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當(dāng)前位置: 首頁出版圖書科學(xué)技術(shù)工業(yè)技術(shù)機械、儀表工業(yè)液壓與氣壓傳動(第2版)

液壓與氣壓傳動(第2版)

液壓與氣壓傳動(第2版)

定 價:¥79.80

作 者: 姚林曉 著
出版社: 電子工業(yè)出版社
叢編項:
標(biāo) 簽: 暫缺

ISBN: 9787121375101 出版時間: 2022-01-01 包裝: 平裝
開本: 16開 頁數(shù): 344 字數(shù):  

內(nèi)容簡介

  本書除了介紹液壓與氣壓傳動的基本原理、基本概念,還介紹機床、工程機械等多個行業(yè)設(shè)備中液壓系統(tǒng)常用的液壓元件、典型液壓系統(tǒng)等。全書共10 章,第1~2 章為基礎(chǔ)知識,包括液壓與氣壓傳動的基本原理和基本概念,以及液壓流體力學(xué)基礎(chǔ);第3~6 章介紹液壓傳動常用的液壓元件、液壓油和液壓系統(tǒng)輔助元件;第7~8 章介紹液壓基本回路和典型液壓回路;第9 章介紹液壓系統(tǒng)設(shè)計與計算,通過一個設(shè)計實例闡明一般液壓系統(tǒng)的設(shè)計原則、方法和步驟;第10 章介紹氣壓傳動,包括常用的氣壓傳動元件(簡稱氣動元件)、氣壓傳動基本回路(簡稱氣動基本回路)和氣壓傳動系統(tǒng)(簡稱氣動系統(tǒng))實例。

作者簡介

  第一作者姚林曉:主要從事工程機械潤滑裝置三維設(shè)計及流動仿真模擬方面的教學(xué)科研工作。主持并參與省廳級科研項目12項,橫向課題8項,獲獎10項,其中作為主持獲獎4項,○1基于辛幾何學(xué)的大型柔性空間結(jié)構(gòu)動力特性研究”○2柔性多體智能結(jié)構(gòu)滑??刂蒲芯颗c工程應(yīng)用” ○3車輛集中潤滑系統(tǒng)潤滑脂流動仿真模擬及工程應(yīng)用”這三項分別獲河南省教育廳科技成果一等獎,○4車輛集中潤滑系統(tǒng)潤滑脂流動仿真模擬及工程應(yīng)用”獲河南省科技進步二等獎;主編和副主編出版教材各1部,參編學(xué)術(shù)專著1部;發(fā)表論文12篇,其中三篇第一作者論文分獲河南省優(yōu)秀論文二等獎和三等獎,SCI、EI收錄論文4篇。授權(quán)專利7項。從事教學(xué)工作20年來,主要擔(dān)任了液壓與氣壓傳動、機械原理和機械設(shè)計基礎(chǔ)課程的本科生教學(xué)任務(wù)和計算流體力學(xué)的研究生教學(xué)任務(wù)。

圖書目錄

目 錄
第1 章 緒論 ·················································································································.1
1.1 液壓與氣壓傳動基本原理、組成和圖形符號 ·······························································.2
1.1.1 液壓與氣壓傳動基本原理 ·············································································.2
1.1.2 液壓與氣壓傳動系統(tǒng)的組成 ··········································································.4
1.1.3 液壓傳動圖形符號 ······················································································.5
1.2 液壓與氣壓傳動的優(yōu)缺點 ·······················································································.6
1.2.1 液壓與氣壓傳動的優(yōu)點 ················································································.6
1.2.2 液壓與氣壓傳動的缺點 ················································································.6
1.3 液壓與氣壓傳動的應(yīng)用與發(fā)展 ·················································································.7
1.3.1 液壓與氣壓傳動的應(yīng)用 ················································································.7
1.3.2 液壓與氣壓傳動技術(shù)的發(fā)展 ··········································································.8
1.4 本書內(nèi)容安排 ······································································································.8
本章小結(jié) ···················································································································.9
思考與練習(xí) ················································································································.9
第2 章 液壓流體力學(xué) ·································································································.10
2.1 液體的主要物理性質(zhì) ···························································································.10
2.1.1 密度 ······································································································.10
2.1.2 壓縮性和膨脹性 ·······················································································.11
2.1.3 黏性 ······································································································.11
2.2 液體靜力學(xué) ·······································································································.13
2.2.1 液體所受的作用力 ····················································································.13
2.2.2 靜止液體微分方程的推導(dǎo) ···········································································.14
2.2.3 靜止液體微分方程的應(yīng)用 ···········································································.15
2.2.4 壓力的表示方法及單位 ··············································································.17
2.3 流動液體的力學(xué)基本規(guī)律 ·····················································································.18
2.3.1 經(jīng)典流體力學(xué)研究方法介紹 ········································································.18
2.3.2 流動液體力學(xué)的基本概念 ···········································································.19
2.3.3 流動液體的連續(xù)性方程 ··············································································.20
2.3.4 理想液體流動的微分方程 ···········································································.20
2.3.5 伯努利方程 ·····························································································.21
2.3.6 動量方程 ································································································.22
2.4 液體在流動中的能量損失 ·····················································································.24
2.4.1 流態(tài)實驗和雷諾數(shù) ····················································································.24
2.4.2 液體圓管流動中的沿程壓力損失 ··································································.26
2.4.3 液體流動中的局部壓力損失 ········································································.29
2.4.4 管道系統(tǒng)中的總壓力損失和壓力效率 ····························································.30
2.5 液體在小孔和縫隙中的流動 ··················································································.32
2.5.1 液體在小孔中的流動 ·················································································.32
2.5.2 液體在縫隙中的流動 ·················································································.34
2.6 液壓卡緊問題 ·····················································

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