Continuous Exposure of *Indium-Tin Alloy is "Where the Divine"

Introduction: At present, there are many widely used low-temperature metal alloys, mainly fusions with low-melting-point metals such as beryllium aluminum alloys, beryllium alloys, antimony tin alloys, and gallium-indium alloys.

Continuous Exposure of *Indium-Tin Alloy is "Where the Divine"

A low-melting alloy refers to a fusible alloy having a melting point of less than 232° C. (the melting point of Sn); it is usually composed of a low melting point metallic element such as Bi, Sn, Pb, In, or the like. Low-melting-point alloys are widely used as solders, as well as fuses, fuses, and other heat-sensitive components in appliances, steam, firefighting, fire alarms, etc., and are a new type of low-melting-point alloy material with considerable development potential.

Application area:

1) For medical use, it is mainly used as a special radiation-proof stopper for a specific shape.

2) It can be conveniently used as a casting mold to produce molds for special products and special casting products.

3) For electronic and electrical automatic control, as thermal components, insurance materials, fire alarm devices.

4) As a filler when bending metal tubes.

5) As a metal insert, as a mosaic

Product Features:

1. It is a type of fusible alloy with gray and white shiny metal, based on cesium elements, * elements, etc.

2. Melting point has 47°C, 70°C, 92°C, 120°C and other options; low melting point alloy can be melted by water bath method or oil bath method.

3. Strength 30 MPa at room temperature, elongation 3%, hardness 25 HBS.

* Indium tin alloy raw material selection:

Due to the small surface tension of the liquid*, it adheres to the walls of glass or plastic containers, resulting in a small amount of * added during final feeding. Therefore, in the preparation, it is better to use a solid state*. If it is melted, it can be frozen in a refrigerator first, and then it can be solidified and then taken out, which can effectively avoid a reduction in the amount of material to be charged. As for indium, indium particles can be used. The use of indium particles is mainly for the convenience of mixing with tin and the molten alloy can be formed relatively quickly after melting. In the same way, metal tin is also used for convenience of fusion.

The compressor circulates the refrigerant and increases the temperature and pressure of the gas refrigerant to make it easy to liquefy in the condenser.

The condenser condenses the refrigerant to release heat absorbed in the evaporator.

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