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基于UG的HDZ-80型大尺寸藥品自動裝盒機核心機構參數(shù)化設計

發(fā)布時間:2018-06-07 22:01

  本文選題:藥品裝盒機 + UG。 參考:《南昌大學》2014年碩士論文


【摘要】:隨著包裝機械在制藥行業(yè)的逐漸普及,藥品包裝機械的種類也日趨繁多。由于各藥品生產廠家的產品三維尺寸各不相同,而形狀等幾何要素差別不大,所以供給不同廠家的藥品裝盒機在核心機構上略有差異。因此,生產廠家對每一種不同的產品訂單,都要對核心機構作相應修改。這種修改耗費設計工程師大量精力,同時還會推遲交貨時間。因此,本課題建立了參數(shù)化的HDZ-80型大尺寸藥品自動裝盒機核心機構圖形庫,只要輸入設計參數(shù),系統(tǒng)就能自動生成新的藥品裝盒機核心機構三維圖。 本課題主要研究內容如下: 1、建立藥品裝盒機核心機構主要零件的數(shù)學模型,分析每個零件需要參數(shù)化的主要尺寸,以及與主要尺寸關聯(lián)的次要尺寸。 2、建立藥品裝盒機核心機構主要零件的三維模型,通過研究各種建模方法,建立能實現(xiàn)參數(shù)化目標的模型。本文在建模過程加入表達式尺寸關聯(lián),通過核心機構的運動學分析,把整個核心機構零件之間的尺寸聯(lián)系起來,實現(xiàn)用戶只需輸入主參數(shù),系統(tǒng)自動修改與此與相關的副參數(shù)的值,從而達到驅動零件更新的目的,避免了零件尺寸出錯。 3、編寫參數(shù)化設計程序,在Visual C++6.0的平臺上,運用UG/OpenAPI編寫了參數(shù)化設計應用程序,生成動態(tài)鏈接庫文件,將對話框功能通過程序語言驅動,,實現(xiàn)系統(tǒng)設計功能。 4、設計人機交互界面,通過UG/Open MenuScript建立了用戶自定義菜單,通過UG/Open UIStyler創(chuàng)建了系統(tǒng)對話框。設計了良好的人機交互界面,實現(xiàn)用戶與UG系統(tǒng)的交互操作,滿足用戶的功能需求。 在上述研究的基礎上,本文建立了裝盒機核心機構的參數(shù)化設計系統(tǒng),實現(xiàn)了用戶只需輸入主要技術參數(shù)即可獲得核心機構主要零件模型的功能。本系統(tǒng)經廠家試用,符合基本設計要求。
[Abstract]:With the gradual popularization of packaging machinery in the pharmaceutical industry, the variety of pharmaceutical packaging machinery is becoming more and more. Because the three dimensional dimensions of the products of different pharmaceutical manufacturers are different, and the geometric elements such as shapes are not different, there is a slight difference in the core organization of the drug packing machines supplied to different manufacturers. Therefore, manufacturers for each of the different product orders, to the core institutions to make corresponding modifications. The modification takes a lot of effort from the design engineer and delays delivery. Therefore, a parameterized graphics library for the core mechanism of HDZ-80 large size automatic drug packing machine is established in this paper, only the design parameters are input. The system can automatically generate a new 3D drawing of the core mechanism of the drug packing machine. The main research contents of this subject are as follows: 1. The mathematical model of the main parts of the core mechanism of the drug packing machine is established, and the main dimensions of each part that need to be parameterized are analyzed. Secondly, the 3D model of the main parts of the core mechanism of the drug packing machine is established. Through the research of various modeling methods, the model that can realize the parameterized target is established. In this paper, the expression dimension correlation is added in the modeling process. Through the kinematics analysis of the core mechanism, the dimensions of the whole core mechanism parts are connected together, so that the user can only input the main parameters. The system automatically modifies the value of secondary parameters related to this, so as to achieve the purpose of driving the parts to update, avoid the error of part size. 3. 3. Write the parameterized design program on the platform of Visual C 6.0. The parameterized design application program is compiled by using the UG / Open API, the dynamic link library file is generated, the dialog box function is driven by the program language, and the system design function is realized. 4. The man-machine interactive interface is designed, and the user-defined menu is established through UG / Open MenuScript. The system dialog box was created through UG / Open UIStyler. A good man-machine interface is designed to realize the interactive operation between user and UG system and to meet the functional requirements of users. On the basis of the above research, a parametric design system of the core mechanism of the box loader is established in this paper. The main parts model of the core mechanism can be obtained by the user only by inputting the main technical parameters. The system is tested by the manufacturer and meets the basic design requirements.
【學位授予單位】:南昌大學
【學位級別】:碩士
【學位授予年份】:2014
【分類號】:TB486

【引證文獻】

相關期刊論文 前1條

1 胡密;許超超;;基于UG的船機定子鐵芯自動化設計模塊的開發(fā)[J];科技廣場;2015年11期



本文編號:1992933

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