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Polyvinilydene fluoride (PVDF) for material sensors have several superiority, especially characteristic of piezoelectrict. Nature of piezoelectrict PVDF very specific within range of work frequency. PVDF, has been made with calendring methode. This methode very compatible for obtain film for variuos...
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id-itb.:77492017-09-27T11:45:10Z#TITLE_ALTERNATIVE# SETIYA NOVA (NIM 10203044), EKA Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/7749 Polyvinilydene fluoride (PVDF) for material sensors have several superiority, especially characteristic of piezoelectrict. Nature of piezoelectrict PVDF very specific within range of work frequency. PVDF, has been made with calendring methode. This methode very compatible for obtain film for variuos application. Measurement thickness of PVDF film with mikrometer digital, electrode with evaporasi methode. Poling for changing PVDF structure become beta fase structure. Poling very related to range of work frequency, which testing and measurement with osiloskop. In this experiment, PVDF using calendring methode and poling methode obtain thickness between 19,33 μm–91,33 μm. The sensors were tested with osiloskop, and results showed that the range of work frecuency upper 1 KHz. text |
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Polyvinilydene fluoride (PVDF) for material sensors have several superiority, especially characteristic of piezoelectrict. Nature of piezoelectrict PVDF very specific within range of work frequency. PVDF, has been made with calendring methode. This methode very compatible for obtain film for variuos application. Measurement thickness of PVDF film with mikrometer digital, electrode with evaporasi methode. Poling for changing PVDF structure become beta fase structure. Poling very related to range of work frequency, which testing and measurement with osiloskop. In this experiment, PVDF using calendring methode and poling methode obtain thickness between 19,33 μm–91,33 μm. The sensors were tested with osiloskop, and results showed that the range of work frecuency upper 1 KHz. |
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SETIYA NOVA (NIM 10203044), EKA |
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SETIYA NOVA (NIM 10203044), EKA #TITLE_ALTERNATIVE# |
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SETIYA NOVA (NIM 10203044), EKA |
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