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1)  Micron wood fiber
微米木纤维
1.
The biomedical elasticity micron wood fiber light density materials(BEWM for short) is introduced.
介绍了生物弹性轻软微米木纤维材料(简称BEWM)。
2.
This paper studied the special mould pressing equipment of forming micron wood fiber mould product, explained the experimental method and introduced the primary mould technology.
研究微米木纤维模压制品形成的专用模压设备,阐述试验方法,介绍初步的模压工艺。
3.
Micron wood fiber molded product is a new kind of high strength man-made wooden product made by wood-cell longitudinal breaking and mold pressing.
微米木纤维模压制品是通过细胞纵向劈裂而成的微米木纤维模压成型的新型高强度人造木基材料制品。
2)  micron wood-fiber molded product
微米木纤维模压制品
1.
A micron wood-fiber molded product is a new kind of high-strength man-made wooden product fabricated by wood-cell longitudinal breaking and mould pressing.
微米木纤维模压制品是通过细胞纵向劈裂而成的微米木纤维模压成型的新型高强度人造木基材料制品,以人造木基材料为主要材料的各种握钉力的计算均以载荷沿轴向分布的积分方程为基础,本文详细推导了其握钉结合部载荷分布系数的计算方法,为精确计算各种微米木纤维模压制品握钉力强度提供了理论依据。
3)  Micron flake wood fiber
微米级长薄片木纤维
4)  carbonized micro-length wood fiber(CMLWF)
碳化微米长木纤维
1.
In this paper,utilizing carbonized micro-length wood fiber(CMLWF)as filter material of DPF is presented and a corresponding mathematic model is built for the first time.
提出将碳化微米长木纤维作为微粒捕集器的过滤体材料,并建立相应的数学模型,通过理论和试验对其排气压降梯度进行研究。
5)  micro/nanofibers
微/纳米纤维
1.
PVP/Ba(CH3COO)2 composite micro/nanofibers were prepared by electrospinning with barium acetate and PVP as starting materials.
以聚乙烯吡咯烷酮(PVP)为络合剂,与醋酸钡[Ba(CH3COO)2]反应制得前驱体溶液;以36%乙酸为钡盐的相容剂,和乙醇组成了混合溶剂体系,用静电纺丝法制备了PVP/Ba(CH3COO)2纤维,经煅烧得到BaO微/纳米纤维。
2.
PVP/Mn(CH_3COO)_2 composite micro/nanofibers were prepared by electrospinning technique with manganese acetate and PVP as starting materials.
以聚乙烯吡咯烷酮(PVP)为络合剂与醋酸锰Mn(CH3COO)2]反应制得前驱体溶液,用静电纺丝法制备了PVP/Mn(CH3COO)2纤维,经煅烧得到具有微孔结构的Mn2O3微/纳米纤维。
6)  Nano-micron Fibers
纳微米纤维
1.
By introducing ZrO2 micron powder into the thermit and through thermit combustion, liquid-liquid separation of metal/ceramics and crystal in-situ growth of eutectic reaction, self-toughening composite ceramics with in-situ growing nano-micron fibers were fabricated.
通过将ZrO2微米粉末引入铝热剂中,借助铝热燃烧、陶瓷/金属液相分离及共晶反应中的晶体原位生长,制备出原位生长纳微米纤维自增韧Al2O3/ZrO2陶瓷复合材料。
补充资料:碳(石墨)纤维增强体(见碳纤维、石墨纤维)


碳(石墨)纤维增强体(见碳纤维、石墨纤维)
earbon(graPhite)fibrereinforeements

,、、里z耽维增强体earbon(graphi现inforcements用于复合材料中承受负荷,田的磷纤始知五史纤俯亡e)fibre起增强作
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