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1)  copper-based
铜基
1.
Research progress of self-lubricating copper-based composite materials by electrodeposition;
电沉积铜基自润滑复合材料的研究进展
2.
Wet friction properties of copper-based material via powder metallurgy;
铜基粉末冶金摩擦材料的湿式摩擦性能
3.
The effects of alloy elements(Zn、Ni) on the properties of copper-based brake materials were investigated.
通过对比研究了合金元素锌和镍对铜基粉末冶金刹车材料性能的影响规律。
2)  copper substrate
铜基
1.
Preliminary investigation of electroless tin plating on copper substrate;
铜基上化学镀锡新工艺初探
2.
Determination of lead in tin deposit on copper substrate
铜基材料镀锡层中铅的测定
3.
It can be used for electroless tin plating on copper substrate in electronic element, surface mounting device and PCB.
结果表明 :该工艺镀液稳定 ,可用于电子元器件以及表面安装器件、印制电路板等铜基上化学镀锡。
3)  copper based
铜基
1.
The paper studies on the prescription and preparationcondition of the copper based shift reaction catalyst detailedly from nantokite and mangante as the resource.
以铜盐、锰盐为原料,详细研究了铜基低水碳比型CO高温变换催化剂的配方及制备工艺条件。
4)  copper matrix
铜基
1.
To improve the intensity and electrical conductivity of copper matrix composite,nano ZrO_2 stabilized with 3mol% Y_2O_3 was selected as the reinforcement,which had good mechanical and thermal physical performance.
为了提高铜基复合材料的强度和电导率,采用具有良好机械性能和热物理性能的ZrO2(3%(摩尔分数)Y2O3)作为增强相,原位化学法制备了ZrO2纳米颗粒增强铜基复合材料,其主要制备工艺包括前驱复合粉体CuO、ZrO2的制备,经氢气还原得到ZrO2/Cu复合粉,再经过压制,真空烧结,复压等工序制得最后的样品。
2.
To improve the intensity and conductivity of the copper matrix composite, ZrO_2(3Y) as the reinforcement because of the good mechanical and physical performance, ZrO_2/Cu nanocomposite was fabricated by in-situ chemical routine.
为了提高铜基复合材料的强度和电导率,采用具有良好机械性能和热物理性能的ZrO_2(3mol%Y_2O_3)作为增强相,原位化学法制备了ZrO_2纳米颗粒增强铜基复合材料,其主要制备工艺包括前驱复合粉体CuO,ZrO_2的制备,经氢气还原得到ZrO_2/Cu复合粉,再经过压制,真空烧结,复压等工序制得最后的样品。
5)  Cu-matrix
铜基
1.
The interfacial combination of Gr and Cu-matrix were systematically studied.
本文选用镀铜、镀镍石墨粉,采用粉末冶金工艺制备出铜基石墨自润滑材料。
6)  bronze matrix
铜基胎体
1.
Study on effect of some metal elements on bronze matrix for porous wheel during sintering;
Al、Mn等合金元素在烧结过程中对多孔砂轮铜基胎体的作用研究
补充资料:快凝铜基合金
分子式:
CAS号:

性质:快速凝固形成的铜基合金。有以下几类:(1)铜中添加2r,Cr,Mg元素,通过快速凝固提高固溶度,以及随后的氧化物沉淀强化,使合金具有很高的强度、韧性及良好的热稳定性;(2)快凝Cu-Cr合金,具有很高的高温强度,抗氧化性及良好的导电性;(3)Fe-Al青铜合金,经激光表面熔化处理后,其表面具有很好的耐蚀性;(4)中温铜基钎焊料,以熔体急冷法制得的Cu-P-Sn-Ni合金具有良好的自溶性质与韧性,它与银基钎焊料相比,其流动性及浸润性优于常见的BCuP-5,甚至BAg-1钎焊料,可取代含银的钎焊料。

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