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Analysis of the Improvement of the Carbon Fiber Mono-filaments Tensile Strength in Tensile Device

机译:拉伸装置中碳纤维单丝拉伸强度的改善分析

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This paper describes a new micro-scale machining process which experimentally demonstrated a carbon fiber mono-filament tensile nanofibers and micro-scale devices fixture based on a 180°- and 90°-orthogonality carbon fiber mono-filament tensile (OCFMT). The fabricated OCFMTs with orthogonality structures at 180° and 90° consecutively in carbon fiber mono-filament. When the vertical load applied to the 90°-OCFMT, the micro-scale devices fixture will effective eliminate of the gravity tilt angles with an offset value effects. The fabricated OCFMTs interchange from each other angle, which provides a solution to measure the fixture. The experimental consequence clearly show that obtain effective tensile mechanical property can be developed based on the proposed OCFMT nano- and micro-scale devices and systems in application fields such as tensile strength testing of carbon fiber mono-filament, nanofibers, carbon nanofibers, bio-medical, high polymer.
机译:本文介绍了一种新的微级加工过程,其通过基于180° - 和90°碳纤维单丝拉伸(OCFMT),通过实验证明碳纤维单丝拉伸纳米纤维和微级装置夹具。在碳纤维单丝中连续180°和90°具有正交性结构的制造的OCFMT。当垂直负载施加到90°-OCFMT时,微级设备夹具将有效地消除具有偏移值效果的重力倾斜角度。制造的OCFMT彼此的角度互换,可提供测量夹具的解决方案。实验结果清楚地表明,可以基于所提出的OCFMT纳米和微尺度装置和系统中的应用领域中的诸如碳纤维单丝,纳米纤维,碳纳米纤维,生物的抗拉强度试验等拟议的OCFMT纳米和微级装置和系统来开发有效的拉伸力学性能。医疗,高分子。

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