China high quality Conveyor Agriculture Chain Roller Chain with Scraper

Product Description

Product Description

 

Drop Forged Chains “Y” Serial

 

FEATURES

• It consists of forged steel links, which can be equipped with various plastic or steel scrapers. The connection pin between these links is in a circlip version.
• Special heat treated alloy steel,drop forged and precision machined, with case hardened.
• High strength, strong load-carrying capability.
• Extremely hard exterior surface and superior wear
resistance.

TECHNICAL SPECIFICATIONS

Model P
(mm)
H
(mm)
B
(mm)
D
(mm)
b
(mm)
T
(mm)
Breaking Load
(Min.)
Material
P100 100 30 33 14 15.5 13 140KN 40Cr
P125-B 125 35 34 17 17 8 150KN 40Cr
P142 142 50.8 43 25 19 12.2 180KN 20CrMnTi
300KN 40Cr
P142H 142 50 62 25 29 15 280KN 20CrMnTi
460KN 40Cr
P160 160 40 48 20 22.5 20 240KN 40Cr
P200 200 64 50 32 23 15 390KN 40Cr
P200-E 200 45 42 20 20 12.2 200KN 40Cr

Note: Customised sizes and material are available CHINAMFG request

 

Roller Conveyor Chains

FEATURES

• It consists of a combination of inner and outer links. 
• The bush/pin connections between the links are available in a circlip, split pin, or a riveted version. 
• The steel scrapers can be either bent or welded. 
• UHMWPE lights are suggested to attach to the scrapers for more eficiency and high wear resistance.

GLF Type

TECHNICAL SPECIFICATIONS

Model Pitch
(P)
Scraper
Distance
(P1)
Inner
Width
(b)
Plate
Width
(B)
T1 T2 Roller
Dia.
(D)
Bush
Dia.
(D2)
Pin Dia
(D1)
Chain
Width
(L)
E1 E2 Number
of Holes
(n)
d Breaking
Load in
KN
(Min.)
GLF66.675
(6)D×182
66.675 266.7 26 30 6 6 22.23   12.7 182 90 150 4 9 130
GLF66.675
(6)D×215
66.675 266.7 26 30 6 6 22.23   12.7 215 95 195 4 9 130
GLF66.675
(6)D×295
66.675 266.7 26 30 6 6 22.23   12.7 295 95 195 4 9 130
GLF100
(6)D×170
100 200 38 40 6 6 36 21.6 16 170 115   2 9 220
GLF100
(6)D×225
100 200 38 40 6 6 36 21.6 16 225 104 194 4 9 220
GLF100
(6)D×294
100 200 38 40 6 6 36 21.6 16 294 115 245 4 9 220
GLF100
(5)×225
100 200 28 30 5 5 22.23   14.27 225 95 195 4 9 90
GLF125
(8)D×285
125 500 50 50 8 8 32   19.9 285 155 255 4 9 220
GLF125
(6)×235
125 250 32.5 40 6 6 28.58 20 14.27 235 95 195 4 9 170
GLF160
(6)×290
160 320 27 45 6 6 32 20 14.27 290 193   2 9 193

GLR Type

TECHNICAL SPECIFICATIONS

Model Pitch
(P)
Scraper
Distance
(P1)
Inner
Width
(b)
Plate
Width
(B)
T1 T2 Roller
Dia.
(D)
Bush
Dia.
(D2)
Pin Dia
(D1)
Chain
Width
(L)
E1 E2 Number
of Holes
(n)
d Breaking
Load in
KN
(Min.)
GLR66.675 66.675 266.7 27.5 30 6 6 24   13 130 102 32 4 9 90
GLR100 100 200 38 40 6 6 36 21.6 16 130 102 32 4 9 220

 

 
Other products of our conveyor parts:

 

Could you please send me inquiry for details?

 

 

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Material: Steel
Structure: Roller Chain
Surface Treatment: Oxygenation
Transport Package: Pallet
Specification: GLF, GLR
Trademark: Yutung
Samples:
US$ 10/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

Customized Request

roller chain

How do roller chains handle side loads?

Roller chains are designed to primarily handle axial (or in-line) loads, which are forces applied along the axis of the chain. However, they do have some capability to handle limited side loads. Here’s a detailed answer to the question:

1. Roller Design: The rollers in a roller chain are cylindrical in shape and rotate freely between the inner and outer plates. This design allows the chain to accommodate limited side loads by allowing the rollers to roll and adjust their position within the chain.

2. Bearing Surfaces: Roller chains have bearing surfaces between the pins and the bushings or rollers. These bearing surfaces help distribute the load and reduce friction, allowing the chain to handle some degree of side loads.

3. Tolerance for Misalignment: Roller chains have some tolerance for misalignment between the sprockets, which can help compensate for minor side loads. However, excessive misalignment can lead to increased wear and decreased chain life.

4. Limitations: It’s important to note that roller chains are primarily designed for transmitting power and handling axial loads. While they can tolerate some side loads, their ability to handle significant side loads is limited. Excessive side loads can cause increased wear, premature chain failure, and reduced overall performance.

To ensure the longevity and reliable performance of a roller chain, it is essential to minimize side loads as much as possible. Proper alignment of the sprockets, appropriate tensioning of the chain, and avoiding excessive side loads are important considerations when using roller chains in an application.

roller chain

What are the limitations of using roller chains in certain applications?

Roller chains are versatile and widely used in various applications, but they do have some limitations to consider. Here’s a detailed answer to the question:

1. Speed Limitations: Roller chains have a practical speed limit due to factors such as chain length, centrifugal forces, and roller-to-sprocket engagement. At high speeds, the centrifugal forces can cause excessive chain vibration and increase wear, potentially leading to chain failure. In such cases, alternative power transmission systems like gears or belts may be more suitable.

2. Precision Requirements: Roller chains require proper alignment and tensioning for efficient operation. In applications that demand high precision, such as precision machinery or robotics, the inherent flexibility and slight elongation of roller chains may not meet the desired accuracy requirements. In such cases, alternative systems like timing belts or direct drive solutions may be preferred.

3. Environmental Limitations: Roller chains may not be suitable for certain environments with extreme temperatures, corrosive substances, or high levels of contamination. Harsh conditions can accelerate chain wear, reduce lubrication effectiveness, or cause corrosion. In these situations, specialized chains with appropriate coatings or alternative power transmission systems may be necessary.

4. Noise and Vibration: Roller chains can generate noise and vibrations during operation, particularly when not properly tensioned or maintained. In applications where noise or vibration is a concern, such as in noise-sensitive environments or precision machinery, additional measures like chain tensioners, vibration dampening, or alternative drive systems may be required.

5. Size and Space Constraints: Roller chains have a certain physical size and require appropriate clearance for installation. In applications with limited space or tight packaging requirements, alternative power transmission systems like compact belts or direct drives might be more suitable.

It’s important to carefully evaluate the specific requirements and constraints of each application when considering the use of roller chains. Alternative power transmission systems may be more suitable in certain cases, and consulting with experts or manufacturers can help determine the best solution for the intended application.

roller chain

Are there any alternatives to roller chains for power transmission?

Yes, there are several alternatives to roller chains for power transmission, depending on the specific application requirements. Here’s a detailed answer to the question:

1. Belt Drives: Belt drives are a common alternative to roller chains for power transmission. They use a flexible belt made of materials such as rubber, polyurethane, or neoprene. Belt drives offer smooth and quiet operation, high-speed capabilities, and can transmit power over long distances. They are often used in applications where precise synchronization is not required.

2. Gear Drives: Gear drives use meshing gears to transmit power. They offer high torque capabilities, precise motion control, and can handle heavy loads. Gear drives are commonly used in applications that require high efficiency and precise speed control, such as industrial machinery, automotive transmissions, and robotics.

3. Timing Belts: Timing belts, also known as synchronous belts, are toothed belts that provide positive power transmission. They are used in applications that require precise synchronization between two or more shafts. Timing belts offer low noise, high efficiency, and resistance to slippage. They are commonly used in automotive engines, industrial automation, and precision machinery.

4. Chain Drives: Chain drives, similar to roller chains, use interconnected links to transmit power. However, chain drives often have larger pitch sizes and heavier-duty construction compared to roller chains. Chain drives offer high load-carrying capacity, durability, and can operate in demanding conditions. They are commonly used in heavy machinery, agricultural equipment, and motorcycles.

5. Direct Drives: Direct drives eliminate the need for mechanical power transmission components like chains or belts. They directly connect the motor or power source to the driven equipment, providing a more efficient and compact solution. Direct drives are commonly used in applications that require high precision, such as CNC machines, robotics, and linear motion systems.

When considering alternatives to roller chains, factors such as load requirements, speed, precision, environmental conditions, and cost must be taken into account. Each alternative has its own advantages and limitations, and the choice depends on the specific needs of the application.

China high quality Conveyor Agriculture Chain Roller Chain with Scraper  China high quality Conveyor Agriculture Chain Roller Chain with Scraper
editor by CX 2024-04-11