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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Elastic constants and internal friction of martensitic steel, ferritic-pearlitic steel, and α-iron
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Elastic constants and internal friction of martensitic steel, ferritic-pearlitic steel, and α-iron

机译:马氏体钢,铁素体-珠光体钢和α-铁的弹性常数和内摩擦

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摘要

The elastic constants and internal friction of induction hardened and unhardened SAE 1050 plain-carbon steel at ambient temperatures were determined by resonant ultrasonic spectroscopy. The hardened specimen contained only martensite and the unhardened specimen was ferrite- pearlite. Using an inverse Ritz algorithm with assumed orthorhombic symmetry, all nine independent elastic-stiffness coefficients were determined, and, from the resonance peak widths, all nine components of the internal-friction tensor were determined. Similar measurements and analysis on monocrystalline α-iron were performed. The steel has slight elastic anisotropy, and the isotropically approximated elastic moduli were lower in the martensite than in ferrite-pearlite: shear modulus by 3.6%, bulk modulus by 1.2%, Young modulus by 3.2%, and Poisson ratio by 1.5%. Isotropically approximated elastic moduli of α-iron were 0.6-1.3% higher than ferrite-pearlite. All components of the internal-friction in martensite were higher than those of ferrite-pearlite, but lower than those of α-iron.
机译:通过共振超声光谱法测定环境温度下感应硬化和未硬化的SAE 1050普通碳素钢的弹性常数和内摩擦。硬化的试样仅包含马氏体,未硬化的试样为铁素体-珠光体。使用假定正交斜对称的逆Ritz算法,确定所有九个独立的弹性刚度系数,并从共振峰宽度确定内摩擦张量的所有九个分量。对单晶α-铁进行了类似的测量和分析。该钢的弹性各向异性很小,马氏体中的各向同性近似弹性模量比铁素体-珠光体低:剪切模量为3.6%,体积模量为1.2%,杨氏模量为3.2%,泊松比为1.5%。 α-铁的各向同性近似弹性模量比铁素体-珠光体高0.6-1.3%。马氏体内部摩擦的所有成分均高于铁素体-珠光体,但低于α-铁。

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