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快速成型的基本理論以及工藝過程
來源:http://m.tescen.com作者:山東嘉瑞杰機械科技有限公司發布時間:2022-11-03
快速成型屬于離散/堆積成型。它從成型原理上提出一個全新的思維模式,即將計算機上制作的零件三維模型,進行網格化處理并存儲,對其進行分層處理,得到各層截面的二維輪廓信息,按照這些輪廓信息自動生成加工路徑,由成型頭在控制系統的控制下,選擇性地固化或切割一層層的成型材料,形成各個截面輪廓薄片,并逐步順序疊加成三維坯件,然后進行坯件的后處理,形成零件。
Rapid prototyping belongs to discrete/stacked prototyping. It puts forward a new thinking mode from the molding principle, that is, the three-dimensional model of the part made on the computer is gridded and stored, and layered to obtain the two-dimensional profile information of each layer of section. According to the profile information, the processing path is automatically generated. Under the control of the control system, the molding head selectively solidifies or cuts layers of molding materials to form each profile slice, And gradually superimpose into three-dimensional blanks, and then conduct post-processing of blanks to form parts.
山東快速成型工藝過程:
Shandong rapid prototyping process:
(1)產品三維模型的構建。由于RP系統是由三維CAD模型直接驅動,因此要構建所加工工件的三維CAD模型。該三維CAD模型可以利用計算機輔助設計軟件(如Pro/E,I-DEAS,SolidWorks,NX等)直接構建,也可以將已有產品的二維圖樣進行轉換而形成三維模型,或對產品實體進行激光掃描、CT斷層掃描,得到點云數據,然后利用反求工程的方法來構造三維模型。
(1) Construction of 3D model of products. Since RP system is directly driven by 3D CAD model, the 3D CAD model of the workpiece to be machined must be constructed first. The 3D CAD model can be directly built by using computer aided design software (such as Pro/E, I-DEAS, SolidWorks, NX, etc.), or the 2D drawings of existing products can be converted to form a 3D model, or the product entity can be scanned by laser and CT to obtain point cloud data, and then the 3D model can be constructed by using reverse engineering methods.
(2)三維模型的近似處理。由于產品往往有一些不規則的自由曲面,加工前要對模型進行近似處理,以方便后續的數據處理工作。由于STL格式文件格式簡單、實用,目前已經成為快速成型領域的準標準接口文件。
(2) Approximate processing of 3D models. Because the product often has some irregular free surfaces, the model should be approximated before processing to facilitate the subsequent data processing. Because STL format file format is simple and practical, it has become a quasi standard interface file in rapid prototyping field.
(3)三維模型的切片處理。根據被加工模型的特征選擇合適的加工方向,在成型高度方向上用一系列一定間隔的平面切割近似后的模型,以便提取截面的輪廓信息。間隔一般取0.05mm~0.5mm,常用0.1mm。間隔越小,成型精度越高,但成型時間也越長,效率就越低,反之則精度低,但效率高。
(3) Slicing of 3D models. Select the appropriate processing direction according to the features of the model to be processed, and cut the approximate model with a series of planes at a certain interval in the molding height direction, so as to extract the profile information of the section. The interval is generally 0.05mm ~ 0.5mm, usually 0.1mm. The smaller the spacing is, the higher the molding precision is. However, the longer the molding time is, the lower the efficiency is. On the contrary, the precision is low, but the efficiency is high.
(4)成型加工。根據切片處理的截面輪廓,在計算機控制下,相應的成型頭(激光頭或噴頭)按各截面輪廓
(4) Forming processing. According to the section profile processed by slicing, under the control of computer, the corresponding forming head (laser head or nozzle) shall follow each section profile
(5)成型零件的后處理。從成型系統里取出成型件,進行打磨、拋光,或放在高溫爐中進行后燒結,進一步提高其強度。
(5) Post treatment of formed parts. The molded parts are taken out of the molding system, polished, or sintered in a high temperature furnace to further improve their strength.
快速成型技術在制造領域中起著越來越重要的作用,并將對制造業產生重要影響。您有什么需求就來我們網站http://m.tescen.com進行咨詢交流吧!
Rapid prototyping technology plays an increasingly important role in the manufacturing field, and will have an important impact on the manufacturing industry. Come to our website if you have any needs http://m.tescen.com Have a consultation and exchange!
上一篇:快速成型技術的基本想法
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