led dispensing system

碩士 === 國立中央大學 === 機械工程研究所碩士在職專班 === 99 === The present paper mainly discusses LED to seal decorates research of the rubber system innovation automatic equipment improvement, and conducts a series of research and the discussion to its innovation structure''s seal ability. First introduced t...

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Main Authors: CHENG-CHIN SHENG, 鄭錦勝
Other Authors: Dr.-Ing. S.-J. Tsai
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/82281278495549553752
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spelling ndltd-TW-099NCU054890102015-10-30T04:10:16Z http://ndltd.ncl.edu.tw/handle/82281278495549553752 led dispensing system LED封裝點膠系統創新設計之研究 CHENG-CHIN SHENG 鄭錦勝 碩士 國立中央大學 機械工程研究所碩士在職專班 99 The present paper mainly discusses LED to seal decorates research of the rubber system innovation automatic equipment improvement, and conducts a series of research and the discussion to its innovation structure''s seal ability. First introduced that importance of the LED production automation, understood nowadays the LED application point rubber seal equipment structure, again carries on the classification and the fit and unfit quality analysis to its mechanism and the control mode. Then, because of various patents collection analysis, triggers and utilizes feasibility of the creativity conceptual designs, after carrying on the fit and unfit quality comparison, obtains design of solution its foundation construction. Forms in one''s mind the spot rubber construction, confirmed that a rubber does moves the main body and various spatial construction distribution, completes the composition by the CAD design, and from the choice of material, the stress strain analysis and leak-proof and so on carries on the discussion, by the constitutive property pondered again its control can achieve controls easily does moves, after obtains the most perfect main body rubber construction, carries on the manufacture. Afterward, experiment of method from the constancy and the constant quantity viewpoint, the evidence rubber quantity control and the rubber drop forming distribution condition, and takes from the high-speed photography analyzes likely, the weight gauging parametric curve carries on compared to analyzes and discovers its magnitude of error to and the difference, this depends on importantly as the housing design and the organization performance according to, finally carries on the entity seal by LED, the observation actual seal effect. Sums up word it, this article rests on the real material seal effect finally and determines the nature of with the quantitative experiment way, follows the specific experiment principle to discover conforms to of controlled variable the product demand. Thus by this rubber organization seal performance, carries on a mechanical arm automation matrix form rubber or a mold development matrix form rubber, achieves reduces the cost, increases iii produces can and the reduction development time interval and the expense, ties the province energy is the goal Dr.-Ing. S.-J. Tsai 蔡錫錚 2011 學位論文 ; thesis 70 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中央大學 === 機械工程研究所碩士在職專班 === 99 === The present paper mainly discusses LED to seal decorates research of the rubber system innovation automatic equipment improvement, and conducts a series of research and the discussion to its innovation structure''s seal ability. First introduced that importance of the LED production automation, understood nowadays the LED application point rubber seal equipment structure, again carries on the classification and the fit and unfit quality analysis to its mechanism and the control mode. Then, because of various patents collection analysis, triggers and utilizes feasibility of the creativity conceptual designs, after carrying on the fit and unfit quality comparison, obtains design of solution its foundation construction. Forms in one''s mind the spot rubber construction, confirmed that a rubber does moves the main body and various spatial construction distribution, completes the composition by the CAD design, and from the choice of material, the stress strain analysis and leak-proof and so on carries on the discussion, by the constitutive property pondered again its control can achieve controls easily does moves, after obtains the most perfect main body rubber construction, carries on the manufacture. Afterward, experiment of method from the constancy and the constant quantity viewpoint, the evidence rubber quantity control and the rubber drop forming distribution condition, and takes from the high-speed photography analyzes likely, the weight gauging parametric curve carries on compared to analyzes and discovers its magnitude of error to and the difference, this depends on importantly as the housing design and the organization performance according to, finally carries on the entity seal by LED, the observation actual seal effect. Sums up word it, this article rests on the real material seal effect finally and determines the nature of with the quantitative experiment way, follows the specific experiment principle to discover conforms to of controlled variable the product demand. Thus by this rubber organization seal performance, carries on a mechanical arm automation matrix form rubber or a mold development matrix form rubber, achieves reduces the cost, increases iii produces can and the reduction development time interval and the expense, ties the province energy is the goal
author2 Dr.-Ing. S.-J. Tsai
author_facet Dr.-Ing. S.-J. Tsai
CHENG-CHIN SHENG
鄭錦勝
author CHENG-CHIN SHENG
鄭錦勝
spellingShingle CHENG-CHIN SHENG
鄭錦勝
led dispensing system
author_sort CHENG-CHIN SHENG
title led dispensing system
title_short led dispensing system
title_full led dispensing system
title_fullStr led dispensing system
title_full_unstemmed led dispensing system
title_sort led dispensing system
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/82281278495549553752
work_keys_str_mv AT chengchinsheng leddispensingsystem
AT zhèngjǐnshèng leddispensingsystem
AT chengchinsheng ledfēngzhuāngdiǎnjiāoxìtǒngchuàngxīnshèjìzhīyánjiū
AT zhèngjǐnshèng ledfēngzhuāngdiǎnjiāoxìtǒngchuàngxīnshèjìzhīyánjiū
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