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Carbide-bonded graphene coating of mold insert for rapid thermal cycling in injection molding

机译:模具插件的碳化物键合石墨烯涂层,用于注塑成型中的快速热循环

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A novel carbide-bonded graphene coating on silicon insert was proposed to realize rapid thermal cycling (RTC) in injection molding. Continuous and dense carbon-bonded graphene coating was prepared on the surface of the silicon cavity through chemical vapor deposition. Serving as a thin-film resistance heater, the graphene coating was able to heat the mold cavity rapidly to above the glass-transition temperature of the polymer, even if the applied power source was of relatively low voltage. When the voltage was 240 V, the coating was heated up to 145.6 degrees C in a short period of 10 s, that is, the average and transient heating rates were able to be as high as 11.6 degrees C/s and 16.1 degrees C/s, respectively. This injection molding technique of RTC was successfully implemented to produce plate samples with uniform sizes in thickness (600 pm). The influence of RTC on weld line, internal stress, and replication fidelity was also investigated. Compared with conventional injection molding, our facile method was able to mold products with smaller weld mark, less internal stress, and better replication fidelity. The tensile strength and elongation at yield of the products were also enhanced by 37.77% and increased by 265.11%, respectively, with much less energy consumption. (C) 2017 Published by Elsevier Ltd.
机译:提出了一种新型碳化物粘结的石墨烯涂层,用于在注射成型中实现快速热循环(RTC)。通过化学气相沉积在硅腔的表面上制备连续和致密的碳键合石墨烯涂层。作为薄膜电阻加热器,石墨烯涂层能够快速地将模腔快速加热到聚合物的玻璃化转变温度上方,即使施加的电源具有相对低的电压。当电压为240V时,在短短的10秒内将涂层加热至145.6℃,即,平均和瞬态加热速率能够高达11.6摄氏度和16.1℃/ c /分别。 RTC的这种注塑技术成功实施以生产厚度均匀尺寸(600μm)的板样品。还研究了RTC对焊接线,内应力和复制保真度的影响。与传统注塑成型相比,我们的嵌合方法能够模具具有较小焊接标记,内部应力较少,更好的复制保真度的产品。产率的拉伸强度和伸长率也增强了37.77%,分别增加了265.11%,能耗较低。 (c)2017年由elestvier有限公司出版

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