Improved process for producing foamed aluminum by adopting ultrasonic melt-foaming method

A melt foaming method and ultrasonic technology, applied in the field of metal material processing technology, can solve the problems of aluminum foam density, uneven porosity, increase cost, reduce yield, etc., achieve uniform density and porosity, and improve material properties. , good mechanical properties

Inactive Publication Date: 2015-03-25
安徽省一鸣新材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The foaming temperature of the foaming agent is lower than the temperature of the aluminum alloy solution, so the powdered foaming agent begins to decompose violently before it is fully dispersed, releasing gas, which affects the further dispersion of powder particles and causes the foaming agent to concentrate , causing the bubbles to be too large
When the bubbles are too large, the stress

Method used

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Examples

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Embodiment Construction

[0013] In order to better illustrate the present invention and facilitate understanding of the technical solutions of the present invention, typical but non-limiting examples of the present invention are as follows.

[0014] Ultrasonic generator JXD-10 type is designed for automatic frequency tracking to reduce the fluctuation of system resonant frequency caused by the change of melt temperature. The frequency of the ultrasonic generator is 20kHz, the adjustment range is ±500Hz, the maximum output electric power is 1000W adjustable, and the acoustic-electric efficiency of the system is about 75%.

[0015] After adding the foaming agent to the molten aluminum alloy, ultrasonic waves are emitted into the molten aluminum alloy while stirring, and the action time is 3 minutes.

[0016] During the heat preservation and foaming process, ultrasonic waves are emitted to the foamed aluminum alloy melt for 5 minutes.

[0017] The foamed aluminum products produced have a porosity of 90%...

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PUM

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Abstract

The invention discloses an improved process for producing foamed aluminum by adopting an ultrasonic melt-foaming method. The process comprises the following steps: based on an ultrasonic cavitation effect and a mechanical crushing effect, adding a TiH2 foaming agent into an aluminum alloy melt, stirring, and simultaneously emitting ultrasonic waves into the aluminum alloy melt; fully dispersing TiH2 foaming agent particles by virtue of the ultrasonic waves, so that more bubble nucleation is generated and more fine bubbles are produced. Meanwhile, the formed bubbles are crushed by utilizing the ultrasonic cavitation effect, and more fine bubbles are formed, so that the aim of refining the foamed aluminum bubbles is achieved. In the heat insulation foaming process, the ultrasonic waves are continuously emitted into the aluminum alloy melt, and fine bubbles are maintained, so that the bubbles do not rapidly float upwards due to the action of the surface tension, and the mechanical property and density uniformity of the foamed aluminum are improved. Meanwhile, in the aluminum alloy solidification process, the aluminum alloy structure is refined by virtue of the action of the ultrasonic waves, and the performance of an aluminum alloy matrix is improved.

Description

Technical field: [0001] The invention belongs to the field of metal material processing technology, and in particular relates to an improved technology for producing foamed aluminum by means of an ultrasonic melt foaming method. Background technique: [0002] Aluminum foam is made by adding additives to pure aluminum or aluminum alloy and undergoing a foaming process, which has both metal and bubble characteristics. It has the characteristics of small density, high impact absorption ability, high temperature resistance, strong fire resistance, corrosion resistance, sound insulation and noise reduction, low thermal conductivity, high electromagnetic shielding, and strong weather resistance. Sound insulation, building fire protection and other fields have been applied. [0003] The energy absorption of aluminum foam has good rate-strain characteristics, that is, the greater the strain rate, the greater the energy absorbed per unit volume of aluminum foam, up to 8-30J / cm 3 . ...

Claims

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Application Information

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IPC IPC(8): C22C1/08C22C21/00
Inventor 聂刚谢峰龙海敏
Owner 安徽省一鸣新材料科技有限公司
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