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1)  sinter [英]['sintə]  [美]['sɪntɚ]
烧结体
1.
For preparing the diffusing self-lubricating sinter with Sweat-Gland Pore Structure at high temperature,a new model for analyzing the pore structure, distribution of pore size,porosity,and the pore shape had been developed.
为了制备出高温扩散自润滑要求的汗腺式微孔烧结体,对烧结体的孔结构、孔径分布、孔隙度和形状进行了模型分析,建立了汗腺式烧结体毛细管束结构模型。
2.
Hardness is one of the main characters of ultrahard material sinters.
硬度是衡量超硬材料烧结体的主要特性之一。
3.
For developing new self-lubricating bearings,a new cermet sinter with micro-porous of both uniform and connecting each other structure was developed by adding pore-forming materials and inserting dispersal particles into the TiC/Fe-Cr-W-Mo-V matrix material.
基于扩散自润滑轴承对金属陶瓷烧结体的孔隙结构、孔隙度和力学性能要求,以TiC/Fe-Cr-W-Mo-V混合粉为基料,加入一定量的造孔剂和惰性弥散质点,利用真空烧结法研制出一种孔隙分布均匀,且互相连通成网络状的微细孔结构的金属陶瓷烧结体,并通过显微硬度计和液压式压力试验机分析了其力学性能,以扫描电子显微镜分析了材料的显微结构、孔径结构。
2)  sintered body
烧结体
1.
Material properties improvement of molybdenum powder sintered body by forging process
锻造工艺对钼粉烧结体的材料性能的改善
2.
The effects of dry pressing with cold isostatic pressing under different pressure on the structure and properties of the green and sintered body of ceramics was studied.
本文通过研究在不同压力下进行干压结合冷等静压成形过程对陶瓷素坯体和烧结体的结构、性能的影响,得出了最佳的成形工艺条件,即干压压力为20T、冷等静压压力为200MPa。
3.
With increasing hydrogen content, the density of the TC4 titanium sintered body gradually increases.
结果表明:随着置氢量的增加,置氢TC4合金粉末模压成形烧结体致密度基本呈现逐渐增高趋势,模压成形烧结体由魏氏体组织向双态的过渡状组织转化,模压成形烧结体退火后组织较退火前发生了明显的破碎和细化;烧结体退火后压缩屈服强度基本呈逐渐增大趋势,且烧结体真空退火后氢含量可达到安全状态,其中,置氢量0。
3)  solid sintering
整体烧结
1.
Study on the solid sintering of CBN-AlN composites;
AlN基CBN整体烧结体的研究
4)  sintered magnet
烧结磁体
1.
Preparation and properties of bulk nanocrystalline SmCo_7 sintered magnet with 1:7 structure;
SmCo_7块状纳米晶烧结磁体的制备和性能
2.
Study on bulk nanocrystalline Sm_2Co_(17) sintered magnet
块状纳米晶Sm_2Co_(17)烧结磁体的研究
3.
The properties and advantages of bonded permanent magnets and sintered magnets made by metal injection moulding are reviewed.
概括了金属粉末注射成形技术(MIM)制造粘结永磁和烧结磁体的特点和优点。
5)  fired body
烧结坯体
1.
Effect of large-mixed fly ash on property of fired body and processes;
高掺量粉煤灰对烧结坯体性能及工艺影响的试验研究
6)  light sintered body
轻烧结体
1.
Hydrogen adsorption capability of nano-nickel light sintered body;
纳米镍轻烧结体的氢吸附性能研究
补充资料:羟基磷灰石烧结体
分子式:
CAS号:

性质:是人工骨、人工牙新材料。它具有与构成人体硬组织骨、牙的主要无机组成相似的成分。可用Ca(PO4)2和CaCO3于1100~1200℃连续注入高压水蒸气反应成合成物粉末,再经NH4Cl水溶液水洗后,干燥成型,在1340~1400℃烧结3~4h,升温速度为100℃/h,即可制成较致密的陶瓷烧结体。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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