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Carbon based resistive strain gauge sensor fabricated on titanium using micro-dispensing direct write technology

机译:碳基电阻应变计传感器,采用微点胶直接写入技术在钛上制造

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摘要

Carbon based resistive strain gauge sensor suitable for medical implant technology has been directly fabricated on a titanium test-plate using Micro-Dispensing Direct Write (MDDW) technology. A 3.5 mu m biocompatible dielectric layer of parylene C was initially coated on the titanium test-plate. Commercially available screen-print carbon conductive paste was deposited on the parylene C and cured at 80 degrees C for 3 h; this was to ensure the physical properties and chemical integrity of the parylene C layer was maintained, whilst meeting the electrical conductivity curing requirements for the carbon tracks. The novel integrated strain sensor was experimentally tested and found to have a gauge factor of 10 making it approximately 5 times more sensitive than a commercially available metal foil strain gauge glued to the same titanium plate. (C) 2016 Elsevier B.V. All rights reserved.
机译:适用于医疗植入技术的碳基电阻应变仪传感器已使用微分配直接写入(MDDW)技术直接制造在钛制测试板上。首先将3.5微米的聚对二甲苯C的生物相容性介电层涂覆在钛测试板上。将市售的丝网印刷碳导电浆料沉积在聚对二甲苯C上,并在80摄氏度下固化3小时;这是为了确保维持聚对二甲苯C层的物理性质和化学完整性,同时满足碳迹线的电导率固化要求。新型集成应变传感器经过实验测试,发现其应变系数为10,使其灵敏度比粘贴在同一钛板上的市售金属箔应变仪高出约5倍。 (C)2016 Elsevier B.V.保留所有权利。

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