儀表殼自動化壓裝機的設計,儀表,自動化,裝機,設計
常州工學院機電工程學院畢業(yè)設計說明書
摘要:
本課題旨在解決儀表生產(chǎn)中的錐形薄片壓入的工序自動化問題,既要保證壓入的位置,同時必須保證錐形薄片在同一位置產(chǎn)生精度相同的變形。完成了壓裝機構的運動分析、工序設計、主要依靠三個凸輪的運動實現(xiàn)。第一個凸輪通過其擺動從動件控制夾緊軸的水平移動,第二個與第三個凸輪通過其擺動從動件分別控制內(nèi)軸與外軸垂直移動,使其定位和沖壓。
進行了結構設計及關鍵零部件設計。其中有儀表殼的尺寸,裝配夾具形狀及尺寸,從動件的位移線圖的設計,凸輪的設計,其中為了壓裝機的運作設計了減速箱,減速箱里包括電機的選擇,V帶的設計和齒輪的設計,最后選擇了連接壓裝機和減速箱的聯(lián)軸器。
關鍵詞: 凸輪,彈簧,齒輪,齒輪軸,電機。
Abstract:
The subject aimets at solving the process automation problem of tapered chip in production of instrument. Not only ensure the position of pressure, but also must ensure tapered chip in the same location have the deformation. Completed pressing institutions kinematic analysis,process desin,mainly rely on the movement o achieve the three cam, the first cam though the swinging clamping axis control axis level migration, the second and the third cam through swinging clamping axis to distinction control inner axis and outer axis vertical migration to fix position and hurtle press.
Carrying on the structure design and the key partses design. Which have size of instrument shell, assemble fixture shape and size, driven document moves the line diagram, the design of cam, among them for the sake of operation to designing the reducer casing. Reducer casing include the electrical motor choice, the V take design and the wheel gear design, finally chose shaft couping to connect pressure institutions and reducer casing .
Key words: CAM, spring, gear, same dethegear motor shaft.
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