File:NDL1059684 直流機の原理と運転法.pdf

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直流機の原理と運転法   (Wikidata search (Cirrus search) Wikidata query (SPARQL)  Create new Wikidata item based on this file)
Author
通信電気学校
image of artwork listed in title parameter on this page
Title
直流機の原理と運転法
Publisher
電気書院
Language jpn
Publication date

1946

昭和21
Place of publication JP
Source

doi:10.11501/1059684

institution QS:P195,Q477675
Creator
InfoField
通信電気学校教務部 編
Publication Place
InfoField
大阪
Subject: NDC
InfoField
542 542.2
Extent
InfoField
178p ; 21cm
Material Type
InfoField
Book
Source Identifier: JPNO
InfoField
46018140
Date Digitized: W3CDTF
InfoField
2010-03-31
Audience
InfoField
一般
Title Transcription
InfoField
チョクリュウキ ノ ゲンリ ト ウンテンホウ
Publisher Transcription
InfoField
デンキ ショイン
Source Identifier: NDLBibID
InfoField
000000679524
Call Number
InfoField
542.2-Ts91ウ
Creator: NDLNAId
InfoField
00257310
Contents
InfoField
標題

目次

1. 電氣機器一般

1.1 講義を始める前に/1

1.2 電氣機器の分類/2

2. 直流機械

2.1 直流發電機の原理/4

2.2 直流電動機の原理/9

2.3 直流機の構造/10

2.3.1 一般/10

2.3.2 電機子鐵心/11

2.3.3 電機子卷線/14

2.3.4 整流子/15

2.3.5 軸及軸受/17

2.3.6 界磁/17

2.3.7 刷子及刷子保持器/19

2.4 電機子卷線法/21

2.4.1 卷線法の種別/21

2.4.2 卷線の見方、書方、仕方/26

2.5 誘起起電力/33

2.6 電機子反作用/34

2.6.1 作用と反作用/34

2.6.2 二極機の電機子反作用/35

2.6.3 多極機の電機子反作用/38

2.6.4 整流問答/40

2.6.5 補極と其の作用/45

2.6.6 磁束分布と整流子の閃絡/49

2.6.7 補償卷線と其の作用/50

2.6.8 刷子の性質/52

2.7 發電機特性/52

2.7.1 特性一般/53

2.7.2 勵磁方式/54

2.7.3 特性曲線/55

2.7.4 他勵發電機/56

2.7.5 分卷發電機/59

2.7.6 直卷發電機/62

2.7.7 複卷發電機/64

2.8 發電機の電壓變動率/65

2.9 發電機の電壓調整/66

2.9.1 電壓調整一般/66

2.9.2 自動電壓調整器/67

2.10 發電機の能率と定格/69

2.11 直流發電機の並行運轉/74

2.11.1 直流發電機の直列運轉/74

2.11.2 並行運轉の利点と其の原理/74

2.11.3 並行運轉と外部特性曲線(並行運轉 安定と不安定)/76

2.11.4 並行運轉の實際/78

2.12 直流發電機の用途と型式の選定/81

2.13 直流電動機一般/82

2.13.1 電動機としての特質/82

2.13.2 速度と回轉方向/84

2.13.3 エネルギ變換の状況/85

2.13.4 回轉力/86

2.13.5 勵磁方式/88

2.14 直流電動機の特性/88

2.14.1 特性一般/88

2.14.2 分卷電動機の特性/89

2.14.3 直卷電動機の特性/91

2.14.4 複卷電動機の特性/93

2.14.5 直流電動機の速度變動率/94

2.14.6 直流電動機の能率/94

2.15 直流電動機の運轉/94

2.15.1 運轉一般/94

2.15.2 直流電動機の起動器/96

2.15.3 起動抵抗の段付/97

2.15.4 分卷電動機の速度制御法/99

2.15.5 直卷電動機の速度制御法/102

2.15.6 制動/105

2.16 直流電動機の用途と其の選定/106

2.17 直流機の据付運轉並故障對策/106

2.17.1 運搬並据付上の注意/106

2.17.2 直流機の運轉準備/107

2.17.3 直流機の運轉/109

2.17.4 直流機の故障と對策/109

2.18 直流機の試驗/111

2.18.1 試驗の一般/111

2.18.2 準備試驗/111

2.18.3 温度試驗/112

2.18.4 負荷試驗/115

2.18.5 無負荷損の測定/115

3. 特殊直流機

3.1 特殊直流機一般/116

3.2 單極直流發電機/116

3.3 均壓機/119

3.3.1 直流三線式配電/119

3.3.2 各種の均壓機/120

3.4 三線式直流發電機/122

3.5 發電動機/123

3.6 不變電壓直流發電機及不變電流直流發電機/125

3.6.1 定電壓發電方式/125

3.6.2 ローゼンベルヒダイナモ/128

3.6.3 三刷子發電機/130

3.7 熔接用發電機/130

3.8 直流昇壓機/132

3.8.1 直流線路電壓の調整/132

3.8.2 直列昇壓機/133

3.8.3 並列昇壓機/134

3.8.4 複卷昇壓機/137

4. 各種整流器の原理

4.1 交直變成の必要と整流機器/138

4.2 交直變成の二つの方法/139

4.3 電子論の手ほどき/140

4.3.1 電子とイオンの働き/141

4.3.2 ガス体内の電導/143

4.3.3 水銀蒸氣中の電導/146

4.4 水銀整流器の原理/147

4.4.1 水銀弧光の性質/147

4.4.2 水銀弧光の整流作用/149

4.4.3 水銀整流器の實例/152

4.5 熱電子整流器/154

4.6 熱陰極ガス入整流管/155

4.6.1 ガス封入の目的/155

4.6.2 タンガー整流器/157

4.6.3 ウェーネルト整流器/158

4.6.4 熱陰極水銀整流管/158

4.6.5 格子制御水銀整流管/159

4.7 放電管型整流器/163

4.7.1 低壓氣体放電の理論/163

4.7.2 グリム整流器/166

4.7.3 S管/167

4.8 電解整流器/168

4.8.1 アルミニウム整流器/168

4.8.2 タンタラム整流器/169

4.9 乾式整流器/169

4.9.1 鑛石檢波器/169

4.9.2 酸化銅整流器/171

4.9.3 セレン整流器/172

4.10 機械的整流器/172

4.10.1 同期整流器/172

4.10.2 振動整流器/173

4.11 整流器の接續法と使用心得/174

研究設問/176

Licensing

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