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耐冲击(冲击韧性) impact resistance英语短句 例句大全

时间:2020-03-14 01:19:18

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耐冲击(冲击韧性) impact resistance英语短句 例句大全

耐冲击(冲击韧性),impact resistance

1)impact resistance耐冲击(冲击韧性)

2)toughness index冲击韧性

1.The relationship betweentoughness index of synthetic diamond and crystal quality was studied by measuring withtoughness index apparatus and diashape system.采用冲击韧性仪和Diashape系统对不同品级的金刚石样品进行冲击韧性和晶体品质测定,探讨金刚石冲击韧性与品质参数之间的相关性。

2.Now, the examination oftoughness index for synthetic diamond has already been carried out in mach enterprises of China, However, there is still a big difference in quality performance examination of synthetic diamond in comparison with international advanced level .目前 ,我国金刚石冲击韧性的检测已在许多企业进行 ,但是人造金刚石的质量和性能以及检测方法和标准与国际先进水平相比 ,仍存在差距 ,为了适应国际市场的需求 ,提高金刚石的产品质量 ,并尽快与国际先进标准接轨 ,研究并制定人造金刚石的冲击韧性检测标准是非常重要

3.The relationship betweentoughness index of synthetic diamond and crystal quality was studied by measuring withtoughness index apparatus and diashape system.采用冲击韧性仪和 Diashape 系统对不同品级的金刚石样品进行冲击韧性和晶体品质测定,探讨金刚石冲击韧性与品质参数之间的相关性。

英文短句/例句

1.Charpy V-notch toughness夏比v型缺口冲击韧性

2.Method of testing in toughness of woodGB/T1940-1991木材冲击韧性试验方法

3.Test method for impact toughness of high performance ceramicsGB/T14389-1993工程陶瓷冲击韧性试验方法

4.Test method for impact toughness of ceramic floor tilesGB/T2584-1981陶瓷地砖冲击韧性试验方法

5.Influence of Metallurgy Quality on Impact Toughness of Low Temperature Cast Steel;冶金质量对低温铸钢冲击韧性的影响

6.Research on Improving the Low Temperature Impact Toughness of 09CuPCrNi-A H-beam;提高09CuPCrNi-A耐候H型钢低温冲击韧性研究

7.Study on Improving the Low-temperature Impact Toughness of 3.5% Nickel Heavy Plate提高3.5Ni厚钢板低温冲击韧性的研究

8.Reason Analysis on Low The Impact Toughness of L450 Pipeline Steel管线钢L450冲击韧性低原因分析

9.Analysis of Factors Influencing H13 Mandrel Steel"s Impact Toughness影响H13芯棒钢冲击韧性的因素分析

10.Technological Test for Improving the Impact Toughness of Quenched and Tempered Steel Forgings提高调质钢锻件冲击韧性的工艺试验

11.Study on revision model of the wood toughness with moisture content木材冲击韧性含水率修正模型的研究

12.Analysis on Reasons of Low Impact Toughness at -40℃ of Q345E Big Size H-beamQ345E大H型钢-40℃冲击韧性偏低原因分析

13.Analysis of the relationship between impact toughness and fracture toughness for rail steel低温下铁道钢轨钢材冲击韧性与断裂韧性的关系分析

14.Microstructural Stability and Its Influence on Impact Energy in 1Cr21Ni5Ti Duplex Stainless Steel1Cr21Ni5Ti双相不锈钢组织稳定性及对冲击韧性的影响

15.Meanwhile the optimal welding parameter which was suitable for welding line impact toughness was gained by analysis on the test result of impact toughness and microstructure.通过对冲击韧性的测试结果与微观组织的分析,确定出使焊缝冲击韧性最佳的焊接工艺参数。

16.Steel bonded tungsten carbides-Determination of impact toughnessGB/T10419-1989碳化钨钢结硬质合金冲击韧性的测定

17.Test method of impact toughness of cemented carbides at room temperatureGB/T1817-1995硬质合金常温冲击韧性试验方法

18.Effects of Ni Content and Heat Treatment on Impact Toughness of QT400-18L at Low Temperature;含镍量及热处理对QT400-18L低温冲击韧性的影响

相关短句/例句

toughness index冲击韧性

1.The relationship betweentoughness index of synthetic diamond and crystal quality was studied by measuring withtoughness index apparatus and diashape system.采用冲击韧性仪和Diashape系统对不同品级的金刚石样品进行冲击韧性和晶体品质测定,探讨金刚石冲击韧性与品质参数之间的相关性。

2.Now, the examination oftoughness index for synthetic diamond has already been carried out in mach enterprises of China, However, there is still a big difference in quality performance examination of synthetic diamond in comparison with international advanced level .目前 ,我国金刚石冲击韧性的检测已在许多企业进行 ,但是人造金刚石的质量和性能以及检测方法和标准与国际先进水平相比 ,仍存在差距 ,为了适应国际市场的需求 ,提高金刚石的产品质量 ,并尽快与国际先进标准接轨 ,研究并制定人造金刚石的冲击韧性检测标准是非常重要

3.The relationship betweentoughness index of synthetic diamond and crystal quality was studied by measuring withtoughness index apparatus and diashape system.采用冲击韧性仪和 Diashape 系统对不同品级的金刚石样品进行冲击韧性和晶体品质测定,探讨金刚石冲击韧性与品质参数之间的相关性。

3)impact toughness冲击韧性

1.Study of theimpact toughness of cemented carbide-steel 45 wear resisting composite;硬质合金-45钢双金属复合耐磨材料冲击韧性研究

2.Factors influencing the measuring ofimpact toughness of PDC by dropping objects;落锤法测定PDC抗冲击韧性的影响因素

3.Impact Toughness and Micro-Sub-Structure of a New Stainless Bearing Steel 6Cr14Mo;新型不锈轴承钢6Cr14Mo冲击韧性与显微亚结构

4)impact strength冲击韧性

1.Next, measured theimpact strength vaules(ak ) of the titanium alloy in different hydrogen-content, and drawn the relation curve between theimpact strength and the hydrogen-content.继而 ,测出了该种钛合金的冲击韧性值 (aK)与氢含量的关系曲线。

2.It was found that superfine SBR powder can induce PP nucleation and improveimpact strength of PP/ SBR powder composite.表明 :超细SBR胶粉对PP的结晶成核有诱导作用 ,可以作为PP的成核剂 ,提高了PP的冲击韧性。

3.The results show that theimpact strength of PP/HDPE/SBS ternary blends not only related to the content of SBS but also the content of HDPE.研究结果表明,PP三元共混物的冲击韧性除与SBS的含量密切相关外,还与HDPE的含量有关,HDPE起到了与SBS相似的增韧作用。

5)impact properties冲击性能

1.Analysis of relationship between interstitial content andimpact properties of a type of near α titanium alloy;一种近α钛合金间隙元素含量和冲击性能关系分析

2.Effect of fillers onimpact properties of high molecular weight polyethylene;填料对超高分子量聚乙烯冲击性能的影响

3.Effect of δ-ferrite onimpact properties of 12%Cr rotor steel for ultra-supercritical steam conditions;δ铁素体对12%Cr超超临界转子钢冲击性能的影响

6)impact resistance耐冲击性

1.Based on the graphical user interfaces in MATLAB,the artificial neural network was used to predict the hardness,adhesion andimpact resistance of the polyacrylate emulsion.在MATLAB中的图形用户界面下,用人工神经网络(ANN)对聚丙烯酸酯乳液的硬度、附着力和耐冲击性3种性能进行了预测。

2.It was showed hyperbranched polyester was more than commercial resinous polyols inimpact resistance and transparency of matt topcoating film,and its extinction was worse.以超支化聚合物作为基料与脂肪酸等单体合成了超支化树脂,并利用红外光谱,GPC等仪器对超支化树脂进行表征;同时研究了超支化树脂在聚氨酯哑光面漆中的应用,研究表明:实验所制备的超支化树脂虽然消光效果较差,但是采用超支化树脂部分代替商业哑光树脂可以改善漆膜的透明性及耐冲击性。

3.The test method standard of filmimpact resistance and the problem had to be paid attention to when implementing were introduced.介绍了漆膜耐冲击性的检测方法标准及其实施中应注意的问题。

延伸阅读

冲击韧性分子式:CAS号:性质:表征材料抗冲击性的物理量。简支梁和悬臂梁冲击试验中,在冲击负荷作用下试样破坏时吸收的能量与其截面积之比(kJ/m2)。试样可以无缺口或有缺口;有缺口试样可降低破坏时所需之能量,称缺口冲击强度,截面积是缺口底部的截面积。该指标是材料的一项重要性能,有时也称抗冲强度或冲击韧性。另外也还有许多其他的抗冲击的试验方法以测定专指的一些抗冲击性能。例如:落锤冲击、落镖冲击等。冲击强度随升温而增大,尤其是在玻璃化温度附近。结晶时,特别是生成大尺寸的球晶结构往往使冲击强度降低。加入橡胶类聚合物等增韧剂则可提高冲击强度。

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