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- With hoisting method by double cantilever beam,the hoisting of large steel trusses was get success. 双悬臂梁吊装法解决了大型钢桁架高空吊装问题,且省工、省料,实践证明,该法安全、可靠,较为实
- With hoisting method by double cantilever beam,the hoisting of large steel trusses was get success.The practices demonstrated that the hoisting method was reliable and feasible. 双悬臂梁吊装法解决了大型钢桁架高空吊装问题,且省工、省料,实践证明,该法安全、可靠,较为实用
- The distribution of residual stress, residual stress indensity factor(SIF) and its effect on corrosion cracking behavior of Al-Zn-Mg-Cu (LC4) alloy in double cantilever beam (DCB) specimen under various aging temperature have been investigated. 研究了时效制度对Al-Zn-Mg-Cu合金(LC4)双悬臂梁(DCB)试样的残余应力分布及其对应力强度因子、腐蚀开裂行为的影响。
- Research of Strain-Measurement Sensor Based on Double Cantilever Beam 基于双悬臂梁结构的应变测量传感器研究
- Study on Dynamic Fracture Properties of Double Cantilever Beam(DCB)Specimen 双悬臂梁试件的断裂动力学特性研究(英文)
- Keywords Sulfide Stress Cracking;Double Cantilever Beam;fracture mechanics;Fit For Purpose;OCTG; 硫化物应力开裂;双悬臂梁法;断裂力学;适用性评价;油井管;
- Keywords Z-pinning;composites;double cantilever beam(DCB);delamination toughness; 复合材料;双悬臂梁;层间韧性;
- Keywords LC4 alloy;double cantilever beam (DCB);residual stress indensity factor (SIF)K_(1R);stress corrosion cracking(SCC); LC4铝合金;双悬臂梁(DCB)试样;时效残余应力;应力强度因子K_(1R);应力腐蚀开裂(SCC);
- double cantilever beam 双悬臂梁
- Determination of the Reasonable Length of the Cantilever for Double Cantilever Beams 均布荷载作用下双悬臂梁合理悬臂长度的确定
- Force-measuring elements employ either a cantilever beam or a column arrangement. 测力元件采用悬臂梁或柱的形式。
- Finite element design, cantilever beam withstanding load distortion situation, some graphical displays. 详细说明:有限元设计,悬臂梁承受荷载的变形情况,有图形显示。
- The structure consists basically of two cantilever beams. 这种结构基本上由两根悬臂梁组成。
- The dynamics of a cantilever beam attached to a rotating rigid body is reported in this paper. 摘要本文对固结在转动刚体上柔性梁的动力学问题进行了研究。
- By reviewing relevant literatures, it is known that the design model is similar to the cantilever beam structure. 中文摘要植牙术后的骨整合程度,关系到手术是否成功。
- Dynamical characteristics of the cantilever beam were analyzed and its dynamical equation was developed by using PEA. 采用有限元分析方法研究悬臂梁的动态特性,建立其动力方程。
- A cantilever beam was experimentally studied with this method and the result is consistent with theoretical result. 以悬臂梁为例进行实验研究,实验结果与理论计算结果吻合较好。
- Cantilever beam of key strata breaks and caves into blocks,which is periodic weighting of mining face. 关键层悬臂梁破断垮落成承压砌块,其垮落及沿架后切落,形成工作面周期来压。
- L-BS type cantilever beam load cell, with one end fixed, another end loaded, steel ball transfering force, it has a good sealed structure. L-BS型钢制悬臂梁式称重传感器,一端固定、一端加载,钢球传力,并设有良好的密封结构。
- Active vibration control for a cantilever beam was studied based on the combination between finite element analysis (PEA) and modal control. 摘要结合有限元分析方法与模态控制来抑制悬臂梁的振动。