Product Description
ZheJiang CZPT Conveying Equipment Co.,Ltd
Product Description
Bush roller chain(used in horizontal scraper conveyor)
1.Chains adopt high quality medium-carbon alloy steel, chain plate material is 40Mn, pin and roller material is 40Cr. High quality material and good heat treatment guarantee excellent anti-shearing force and tensile strength during working and have good looking.
2.Model: GLF For TGSS flat scraper conveyor, install flat scrapper
General & Dimension(Material: Carbon Steel, Stainless Steel)
| Type |
Pitch P mm |
between inner plates b1 mm |
Bush Diameter d mm |
Pin Diameter d1 mm |
Bush Diameter d2 mm |
Plate Width H mm |
Plate Thickness T mm |
Flight Attachment (mm) | Rated Strength KN |
|||
| Width L |
Distance L1 |
Distance L2 |
diameter D |
|||||||||
| GLF66.5(5-6)D
|
66.5
|
26.5
|
22.23
|
12.7
|
16.23
|
30
|
5/6
|
160 | 102 | / | 2-Φ9X14 | 140
|
| 230 | 95 | 195 | 4-Φ9X14 |
|||||||||
| 270 | 102 | 228 | ||||||||||
| GLF66.675(5-6)D
|
66.675
|
26.5
|
22.23
|
12.7
|
16.23
|
30
|
5/6
|
182 | 90 | 150 | 4-Φ9X14
|
140
|
| 215 | 95 | 195 | ||||||||||
| 295 | 95 | 195 | ||||||||||
| GLF100(6)
|
100
|
38.5
|
36.0
|
16.0
|
21.6
|
40
|
6
|
170 | 115 | 2-Φ9X14 | 180
|
|
| 225 | 95 | 195 | 4-Φ9X14
|
|||||||||
| 294 | 115 | 245 | ||||||||||
| 370 | 155 | 255 | ||||||||||
| GLF125(6)D |
125 |
32.5 |
25.0 |
18.0 |
20.00 |
50 |
6 |
300 | 115 | 245 | 4-Φ9X14 |
200 |
| 370 | 130 | 330 | ||||||||||
| GLF160(8)D×385 | 160 | 36.5 | 36.0 | 17.8 | 24.50 | 50 | 8 | 385 | 130 | 330 | 4-Φ11X15 | 220 |
| GLF200(8)D×467 | 200 | 42.5 | 40.0 | 20.0 | 30.00 | 60 | 8 | 467 | 160 | 420 | 4-Φ13X17 | 250 |
| 81X | 66.27
|
26.99
|
23.02
|
11.1
|
16.23
|
28.6 | 4 | Welding attached plate, length and hole size customized Wood transport chain according to customer requirements
|
107 | |||
| 81XH | 31.4 |
6/8 | 152 | |||||||||
| 81XHH | 8 | 191 | ||||||||||
NOTE: Other specifications which are not listed above can be made to customers’ specifications.
Bush roller chain(used in U type scraper conveyor)
Model: GLR For TGSU arc scraper conveyor, install U type scrapper
General & Dimension(Material: Carbon Steel, Stainless Steel)
| Type | Pitch P mm |
between inner plates b1 mm |
Bush Diameter D mm |
Pin Diameter d1 mm |
Bush Diameter d2 mm |
Plate Width H mm |
Plate Thickness T mm |
Flight Attachment (mm) | Rated Strength KN |
|||
| Width L mm |
Distance L1mm |
Distance L2mm |
diameter D mm |
|||||||||
| GLR68(5) | 68 | 25.3 | 22.23 | 11.1 | 16.23 | 29 | 5 | 102 | 32 | 4-Φ9 | 140 | |
| GLR60(6)D | 60 | 26.0 | 22.23 | 12.7 | 30 | 6 | 130 | 100 | 32 | 4-Φ9 | 140 | |
| GLR66.5(6)D | 66.5 | 26.5 | 22.23 | 12.7 | 16.23 | 30 | 6 | 130 | 102 | 32 | 4-Φ9 | 140 |
| GLR80(6)D | 80 | 32.0 | 28.00 | 18.0 | 42 | 6 | 160 | 120 | 32 | 4-Φ9 | 140 | |
| GLR100(6)D | 100 | 38.5 | 36.00 | 16.0 | 21.6 | 40 | 6 | 130 | 102 | 32 | 4-Φ9 | 180 |
Ring Chain
| DRAG CONVEYOR Type |
Ring Chain Type |
Pitch P(mm) |
Diameter d(mm) |
length L1(mm) |
Width W(mm) |
Flight Type |
Wing Width L(mm) |
Flight Width H(mm) |
| GSS16 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF16 | 148 | 43.5 |
| GSS20 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF20 | 188 | 43.5 |
| GSS25 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF25 | 225 | 43.5 |
| GSS32 | D14-70-18 | 70 | 14 | 95 | 45 | HF32 | 300 | 54.5 |
| GSS40 | D14-70-18 | 70 | 14 | 95 | 45 | HF40 | 382 | 54.5 |
Offset Sidebar Chain
| Type | Pitch P mm |
Bush Diameter d1 |
Pin Diameter d |
Plate Width H |
Width between plates at inner ends b1 |
Width between plates at outer ends b2 |
Plate Thickness T1 |
Rated Strength KN |
Wing Plate Thickness T2 |
Wing Width L mm |
| WH78 | 66.27 | 22.23 | 12.7 | 28.4 | 28.4 | 51 | 6.4 | 93.4 | Welding attached plate, length and hole size customized | |
| WH82 | 78.1 | 27 | 14.29 | 32 | 44 | 57 | 6.4 | 132 | ||
| WH124 | 101.6 | 36.5 | 19.05 | 38.1 | 41.3 | 70 | 9.5 | 300 | ||
| WH132 | 153.67 | 44.45 | 25.25 | 50.8 | 77.1 | 111.76 | 12.7 | 378 | ||
| WH150 | 153.67 | 44.45 | 25.25 | 63.5 | 77.1 | 111.76 | 12.7 | 398 | ||
| WH155 | 153.67 | 44.45 | 28.42 | 63.5 | 73.6 | 111.25 | 14.27 | 411 | ||
| WH157 | 153.67 | 44.45 | 28.42 | 63.5 | 76.4 | 117.35 | 15.88 | 552 | ||
Forged Chain
| Pitch P(mm) |
Pin Diameter d(mm) |
Plate Width H(mm) |
b1 (mm) |
b2 (mm) |
b3 (mm) |
T1 (mm) |
T2 (mm) |
Wing Width L(mm) |
Rated Strength |
| 100 | 14 | 30 | 15 | 33 | 16 | 13 | 6(8) | Welding attached plate, length and hole size customized | 140KN |
| 125 | 17 | 35 | 17 | 34 | 18 | 8 | 6(8) | 150KN | |
| 142 | 25.4 | 50.8 | 19 | 43 | 20 | 12.2 | 8(10) | 270KN | |
| 142(H) | 25.4 | 50.8 | 29 | 62 | 30 | 15 | 8(10) | 340KN | |
| 150 | 18 | 40 | 18 | 40 | 20 | 11.5 | 6(8.10) | 200KN | |
| 200 | 21 | 45 | 20 | 42 | 22 | 12.2 | 6(8.10) | 270KN |
Company Profile
ZheJiang CZPT CONVEYING EQUIPMENT CO. LTD., Established in 2011, specializing in bucket elevator, conveyor parts manufacturing, in recent years, more than 10 research and development of food conveying accessories obtained national invention and edible new patents.
Our factory is located in Daoshu Industrial Park, HangZhou City, ZheJiang Province, which is 1 of the most developed industrial areas in China. The company covers 28,000 square CZPT with the floor area of 8,000 square meters.
Our main products include elevator bucket, drag conveyor flight, UHMW-PE sheet, PVC elevator belts, elevator bolts, belt fastener, conveyor chains and more than 4 hundred types components which are widely used in bulk material handling and storage industry.
JINGWEI currently has more than 10 units of the whole series of 250-2500g injection molding machines, 1 production line of UHMW-PE sheet which is the higher pressure per unit in China, 1 special production line for PVC CZPT woven belt, 1 production line of elevator bolts and nut, 1 production line for conveyor chains. We annually produce 5 million plastic elevator buckets, 2 million steel buckets, 500 tons of UHMW-PE products, 0.8 million square CZPT of PVC CZPT woven elevator belt, 15 billion sets of elevator bolts, and 60,000 CZPT of conveyor chains.
Our company strictly in accordance with ISO9001 Quality Management System, and has obtained SGS certification. In order to raising working efficiency and reducing the cost of production, our company makes full use of computer network and ERP system to reform integration management in enterprise resource management, on the base of that, we have the ability to provide high quality products with competitive price and best service to customers.
JINGWEI believes the enterprise spirit of “integrity, pragmatic and innovative.” We will strive to become 1 of the best one-stop suppliers in the industry.
| Material: | Steel/Satinless Steel |
|---|---|
| Structure: | Conveyor Chain |
| Surface Treatment: | Shot Peening |
| Chain Size: | Glf/Glr |
| Feature: | Fire Resistant, Oil Resistant, Heat Resistant |
| Function: | transmission |
| Samples: |
US$ 20/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

What are the considerations for selecting a corrosion-resistant conveyor chain?
When selecting a corrosion-resistant conveyor chain, several factors need to be considered to ensure the chain’s longevity and performance in corrosive environments. Here are some key considerations:
1. Material Selection: Choose a chain material that is inherently resistant to corrosion. Stainless steel, such as AISI 304 or AISI 316, is a common choice due to its excellent corrosion resistance properties. Other materials like plastic chains or special alloys can also be considered based on the specific application requirements.
2. Coatings and Surface Treatments: In some cases, additional protective coatings or surface treatments can be applied to enhance the chain’s corrosion resistance. These coatings, such as zinc plating, galvanizing, or epoxy coatings, create a barrier between the chain material and corrosive substances, preventing direct contact and reducing the risk of corrosion.
3. Environmental Compatibility: Consider the specific corrosive agents present in the environment where the conveyor chain will be used. Different corrosive substances, such as acids, alkalis, or saltwater, require specific resistance properties. Ensure that the selected chain material and coatings are compatible with the corrosive agents present in the operating environment.
4. Maintenance and Lubrication: Proper maintenance and lubrication play a crucial role in preventing corrosion and extending the life of a conveyor chain. Regular cleaning, inspection, and application of appropriate lubricants can help remove corrosive contaminants and protect the chain surface from degradation.
5. Testing and Certification: Consider chains that have undergone testing and certification for corrosion resistance in relevant industry standards. Look for certifications such as ISO 9227 (salt spray test) or ASTM B117 (corrosion resistance test) to ensure the chain’s performance in corrosive environments.
By carefully considering these factors and consulting with conveyor chain manufacturers or corrosion-resistant experts, you can select a chain that is well-suited for your specific corrosive environment, minimizing the risk of corrosion-related issues and ensuring optimal performance and longevity.

What are the best practices for storing and handling conveyor chains?
Proper storage and handling of conveyor chains are essential to maintain their performance, prevent damage, and prolong their lifespan. Here are some best practices to consider:
1. Clean and dry storage area: Store conveyor chains in a clean and dry environment to prevent the accumulation of dirt, dust, moisture, or contaminants that can affect their performance and cause corrosion.
2. Adequate support: Ensure that the stored conveyor chains are properly supported to prevent excessive bending or deformation. Use pallets, racks, or designated storage containers that can accommodate the weight and length of the chains.
3. Avoid excessive heat or cold: Conveyor chains should be stored in an area with a moderate temperature range to avoid extreme heat or cold that can affect the material properties or lubrication of the chains.
4. Protection against impacts and vibrations: Protect the stored chains from impacts or excessive vibrations that can cause damage or deformation. Use suitable packaging or covers to shield the chains from any potential physical damage.
5. Lubrication: Apply a thin layer of appropriate lubricant to the chains before storage to prevent corrosion and maintain their smooth operation. Follow the manufacturer’s recommendations for lubrication type and quantity.
6. Regular inspections: Periodically inspect the stored conveyor chains to ensure there are no signs of damage, corrosion, or deformation. If any issues are identified, take appropriate actions such as cleaning, lubricating, or replacing the chains.
7. Proper handling techniques: When handling conveyor chains, use appropriate lifting equipment or tools to avoid excessive strain or bending. Avoid dragging or dropping the chains, as this can cause damage to the chain links or attachments.
8. Training and awareness: Provide training to personnel involved in handling and storing conveyor chains to ensure they understand the proper procedures and best practices. Promote awareness of the importance of careful handling and storage to prevent accidents and maintain chain integrity.
By following these best practices, you can ensure the longevity and reliable performance of your conveyor chains, reducing the risk of downtime and costly repairs.

What are the advantages of using a conveyor chain in material handling?
Conveyor chains offer numerous advantages in material handling applications, making them a preferred choice in various industries. Here are some of the key advantages:
- Efficient Transportation: Conveyor chains provide a continuous and reliable means of transporting materials, ensuring a smooth flow throughout the production or distribution process. They can handle both light and heavy loads, enabling efficient movement of items of different sizes and weights.
- Increased Productivity: By automating the material handling process, conveyor chains help increase productivity and operational efficiency. They eliminate the need for manual handling and reduce human effort, allowing employees to focus on other tasks, resulting in higher throughput and reduced labor costs.
- Flexibility and Customization: Conveyor chains can be designed and configured to meet specific material handling requirements. They are available in various lengths, widths, and configurations, allowing for customization based on the layout and space constraints of the facility. Additionally, different types of conveyor chains can be selected to handle specific materials or accommodate special handling needs.
- Improved Safety: Conveyor chains enhance workplace safety by reducing the risk of manual lifting and carrying heavy loads. They provide a controlled and controlled movement of materials, minimizing the chances of accidents and injuries. Additionally, safety features such as emergency stop buttons, guardrails, and sensors can be incorporated into the conveyor system to further enhance safety.
- Space Optimization: Conveyor chains utilize vertical and horizontal space efficiently, making them ideal for facilities with limited floor space. They can be designed to navigate corners, inclines, and declines, allowing for optimized layout and maximizing the use of available space.
- Versatility: Conveyor chains are versatile and can handle a wide range of materials, including bulk items, packaged goods, fragile items, and irregularly shaped objects. They can accommodate different types of conveyance methods such as flat, inclined, or spiral conveyors, providing flexibility in material handling processes.
- Improved Inventory Control: Conveyor chains enable better inventory control by facilitating the smooth movement and tracking of materials. They can be integrated with barcode scanners, RFID technology, or other tracking systems to monitor the flow of goods and provide real-time information on inventory levels.
- Reduced Material Damage: Conveyor chains help minimize material damage during handling and transportation. They provide a stable and controlled movement, reducing the risk of items falling or getting damaged due to manual handling or rough transportation methods.
The advantages of using a conveyor chain in material handling include improved efficiency, productivity, safety, space utilization, and inventory control, leading to cost savings and enhanced overall operational performance.


editor by CX 2023-07-25
China Conveyor Agriculture Chain Roller Chain with Scraper roller chain end bolt
Item Description
Fall Cast Chains “Y” Serial
Attributes
• It consists of cast metal backlinks, which can be geared up with different plastic or steel scrapers. The link pin between these backlinks is in a circlip version.
• Specific heat taken care of alloy steel,fall cast and precision machined, with situation hardened.
• Higher power, strong load-carrying capacity.
• Really challenging exterior surface and excellent dress in
resistance.
Technical Specifications
| Product | P (mm) |
H (mm) |
B (mm) |
D (mm) |
b (mm) |
T (mm) |
Breaking Load (Min.) |
Material |
| P100 | 100 | 30 | 33 | fourteen | fifteen.5 | 13 | 140KN | 40Cr |
| P125-B | a hundred twenty five | 35 | 34 | 17 | 17 | eight | 150KN | 40Cr |
| P142 | 142 | 50.eight | 43 | 25 | 19 | 12.two | 180KN | 20CrMnTi |
| 300KN | 40Cr | |||||||
| P142H | 142 | 50 | 62 | 25 | 29 | 15 | 280KN | 20CrMnTi |
| 460KN | 40Cr | |||||||
| P160 | a hundred and sixty | forty | forty eight | 20 | 22.5 | twenty | 240KN | 40Cr |
| P200 | two hundred | sixty four | fifty | 32 | 23 | fifteen | 390KN | 40Cr |
| P200-E | two hundred | forty five | 42 | twenty | twenty | twelve.two | 200KN | 40Cr |
Be aware: Customised measurements and substance are obtainable on ask for
Roller Conveyor Chains
Characteristics
• It is made up of a mix of inner and outer links.
• The bush/pin connections in between the backlinks are accessible in a circlip, break up pin, or a riveted variation.
• The metal scrapers can be possibly bent or welded.
• UHMWPE lights are proposed to connect to the scrapers for more eficiency and higher put on resistance.
GLF Variety
Complex 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 | Variety of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLF66.675 (6)D×182 |
66.675 | 266.7 | 26 | thirty | 6 | six | 22.23 | twelve.seven | 182 | ninety | 150 | four | 9 | a hundred thirty | |
| GLF66.675 (6)D×215 |
sixty six.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | twelve.seven | 215 | ninety five | 195 | four | nine | a hundred thirty | |
| GLF66.675 (6)D×295 |
sixty six.675 | 266.seven | 26 | 30 | six | six | 22.23 | 12.seven | 295 | 95 | 195 | 4 | nine | 130 | |
| GLF100 (6)D×170 |
100 | two hundred | 38 | 40 | six | 6 | 36 | 21.six | sixteen | one hundred seventy | one hundred fifteen | two | nine | 220 | |
| GLF100 (6)D×225 |
a hundred | 200 | 38 | 40 | six | 6 | 36 | 21.6 | sixteen | 225 | 104 | 194 | four | nine | 220 |
| GLF100 (6)D×294 |
100 | two hundred | 38 | 40 | six | six | 36 | 21.6 | sixteen | 294 | one hundred fifteen | 245 | four | 9 | 220 |
| GLF100 (5)×225 |
one hundred | two hundred | 28 | thirty | five | 5 | 22.23 | fourteen.27 | 225 | 95 | 195 | 4 | nine | 90 | |
| GLF125 (8)D×285 |
one hundred twenty five | five hundred | fifty | fifty | eight | eight | 32 | 19.9 | 285 | 155 | 255 | 4 | 9 | 220 | |
| GLF125 (6)×235 |
a hundred twenty five | 250 | 32.5 | forty | six | 6 | 28.fifty eight | 20 | fourteen.27 | 235 | ninety five | 195 | four | nine | 170 |
| GLF160 (6)×290 |
160 | 320 | 27 | forty five | six | six | 32 | twenty | fourteen.27 | 290 | 193 | two | nine | 193 |
GLR Variety
Technological Requirements
| Product | 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 | Quantity of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLR66.675 | 66.675 | 266.seven | 27.five | thirty | six | six | 24 | 13 | a hundred thirty | 102 | 32 | four | 9 | ninety | |
| GLR100 | a hundred | two hundred | 38 | 40 | six | 6 | 36 | 21.6 | 16 | one hundred thirty | 102 | 32 | 4 | nine | 220 |
Other merchandise of our conveyor components:
Could you please ship me inquiry for information?
|
US $10 / Meter | |
1 Meter (Min. Order) |
###
| Material: | Steel |
|---|---|
| Structure: | Roller Chain |
| Surface Treatment: | Oxygenation |
| Transport Package: | Pallet |
| Specification: | GLF, GLR |
| Trademark: | Yutung |
###
| Samples: |
US$ 10/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| 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 |
###
| 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 |
###
| 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 |
|
US $10 / Meter | |
1 Meter (Min. Order) |
###
| Material: | Steel |
|---|---|
| Structure: | Roller Chain |
| Surface Treatment: | Oxygenation |
| Transport Package: | Pallet |
| Specification: | GLF, GLR |
| Trademark: | Yutung |
###
| Samples: |
US$ 10/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| 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 |
###
| 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 |
###
| 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 |
Roller Chain Maintenance Tips
There are many things to keep in mind when maintaining a roller chain. The main reasons include friction and external influences. Without proper lubrication and adjustment, such chains will wear prematurely. Here are some tips for keeping your roller chain in top shape. continue reading! This will make your process easier. We will also discuss the cost of the new roller chain. As always, remember to check for loose ends and adjust the chain regularly.
Preloading
Roller chains are designed to accommodate many different types of loads. Sprockets are the main cause of chain wear. Axial and angular misalignment occurs when the sprocket faces are not properly aligned. Both types of misalignment increase stress and wear on the roller chain. They can also negatively affect the drive. Therefore, choosing the right chain is an important consideration.
Preloading helps to eliminate initial elongation and extend service life. The benefits of preloading can be seen in the preloading chart. Significant elongation occurs during drive startup with no or minimal preload. This is due to the surface hardness of the worn parts. On the other hand, a properly preloaded chain shows little elongation during the initial start. Therefore, proper preload can prolong wear life.
Although elongation is a natural phenomenon in any drive, it can be minimized or eliminated with proper maintenance. In addition to regular inspections, you should do a full inspection of your chain after the first hundred hours. This inspection should focus on key life factors such as 3% elongation, how the chain is lubricated, and any other issues that may affect life. A good quality chain should have the longest life and no problems.
There are many different roller chain specifications. A good rule of thumb is to choose chains with at least five links. Then, tighten the chain until a break occurs, and it will tell you what kind of break occurred. Alternatively, you can use a roller chain with the maximum allowable load. As long as the MAL doesn’t exceed that number, it’s still perfectly safe to use it for any application.
lubricating
When it comes to lubrication, there are several different techniques. For example, spray lubrication is a popular method for high-horsepower drives and high-load and fast-moving machines. This method is very effective, but it is expensive, and spraying the chain too far out of the guard can cause leaks. Another common method is brush lubrication. Brush lubrication involves applying a continuous flow of oil to the chain, pushing it into the chain. This lubrication technique reduces the application temperature of the chain. Also, it can extend the life of the chain, depending on the manufacturer’s specifications.
While the lubrication of roller chain couplings varies by application, sprocket hubs should be lubricated monthly to ensure proper sealing. The amount of oil used depends on the rotational speed and the type of roller chain coupling. In general, lubricants used in roller chain couplings should have excellent adhesion, oxidation, and mechanical stability.
Wear-resistant lubricants are recommended. They prevent the rollers from sticking to each other and prevent rusting. These lubricants have low surface tension and are not harmful to metal or O-ring chains. The optimum lubrication method depends on ambient temperature, horsepower, and chain speed. Properly lubricating a roller chain increases the life of the chain and reduces the risk of wear.
Proper lubrication of the roller chain is essential to prevent corrosion and prolong its service life. The oil forms a smooth film on the chain components, reducing metal-to-metal contact and minimizing friction and wear. Additionally, the oil provides a smooth running surface and reduces noise. However, the running-in process of roller chain lubrication cannot be underestimated. When using heavy-duty oils, ensure that the lubricant is compatible with operating and ambient temperatures.
Maintain
To extend the life of your roller chain, you need to carry out regular inspections. First, you should check the T-pin on the link plate at the joint. If they are not connected properly, it can cause the chain to stretch and not maintain proper spacing and timing. Next, you should look for unusual noise, corrosion, and dirt that may indicate wear. If you notice any of these problems, it’s time to replace the chain.
In order to properly maintain a roller chain, both areas of the roller chain must be lubricated with the correct lubricant. Lubricants used should be SAE non-degreased oils. There are several types of lubricants available, but the best one is a petroleum-based oil with a high viscosity. You can also check for signs of wear, such as red or brown discoloration. This means that there is not enough lubrication.
While the life expectancy of a roller chain is unknown, it is important to know how to extend its life and maximize its effectiveness. Improper tension and alignment can shorten its life and place undue stress on the drive system and the chain itself. Incorrect tension can also lead to slippage and increased energy output. Therefore, you should calculate the tension and alignment of the chain during the initial installation. Check and adjust regularly.
Another way to extend the life of your rollers is to thoroughly clean the inside and outside of the rollers. You should also lubricate it frequently to prevent excessive heat buildup. Designed to prevent overheating by limiting the amount of work during break-ins. Additionally, regular inspections will help you catch anomalies early enough to stop operations. Last but not least, regular lubrication will prolong the life of the roller chain.
Cost
Buying a roller chain is a big decision, but initial cost shouldn’t be the only consideration. The cost of the roller chain itself, as well as the running costs, should be considered. Even the lowest-priced chains can be more expensive in the long run. Additionally, maintenance and energy costs may increase. The best roller chain for your business will be the one that best suits your needs. Listed below are some considerations to consider when purchasing a roller chain.
First, what material should you use? Roller chains come in many different materials. Stainless steel is a commonly used material in construction. Materials are selected based on the cost and design of chain horsepower transmission. Various manufacturing processes will determine which material is suitable for your application. Also, the weight of the chain will vary depending on its pitch and the construction technique used. A large part of the cost of a roller chain is on the drive sprocket.
Another consideration is installation cost. Roller chains are commonly used in agricultural and transportation applications, especially for agronomic products. If lubrication is your concern, maintenance-free chains are the best choice. Corrosion-resistant chains are ideal for wet environments. They are sold in boxed lengths, so replacing a longer length requires adding a shorter length. To avoid trouble, use the skateboard to help connect the links.
Another consideration is the overall width. The overall width of an open #40 roller chain may vary but should be at least 10 feet wide. Although it is not the most expensive type of roller chain, it will last longer. Using it correctly will increase its overall longevity, so it’s a good idea to choose it wisely. If your business uses roller chains regularly, the cost reduction is well worth it.
Application
A roller chain consists of a pair of alternating pins and roller links. The pins are pressed into the side panels and hinged to the rollers. Roller chains can be single or multi-strand, connected by a common pin. The multi-strand design provides higher shear strength for demanding power transmission applications. Typical applications for roller chains include conveyors, hoists, and other mechanical equipment.
The horsepower capability of a roller chain is limited by several factors, including pin shock and friction. While research into these factors has placed some limits on the maximum operating speed of the roller chain, practical experience has shown that these systems can be used at higher speeds. Proper lubrication and cooling can increase the durability of these chains. In addition, roller chain applications include:
Drive and conveyor systems are the two main uses of roller chains. During driving operations, wear and elongation are a natural part of the operation. However, lubrication plays a vital role in minimizing wear and shock loads. Therefore, wear is inevitable and special care must be taken to ensure proper lubrication. Additionally, lubrication reduces heat dissipation in the chain.
The materials used to make roller chains vary from one type to another. Stainless steel is common, but nylon or brass are sometimes used. These materials are less expensive and more durable than steel or stainless steel. The best material for the job depends on a variety of factors, including cost, environmental conditions, and design horsepower transmission. For example, the pin bushing contact area is a critical area requiring lubrication. Additionally, some coatings are designed to retard the corrosive effects of water or oil.

editor by czh 2023-01-13