Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites

碩士 === 國立虎尾科技大學 === 機械設計工程研究所 === 103 === Abstract Tin-lead alloys with stable performance, embedded, low melting point, good fluidity, and corrosion resistance properties. Currently most often used in solder, bearings, aerospace and electronics industry, and if we can increase the bearing strength,...

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Main Authors: Chih-Chia Chang, 張志嘉
Other Authors: HO, Chi-Ting
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/pcu778
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spelling ndltd-TW-103NYPI54900082019-09-21T03:32:36Z http://ndltd.ncl.edu.tw/handle/pcu778 Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites 以碳纖維增強錫 - 鉛合金之複合材料的磨耗 Chih-Chia Chang 張志嘉 碩士 國立虎尾科技大學 機械設計工程研究所 103 Abstract Tin-lead alloys with stable performance, embedded, low melting point, good fluidity, and corrosion resistance properties. Currently most often used in solder, bearings, aerospace and electronics industry, and if we can increase the bearing strength, it can reduce the overall dimensions of the bearing will be more cost and space. This experiment will carbon fiber soaking in 0.1mol/L of concentrated sodium hydroxide (NaOH) electrolytic liquid placed 3 minutes, in placed sulfuric acid nickel bath, by 8 volts and 10 amps plating 12-15 minutes, completed fiber surface processing, will carbon fiber into mold cavity, put mold temperature warming to 150 ℃, then will liquid solder heating to 300 ℃ pour mold, maintained in 150 ℃ and pressure range 30 to 50 MPa, immediately through piston in mold top Department put pressure on, in pressure maintained 10 minutes, While the mold is cooled to near room temperature. Test results found that after surface treatment of carbon fiber composite material and without surface treatment of carbon fiber composites, by contrast, after surface treatment has a high tensile strength and abrasion conditions, containing coated fiber composites are relatively good, but under sliding wear does not contain the coating of fiber composites are relatively good. HO, Chi-Ting 何智廷 2015 學位論文 ; thesis 56 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立虎尾科技大學 === 機械設計工程研究所 === 103 === Abstract Tin-lead alloys with stable performance, embedded, low melting point, good fluidity, and corrosion resistance properties. Currently most often used in solder, bearings, aerospace and electronics industry, and if we can increase the bearing strength, it can reduce the overall dimensions of the bearing will be more cost and space. This experiment will carbon fiber soaking in 0.1mol/L of concentrated sodium hydroxide (NaOH) electrolytic liquid placed 3 minutes, in placed sulfuric acid nickel bath, by 8 volts and 10 amps plating 12-15 minutes, completed fiber surface processing, will carbon fiber into mold cavity, put mold temperature warming to 150 ℃, then will liquid solder heating to 300 ℃ pour mold, maintained in 150 ℃ and pressure range 30 to 50 MPa, immediately through piston in mold top Department put pressure on, in pressure maintained 10 minutes, While the mold is cooled to near room temperature. Test results found that after surface treatment of carbon fiber composite material and without surface treatment of carbon fiber composites, by contrast, after surface treatment has a high tensile strength and abrasion conditions, containing coated fiber composites are relatively good, but under sliding wear does not contain the coating of fiber composites are relatively good.
author2 HO, Chi-Ting
author_facet HO, Chi-Ting
Chih-Chia Chang
張志嘉
author Chih-Chia Chang
張志嘉
spellingShingle Chih-Chia Chang
張志嘉
Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
author_sort Chih-Chia Chang
title Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
title_short Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
title_full Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
title_fullStr Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
title_full_unstemmed Wear of Carbon Fiber-Reinforced Tin-Lead Alloy Composites
title_sort wear of carbon fiber-reinforced tin-lead alloy composites
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/pcu778
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