1) fiber pit
纤维纹孔
2) fiber crack
纤维裂纹
1.
In this investigation,the fracture loads,absorbed energy of fracture,the displacement of application points of the loads,and the lengths of fiber cracks on fracture surfaces are measured in COD,four-point bending (4 PB),charpy V and three-point notch bending (3 NB) specimens of C-Mn steed and weld metal tested at the brittle-ductile transition temperature region.
测量了试样断裂载荷、吸收功、加载点位移和断口上纤维裂纹长度,得到了纤维裂纹扩展速度及其前端标称应力随其长度的变化。
2.
Some specimens fracture after fiber cracks occurre and extend to various lengths and some specimens are unloaded prior to fracture.
对C-Mn钢和焊缝金属的COD,4PB,Charpy V和3NB试样在韧-脆转变温度区产生不同纤维裂纹长度后的断裂进行了卸载试验。
3) Filberflow
纤维流纹
4) porous fiber
多孔纤维
1.
The porous fiber was prepared by blends of CaCO3 and polypropylene, CaCO3 as pore forming agent.
以CaCO3为成孔剂,与聚丙烯相混合制得多孔纤维。
5) micro porous fiber
微孔纤维
1.
The best processing condition of micro porous fiber in acid-processing and alkali weight reduction processing had been studied.
研究了微孔纤维成孔的最佳酸处理工艺条件和微孔纤维碱减量处理工艺。
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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参考词条