Home » Products1 » Kevlar Rope » Kevlar Sleeve » Non-conductive Cut-resistant Mechanical Knitted Kevlar Sleeve for Glass Tempering Furnace

Non-conductive Cut-resistant Mechanical Knitted Kevlar Sleeve for Glass Tempering Furnace

Tempered Furnace Roller Sleeve
During the thermal tempering process glass is heated up in the range at temperatures nearing the melting point. Soon thereafter the glass exits the furnace and is rapidly quenched with cool air to strengthen it. As the glass exits the furnace it is conveyed over a series of cold metal rollers. These quench rollers are spirally wrapped with our Hi TEMP Oven Roller Rope or Tape, which is used as a protective buffer material, preventing the hot glass from picking up any unacceptable thermal checks.
 
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  • LKT-007

  • LEVER

  • 54025990

Application:

Kevlar sleeve uses aramid /kevlar fiber as raw material with advantages of high temperature resistance, wear resistance, cutting resistance, high strength, no scratch glass, etc.The glass is heated by a furnace at a temperature of 200-500 ° C. and then cooled by a grill. The glass is exposed to cold metal rollers due to a large temperature difference. The aramid roller rope spirally cools the roller of the furnace, Metal liner between the formation of padding, the glass can not be exposed to low temperature metal roller, glass to avoid scratches, collisions, cold burst. Thereby improving the yield of steel.

It is mainly used for high temperature operation, special ship, electrical engineering, marine operations, various types of slings, suspension, military research and other fields.


Features:

Aramid has all of the properties you want in a speargun line. It's ultra high strength, ultra low stretch and superior knot retention mean that once tightened your constictor knot will stay tight. Avoid the problems of knot creep or stretch inherent in other high performance fibers. This line is excellent for a multitude of applications including model rocketry and fire poi. The general characteristics of aramid are: High Modulus, High LASE (Load At Specified Elongation), High Tensile Strength at Low Weight, Low Elongation to Break High Modulus, (Structural Rigidity), Low Electrical Conductivity, High Chemical Resistance, Low Thermal Shrinkage, High Toughness (Work~To~Break), Excellent Dimensional Stability, High Cut Resistance, Flame Resistant, Self-Extinguishing.

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