Tension device
Improve production efficiency
Reduce material loss
Sealed transportation: The material feeding device generally adopts a sealed transportation method, which can effectively prevent materials from leaking, flying, or getting damp during transportation, reducing material loss and waste. In the grain processing industry, the sealed material feeding device can prevent grains from spilling and getting damp and deteriorating during transportation.
Smooth transportation: Through a reasonable transportation structure and operation mode, the material feeding device can ensure that the materials remain stable during transportation, reducing the collision and friction between materials, and reducing the material breakage rate and loss rate. This is particularly important for some fragile materials such as raw materials for glass products.
Sealed transportation: The material feeding device generally adopts a sealed transportation method, which can effectively prevent materials from leaking, flying, or getting damp during transportation, reducing material loss and waste. In the grain processing industry, the sealed material feeding device can prevent grains from spilling and getting damp and deteriorating during transportation.
Smooth transportation: Through a reasonable transportation structure and operation mode, the material feeding device can ensure that the materials remain stable during transportation, reducing the collision and friction between materials, and reducing the material breakage rate and loss rate. This is particularly important for some fragile materials such as raw materials for glass products.
Product Details
Multifunctional Universal Steel Coil Feeding Machine
Structure: It includes a frame, a pressure plate rotatably installed on the frame, a telescopic guiding device set in alignment with the pressure plate, a material pulling device and a material guiding device installed on the frame. The pressure plate is equipped with a material pressing wheel device and a material head flattening device. The material pressing wheel device consists of an active roller and a first rotational power system. The material head flattening device includes a transverse roller shaft and a first lifting power system. The telescopic guiding device includes a telescopic plate and a second lifting power system. The telescopic plate is equipped with a sliding plate and symmetrical fixed plates, and the sliding plate is connected to the first telescopic power system. The material pulling device includes a passive roller shaft and an active roller shaft. The passive roller shaft is connected to the third lifting power system, and the active roller shaft is connected to the second rotational power system. The material guiding device includes a bracket fixed on the frame. Symmetrical guiding roller assemblies are set on both sides of the bracket, and it also includes a screw rod power system.
Working Principle: The active roller of the material pressing wheel device abuts against the material head of the steel coil. The first rotational power system drives the active roller to rotate, thus moving the material head. The material head is introduced into the material pulling device through the material head flattening device, and then is guided and conveyed by the material guiding device. All the power systems and lifting systems work together to achieve the material feeding operation of the steel coil.
Structure: It includes a frame, a pressure plate rotatably installed on the frame, a telescopic guiding device set in alignment with the pressure plate, a material pulling device and a material guiding device installed on the frame. The pressure plate is equipped with a material pressing wheel device and a material head flattening device. The material pressing wheel device consists of an active roller and a first rotational power system. The material head flattening device includes a transverse roller shaft and a first lifting power system. The telescopic guiding device includes a telescopic plate and a second lifting power system. The telescopic plate is equipped with a sliding plate and symmetrical fixed plates, and the sliding plate is connected to the first telescopic power system. The material pulling device includes a passive roller shaft and an active roller shaft. The passive roller shaft is connected to the third lifting power system, and the active roller shaft is connected to the second rotational power system. The material guiding device includes a bracket fixed on the frame. Symmetrical guiding roller assemblies are set on both sides of the bracket, and it also includes a screw rod power system.
Working Principle: The active roller of the material pressing wheel device abuts against the material head of the steel coil. The first rotational power system drives the active roller to rotate, thus moving the material head. The material head is introduced into the material pulling device through the material head flattening device, and then is guided and conveyed by the material guiding device. All the power systems and lifting systems work together to achieve the material feeding operation of the steel coil.
Feeding Device Applicable to Stainless Steel Pipe Production
Structure: It includes a production feeding mechanism, which has a workbench. A production control panel is installed on the surface of the workbench. A material transfer component is installed on one side of the top of the workbench. A fixed frame is fixedly connected to the top of the workbench, and a feeding component is installed on the surface of the fixed frame.
Working Principle: The material transfer component and the feeding component are used in cooperation to feed the stainless - steel pipes to the subsequent processing positions. Also, the stainless - steel pipes can be bent as required.
Structure: It includes a production feeding mechanism, which has a workbench. A production control panel is installed on the surface of the workbench. A material transfer component is installed on one side of the top of the workbench. A fixed frame is fixedly connected to the top of the workbench, and a feeding component is installed on the surface of the fixed frame.
Working Principle: The material transfer component and the feeding component are used in cooperation to feed the stainless - steel pipes to the subsequent processing positions. Also, the stainless - steel pipes can be bent as required.
Feeding Device Applicable to Converter
Structure: It includes a fire wall, a traveling mechanism, an adjustment part, an injection part and a feeding part. The traveling mechanism is set at the bottom end of the fire wall. There is a strip - shaped hole at the upper end of the fire wall, in which high - temperature glass is inlaid. The adjustment part is on the fire wall, the injection part is on the adjustment part, and the feeding part is on the injection part. The traveling mechanism includes a bottom rod and universal wheels.
Working Principle: The device is moved to an appropriate position through the traveling mechanism. The adjustment part can adjust the feeding angle, etc. The feeding part sends the materials to the injection part, and the injection part puts the materials into the converter, improving the feeding efficiency.
Structure: It includes a fire wall, a traveling mechanism, an adjustment part, an injection part and a feeding part. The traveling mechanism is set at the bottom end of the fire wall. There is a strip - shaped hole at the upper end of the fire wall, in which high - temperature glass is inlaid. The adjustment part is on the fire wall, the injection part is on the adjustment part, and the feeding part is on the injection part. The traveling mechanism includes a bottom rod and universal wheels.
Working Principle: The device is moved to an appropriate position through the traveling mechanism. The adjustment part can adjust the feeding angle, etc. The feeding part sends the materials to the injection part, and the injection part puts the materials into the converter, improving the feeding efficiency.
Lifting - type Feeding Mechanism of Cold - rolling Tube Mill
Structure: It includes a guiding platform. A slider is slidably arranged inside the guiding platform. Two synchronous wheels are rotatably arranged inside the guiding platform, and the two synchronous wheels are connected by the same synchronous belt. The bottom of the slider is fixedly connected to the upper surface of the synchronous belt.
Working Principle: The synchronous wheels drive the synchronous belt to rotate, and then drive the slider to slide inside the guiding platform, realizing the automatic feeding and position adjustment of the pipes. It can automatically adjust the center height of the pipes to adapt to pipes of different sizes, and can also trim both ends of the pipes.
Structure: It includes a guiding platform. A slider is slidably arranged inside the guiding platform. Two synchronous wheels are rotatably arranged inside the guiding platform, and the two synchronous wheels are connected by the same synchronous belt. The bottom of the slider is fixedly connected to the upper surface of the synchronous belt.
Working Principle: The synchronous wheels drive the synchronous belt to rotate, and then drive the slider to slide inside the guiding platform, realizing the automatic feeding and position adjustment of the pipes. It can automatically adjust the center height of the pipes to adapt to pipes of different sizes, and can also trim both ends of the pipes.
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