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Special memory alloy for tunnel smoke exhaust fire damper and preparation method thereof

A memory alloy and fire damper technology, applied in the field of memory alloy processing, can solve problems affecting material processing and performance, long production cycle, poor processing plasticity, etc., to overcome easy segregation, good shape memory effect, cold and hot processing good performance

Active Publication Date: 2017-08-29
NANJING UNIV OF TECH
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  • Abstract
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AI Technical Summary

Problems solved by technology

[0006] The traditional preparation method has some common disadvantages, that is, the equipment used is large, the cost is high, and the production cycle is long, which hinders the further popularization and application of NiTi shape memory alloy in a certain sense; because the melting and casting method uses block raw materials, the composition is difficult to control accurately , easy to produce segregation, affect the processing and performance of the material, it is often necessary to improve the performance of the ingot through multiple smelting and high-temperature homogenization treatment; the powder will inevitably be polluted during the preparation process of the powder metallurgy method, resulting in the oxidation of the sintered billet High content, poor processing plasticity, and in the sintering process, the sintering temperature is generally higher than 1215K to produce a more uniform NiTi alloy, but the temperature is too high to ensure the integrity of the compact shape

Method used

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  • Special memory alloy for tunnel smoke exhaust fire damper and preparation method thereof
  • Special memory alloy for tunnel smoke exhaust fire damper and preparation method thereof
  • Special memory alloy for tunnel smoke exhaust fire damper and preparation method thereof

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Embodiment Construction

[0026] In order to make the object, technical solution and advantages of the present invention more clear, the present invention will be further described in detail below in conjunction with the examples. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0027] The present invention will be described in detail below in conjunction with the accompanying drawings.

[0028] like figure 1 As shown, the preparation method of the special memory alloy for the tunnel smoke exhaust fire damper provided by the embodiment of the present invention includes the following steps:

[0029] S101: Weigh pure nickel (purity ≥ 99.9%), pure titanium (purity ≥ 99.7%), oxygen-free Cu, and palladium sponge according to the proportioning ratio.

[0030] S102: Mix Ni, Ti, Cu, and Pd in ​​proportion and put them into a ceramic tank, add ceramic balls (the ratio of ball to material is 5:1), continue...

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Abstract

The invention belongs to the technical field of memory alloy processing, and discloses a special memory alloy for a tunnel smoke exhaust fire damper and a preparation method thereof. The special memory alloy is prepared from the following components in percentages by weight: 14.5% of nickel, 35.2% of palladium, 49.6% of titanium and the balance of copper. The preparation process of the special memory alloy comprises material mixing, compaction and SHS synthesis. The preparation cycle of the method disclosed by the invention is just several minutes to dozens of minutes, the phase-transition temperature of the prepared alloy is 230 to 250 DEG C, the completed restorability strain can reach about 4%, and the method is applicable to tunnel fire hazard and fire control fields.

Description

technical field [0001] The invention belongs to the technical field of memory alloy processing, and in particular relates to a special memory alloy for a tunnel smoke exhaust fire damper and a preparation method thereof. Background technique [0002] Shape memory alloy is a new type of functional material with shape memory effect and superelasticity, and is widely used in various fields. NiTi-based shape memory alloys have great development value in application prospects due to their excellent corrosion resistance and memory effect. In order to broaden the application range of NiTi alloys, other elements are usually added to obtain excellent properties. Adding Pd element to the NiTi memory alloy can make the alloy phase transition temperature in the range of 200°C-500°C, and this alloy is suitable for use in high temperature environment. The addition of Cu element narrows the phase transition hysteresis temperature, makes the martensitic phase transition temperature more s...

Claims

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Application Information

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IPC IPC(8): C22C30/02C22C1/04B22F3/23
CPCC22C14/00C22C30/02B22F3/23C22C1/047
Inventor 韩雪峰蒋军成王晓梅仇昱皎黄磊张敦渠
Owner NANJING UNIV OF TECH
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