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單柱校正壓裝液壓機
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  • 單柱校正壓裝液壓機
  • 摘 要

    Y41系列單柱校正壓裝液壓機,是一種多功能的中小型液壓機床,適用于軸類零件,型材的校正和軸套類零件的壓裝。它采用手腳聯動操作,通過電動機帶動液壓泵向主油路供油,通過溢流閥,手動換向閥等控制閥對液壓系統進行調壓換向,以達到各種工作狀態。
    該液壓機結構緊湊,動作靈敏可靠,速度快,能耗小,噪音低,壓力和行程可在規定的范圍內任意調節,操作簡單。在本設計中,通過查閱大量文獻資料,設計了液壓缸的尺寸,擬訂了液壓原理圖。按壓力和流量的大小選擇了液壓泵,電動機,控制閥,過濾器等液壓元件和輔助元件。


    關鍵詞:液壓機 液壓系統 調速回路;

    目 錄

    摘要··········································································Ⅰ
    Abstract·····································································Ⅱ

    第1章 緒論·································································1
    1.1 課題背景·····························································1
    1.2 發展趨勢·····························································1
    第2章 方案論證···························································3
    2.1 傳動方案的論證·····················································3
    2.2 控制元件的分析·····················································4
    第3章 液壓機的設計及參數選擇·········································5
    第4章 工況分析···························································6
    4.1 動力(負載)分析及負載循環圖··································6
    4.1.1 摩擦負載······················································6
    4.1.2 慣性負載······················································6
    4.1.3 工作負載······················································7
    4.1.4 負載循環圖···················································8
    4.2 運動分析及運動循環圖·············································8
    4.2.1 位移循環圖L—t·············································8
    4.2.2 速度循環圖···················································9
    第5章 確定液壓系統主要參數··········································10
    5.1 確定液壓缸幾何尺寸··············································10
    5.2 計算液壓缸所需流量··············································13
    5.3 計算系統所需的壓力··············································13
    5.4 繪制沖壓機主缸工況圖···········································15
    5.5 液壓缸主要零件的結構材料及技術要求·························17
    5.5.1 液壓缸的基本參數··········································17
    5.5.2 液壓缸的類型和安裝方式··································18
    5.5.3 液壓缸的主要零件及技術要求·····························18
    5.6 液壓缸結構參數的計算···········································19
    5.6.1 計算液壓缸的厚度··········································19
    5.6.2 液壓缸油口的計算··········································21
    5.6.3 缸底厚度的計算·············································21
    5.7 液壓缸的校合······················································22
    5.7.1 液壓缸中背壓力的校合·····································22
    5.7.2 活塞桿的校合···············································23
    第6章 擬訂液壓原理圖··················································24
    第7章 液壓元件和液壓油的選擇········································26
    7.1 液壓泵的選擇······················································26
    7.1.1 確定泵的最大工作壓力·····································26
    7.1.2 確定液壓泵的流量Q和排量q···························27
    7.1.3 選擇液壓泵的規格··········································28
    7.1.4 確定驅動液壓缸的功率·····································28
    7.2 電動機的選擇······················································29
    7.3 控制閥的選擇······················································29
    7.4 管道(導管)的選擇·················································31
    7.4.1 管道內徑的確定·············································31
    7.4.2 管道壁厚b的計算···········································32
    7.5 確定油箱的容量···················································33
    7.5.1 液壓油的選擇···············································34
    7.5.2 過濾器的選擇···············································34
    7.6 聯軸器的設計·····················································34
    第8章 液壓系統的性能驗算·············································36
    8.1 管路系統壓力損失·················································36
    8.1.1 沿程壓力損失的計算·······································37
    8.1.2 管路內的局部壓力損失·····································38
    8.1.3 閥類元件的局部壓力損失··································38
    8.2 液壓沖擊的計算···················································39
    8.3 液壓系統熱分析及其計算·········································41
    8.3.1 液壓泵功率損失產生的熱流量(熱量)·····················41
    8.3.2 液壓系統的散熱計算·······································42
    第9章 限程裝置的設計··················································44
    第10章 機架的設計······················································45
    10.1 機架材料的選擇··················································46
    10.2 肋的作用··························································46
    第11章 液壓系統的安裝與調試·········································47
    11.1 液壓系統的安裝··················································47
    11.1.1 安裝前的準備工作·········································47
    11.1.2 管子加工···················································47
    11.2 液壓系統的調試··················································48
    11.2.1 調試前的檢查··············································48
    11.2.2 啟動液壓泵·················································48
    11.2.3 系統排氣···················································49
    11.2.4 系統耐壓實驗··············································49
    12.2.5 負載試車···················································49

    結論··········································································50
    致謝··········································································51
    參考文獻·····································································52 ...
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