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Silicone Belt
  • Silicone Belt

Silicone Belt

Belt type:
Integrated Vulcanized Silicone Flat Belt and Silicone Synchronized Belt
Scope of application:

Sanitary products industry, glass machinery, sealing machine, etc.
Characteristics:
Anti-sticking, high friction coefficient, and high-temperature resistance.
  • Description

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ABOUT
Jiangxi Kangqi Industrial Co., Ltd.
Jiangxi Kangqi Industrial Co., Ltd. is a high-tech manufacturer specializing in Rubber synchronous belts and special belts production, research, and development. We have our famous brand SABLES, KML which is well-known by customers all over the world. And we are also the agency of Japan Bando Belts.
As a professional Silicone Belt Supplier and Silicone Belt Company, Our main products include rubber synchronous belts, double-sided belts, coated feeding belts, flat belts, ribbed belts, tooth-ribbed belts, polyurethane timing belts, conveyor belts and synchronous belt wheels, fish-separation belts, endless belts for high-speed packing and printing machines, nut-shell belt, vegetable-cutting belt and all kinds of special processing belt.
Our factory has the advanced equipment to develop and produce with National and International standards. We also have the advanced long-pitch rubber timing belt mold within 8600mm. Our products are widely used in the printing, packing industry, textile, paper, food industry, cable industries, home appliances, footwear, ceramics, logistics new energy industry, etc. We are a stable supplier for the MiSUMi industry platform.
Our company can produce the Japan Bando light conveyor belts in our factory since we are the machining center of Bando in Shanghai with spot goods and coil material. We have abundant stocks at our branch offices in Shanghai, Foshan, Ningbo, Jinan, Qingdao, Quanzhou, Wuxi, Shenzhen, Wenzhou, and Dongguan to ensure our products provide satisfactory service to customers promptly.
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Silicone Belt Industry knowledge

Is silicone belt environmentally friendly?
Silicone belts can be considered environmentally friendly to some extent, but their environmental friendliness depends on multiple factors.
Renewable: Silicone is a synthetic material typically made from silicon-based polymers. Silicone can be recycled and reused, but its regeneration process may be complex and costly.
Durability: Silicone belts typically have a long service life and good wear resistance, which means they do not require frequent replacement, reducing resource consumption and waste generation.
Chemical release: In some cases, silicone materials may release harmful substances. Although silicone is generally considered a relatively safe material, its production and processing may involve some chemical substances or processes, some of which may have an impact on the environment.
Energy consumption: The production of silicone belts may involve energy consumption, especially in the process of producing silicone under high temperature conditions, where energy consumption is relatively high.
Overall, silicone belts may have better durability and performance compared to some traditional rubber belts, but their environmental performance may vary due to manufacturing and processing factors. When choosing to use silicone belts, it is important to comprehensively consider factors such as their service life, regeneration capacity, chemical release, and environmental impact during the production process.

Can silicone belts adsorb small particles and liquids?
Silicone belts usually have certain adsorption properties, which can adsorb some small particles and liquids. This mainly depends on the surface characteristics of the silicone material and the properties of the material.
Particle adsorption: The surface of silicone belts is usually smooth and has a certain degree of adsorption, which allows them to adsorb some small particles, such as dust, powder, etc. This adsorption capacity can to some extent reduce the flying and leakage of particles during transportation, helping to maintain a clean production environment.
Liquid adsorption: Silicone materials themselves are usually non-polar, so they may have certain adsorption performance for some non-polar liquids (such as certain oils). However, for polar liquids such as water, the adsorption capacity of silicone materials may be weak or even unable to adsorb.
Although silicone belts have certain adsorption properties, their adsorption capacity is limited and cannot replace specially designed adsorption equipment or surface treatment materials. Therefore, in specific applications, if higher adsorption performance is required, additional measures or the selection of other specialized adsorption materials may be necessary.

Can silicone belts come into contact with organic solvents?
Generally speaking, silicone belts can come into contact with certain organic solvents, but this depends on the properties of the silicone material used and the composition of the organic solvent.
Silicone materials usually have a certain degree of chemical resistance and good resistance to many organic solvents. However, some strong or polar solvents may cause damage or swelling to the silicone gel. Therefore, in contact with organic solvents, it is necessary to evaluate and test based on the composition of the silicone material and the properties of the organic solvent.
When selecting silicone belts for applications in contact with organic solvents, the following points need to be considered:
Resistance of silicone materials: Choose silicone materials that are suitable for contact with organic solvents to ensure good chemical stability and resistance.
Properties of organic solvents: Understand the composition, polarity, concentration, and other information of organic solvents, and evaluate their compatibility with silicone materials.
Usage conditions: Consider factors such as the contact time, temperature, pressure, and possible chemical reactions and effects between organic solvents and silicone transport belts.
In practical applications, it is recommended to conduct sufficient field testing and evaluation before selecting a silicone belt to ensure its safe and reliable application in specific organic solvent contact applications, and to avoid possible damage or danger.