1) compressive fracture strength

压缩断裂强度
1.
The high compressive fracture strength is contributed to the fracture propagation along two different directions and the formation of elongated and striated vein patterns for the tested Cu-based bulk amorphous.
5Ni6(at%)具有高的抗压缩断裂强度(σc,f),分别为2212MPa和2184MPa;断裂伸长率(εc,f)分别为2。
2.
5Ni6Al2 exhibits high compressive fracture strength of 2286 MPa,which is ab.

5Ni6Al2的压缩断裂强度达到2286 MPa,比经典的铜基非晶合金Cu47Ti34Zr11Ni8提高约100 MPa,表明微量Al的添加在有效提高玻璃形成能力的同时,强度也略有提高。
2) compressive strength

压缩断裂强度
1.
Their compressive strengths are 2 99.

经力学性能测试,压缩断裂强度分别达到了2997MPa、2881MPa和2850MPa。
4) fracture strength

断裂强度
1.
Fracture strengths of domestic ceramic orthodontic brackets during mesial-distal archwire tipping;
国产陶瓷托槽在近远中倾斜力下断裂强度的实验研究
2.
Fracture strength of domestic ceramic orthodontic brackets during archwire torsion;

国产陶瓷托槽在转矩力作用下断裂强度的研究
3.
Force controlling method for measuring fracture strength and toughness of diamond film;

测定金刚石膜断裂强度及断裂韧性的力控制法研究
5) breaking tenacity

断裂强度
1.
Influence of polypropylene tow fiber on hardness, weight, circumference, sucking resistant index of filter stick and finished filter stick rate was discussed under different breaking tenacity and breaking elongation.
本文介绍了烟用聚丙烯丝束在不同断裂强度、断裂伸长的情况下 ,丝束对其成棒后滤棒之硬度、重量、圆周、吸阻指标及成棒率的影
6) Rupture strength

断裂强度
1.
Preliminary experimental results have given the effect of pretreatment process on the rupture strength of the micro-drills and diamond coating deposition on cemented carbide micro-drills with a diameter of 0.
5mm的细晶粒微型钻头金刚石涂层前预处理工艺对其断裂强度的影响,并尝试使用线形同轴耦合式微波等离子体CVD方法对预处理后的微型钻头进行了金刚石涂层。
2.
Effects on yield strength and elongation ratio, rupture strength and elongation ratio and tearing strength were studied.
对屈服强度及伸长率、断裂强度及伸长率以及撕裂强度等力学性能的研究发现 :在相同长径比及其分布情况下 ,与传统混合法则不同的是屈服强度和伸长率不相等 ,也不是只取决于短纤维的直径 ,而是受直径和长度的共同作用 ;在相同的纤维体积分数时 ,复合材料的断裂强度基本相同 ,而断裂形变和撕裂强度随纤维直径的减小而增
补充资料:断裂强度(breakingstress)
【断裂强度】(breakingstress)将长方形高聚物样品夹于拉力机上以均匀速度拉伸至样品断裂时所须的应力。其值和断裂前的形变受到多种因素的影响。如在高聚物玻璃化温度以下很多度,形变很小时,应力即迅速上升,引起脆性断裂;温度稍为升高时,分子链段在大应力作用下,微有移动,断裂时主要仍是脆性的,但略带韧性;当温度接近玻璃化温度,链段在应力不太大时,能移动,产生强迫高弹形变。此时无定形高聚物链段有取向,有时可能部分结晶,在样品中部出现细颈,断裂
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