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3.WCu electrode materials for electric spark machining were studied in this paper, whichwere made by the process including cold isostatic pressing(CIP)→sintering→infil→trating hot isostatic pressing(HIP).
采用冷等静(CIP)成型→烧结→熔渗→热等静(HIP)处理工艺制取高密度、高性能电火花加工用WCu电极材料。收藏指正
4.Effects of the hot isostatic pressing (HIP) treatment on the segregation of the main elements in alloy K17 are studied.
本文研究了热等静(HIP)处理对K17合金主要含金元素偏析的影响.收藏指正
5.It is made from ALUMINA treated with special way, formed with isostatic pressing and fired in a special furnace.
陶瓷辊棒以氧化铝作为主要原料加以特殊处理,经先进的成型工艺和特别设计的高温窑炉??烧,然后再精密加工而成。收藏指正
6.HA(ZrO2)-316L stainless steel fibre asymmetrical functionally gradient biomaterial(FGM) was successfully fabricated under 1100℃ by low pressure hot isostatic pressing(HIP) technique.
用低热等静方法在1100℃下制备了HA(ZrO2)-316L不锈钢纤维非对称FGM,其中316L不锈钢纤维含量按体积比20%→15%→10%→5%呈非对称梯度变化.收藏指正
7.In this paper,an experimental investigation on fabrication processes of continuous SiC fibre-reinforcedXi-15-3 alloy matrix composite is briefly introduced. Consolidation of the composite fabricated by foil-fi-bre-foil processing is achieved by vacuum hot pressing or hot isostatic pressing.
本文初步探索了连续碳化硅纤维增强Ti-15-3合金基复合材料的复合工艺,采用真空热工艺和热等静工艺对钛箔-SiC纤维-钛箔进行复合固结处理。收藏指正
8.The Fe-3.0Cr-3.0Mo-0.5Cu-0.5C-33TiC steel bonded titanium carbide was prepared by powder metallurgy and was treated by hot isostatic pressing(HIP) technology. The microstructure and mechanical properties of material was investigated.
采用粉末冶金方法制备了Fe-3.0Cr-3.0Mo-0.5Cu-0.5C-33TiC钢结硬质合金,并对其进行了热等静处理,对热等静前、后材料的组织和性能进行了分析。收藏指正
9.Abstract: In this paper a new technology for upperpunch in ceramic tile die with isostatic pressing is introduced,static-pressure area ratio and bonding area ratio are changed into independent technological parameters and can be separately designed.
文摘:本文介绍了等静瓷砖模具中上模芯的一种新型工艺结构,它使静比和粘贴比成为两个互相独立的参数,可以分开进行设计。收藏指正
10.The Ti-48Al-2Cr-2Nb(atomic fraction,%) samples were cast in metal mold in gravitational field and centrifugal field respectively and the hot isostatic pressing(HIP) treatment was done at 1 270℃/173MPa/4h. The distribution of elements in TiAl-based alloy samples was investigated.
利用重力和离心铸造方法,在金属型中浇注了目标成分为Ti-48Al-2Cr-2Nb(原子分数,%)的TiAl基合金,随后对其进行热等静(HIP)处理(1270℃/173MPa/4h),研究了合金中各元素的分布均匀性。收藏指正
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