08B-GC
PLW or Made to order
7315119000
Carbon Steel OR Stainless Steel
for Free
Grip Chain
Oil Blooming
08B-GC
Oil Resistant
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Alloy Carbon Stainless Steel Conveyor Grip Chain for Feeding and Transport
Product Description
A conveyor grip chain, also often referred to as a clamping chain or flexible clamping chain, is a chain system specifically designed to stably grip, hold, or hold items during conveying. This type of chain is usually used in applications where precise control of the position of the material is required to prevent slipping or damage, such as food packaging, beverage production lines, automated warehousing, etc. Here's a closer look at the conveyor grip chain:
Structure and composition
The conveyor grip chain is composed of several components, mainly including:
Chain body: It consists of a series of specially designed chain links, which are connected by pins or similar structures to form a continuous chain.
Clamping mechanism: A clamping part installed on a chain to clamp or fix an item. The design of the clamping mechanism depends on the shape, size, and weight of the object being grasped.
Connector: The part used to fix the clamping mechanism on the chain to ensure that the clamping mechanism will not fall off or loosen during the movement of the chain.
Drive device: The equipment that provides power to the chain, such as motors, reducers, etc.
How it works
The working principle of the conveyor grip chain is based on the cyclic reciprocating motion of the chain. When the driving device is started, the chain starts to circulate and moves, and the clamping mechanism moves to the designated position under the drive of the chain to clamp the item. Subsequently, the chain continues to move, transporting the item to the next location or destination. Throughout the process, the clamping mechanism always maintains a stable grip on the item, preventing the item from slipping or being damaged.
Features & Benefits
High stability: The clamping mechanism grips the item firmly, ensuring that it does not slip or drift during conveying.
Adaptable: It can be customized according to the shape, size and weight of the object to be grasped to meet the needs of different occasions.
High degree of automation: It can be used in conjunction with the automatic control system to realize automatic loading, conveying, unloading and other processes.
Easy maintenance: The structure is relatively simple, and it is easy to maintain and replace damaged parts.
Application scenarios
Conveyor grip chains are widely used in the following scenarios:
Food packaging: automatic packaging production line for beverage bottles, cans and other items.
Automated warehousing: Used to handle and stack goods in automated warehouses.
Production line assembly: In the production line of the automotive, electronics and other industries, it is used for precise handling and assembly of parts.
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | kg/m | |
08B-GC | 12.7 | 8.51 | 7.75 | 4.45 | 16.7 | 18.2 | 11.8 | 1.6 | 8.5 | 5.5 | 13.7 | 19.8 | 18.0/4046 | 1.20 |
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | kg/m | |
08BBSSF32 | 12.7 | 8.51 | 7.75 | 4.45 | 16.7 | 18.2 | 11.8 | 13.8 | 8.0 | 6.5 | 13.8 | 20.4 | 12.0/2727 | 1.14 |
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Averag tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | Q 0 | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | KN | kg/m | |
10B-GC | 15.875 | 10.16 | 9.65 | 5.08 | 19.3 | 20.7 | 14.7 | 1.7 | 9.0 | 7.0 | 16.4 | 16.9 | 22.40/5036 | 24.64 | 1.60 |
Alloy Carbon Stainless Steel Conveyor Grip Chain for Feeding and Transport
Product Description
A conveyor grip chain, also often referred to as a clamping chain or flexible clamping chain, is a chain system specifically designed to stably grip, hold, or hold items during conveying. This type of chain is usually used in applications where precise control of the position of the material is required to prevent slipping or damage, such as food packaging, beverage production lines, automated warehousing, etc. Here's a closer look at the conveyor grip chain:
Structure and composition
The conveyor grip chain is composed of several components, mainly including:
Chain body: It consists of a series of specially designed chain links, which are connected by pins or similar structures to form a continuous chain.
Clamping mechanism: A clamping part installed on a chain to clamp or fix an item. The design of the clamping mechanism depends on the shape, size, and weight of the object being grasped.
Connector: The part used to fix the clamping mechanism on the chain to ensure that the clamping mechanism will not fall off or loosen during the movement of the chain.
Drive device: The equipment that provides power to the chain, such as motors, reducers, etc.
How it works
The working principle of the conveyor grip chain is based on the cyclic reciprocating motion of the chain. When the driving device is started, the chain starts to circulate and moves, and the clamping mechanism moves to the designated position under the drive of the chain to clamp the item. Subsequently, the chain continues to move, transporting the item to the next location or destination. Throughout the process, the clamping mechanism always maintains a stable grip on the item, preventing the item from slipping or being damaged.
Features & Benefits
High stability: The clamping mechanism grips the item firmly, ensuring that it does not slip or drift during conveying.
Adaptable: It can be customized according to the shape, size and weight of the object to be grasped to meet the needs of different occasions.
High degree of automation: It can be used in conjunction with the automatic control system to realize automatic loading, conveying, unloading and other processes.
Easy maintenance: The structure is relatively simple, and it is easy to maintain and replace damaged parts.
Application scenarios
Conveyor grip chains are widely used in the following scenarios:
Food packaging: automatic packaging production line for beverage bottles, cans and other items.
Automated warehousing: Used to handle and stack goods in automated warehouses.
Production line assembly: In the production line of the automotive, electronics and other industries, it is used for precise handling and assembly of parts.
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | kg/m | |
08B-GC | 12.7 | 8.51 | 7.75 | 4.45 | 16.7 | 18.2 | 11.8 | 1.6 | 8.5 | 5.5 | 13.7 | 19.8 | 18.0/4046 | 1.20 |
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | kg/m | |
08BBSSF32 | 12.7 | 8.51 | 7.75 | 4.45 | 16.7 | 18.2 | 11.8 | 13.8 | 8.0 | 6.5 | 13.8 | 20.4 | 12.0/2727 | 1.14 |
Chain No. | Pitch | Roller diameter | Width between inner plates | Pin diameter | Pin length | Plate depth | Plate thickness | Attachm ent dimension | Tensile strength | Averag tensile strength | Weight per meter | ||||
P | d1 max | b1 min | d2 max | L max | Lc | h2 max | T/t | h4 | h5 | F | G | Q min | Q 0 | q | |
mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | mm | kN/bf | KN | kg/m | |
10B-GC | 15.875 | 10.16 | 9.65 | 5.08 | 19.3 | 20.7 | 14.7 | 1.7 | 9.0 | 7.0 | 16.4 | 16.9 | 22.40/5036 | 24.64 | 1.60 |