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1

鄭, 基浩. "伝統的木造接合部へのスギ圧縮木材接合具の活用". 京都大学, 2006. http://hdl.handle.net/2433/136503.

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Kyoto University (京都大学)<br>0048<br>新制・課程博士<br>博士(農学)<br>甲第12665号<br>農博第1588号<br>新制||農||934(附属図書館)<br>学位論文||H18||N4191(農学部図書室)<br>UT51-2006-U370<br>京都大学大学院農学研究科森林科学専攻<br>(主査)教授 小松 幸平, 教授 川井 秀一, 教授 矢野 浩之<br>学位規則第4条第1項該当
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2

NAKAMURA, Takashi, 達也 長谷川, Tatsuya HASEGAWA та ін. "レーザによる熱可塑性プラスチックのラップ接合 (第3報, 数値シミュレーションによる接合条件の検討)". 日本機械学会, 2002. http://hdl.handle.net/2237/9093.

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3

横井, 香平, та Kohei Yokoi. "隣接臓器合併切除を伴う肺癌手術". 日本肺癌学会, 2006. http://hdl.handle.net/2237/10982.

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4

堀口, 和孝. "機械制御破断接合法を用いた単分子接合の電子およびスピン輸送特性に関する研究". 京都大学 (Kyoto University), 2011. http://hdl.handle.net/2433/142221.

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5

早川, 明伸. "p-n接合及びp-i-n接合有機-無機ハイブリッド太陽電池の高効率化と高耐久化に関する研究". Kyoto University, 2017. http://hdl.handle.net/2433/227649.

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6

荒川, 智紀. "微小接合系におけるスピン依存伝導のダイナミクス". 京都大学 (Kyoto University), 2014. http://hdl.handle.net/2433/192123.

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7

野村, 義樹. "Bi系高温超伝導体固有ジョセフソン接合における接合間相互作用下の巨視的量子トンネル現象に関する研究". Kyoto University, 2017. http://hdl.handle.net/2433/226783.

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8

青木, 康素. "鋼曲げ部材を対象とした一面当て板接着補修に関する研究". Kyoto University, 2018. http://hdl.handle.net/2433/235078.

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9

木下, 智裕. "接合部を含む座屈拘束ブレースの座屈防止設計法". 京都大学 (Kyoto University), 2015. http://hdl.handle.net/2433/199265.

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10

李, 在光. "液相焼結法によるSiC/SiC複合材料の製作と接合に関する研究". 京都大学, 2005. http://hdl.handle.net/2433/144681.

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Kyoto University (京都大学)<br>0048<br>新制・課程博士<br>博士(エネルギー科学)<br>甲第11693号<br>エネ博第109号<br>新制||エネ||17(附属図書館)<br>23336<br>UT51-2005-D442<br>京都大学大学院エネルギー科学研究科エネルギー応用科学専攻<br>(主査)教授 香山 晃, 教授 山嵜 鉄夫, 教授 木村 晃彦<br>学位規則第4条第1項該当
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11

松尾, 真太朗. "外ダイアフラムを用いた角形鋼管柱梁接合部の耐力と設計法". 京都大学 (Kyoto University), 2009. http://hdl.handle.net/2433/77955.

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12

加藤, 芳秀, та 茂樹 松原. "漸進的構文解析における接合操作の導入". 言語処理学会, 2009. http://hdl.handle.net/2237/12200.

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13

加藤, 芳秀, Yoshihide KATO, 茂樹 松原, Shigeki MATSUBARA, 康善 稲垣 та Yasuyoshi INAGAKI. "確率木接合文法に基づく漸進的構文解析". 情報処理学会, 2005. http://hdl.handle.net/2237/8551.

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14

村上, 了. "スクリュー軸方向性能の木質構造接合部への活用". 京都大学, 2013. http://hdl.handle.net/2433/170089.

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Kyoto University (京都大学)<br>0048<br>新制・課程博士<br>博士(農学)<br>甲第17265号<br>農博第1965号<br>新制||農||1007(附属図書館)<br>学位論文||H25||N4723(農学部図書室)<br>30022<br>京都大学大学院農学研究科森林科学専攻<br>(主査)教授 小松 幸平, 教授 川井 秀一, 教授 矢野 浩之<br>学位規則第4条第1項該当
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15

Hong, In-Ting, та 洪胤庭. "鈮合金與鈦合金之真空硬銲接合及其接合介面之研究". Thesis, 2005. http://ndltd.ncl.edu.tw/handle/73039285952795232659.

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博士<br>國立臺灣大學<br>材料科學與工程學研究所<br>93<br>C103 and Ti-6Al-4V alloys joined by vacuum-furnace brazing using Ti-15Cu-15Ni (wt.%) and Ti-20Cu-20Ni-20Zr (wt.%) commercial filler-metals were investigated. This study examines how brazing conditions affect the microstructural evolution and shear strength of the C103/Ti-15Cu-15Ni /Ti-6Al-4V and the C103/Ti-20Cu-20Ni-20Zr /Ti-6Al-4V joints. The microstructural observations reveal the complex microstructural transition from the parent-metal throughout the brazed joints. The characteristic microstructures are formed by atomic diffusion during the brazing, inc
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16

Chen, Guan Yu, та 陳冠宇. "Ti-6Al-6V-2Sn合金之擴散接合與接合後之低週疲勞特性". Thesis, 1994. http://ndltd.ncl.edu.tw/handle/93976828474205097172.

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17

Su, Chen-Yi, та 蘇珍誼. "電漿活化及退火處理對直接接合矽晶圓對接合性質之影響". Thesis, 2006. http://ndltd.ncl.edu.tw/handle/53227873948025773048.

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18

Wang, Qi Liang, та 王啟涼. "Ti-6Al-4V合金之擴散接合與接合後之拉伸及低週疲勞特性". Thesis, 1995. http://ndltd.ncl.edu.tw/handle/69765558539413972237.

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19

Wei, Wen Shan, та 魏文山. "Ti65Al25Nb10介金屬合金之擴散接合研究". Thesis, 1995. http://ndltd.ncl.edu.tw/handle/56039512403863321639.

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20

Mao, Chen Hsing, та 毛晨馨. "鉑金屬層對矽晶圓直接接合之研究". Thesis, 2013. http://ndltd.ncl.edu.tw/handle/00215108221537103724.

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21

莊鈞智. "低溫直接接合鈮酸鋰-矽異質晶圓對". Thesis, 2005. http://ndltd.ncl.edu.tw/handle/50136389638018461767.

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22

Yan, Heng Zhi, та 顏恆智. "超塑性7475鋁合金擴散接合製程研究". Thesis, 1996. http://ndltd.ncl.edu.tw/handle/68057562673213340924.

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23

Wu, Fu-Hsun, та 吳福訓. "鈮合金(Nb-10Hf-1Ti)之真空硬銲接合研究". Thesis, 2004. http://ndltd.ncl.edu.tw/handle/55963530122883526052.

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碩士<br>國立臺灣大學<br>材料科學與工程學研究所<br>93<br>Abstract Niobium is primarily used as an alloying element in spe- cialty steels and superalloys,and also used as a carbide in cutting tools for machinery.Niobium base-alloys have been wide- ly studied over the last forty years,because of its favorable high-temperature strength and good low temperature ductility, increasing its application on using as a structural material for the aerospace industries.Its strengthening characteristics co- mbined with a low neutron-absorption cross-section,also prompt- ed its application in the nuclear industries.This researc
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24

HUANG, ZHENG-SONG, та 黃正松. "以直接聚縮合法合成含佩基之聚酯". Thesis, 1991. http://ndltd.ncl.edu.tw/handle/14988075301952024231.

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25

Lai, shin-i., та 賴欣怡. "晶圓直接接合製程物理及化學機制探討". Thesis, 2003. http://ndltd.ncl.edu.tw/handle/90571029790127802476.

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26

XIAO, YANG-TONG, та 蕭楊犝. "接納法應用於焊接合成樑架之振動分析". Thesis, 1991. http://ndltd.ncl.edu.tw/handle/33243898117005537963.

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27

LIU, SHU-HAO, та 劉書豪. "鐵鋁錳合金鋼TIG銲接及銲接後之腐蝕性質". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/67496792160381189614.

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28

徐景馨. "Ti6Al6V2Sn合金之超塑性成型與擴散接合研究". Thesis, 1992. http://ndltd.ncl.edu.tw/handle/16204177928880026247.

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29

Yang, Bozhi, та 楊博智. "金凸塊與銅電極接合界面之電漿活化對覆晶接合強度之影響". Thesis, 2012. http://ndltd.ncl.edu.tw/handle/24297439307612115243.

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碩士<br>國立中正大學<br>機械工程學系暨研究所<br>100<br>In this study, plasma surface activated bonding (SAB) technique was applied in flip chip bonding of alumina chip gold bump and the copper electrode substrate. The plasma activation technology is based on the physical gas plasma treatment on the bonding surface to activate the bonding interface. It is expected that the plasma activated technology would effectively reduce the surface contaminants and oxides. Auger electron spectrometry was used to analyze the contaminants and the effect of SAB on the surface cleaness of gold bumps and copper electrode surface
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30

XU, RONG-JUE, та 許榮爵. "金屬材料擴散接合之研究". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/68127583886108967798.

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31

ZHANG, JI-BEN, та 張吉本. "精密陶瓷擴散接合之研究". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/96720818702158732125.

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32

ZENG, MING-REN, та 曾明仁. "精密陶瓷之硬銲接合研究". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/71113099572849882814.

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33

HUANG, GUO-ZHE, та 黃國哲. "複合材料板之接應力分析". Thesis, 1990. http://ndltd.ncl.edu.tw/handle/48506509139240511262.

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34

HE, WU-JUN, та 何武鈞. "2024與6061鋁合金銲接性研究". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/38597894381142220964.

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35

LIANG, DE-HUI, та 梁德暉. "管狀結構接合之電腦輔助銲接設計系統架構". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/61813459170827405041.

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36

DENG, LUN-ZHONG, та 鄧崙忠. "鈦銅鎳填料合金對鈦板硬銲接合的研究". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/92841432721059772416.

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CHEN, ZHONG-REN, та 陳忠仁. "Ti-6A1-4V合成超愬性成型及擴散接合研究". Thesis, 1990. http://ndltd.ncl.edu.tw/handle/60791584221909348841.

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38

WENG, ZONG-LIE, та 翁宗烈. "聚苯乙烯/氨坴甲酸酯接枯聚合物之合成". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/90381504869943728835.

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39

CAI, PU, та 蔡璞. "應用有限單元法於界面接合及接觸問題之分析". Thesis, 1985. http://ndltd.ncl.edu.tw/handle/09311290965542825357.

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40

YU, DING-LU, та 余定陸. "氟化鎂陶瓷擴散接合之研究". Thesis, 1990. http://ndltd.ncl.edu.tw/handle/37785443728949279631.

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41

Yan, Da Ren, та 嚴大任. "TiAl介金屬以純鋁箔及鋁矽合金接合之研究". Thesis, 1995. http://ndltd.ncl.edu.tw/handle/93644669056409456208.

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42

呂佳勳. "未再結晶處理對5083鋁合金加壓接合之研究". Thesis, 1999. http://ndltd.ncl.edu.tw/handle/80992818283264718029.

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43

ZHANG, TIAN-CAI, та 張添財. "氧化鋁陶瓷與鈦及鈦合金擴散接合之研究". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/58388585084054770143.

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44

DENG, REN-JUN, та 鄧仁俊. "苯乙烯--馬來酐接枝化合物研究--合成及性質". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/09921482396187768720.

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45

吳學位. "「活性填料硬焊法」接合氧化鋁與超合金之研究". Thesis, 1992. http://ndltd.ncl.edu.tw/handle/12568849461844475913.

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46

BAI, ZHI-GANG, та 白志剛. "複合層薄殼與剛球的接觸行為". Thesis, 1988. http://ndltd.ncl.edu.tw/handle/87049710422193638281.

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47

CHEN, GUAN-HONG, та 陳冠宏. "鎳鋁介金屬化合物之銲接研究". Thesis, 1989. http://ndltd.ncl.edu.tw/handle/13888817690091317981.

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48

Lee, Yueh-lin, та 李岳霖. "Fe-28at%Al紅外線硬銲接合之研究". Thesis, 2001. http://ndltd.ncl.edu.tw/handle/87541808502021825619.

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碩士<br>國立臺灣大學<br>機械工程學研究所<br>89<br>Abstract The Infrared vacuum brazing process which is characterized with a rapid thermal cycle can reduce the disadvantage of the base metal exposed under high temperature and minimize the growth of the brittle intermetallic layers after long holding time. The present work reports a novel approach in joining Fe3Al by infrared brazing using both pure Al foil and Nicrobraz L.M. as brazing filler metals. For the case of pure Al foil as braze alloy, various iron aluminide phases such as FeAl3, Fe2Al5, FeAl2, FeAl, and the high temperatureεphase were obs
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Wang, Yu-De, та 王裕德. "區域整合、關稅政策與直接投資". Thesis, 1996. http://ndltd.ncl.edu.tw/handle/51709521856247833365.

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50

葉明勳. "英高鎳718超合金之接合技術與超塑性成形複合加工研究". Thesis, 1996. http://ndltd.ncl.edu.tw/handle/25231896866730733692.

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