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加工技術高度化に関する研究 - 技術研究所

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Contents

1. 3 2
2. 99 9 cBN DTP 300A 3 11 z 3 11 ALA4788 AX VEO bmilcik X347cX5BEn S0 X
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15. LHP RECZ o LHP LHP LHP LHP LHP LHP LHP 30 W s J KA 1 G Eckert and M Drake Analysis of Heat and Mass Transfer McGraw Hill Inc 2 F Incropera and D Sewitt Fundamentals of Heat and Mass Tra
16. PC 100W 100W cm HELT em
17. 2 PC 25 50W PC 80 130W PC CPU
18. hBN cBN MEO Mg BN hBN 5 5GPa 1 350 C cBN 37 15 u m cBN 7 7GPa 2 100 hBN cBN cBN 0 5 m cBN cBN
19. LHP Loop Heat Pipe LHP CPU SLTH IT IT 2 3 1 IT
20. AA adl 4 2 AA JJ 4 2 4 2 4 4 ly fcu 4 4 i aia o lg m l m 4 1 4 LHP 1 LHP 3 LHP
21. TOBMERROWHL LAL 100W m f LHP Loop Heat Pipe CPL Capillary pumped Loop 1980 CPL CPL buses UC XAR EWE JZ
22. 20 8 E MABOMMARTI UKW 8 2000 2005 2010 201 2020 2025 2030 2035 2040 2045 2050 2055 EARRAN 3 1 IT 30 1 20 4 LH 4 200kWh 84 4 LHP 4 1 RETI 4 1 1 LHP 4 1 M E Pin mi x p lini t PV sini 4 1 uai V loop Mu kg Du kg m p kg m p
23. APr Darcy Weisbach Equation Y 4 29 m nys p kg m v X 26 e s seeeeeseeeseesea 4 30 0 316A 4 31 AP 3 V AP ur RA dus duced wes RE 4 32 Re d r 364 0 00515a0 r d 433 Re d r 364 0 00431a0 r d e eee 4 34 r m 0 o 442 4 2 9 gw 9 ee 4 nmsnBed l 0 r d gt 9 85 AP 4 2 6 RISk DEJAR 4 1 4 4 8 4 14 4 2 7 AP
24. 4 3 m TJ Q LHP T P L m OT LHP T LHP T PJ m Ec ua e YES 4 3 T QD
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26. 125 um 4 9 4 2 2 50m 125 um 50 m FC 0 1
27. Bx 2006 1 No25 2 KSK GH19 3 2008 9 3 2006 52 4 I 4 23 BN SEM 15 1992 156 5 1979 48 6 2 103 979 2000 370 7 NGT 2007 46 8 2006 2008 F031 9 56 5 1990 782 10 R Brehm K van Dun J C G Teunissen and J Hasma Transparent single point turning of optical glass A phenomenological presentation PRECISION ENGINEERING 1979 207 213 11
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29. 1 IU The study of reliability advancement in processing technology by controlling the temperature Kiyoshi TANAKA 1 1942 G MHEAR S Gaugler Heat Transfer Device 1 1963 AEC Evaporation Condensation Heat Transfer Device 2 amp EENSOO RE dAEL Heat Pipe E h Gaugler
30. 4 3 4 15 4 3 m I R 4 Ra 0 00239 K10 0 03248 0 01255 cBN 0 15804 0 16 D 0 12 0 14 01 Ra um BEAT 4 15 cBN cBN cBN B 4 16
31. LHP 4 2 LHP 4 21 LHP AP 2 APw AP AP APeon 421 AP APs APeap APrap A Po AP Pa AB AP AP AP AP AP AP APu AP 4 21 4 5 Q Pe AP ERIS WR 4 5 4 2 1 4 22
32. USERS CPDR CPL 1 1 CPDR 2006 12 VI 8 ETS VIH DPR LHP Bd du 1 2 DPR 1 3 MSI 5 MI CIRCU PIPE CPU
33. Ispra Joint Nuclear Research Center Ispra C A Busse 1 600 lt 1 800C Ispra 5 IKE 77 Reading IRD tt ESRO RCA 1966 E HPC
34. X HN FC cBN cBN cBN SEM B JKA 1
35. 1 I 9601 25mm 10mm 2 SUS630 3 3 EL 9 5mm x Y Z 3 4 Y 58N X 10N Z 22N Y 100N X Z
36. 2009in A 7 12 J France J W Roblee K Modemann Dynamaic characteristics of the Lawrence Livermore National Laboratory Precision Engineering Research Lath PRECISION ENGINERING 13 3 1991 196 13 SREI 9 1986 79 14 ZKS 1 46 2 82 87 20020201 15 Uh 46 1 17 20 20010101 16 WE T 46 1 21 24 20020101 17 46 1 26 28 20010101 18 AH 2007 100 19 2002 72 20 JL 1978 46 16
37. TIT 4 22 1 000 R 4 21 3 000 4 23 cBN 4 19 cBN SEM 14 5
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41. JAXA RE 1 2 EVS VI LI DPR LHP LHP LHP LHP 1 3 LHP CPU 2 LHP LHP HP Heat Pipe E 2 1 LHP Hk KA LHP 2 1 LHP
42. Excel 28 Excel Excel SEECHECTIE T uS a DATA usd 91 If E153 Excel 5 4 Excel 5 4 LHP 5 4
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54. Grover Gaugler Grover Los Alamos 1967 Los Alamos O T P Cotter Theory of Heat Pijpe 217
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56. 4 18 Ee 4 16 4 17 4 18 cBN cBN MIME X BN SEM 4 19 cBN H SEM 500 4 20 1 000 4 21
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62. 500min mm min 250mim 0 3m min 4 13 125 gm 12 N 10 jn g X _ F 0 8 Y 6 Z73 8 9 HI 23 S T z R Ba o4 T vasi 2 che R 02 8 2 D 0 2 4 6 8 10 12 14 msec 4 13 1msec
63. HP 2EXG dE 19 VERAS 4775865385 ISZEZLILILILILLLIS 2 1 LHP 3 LHP
64. 1 125u m 19mm cos 19 0 125 19 6 576 6 576 6 576 360 500 60 0 0022 5 0 0022 0 001 4 2 4 2 sec min 250 500 750 1 000 2 250 500 750 1 000 500min 1 000min
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69. K10 HTi10 DCMW11T304 cBN 0 V 23807787 KRO im CD Edek EL E i 4 yy Hi ASIA URB t HHBHI Hi ase ril 3 8 d E 3 7 USB KISTLER PC USB s a 1 2ch 2 4ch Bt ro 3 9 3 9 USB rs 3 8 FTZ6 R300 5B12
70. 10N 3 5 3 6 X XY 17 2962 6 10 6 Z 37 9 10 6 10 KISTLER KISTLER TYPE5073 JHR PCB 208A05 PCB tt MODEL4808 FFT CF 360Z 3 7 F 5 75 5 125 4 05kHz
71. cBN 2 cBN 80 90vol cBN Co Al TiN TiC C cBN 40 70vo1 cBN cBN cBN 1 000m min 2 3 cBN cBN cBN
72. Pipe LHP 2008ASME Summer Heat Transfer 16 K Tanaka ML Katsuta YOhuchi K Saitou Conference Jackonsonville Frorida USA HT2008 Thermal Performance of the Mini Loop Heat 56047 Pipe LHP 2009ASME Summer Heat Transfer 14 Conference SanFrancisco Califomia USA HT200 9 88403 2009 3 22 3 31 7203 0042 1 12 042 475 1155 194 0033 2320 042 792 3100
73. BN TiC TiN Al20 WC TaC SiaN S RR OI Au Kan 2 1 cBN 2 1 HV W m K 0105 0 s00 2100 31 cBN 450 1 300 4 Ti B 74 TiN 2 500 29 9 4 wp 200 29 78 WC 2 100 121 5 2 TaC IL800 21 6 3 SiN 1 600 100 3 4 2 2 cBN cBN hBN 5GPa 1 300 cBN cBN Co TiN 1970
74. Material Processing s un TIRIPA Heat Transfer in Electronic Equipment OP 2009 7 19 24 Westin St Francis Hotel HastandMsss Tienes in Biofechncl 2009ASME Summer Heat eat and Mass Transfer in Biotechnology dis S k m S aa Ted Low Temperature Heat Transfer ur c E Environmental Heat Transfer Performance of the Mini Loop Heat Pipe se l pes Computational Heat Transfer Heat Transfer Education NR cf Heat Transf Tb DUC odas 1d NIE SI ix TO LHP 330 XR da NT Mathematical Modeling of a Miniature Loop Heat FieatTransier in Energy System Pipe with Two Evaporators and Two Condenser Thermo physical Property Jentung ku NASA Z ROZK EAr C bias cc d 29 Mini LHP SINDA FLUINT LHP Investigation of the Loop Heat Pipe Survival and Restart after Extreme Cold Environment Exposure Jentung Ku NASA 150C LHP Loop Heat
75. Pipe Design Manufacturing and Testing An industrial Perspective W G Anderson Advanced Cooling Technologies Inc LHP 07K Thermal Performance of a Thin Flat Plate Heat Pipe Wei QU Chinese Academy of Sciences 7x1xlmm LHP ORIF AR Steady State Segmented Thermo fluid Network Simulations of a Loop Heat Pipe Operating with Four Different Working Fluids B Rabi Baliga McGill Unversity LHP LHP LHP LHP 7 LHP
76. 4 2 ELM FTZ6 R300 5B12 4 3 K10 cBN cBN PD1540KK 30 1 400min 880m min 1 000 NH 3SP
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78. Excel TAAT 7 LHP PP E qain 5 2 LHP 5 2 ER11 2 R113 3 NH 4 CHhOH 5 HO Utt EELA fit lkg D oJ A 5 3 VLOOP VDEG AREA EVAP VID 1 2 amp CIS VLOOP L VN B C lt lt 2 R TRE PT 5 4 REGIT k IE ifia DC 4 2ZIg t gts VN E3a amp fox vi o RAMDA ILLENGTHLI iE je TE m cad p Pa 5 2 5 3 LHP Excel 5 3 Excel at LHP
79. nsfer John Wiley amp Sons 3 D Reay and P Kew Heat Pipes Butterworth Heinemann 4 2001 5 No 2 672 1980 3435 3446 6 CPL B 1996 7 Tanaka K Katsuta M Okamoto A Ijichi K and Wakabayashi A Thermal Performance of the Capillary Pumped Deployable Radiator 12 International Heat Transfer Conference Grenoble France 4 2002 8 447 452 8 HP d 5 W E IE OC HS E ia No 71 706 B 2005 155 162 9 B 2006 10 2007 11 2008 12 45 2008 Vol L pp 337 338 15 46 13 K Tanaka Development of the Loop Heat 2009 Vol IILpp 713 714

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