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5T servo electric cylinder hot pressing machine with moving table

Summary:

special equipment suitable for high-precision hot pressing composite molding products. Such as: membrane electrode composite phenolic resin, high-precision molding process products.

Key words:

superplastic/high temperature thermoforming machine

Product Consulting:

Product Description

Membrane electrode production line

(MEA proton membrane / carbon paper / border / edge banding)film cutting film laminated  hot pressed cold pressed finished product

 

Equipment use:
special equipment suitable for high-precision hot pressing composite molding products. Such as: membrane electrode composite phenolic resin, high-precision molding process products.


Equipment features:
1. The temperature control of the hot plate plane is uniform, and the parallelism and flatness accuracy are high.
2. Superior formula control ability of pressure, time and temperature.
3. It has the function of storing process parameters and process, and the function of stepless speed regulation and stepless pressure regulation.
0~100% heating power setting control function.
4. Good stability and high efficiency.

Related Products

Superplastic molding machine/High temperature hot forming


Dalian Tianyi equipment production of superplastic molding machine, used in aluminum, titanium and other high strength materials related molding equipment. In the thermoforming process, both the mold and the blank are heated to high temperatures of up to 950 ° C to improve the plasticity and elongation characteristics of the material. This introduction of heat allows high-strength materials to be formed at significantly lower tonnage compared to cold forming operations. This is ideal because the parts formed in this way are subjected to limited rebound and residual stress. While there are some similarities between thermal forming and superplastic forming, the TSPF process has its own unique characteristics. TSPF uses extreme temperatures combined with argon to form high-strength alloys in one step to form complex shapes. During the cycle, the heated material is sandwiched between the cavity and the plate. The material is then pressed into the cavity by argon gas injected into the forming chamber. The resulting parts have a fine surface finish and near-net shape, eliminating the need for subsequent machining.

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