forward.
Overall, a wheel sprocket assembly is an efficient and reliable method of power transmission, commonly used in various applications, including bicycles, motorcycles, industrial machinery, and conveyor systems.


editor by CX 2023-11-10