super alloy

  • super alloy
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    超耐热不锈钢

纠错 数据更新时间:2026-04-19 15:38:39
1、

The experimental results showed that the microstructure of Cu 26.6wt% Mn alloy changed from cellular to dendrite, super fine cellular and segregation free solid with the increase of growth rate;

实验结果表明,重熔区组织较基体组织大大细化;随着生长速度的增大,Cu26.6wt%Mn合金的组织由低速胞晶向枝晶、高速胞晶及完全无偏析固溶体转变。

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2、

Ni ( atomic fraction, % ) super elastic alloy were investigated by DSC and tensile test.

原子分数, % ) 超弹性合金相变和形变特性的影响.

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3、

Super plastic deformation of LY12CZ aluminum alloy was tested on tensile machine with hung hammer and the law of strain rate change was studied.

在挂锤式拉伸试验机上对LY12CZ铝合金进行了超塑性试验,研究了其应变速率变化规律。

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4、

Research on the Nb-Ni-Ti ternary phase diagram, which originated in the development of Ni-base super alloy, began with research of phase equilibria of the Ni-rich corner.

Nb-Ni-Ti三元系相图的研究起源于Ni基高温合金材料的开发,最先是从富Ni角的相平衡研究开始的。

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5、

Effect of thermochemical processing with hydrogen on Microstructure of super-α 2 alloy

加氢热化学处理对Super-α2合金组织的影响

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6、

Slip deformation and fracture of directionally solidified DZ-38 g super alloy

定向凝固合金DZ-38G的滑移形变与断裂

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7、

A brief description is made of the properties of super magnetostrictive materials, especially the Tb Dy Fe alloy system. The authors also compare the materials with other magnetostrictive materials.

以Tb Dy Fe合金系为主,对稀土超磁致伸缩材料的基本性能作了简要的介绍,并与其他磁、电致伸缩材料进行了对比。

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8、

Influence of holding time on thermal mechanical fatigue behavior of GH 4133 super alloy

保持时间对涡轮盘材料GH4133合金热机械疲劳性能的影响

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9、

Hard alloy, refractory metal, super hard alloy ( diamond ) products, etc.

硬质合金 、 熔金属 、 硬合金 ( 刚石 ) 品等.

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10、

With the rapid development of investment casting of titanium alloys, some stainless steel& super alloy castings and machined components replaced by titanium alloy castings for the purpose of reducing the weight of aero-engines and improving their properties.

随着钛合金熔模精密铸造近净形(Net-shape)制造技术的发展,钛合金铸件替代了一些不锈钢及高温合金铸件及机械加工件,以满足飞机发动机减轻重量的要求,提高飞机发动机的性能。

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11、

The studying result points out that through mechanical alloying method, with a certain composition of Fe C Ti alloy, the iron base super saturated dissolved solid can be obtained. Through the vacuum heat treatment, the spreaded strengthened iron base alloy is then prepared.

结果指出,一定成分的Fe-C-Ti合金可以通过机械合金化法得到铁基过饱和固溶体,将其进行真空热处理,可制得TiC弥散强化的铁基合金;

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