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Stress analysis of bicycle saddles structural components during different cycling conditions.

机译:自行车鞍结构组分在不同循环条件下的应力分析。

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The structural behaviour of a bicycle saddle is mainly affected by the shell and the rails properties and by their assembly connections. The knowledge of the stress acting on these components is therefore fundamental for a safe and performing saddle engineering design. The aim of the work was the measurement and analysis of the strain/stress state of shell and rails of a bicycle saddle during real cycling conditions. The shell and the rails of a saddle were instrumented with a total of 16 strain gauge channels, allowing the measurement of the local deformations of shell and rails. Two field test sessions (one for road cycling and one for mountain bike riding) were performed with two professional cyclists different for body height and weight (65 and 76 kg). Reported results regard the analysis of rails cyclic stresses due to road pedalling and of stress cumulative spectra obtained during road and mountain bike sessions. Right and the left portions of the rails were loaded symmetrically. The two testers showed large differences in the pedalling style and in the cycling posture. The stress on the front and rear rails portions was mainly influenced by the cyclist posture and pedalling style. An increase of the road slope caused an increment of the stress range and mean values; the damage ratio between mountain bike and road load spectra for an equivalent cycled distance resulted to range between 6 and 9, depending on the tester involved.
机译:自行车鞍座的结构行为主要受壳体和轨道性能的影响,以及其组装连接。因此,对这些组件的压力的了解是安全和执行马鞍工程设计的基础。该工作的目的是在真实循环条件下的自行车鞍座的壳体和轨道的应变/应力状态的测量和分析。鞍座和鞍座的轨道被仪表,总共16个应变计通道,允许测量壳体和轨道的局部变形。用两个职业骑自行车者(65和76公斤)进行两名职业骑自行车者进行两次野外测试课程据报道,由于道路踏板和道路和山地自行车课程中获得的应力累积光谱,对轨道循环应力分析。右侧和轨道的左侧是对称加载的。这两个测试人员在踩踏风格和循环姿势方面表现出大的差异。前轨和后轨部分的压力主要受骑自行车者姿势和踩踏风格的影响。道路斜率的增加导致应力范围的增量和平均值;山地自行车和道路负载光谱之间的损伤比率为6至9之间的范围,具体取决于所涉及的测试仪。

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