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EFFECT OF LOADING CONDITION ON STRESS INTENSITY FACTOR FOR THREADED FASTENERS UNDER HELIX ANGLE CONDITION

机译:螺旋角条件下加载条件对系紧紧固件应力强度因子的影响

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The effect of loading condition on the stress intensity factor (SIF) solution for a metric threaded bolt with helix angle consideration is investigated. Available SIF solutions for a nut loaded bolt do not consider the effect of helix angle of thread. Various loading conditions such as: (ⅰ) far field loading, (ⅱ) thread face loading without helix angle, (ⅲ) thread face loading with helix angle and (ⅳ) nut loading with helix angle are considered in the present study. 3-D contact analysis is carried out to observe the stress distribution between the bolt and nut interface. A crack was introduced at the first thread of the bolt so that the crack faces experience opening mode of fracture under nut loading condition. The SIF estimated by each loading condition was compared with the SIF values computed taking into consideration the nut loading with helix angle. SIF solutions obtained under far field loading condition are lower than those obtained under other loading conditions at short crack depths (a/d = 0.1); at deep crack depths (a/d = 0.5), SIF obtained under nut loading condition are lower than those obtained under other loading conditions. At deep crack depths (a/d = 0.5) the effect of loading condition on SIF is more pronounced for an elliptic crack (a/c = 0.2) than semi circular crack (a/c = 1). Due to the combined effect of mode Ⅱ and mode Ⅲ fracture which is caused by helix angle, non symmetric distribution of SIF was observed along the crack front. It is noted that, crack growth rate derived from SIF under nut loading condition is lower than published data at the middle region (P/P_0 = 0).
机译:研究了载荷条件对考虑螺旋角的公制螺纹螺栓应力强度因子(SIF)解的影响。适用于带螺母的螺栓的SIF解决方案不考虑螺纹螺旋角的影响。在本研究中考虑了各种载荷条件,例如:(ⅰ)远场载荷,(ⅱ)没有螺旋角的螺纹面载荷,(ⅲ)具有螺旋角的螺纹面载荷和(ⅳ)具有螺旋角的螺母载荷。进行3-D接触分析以观察螺栓和螺母界面之间的应力分布。在螺栓的第一螺纹处引入了裂纹,以使裂纹面在螺母加载条件下经历断裂的打开方式。将每种载荷条件下估算的SIF与考虑了螺旋角螺母载荷的SIF值进行比较。在远场载荷条件下获得的SIF溶液比在短裂纹深度(a / d = 0.1)下在其他载荷条件下获得的SIF溶液低;在深裂纹深度(a / d = 0.5)下,在螺母加载条件下获得的SIF低于在其他加载条件下获得的SIF。在深裂纹深度(a / d = 0.5)下,椭圆形裂纹(a / c = 0.2)比半圆形裂纹(a / c = 1)对SIF的载荷条件影响更为明显。由于螺旋角引起的Ⅱ型和Ⅲ型断裂的综合作用,沿裂纹前沿观察到了SIF的非对称分布。注意,在螺母加载条件下,由SIF产生的裂纹扩展速率低于中间区域的公布数据(P / P_0 = 0)。

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