Qingdao Xiangrui Rubber Conveyer Belt

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Wear-resistant
Wear-resistant
Wear-resistant
Wear-resistant

Wear-resistant

Aplication

Application: It is mainly used for conveying high temperature materials, such as sinter, hot coke, cement clinker, hot casting, etc. It is widely used in cement, coking, metallurgy and iron and steel industries. The specifications are the same as ordinary conveyor belts.

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Feature

Features: The heat-resistant conveyor belt is made of multi-layer polyester canvas or rubber cotton canvas (polyester-cotton cloth), covered with high temperature resistant or heat resistant rubber, and bonded together by high temperature vulcanization.


Classification:

T1: It can withstand the test temperature not more than 120℃, and the instantaneous operating temperature can reach 120℃

T2: can withstand the test temperature of not more than 150 ℃, and the instantaneous operating temperature can reach 150 ℃

T3: can withstand the test temperature not greater than 180℃, and the instantaneous operating temperature can reach 180℃

T4: It can withstand the test temperature of not more than 200 °C, and the instantaneous operating temperature can reach 200 °C


Structure:

• The core of the heat-resistant conveyor belt is made of polyester-cotton dipped canvas (or EP canvas) as the skeleton material, and the cover rubber and buffer rubber are made of styrene-butadiene rubber or neoprene rubber with good heat resistance.

• According to the main manifestation of the damage of heat-resistant conveyor belt resulting in loss of working ability, different heat-resistant grades are made of styrene-butadiene rubber as covering rubber, polyester canvas is used as strong layer for high strength and high permeability, and heat-resistant glass can be laid between covering rubber and skeleton layer Cloth, so that the life of the heat-resistant conveyor belt is greatly improved.


Precautions for the use of heat-resistant conveyor belts:

1. The surface temperature of the entire strip should be continuously and uninterruptedly measured, recorded and monitored, and unnecessary temperature increases must be avoided;

2. Forced cooling of the tape of the material (preferably flushing with water on the laminate);

3. Keep the conveyed materials evenly distributed according to the bandwidth, but not too concentrated;

4. Prevent the presence of oil, (trace oil in cooling water) damage to the belt more than the heat itself;

5. Once the belt with hot material stops running, measures should be taken quickly to unload the hot material;

6. The joints of the heat-resistant tapes are best to use hot glue.


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