Nantong Fuchi's High - Performance Pulling Equipment

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Nantong Fuchi Hydraulic Technology Co., LTD introduces its high - performance Pulling Equipment, designed to revolutionize material handling and assembly processes in a wide array of industries.



Our Pulling Equipment is engineered with precision and power. It boasts a robust hydraulic system that delivers substantial pulling force, capable of handling heavy - duty tasks with ease. Whether it's extracting large components during manufacturing or applying tension in construction projects, this equipment can meet the most demanding requirements. The advanced control mechanism allows for precise adjustment of the pulling speed and force, ensuring accuracy in every operation. This not only enhances the quality of work but also minimizes the risk of damage to materials. Constructed with high - grade materials, the equipment is built to withstand harsh working conditions, guaranteeing long - term durability and reliable performance.



This versatile Pulling Equipment has extensive applications across multiple sectors. In the automotive manufacturing industry, it is used for tasks such as engine removal and component installation. The precise control over pulling force ensures that delicate parts are handled without causing any damage. In the construction field, it plays a crucial role in activities like cable pulling for electrical installations and the assembly of large - scale structures. The equipment's ability to adapt to different pulling needs makes it an invaluable asset in both small - scale renovation projects and large - scale infrastructure developments. Additionally, in the furniture and woodworking industries, it aids in the assembly and disassembly of furniture pieces, streamlining production processes.


As a leading manufacturer, Nantong Fuchi Hydraulic Technology Co., LTD is committed to providing top - notch Pulling Equipment. Our team of experienced engineers is constantly engaged in research and development to improve the equipment's performance and functionality. We offer comprehensive after - sales support, including on - site installation to ensure the equipment is set up correctly, operator training to maximize productivity, and prompt maintenance services to minimize downtime. Choose Nantong Fuchi's Pulling Equipment for reliable, efficient, and powerful solutions that will enhance your production and operational capabilities.


Working principle
First, the reinforcing materials such as glass fiber roving or fabric are sorted and arranged through the yarn frame to ensure they are evenly distributed into the impregnation tank. In the impregnation tank, the reinforcing material fully impregnates the resin and other matrix materials to form rubber-containing fiber bundles.
Then, the rubber-containing fiber bundles pass through the preforming mold to initially form the general shape of the product.
Then, it enters the heated molding mold. Under the action of the mold, the product is further compacted and shaped. Meanwhile, the resin undergoes a cross-linking reaction under the influence of heating and the curing agent, gradually solidifying and taking shape.
Finally, the formed FRP products are pulled out of the mold at a constant speed through the traction device, and then cut to the required length by the cutting device to obtain the final FRP pultruded products.


Structural composition
Yarn feeding system: It includes yarn frames and tension control devices. The yarn rack is used to place the glass fiber yarn balls to ensure that the yarn can enter the subsequent processes in an orderly manner. The tension control device can apply appropriate tension to the glass fibers to ensure that the fibers are evenly distributed during the impregnation and molding processes, and have a certain preload force to improve the performance of the products.

Impregnation system: Composed of impregnation tank and stirring device, etc. The impregnation tank is used to hold resin and other adhesive solutions. The stirring device can keep the adhesive solution uniform, prevent sedimentation and stratification, and ensure that the glass fibers can be fully impregnated with the adhesive solution to achieve a good bonding effect.

Forming system: Mainly includes preforming molds and forming molds. The preforming mold initially shapes the fiber bundles after impregnation to approach the shape of the final product, reducing the burden on the forming mold. The forming mold is a key component. It has precise dimensions and shapes. Through heating and pressurization, the product is finally solidified and formed. The quality and precision of the mold directly affect the appearance and dimensional accuracy of the product.

Traction system: Composed of a traction machine and a clamping device. The traction machine provides a stable traction force to pull the product through the mold, and its speed can be precisely adjusted according to the production process. The clamping device is used to fix the products and prevent slippage or displacement during the traction process.

Cutting system: An automatic cutting device is adopted to cut the pull-out products according to the set length. The cutting device has a high cutting speed and precision, which can ensure a smooth and flat cutting surface without affecting the performance of the product.


Performance characteristics
High production efficiency: It can be used for continuous production and achieve automated operation, significantly enhancing production efficiency. It is suitable for large-scale production of FRP pultruded products.

The product quality is excellent: The proportion of glass fiber to resin, as well as the size and shape of the product, can be precisely controlled. The fiberglass reinforced plastic products produced have excellent properties such as high strength, high rigidity, corrosion resistance, and aging resistance, and the quality is stable and reliable.

Strong flexibility: By changing different molds and adjusting process parameters, various specifications and shapes of FRP pultruded products, such as bars, tubes, profiles, etc., can be produced to meet the needs of different industries.

Energy conservation and environmental protection: During the production process, the utilization rate of resin is relatively high, and the heating curing process is adopted, which results in relatively low energy consumption and reduces the generation of waste, meeting environmental protection requirements.


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