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Injection molding machine

Summary:

The control system adopts German Siemens/Omron control system, with temperature plane monitoring and precise location of heat pipe damage 8. Long-term preservation records of all process parameters.

Key words:

superplastic/high temperature thermoforming machine

Product Consulting:

Product Description

1. It has the advantages of first locking the mold and then injecting the molding process in the mold cavity, the product structure is dense, and the size is accurate and the flash is less.
2. The advantages of fast opening and closing of molds, high production efficiency, good clamping effect and low mold damage rate.
3. The hydraulic system of the equipment adopts the proportional private service control system, and the working performance of the equipment is stable.
4. The temperature control of the hot plate adopts precise control of zoning.
5. The temperature of the hot plate is stable at 50-400 for long-term use.
6. The advantages of stable thermal insulation performance and low heat loss.
7. The control system adopts German Siemens/Omron control system, with temperature plane monitoring and precise location
of heat pipe damage 8. Long-term preservation records of all process parameters.
9. It has the function of moving out and turning the workbench.

 

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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