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用途:托盤,包裝板,片材,板材,電器外殼,電子零配件等產品
注射成型:
材料溫度220 - 260°C(430 - 500°F)
模具溫度60 - 90°C(140 - 195°F)
注射壓力的750–1200bar(10875 17400psi)
注射速度:中等
這些溫度可以用于指導作用。它們還將取決于所使用的設備。應遵循設備制造商的指示。炭黑網絡對剪切力敏感。避免在處理高剪切條件。
預干燥是高度**的,例如2 - 4小時80 - 100°C(175 - 210°F)。
電容筆導電塑料
注塑級導電ABS觸摸筆*料
防靜電ABS
碳纖維增強導電ABS
ABS抗靜電塑料
導電ABS塑料
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We demonstrate the first example of fully printed carbon nanomaterials on paper with unique features, aiming the fabrication of functional electronic and electrochemical devices. Bare and modified inks were prepared by combining carbon black and cellulose acetate to achieve high-performance conductive tracks with low sheet resistance. The carbon black tracks withstand extremely high folding cycles (>20?000 cycles), a new record-high with a response loss of less than 10%. The conductive tracks can also be used as 3D paper-based electrochemical cells with high heterogeneous rate constants, a feature that opens a myriad of electrochemical applications. As a relevant demonstrator, the conductive ink modified with Prussian-blue was electrochemically characterized proving to be very promising toward the detection of hydrogen peroxide at very low potentials. Moreover, carbon black circuits can be fully crumpled with negligible change in their electrical response. Fully printed motion and wearable sensors are additional examples where bioinspired microcracks are created on the conductive track. The wearable devices are capable of efficiently monitoring extremely low bending angles including human motions, fingers, and forearm. Here, to the best of our knowledge, the mechanical, electronic, and electrochemical performance of the proposed devices surpasses the most recent advances in paper-based devices.