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dc.contributor.authorARYANTAKA, Gindeka Bimara
dc.date.accessioned2024-06-18T23:54:19Z
dc.date.available2024-06-18T23:54:19Z
dc.date.issued2023-07-17
dc.identifier.nim181910101052en_US
dc.identifier.urihttps://repository.unej.ac.id/xmlui/handle/123456789/121518
dc.descriptionFinalisasi oleh Taufik Tgl 19 Juni 2024en_US
dc.description.abstractCarbon fiber is one of the widely developed materials with a wide range of applications. The combination of carbon fiber with other chemicals has led to its rapid development. One of the applications is the coating of carbon fiber with Zinc Oxide, which can be used as a piezoelectric material. Piezoelectric materials are capable of generating electricity when subjected to mechanical pressure or strain, and vice versa. Electrochemical is one of the methods used for carbon fiber coating. Electrochemistry is a technology that involves converting electrical energy into chemical energy, commonly known as electrodeposition, to coat a substrate. This research utilized two independent variables: current of 1.2 A and 1.4 A in the electrochemical process, and electrolyte pH of 2.0, 4.0, and 6.0. The performance testing of the sensor showed that specimens made using a current of 1.4 A produced an average voltage of 0.1122 volts, while specimens made using a current of 1.2 A produced an average voltage of 0.1023 V. Regarding pH variations, specimens using an electrolyte with pH 2 produced the highest average voltage of 0.831V, while the lowest average voltage was generated by specimens coated using an electrolyte with pH 6, which was 0.1122 V. Micro and SEM testing indicated that specimens created using a current variation of 1.4 amperes resulted in a thicker and more uniform coating compared to specimens created using a current of 1.2 amperes in the coating process. The coating formed using an electrolyte with pH 2 appeared uniform and in sheet form, while specimens using an electrolyte with pH 6 exhibited different characteristics. XRD testing revealed that the coatings formed through this process had an amorphous shape and a hexagonal crystal system. The average crystal diameter formed was 13.631 nm for the 1.4 A pH 2 specimen and 27.162 nm for the 1.2 A pH 6 specimen.en_US
dc.language.isootheren_US
dc.publisherFAKULTAS TEKNIKen_US
dc.subjectSERAT KARBONen_US
dc.subjectPIEZOELECTRICen_US
dc.subjectELECTROCHEMICAL DEPOSITIONen_US
dc.subjectZNOen_US
dc.titlePengarus Arus dan PH Elektrolit pada Pelapisan Serat Karbon Nano Zno Menggunakan Metode Electrochemical Depositionen_US
dc.typeSkripsien_US
dc.identifier.prodiS1 TEKNIK MESINen_US
dc.identifier.pembimbing1Dr. Ir. Salahuddin Junus S.T., M.T., IPMen_US
dc.identifier.pembimbing2Ir. Dgdo Listyadi Setyawan, MSc.en_US
dc.identifier.validatorvalidasi_repo_iswahyudi_Mei_2024en_US
dc.identifier.finalizationTaufiken_US


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