Peterson's Stress Concentration Factors

Peterson's Stress Concentration Factors
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DOI:
10.5860/choice.35-3328
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发表时间:
2020-01
期刊:
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影响因子:
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通讯作者:
W. Pilkey
W. Pilkey
中科院分区:
其他
文献类型:
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作者:
W. Pilkey

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应力集中系数的指数。第三版前言。第二版前言。1.定义和设计关系。1.1记数法。1.2应力集中。1.3应力集中是一个二维问题。1.4应力集中是一个三维问题。1.5平面和轴对称问题。1.6局部和非局部应力集中。1.7多重应力集中。1.8关于力量和失败的理论。1.9缺口敏感度。1.10静应力的设计关系。1.11交变应力的设计关系。1.12交变应力和静应力组合的设计关系。1.13有限的交变应力循环次数。1.14应力集中系数和应力强度因子。参考文献2.凹槽和凹槽2.1记法。2.2应力集中系数。紧张程度为2.3个刻度。2.4紧张情绪低落。2.5凹槽的张力。2.6带缺口薄梁的弯曲。2.7有凹槽的板材的弯曲。2.8有凹槽的固体的弯曲。2.9直接剪切和扭转。2.10对于给定的R D或R H 76,最大Kt的测试样本设计。参考资料。图表。3.肩部圆角。3.1记数法。3.2应力集中系数。3.3拉力(轴向载荷)。3.4弯曲。3.5扭力。3.6减少肩部应力集中的方法。参考资料。图表。4.洞。4.1记数法。4.2应力集中系数。4.3具有面内应力的圆孔。4.4张紧的椭圆形孔洞。4.5具有面内应力的各种配置。4.6厚元素上的孔。4.7各向异性薄壁杆件。4.8弯曲。4.9剪切和扭转。5.其他设计元素。5.1记数法。5.2带键座的轴。5.3花键轴扭转。5.4齿轮齿数。5.5压装或缩装构件。5.6螺栓和螺母。5.7螺栓头、涡轮叶片或压缩机叶片紧固(T形头)。5.8耳片接头。5.8.1带hd 0的凸耳。5.5.8.2带hd 0的凸耳。5.5.9曲杆。5.10螺旋弹簧。5.10.1圆形或方形钢丝压缩或拉伸弹簧。5.10.2矩形钢丝压缩或拉伸弹簧。5.10.3螺旋扭转弹簧。5.11曲轴。5.12起重机吊钩。5.13 U型构件。5.14角度和长方体截面。5.15具有环状端部的圆柱形压力容器。5.16管状关节。参考资料。图表。6.应力集中分析与设计。6.1计算方法。6.2有限元分析。6.3设计灵敏度分析。6.4设计修改。索引。
Index to the Stress Concentration Factors. Preface for the Third Edition. Preface for the Second Edition. 1. Definitions and Design Relations. 1.1 Notation. 1.2 Stress Concentration. 1.3 Stress Concentration as a Two-Dimensional Problem. 1.4 Stress Concentration as a Three-Dimensional Problem. 1.5 Plane and Axisymmetric Problems. 1.6 Local and Nonlocal Stress Concentration. 1.7 Multiple Stress Concentration. 1.8 Theories of Strength and Failure. 1.9 Notch Sensitivity. 1.10 Design Relations For Static Stress. 1.11 Design Relations for Alternating Stress. 1.12 Design Relations for Combined Alternating and Static Stresses. 1.13 Limited Number of Cycles of Alternating Stress. 1.14 Stress Concentration Factors and Stress Intensity Factors. References 2. Notches and Grooves. 2.1 Notation. 2.2 Stress Concentration Factors. 2.3 Notches in Tension. 2.4 Depressions in Tension. 2.5 Grooves in Tension. 2.6 Bending of Thin Beams with Notches. 2.7 Bending of Plates with Notches. 2.8 Bending of Solids with Grooves. 2.9 Direct Shear and Torsion. 2.10 Test Specimen Design for Maximum Kt for a Given r D or r H 76. References. Charts. 3. Shoulder Fillets. 3.1 Notation. 3.2 Stress Concentration Factors. 3.3 Tension (Axial Loading). 3.4 Bending. 3.5 Torsion. 3.6 Methods of Reducing Stress Concentration at a Shoulder. References. Charts. 4. Holes. 4.1 Notation. 4.2 Stress Concentration Factors. 4.3 Circular Holes with In-Plane Stresses. 4.4 Elliptical Holes in Tension. 4.5 Various Configurations with In-Plane Stresses. 4.6 Holes in Thick Elements. 4.7 Orthotropic Thin Members. 4.8 Bending. 4.9 Shear and Torsion. 5. Miscellaneous Design Elements. 5.1 Notation. 5.2 Shaft with Keyseat. 5.3 Splined Shaft in Torsion. 5.4 Gear Teeth. 5.5 Press- or Shrink-Fitted Members. 5.6 Bolt and Nut. 5.7 Bolt Head,Turbine-Blade, orCompressor-Blade Fastening (T-Head). 5.8 Lug Joint. 5.8.1 Lugs with h d 0 . 5. 5.8.2 Lugs with h d 0 . 5. 5.9 Curved Bar. 5.10 Helical Spring. 5.10.1 Round or Square Wire Compression or Tension Spring. 5.10.2 Rectangular Wire Compression or Tension Spring. 5.10.3 Helical Torsion Spring. 5.11 Crankshaft. 5.12 Crane Hook. 5.13 U-Shaped Member. 5.14 Angle and Box Sections. 5.15 Cylindrical Pressure Vessel with Torispherical Ends. 5.16 Tubular Joints. References. Charts. 6. Stress Concentration Analysis and Design. 6.1 Computational Methods. 6.2 Finite Element Analysis. 6.3 Design Sensitivity Analysis. 6.4 Design Modification. Index.