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最大抗拉强度
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  the maximum tensile strength
     The maximum tensile strength at 55℃ is≥0.6MPa and the maximum elongation at -45℃ is≥40%.
     高温(+55℃)最大抗拉强度≥0.6MPa,低温(-45℃)最大伸长率≥40%;
     The fracture area through SCC(A_(SCC)), the maximum tensile strength under SCC(σ_(SCC)) and the corresponding elongation (ε_(SCC)) were used as parameters for evaluating the sensitivity of SCC.
     采用应力腐蚀开裂面积A_(SCC)、应力腐蚀最大抗拉强度σ_(SCC)及其所对应的应变ε_(SCC)作为衡量应力腐蚀开裂敏感性的参数。
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     The experimentes indicated that the bonding agents BAG-7was greatly able to enhance the mechanical properties of the propellant at various temperatures . The maximum tensile strength σm was increased from 0.7MP& to 1.0MPa,the tensile elongation at the maximum stress εm was increased from 35% to 99% at 25℃;
     其中BAG-7能使推进剂25℃下的最大抗拉强度σ_m由原来的0.7MPa提高到1.0MPa,最大延伸率ε_m由原来的35%提高到99%;
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     The maximum tensile strength of the nanocrystalline copper reached to 590 MPa,about 4.5 times of the one of the coarse crystalline copper. The maximum tensile elongation of the nanocrystalline copper reached 10%.
     制备的纳米晶铜最大抗拉强度高达590 MPa,是普通粗晶铜的4.5倍,纳米晶铜的最大伸长率为10%。
短句来源
     Tensile stress is decreased as the increased temperature. The maximum tensile strength reaches 220MPa at the strain rate of 10-2s-1 at 100℃. The higher strain rate leads to increase of stress .
     温度越高,拉伸应力越低,在100℃,应变速率为10-2s-1时最大抗拉强度可达218MPa,在高温(300℃~400℃)时,随应变速率升高,拉伸应力逐渐增大。
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  “最大抗拉强度”译为未确定词的双语例句
     and its Yong's modulus and tensile strength are 177.26 MPa and 32.25 MPa,respectively.
     拉伸弹性模量为177.26MPa,最大抗拉强度为32.25MPa;
短句来源
     ③Comparison of maximal tensile strength and rigidity at different time point between the two groups after reconstruction: The maximal tensile strength of the reconstruction group after month 0.5, 1, 1,5, 3, 6 exhibited 24.0%,11.3%,24.5%,60.0%,130.5% of that of the normal control group reconstruction at time zero, respectively.
     ③术后不同时间点两组最大抗拉强度和刚度的比较:术后0.5,1,1.5,3,6个月,重建前交叉韧带组移植物总体最大抗拉强度分别是正常对照组重建后即刻的24.0%,11.3%,24.5%,60.0%,130.5%;
短句来源
     At time zero, the total maximal tensile strength of femur-graft-tibia complex was(301.92±15.04)N and the rigidity was(31.35±1.97)N.
     重建后即刻移植物的总体最大抗拉强度为(301.92±15.04)N,刚度为(31.35±1.97)N,所有拉断点均在骨隧道内编织线处。
短句来源
     For Ni-Cr alloy, the UTS of casting wire group and commercially welding wire group was respectively (558.14±46.75)MPa and (582.32±35.43)MPa; the UBS was respectively (1084.75±46.02)MPa and (1078.29±36.25)MPa. There was no significant difference between the two groups (P>0.05).
     镍铬合金自制焊丝组和商品焊丝组的最大抗拉强度分别为(558.14±46.75)MPa和(582.32±35.43)MPa,最大抗弯强度分别为(1084.75±46.02)MPa和(1078.29±36.25)MPa,2组焊件的最大抗拉及抗弯强度均无显著差异(P>0.05)。
短句来源
     ①The results of maximal tensile strength and rigidity of the control group: The maximal tensile strength of flexor tendon was(564.15±36.18)N. The rigidity of flexor tendon was(59.89±4.28)N/mm.
     ①正常对照组最大抗拉强度和刚度的测试结果:屈肌腱的最大抗拉强度为(564.15±36.18)N,刚度为(59.89±4.28)N/mm;
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  相似匹配句对
     The Biggest Animal of All
     的动物
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     the maximum fight altitude;
     飞行高度 ;
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     and when pH of film-forming solution is 7,the tensile strength of film appeares maximum.
     成膜液的pH在7左右时,膜的抗拉强度;
短句来源
     The solution time has the largest effect on the tensile properties and elongation of Al-12Si eutectic alloys.
     Al-12Si共晶合金抗拉强度及伸长率变化幅度;
短句来源
     and its Yong's modulus and tensile strength are 177.26 MPa and 32.25 MPa,respectively.
     拉伸弹性模量为177.26MPa,抗拉强度为32.25MPa;
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  the maximum tensile strength
These two experiments had an aim to give insights into the maximum tensile strength and anti-drawing strength of the root systems.
      
Results indicated that the maximum tensile strength of root system is in an exponential relation with the diameter of root system while the maximum tensile strength is positively correlative with the diameter of root system.
      
In particular, 3 wt% of UHMWPE powder surface precoated with polyMMA prepared with 0.75 wt% of BPO and 300 ppm of hydroquinone impregnated composite PMMA bone cement revealed the maximum tensile strength.
      
10.0 nylon sutures from three different manufacturers were compared on the basis of the scanning electron microscopic aspect, the maximum tensile strength of the thread and the maximum tensile strength of the knot (single throw).
      
The maximum tensile strength of the thread varied considerably between the three brands (from 31.3 gr, S.D.
      
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This paper deals with an experimental investigation on some factors influencing the uniaxial tensile strength of the cohesive compacted fill. These factors are the periodical loading, the initial density, the initial water content and the loading rate.1. It is found that there is no influence of the periodical loading on the uniaxial tensile strength, and no "fatigue limit" occurred. However, the relation between the stress and the strain is nonlinear. The characteristics of the strain are discussed.2. The water...

This paper deals with an experimental investigation on some factors influencing the uniaxial tensile strength of the cohesive compacted fill. These factors are the periodical loading, the initial density, the initial water content and the loading rate.1. It is found that there is no influence of the periodical loading on the uniaxial tensile strength, and no "fatigue limit" occurred. However, the relation between the stress and the strain is nonlinear. The characteristics of the strain are discussed.2. The water content and the dry density, have some significant effect on the uniaxial tensile strength. The tensile strength reaches its maximum value while the water content less than its optimum value.3. Different loading rate gives different uniaxial tensile strength.

本文就粘性填土单轴抗拉强度的几个影响因素:循环加卸荷载、干容重与含水量、加荷速率进行了试验研究。1.试验发现循环加卸荷载对填土单轴抗拉强度值没有什么影响,不会出现“疲劳极限”。但却明显地表现出非线性的应力-应变关系。破坏的应变值较大。文中还叙述了循环加卸荷载作用下的应变特点。2.含水量与干容重对单轴抗拉强度的影响显著。试验得出,在略小于最优含水量时出现最大抗拉强度值。3.加荷速率不同,单轴抗拉强度值也不同。

A series of latest bonding agents high efficient for HMX/HTPB solid composite propellant is developed .The experimentes indicated that the bonding agents BAG-7was greatly able to enhance the mechanical properties of the propellant at various temperatures .The maximum tensile strength σm was increased from 0.7MP& to 1.0MPa,the tensile elongation at the maximum stress εm was increased from 35% to 99% at 25℃; from 25% to 95% at -40℃; from 30% to 97% at 70℃.Other several bonding agents BAG-8, BAG-10 and BAG-12 can...

A series of latest bonding agents high efficient for HMX/HTPB solid composite propellant is developed .The experimentes indicated that the bonding agents BAG-7was greatly able to enhance the mechanical properties of the propellant at various temperatures .The maximum tensile strength σm was increased from 0.7MP& to 1.0MPa,the tensile elongation at the maximum stress εm was increased from 35% to 99% at 25℃; from 25% to 95% at -40℃; from 30% to 97% at 70℃.Other several bonding agents BAG-8, BAG-10 and BAG-12 can enha-nace the mechanical properties of the propellant as much as BAG-7.The new bonding agents were better than triethanolamine (TEA) and dihydroxyethyldimethylh- ydantoin(DHE).

本文介绍了硝胺/丁羟复合推进剂的高效偶联剂——BAG系列偶联剂.其中BAG-7能使推进剂25℃下的最大抗拉强度σ_m由原来的0.7MPa提高到1.0MPa,最大延伸率ε_m由原来的35%提高到99%;-40℃下,ε_m由25%,提高到97%;70℃下,ε_m由原来的30%提高到97%.这些偶联剂BAG-8、BAG-10、BAG-12等偶联剂都能使消胺/丁羟推进剂的力学性能取得突破性进展,且国内外未见报导、其功效优于较好的硝胺偶联剂TEA、DHE等.

The effects of strain rate and polarization potential on the sensitivity of SCC of aluminium alloy LC4 were investigated with slow strain rate tensile tests. The fracture area through SCC(A_(SCC)), the maximum tensile strength under SCC(σ_(SCC)) and the corresponding elongation (ε_(SCC)) were used as parameters for evaluating the sensitivity of SCC. The results indicated that the sensitivity of SCC increased with the decrease of strain rate, and A_(SCC) was more sensitive than σ_(SCC). Anodic polarization reduced...

The effects of strain rate and polarization potential on the sensitivity of SCC of aluminium alloy LC4 were investigated with slow strain rate tensile tests. The fracture area through SCC(A_(SCC)), the maximum tensile strength under SCC(σ_(SCC)) and the corresponding elongation (ε_(SCC)) were used as parameters for evaluating the sensitivity of SCC. The results indicated that the sensitivity of SCC increased with the decrease of strain rate, and A_(SCC) was more sensitive than σ_(SCC). Anodic polarization reduced A_(SCC); weak cathodic polarization increased σ_(SCC) slightly, and strong cathodic polarization decreased σ_(SCC). It showed that both mechanisms of hydrogen embrittlement and anodic dissolution were operative in this system. The fractographs were similar for the specimens fractured under the conditions of open circuit, cathodic polarization or after hydrogen charging, but quite different for those under anodie polarization. It showed that hydrogen embrittlement played a predominant role for this system under the comdition of open circuit.

用Ⅱ型试样以慢拉伸方法研究了拉伸速度和极化电位对LC4铝合金应力腐蚀开裂行为的影响。采用应力腐蚀开裂面积A_(SCC)、应力腐蚀最大抗拉强度σ_(SCC)及其所对应的应变ε_(SCC)作为衡量应力腐蚀开裂敏感性的参数。结果表明,随拉伸速度降低,应力腐蚀开裂敏感性升高,但用σ_(SCC)来表现应力腐蚀开裂的敏感性不如A_(SCC)明显。阳极极化使抗拉强度下降;阴极极化时。若极化电位较小,则抗拉强度略有升高,强阴极极化抗拉强度则又会降低,说明应力腐蚀包含氢脆和阳极溶解两种机制。断口形貌观察发现,开路、阴极极化和充氢时的断口形貌相同,阳极极化则与其不同,表明开路时的应力腐蚀开裂是以氢脆为主的。

 
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