Profile shift is a highly effective technique for optimizing the performance of spur gear transmission systems.However,tooth surface wear is inevitable during gear meshing due to inadequate lubrication and long-term o...Profile shift is a highly effective technique for optimizing the performance of spur gear transmission systems.However,tooth surface wear is inevitable during gear meshing due to inadequate lubrication and long-term operation.Both profile shift and tooth surface wear(TSW)can impact the meshing characteristics by altering the involute tooth profile.In this study,a tooth stiffness model of spur gears that incorporates profile shift,TSW,tooth deformation,tooth contact deformation,fillet-foundation deformation,and gear body structure coupling is established.This model efficiently and accurately determines the time-varying mesh stiffness(TVMS).Additionally,an improved wear depth prediction method for spur gears is developed,which takes into consideration the mutually prime teeth numbers and more accurately reflects actual gear meshing conditions.Results show that consideration of the mutual prime of teeth numbers will have a certain impact on the TSW process.Furthermore,the finite element method(FEM)is employed to accurately verify the values of TVMS and load sharing ratio(LSR)of profile-shifted gears and worn gears.This study quantitatively analyzes the effect of profile shift on the surface wear process,which suggests that gear profile shift can partially alleviate the negative effects of TSW.The contribution of this study provides valuable insights into the design and maintenance of spur gear systems.展开更多
针对某工程高填方地基,采用8 000 k N·m高能级强夯处理填土地基,通过静力触探试验、动力触探试验、探井、浅层平板载荷试验,评价8 000 k N·m能级强夯处理填土地基的加固效果,得出强夯的有效加固深度为10.0 m,并根据强夯有效...针对某工程高填方地基,采用8 000 k N·m高能级强夯处理填土地基,通过静力触探试验、动力触探试验、探井、浅层平板载荷试验,评价8 000 k N·m能级强夯处理填土地基的加固效果,得出强夯的有效加固深度为10.0 m,并根据强夯有效加固深度实测结果,提出基于梅拉公式计算结果的修正系数为0.353,其结果可为类似工程提供设计及施工参考。展开更多
以广东某石油仓储工程高能级强夯法地基处理为背景,采用平板载荷试验、动力触探试验、标准贯入试验、瑞利波试验及室内土工试验相结合的方法,研究陆域与海域深厚碎石回填地基15 000 k N·m高能级强夯下的有效加固深度。研究结果表明...以广东某石油仓储工程高能级强夯法地基处理为背景,采用平板载荷试验、动力触探试验、标准贯入试验、瑞利波试验及室内土工试验相结合的方法,研究陆域与海域深厚碎石回填地基15 000 k N·m高能级强夯下的有效加固深度。研究结果表明:陆域强夯区的有效加固深度不小于10.0 m,海域强夯区的有效加固深度不小于8.0 m;陆域回填区与海域回填区夯点与夯间处强夯加固效果没有显著差别,说明试验设计参数合理,场地经15 000 k N·m能级强夯处理后地基的均匀性较好,强夯影响深度超过20.0 m,消除了20.0 m深度范围内粉砂层的液化,但对于深厚填土覆盖下淤泥质粉质黏土层的影响不大。在本试验条件下,对于深厚的碎石土杂填土地基,建议采用Menard公式确定有效加固深度时的修正系数α介于0.21~0.26之间。展开更多
基金Supported by National Natural Science Foundation of China (Grant No.52275061)。
文摘Profile shift is a highly effective technique for optimizing the performance of spur gear transmission systems.However,tooth surface wear is inevitable during gear meshing due to inadequate lubrication and long-term operation.Both profile shift and tooth surface wear(TSW)can impact the meshing characteristics by altering the involute tooth profile.In this study,a tooth stiffness model of spur gears that incorporates profile shift,TSW,tooth deformation,tooth contact deformation,fillet-foundation deformation,and gear body structure coupling is established.This model efficiently and accurately determines the time-varying mesh stiffness(TVMS).Additionally,an improved wear depth prediction method for spur gears is developed,which takes into consideration the mutually prime teeth numbers and more accurately reflects actual gear meshing conditions.Results show that consideration of the mutual prime of teeth numbers will have a certain impact on the TSW process.Furthermore,the finite element method(FEM)is employed to accurately verify the values of TVMS and load sharing ratio(LSR)of profile-shifted gears and worn gears.This study quantitatively analyzes the effect of profile shift on the surface wear process,which suggests that gear profile shift can partially alleviate the negative effects of TSW.The contribution of this study provides valuable insights into the design and maintenance of spur gear systems.
文摘针对某工程高填方地基,采用8 000 k N·m高能级强夯处理填土地基,通过静力触探试验、动力触探试验、探井、浅层平板载荷试验,评价8 000 k N·m能级强夯处理填土地基的加固效果,得出强夯的有效加固深度为10.0 m,并根据强夯有效加固深度实测结果,提出基于梅拉公式计算结果的修正系数为0.353,其结果可为类似工程提供设计及施工参考。