1) loss rate of fibre
纤维损失率
3) probability/damaged fibers
概率/损伤纤维
4) fiber failure
纤维失效
1.
The critical matrix strain energy criterion,strain energy release rate criterion and Curtin s statistical failure criterion were used to describe the matrix cracking,interface debonding and fiber failure,and to determine the matrix cracking .
采用Budiansky-Hutchinson-Evans(BHE)剪滞模型分析了复合材料出现损伤时的细观应力场,结合临界基体应变能准则、应变能释放率准则以及Curtin统计模型三种单一失效模型分别描述陶瓷基复合材料基体开裂、界面脱粘以及纤维失效三种损伤机制,确定了基体裂纹间隔、界面脱粘长度和纤维失效体积分数。
6) fiber damage
纤维损伤
1.
Conclusion is made that sparse setting and small transverse spacing of the dents of the new tops are better for card efficiency,consequently higher quality of slive through increasing reinforced carding plus less fiber damage and neps.
达到逐渐加强分梳,减少纤维损伤和棉结,提高棉条质量的目的。
2.
It is proposed that the fiber damage.
一般而言,隔距越大,越有利于减少纤维的损伤,其根本原因在于隔距大时,对棉束梳理长度减少,提出应以落棉和生条中的纤维长度分布来衡量分梳过程中纤维损伤情况,单纯以生条短绒率评价分梳过程中纤维损伤可能是不全面的。
3.
The types and reasons of fiber damage in blowing carding process, the influence of fiber damage on yarn quality, the method to designate potential fiber damage and some technological measures to reduce the fiber damage are discussed in this paper.
清梳过程中纤维损伤的分类和成因,2。
补充资料:矿石损失率
矿石损失率
ore loss rate
kuongsh一sunshll.矿石损失率(ore 10、5 rate)损失工业储量与报销工业储量的百分比其计算式为 Q、一’ 5一六二只100% Q’\1一、·式中万为矿石损失率,丫;Q、为损失的工业储量,t:Q为报销的工业储量,t矿石损失率与矿石回采率的关系为 Q一Q、 万一一二~不二竺一1一}{、 Q式中Q、为采出的工业储最矿石损失率的功用与矿石回采率相同,其特点是从矿石损失方面反映矿产资源回采程度。为便于对矿石损失进行分析,对应崩矿与放矿将矿石损失分为一次矿石损失和_次矿石损失(见矿石损失与贫化),并分别汁算一次(3’、)和二次(s2)矿石损失率。 Q、:、..,Q,_ 5,一万只“,‘,厂;‘一蓄’《‘〔,()一/S:、S:与总的矿石损失率(5)关系为 S一5]一5一5 152式中Q为上业储量.t:Q,为崩下的矿石最,t:Q、,、QS:分别为崩矿和放矿过程中损失的矿石量,t (刘兴国)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条