- alternate strength交变荷重强度;
- alternate bending strength交变弯曲强度;
- age strength relation强度期龄关系;
- actual strength实际强度;实力;
- bursting strength[化] 爆破强度; 崩裂强度; 崩裂力; 耐破度;
- brute strength野蛮的力量
- breaking strength断裂强度;破坏强度;破碎强度;抗断强度;
- boost crop yield提高作物产量
- bond yield债券投资收益率;债券收益率;债券实际收益率;
- bond strength握裹强度;结合强度;黏结强度;砌合强度;
- bending strength抗挠强度,抗弯强度;
- crop yield农作物产量,作物产量;
- Convenience yield方便产量
- flexural strength挠曲强度;
- gross yield(除税前的)毛收益率;
- high yield高产率,丰产,更大收获;
- in strength大量地;
- impact strength冲击强度;耐冲击强度;
- low yield低产量;
- muscle strength肌力;
- 双语例句
The V - N microalloy steel with yield strength of 550 MPa is produced by EAF - CSP route.
目前,在EAF-CSP 流程中通过V -N 微合金化技术可成功生产屈服强度为550MPa的高强度低合金钢.
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Desirable properties for forming include low yield strength and high ductility.
令人满意的成形特性包含了低降伏应力和高延展性.
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The yield strength fy of reinforcement is used in design.
在设计中利用的是钢筋的屈服强度.
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Oxgen precipitates ( useful for gettering ) can reduce the yield strength ( critical shear stress ) up to fivefole.
氧沉淀 ( 可用作吸杂 ) 会使屈服强度 ( 临界剪应力 ) 降低为五分之一.
辞典例句
Dislocation strengthening and grain refinement strengthening makes coil 059 with the higher yield strength.
位错强化与晶粒细化强化是059板卷具有高屈服强度的原因.
期刊摘选
FIG. 5 shows the average yield strength as a function of extrusion speed and location.
图5示出了平均屈服强度与挤压速度和位置的关系.
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The results show that the steel has high yield strength and quality forming property.
结果表明,研制开发出的铌钛微合金化IF钢具有高的屈服强度和优良的成形性能.
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The yield strength, tensile ratio and toughness are major quality indexes of steel pipe ( board ).
屈服强度 、 屈强比、韧性等是钢管 ( 板 ) 的主要质量指标,合理确定这些指标的数值有相当难度.
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CuPTiRE anti - erosion hot rolling stripes are divided into two grades in yield strength : 295 MPa, 345 MPa.
09CuPTiRE耐大气腐蚀热轧钢板按屈服强度分为295MPa级和345MPa级两个级别.
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The yield strength ( σ0.2 ) , ultimate tensile strength ( σ b ) and elongation ( δ ) of A 356 - T 6 alloy were 240 MPa, 254.8 MPa and 1.16 % , respectively.
屈服强度 、 抗拉强度和伸长率分别为240MPa 、 254.8MPa和1.16%.
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The creep rate was increased while the yield strength was reduced by anodic dissolution.
阳极电流不但使恒载荷下的不锈钢蠕变速度增加,而且使屈服强度下降.
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Residual stress concentration a notch depends on both notch geometry and yield strength of the material.
缺口根部的残余应力存在应力集中效应,应力集中值不仅取决于缺口几何形状而且和材料的屈服强度有关.
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