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Plastic Zones Formation under Different Types of Loading Conditions

机译:不同类型载荷条件下的塑性区形成

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The plastic zone formation under the fracture surface in materials posessing a Body-Centered Cubic Lattice (BCC) structure (steel 20, 40, 45, St 3, 1 5 X 2 MΦA) and materials posessing a Fece-Centered Cubic Lattice (FCC) structure (aluminium alloy D16 and austenitic steels 40Γ18Φ, 40X4Γ18Φ, 03X13AΓ19, 07X13H4AΓ20) was studied by the X-Ray Diffraction method. Specimens were tested under a static, impact, high-speed impulse, cyclic (fatigue) and impact-cyclic loading conditions at the wide temperature range. It was shown that two plastic zones were formed under all above types of loading conditions if the plane stress state was attained at the crack tip. Only one micro-plastic zone is formed under the plane strain deformation state. A scheme of two plastic zones formation at the crack tip of specimens tested under a static, impact and impulse types of loading conditions is presented. Besides that, it was found that both impulse and impact-cyclic loadings resulted in not only plastic zones formation but work hardening of the material of specimens.
机译:材料在断裂表面下形成的塑性区构成了体心立方晶格(BCC)结构(钢20、40、45,St 3、1 5 X 2MΦA),材料构成了面心立方晶格(FCC)通过X射线衍射法研究了合金的组织结构(铝合金D16和奥氏体钢40Γ18Φ,40X4Γ18Φ,03X13AΓ19、07X13H4AΓ20)。在宽温度范围内,在静态,冲击,高速冲击,循环(疲劳)和冲击循环加载条件下对样品进行了测试。结果表明,如果在裂纹尖端处达到平面应力状态,则在所有上述类型的载荷条件下都会形成两个塑性区。在平面应变变形状态下仅形成一个微塑性区。提出了在静态,冲击和脉冲类型的载荷条件下测试的试样的裂纹尖端处形成两个塑性区的方案。除此之外,还发现脉冲载荷和冲击循环载荷不仅导致形成塑性区,而且导致试样材料的工作硬化。

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