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1)  yield strength match
屈服强度匹配
1.
The yield strength matching of welded joints plays an important role in design, manufacturing procedures, cracking sensitivity as well as fracture behavior of welded joints.
焊接接头的屈服强度匹配方式对接头的设计、制造工艺、裂纹敏感性以及破坏行为有重要影响,焊缝金属、母材、焊接接头强度以及焊接接头强度匹配系数的分布是焊接结构强度、寿命和可靠性计算的基础。
2)  yield strength
屈服强度
1.
Effect of phosphorus on the yield strength of as-quenched GH761 alloy;
磷对GH761合金固溶水淬组织屈服强度的影响
2.
Study of influence factors of yield strength of oil and gas pipeline;
油气管道屈服强度影响因素的研究
3.
A modeling study of the yield strength of HRB335 hot rolled ribbed bar;
HRB335热轧带肋钢筋屈服强度模型研究
3)  yield stress
屈服强度
1.
Based on the plain carbon steel with the chemical composition of 200MPa class steel the products of the yield stress of 400~500 MPa class and high-quality mechanical properties can be produced using the technology of chemistry tightly-tuning and controlled rolling - controlled cooling.
以屈服强度为 2 0 0MPa级的普碳钢为基本成分 ,采用成分微调与控轧控冷工艺相结合的技术路线 ,可将屈服强度提高到 4 0 0~ 5 0 0MPa,同时保证良好的综合性能。
2.
From the tests, a two-stage linear relation has been found between yield stress(σ_s) and strain rate(ε),σ_s=σ_0+klgε.
对4种金属材料进行了应变率为10~(-4)—10~3s~(-1)的拉伸试验,结果表明,屈服强度随应变率的升高分两阶段线性升高。
4)  yielding strength
屈服强度
1.
Yielding behavior of mismatched welded joint and prediction of its yielding strength;
非等强焊接接头屈服行为及屈服强度预测
2.
Mechanical properties of normalized and tempered 12Cr2Mo steel forgings,primarily yielding strength,were on the low side.
汽轮机用12Cr2Mo钢锻件经正火、回火后,其力学性能(主要是屈服强度)偏低,一次热处理后的合格率仅为50%,既造成该钢锻件大量热处理返修,又严重影响了生产周期。
5)  yield point
屈服点,屈服强度
6)  strength mis-matching
强度匹配
1.
The effects of strength mis-matching and specimen geometry on the fracture behavior for welded joint were conducted by experiment.
首先对采用同种焊接材料施焊的X80及X6 5管线用钢焊接接头 ,在韧脆转变温度区间测试了其断裂韧度 ,试验研究了强度匹配、试样几何形式对接头断裂行为的影响。
2.
The effects of strength mis-matching and specimen geometry on the resistance behavior to ductile crack growth for welded joint were conducted by 3-D FE analysis considering the micro-plastic damage.
通过考虑材料微观塑性损伤,定量研究了焊接接头中强度匹配、试件几何形状对接头抗延性裂纹扩展行为的影响。
补充资料:补偿屈服强度
分子式:
CAS号:

性质:应变超过应力-应变曲线成正比例的初始部分的指定量时的应力值。此指定的应变量称残余应变,也称偏置值。报告补偿屈服强度时一定要同时指明此偏置值。此值一般用于该材料没有明显的屈服点的场合。可以认为是一人为规定的屈服点,用于作条件性的相对比较。

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