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快速成型技術(shù)在2023年的發(fā)展使用
來(lái)源:http://726kxw.com.cn作者:山東嘉瑞杰機(jī)械科技有限公司發(fā)布時(shí)間:2023-07-31
快速成型技術(shù)是基于離散/堆積成型原理,根據(jù)三維CAD模型,按一定厚度把CAD模型進(jìn)行分層,將三維模型變成厚度很薄的二維平面模型。再將二維模型進(jìn)行數(shù)據(jù)處理,加入加工參數(shù),在數(shù)控系統(tǒng)控制下以平面加工方式連續(xù)加工出每個(gè)薄層,并使之粘結(jié)而成形??焖俪尚陀泻芏喙に嚪椒?,所有的快速成型方法都是一層一層地制造零件,所不同的是每種方法所用的材料不同,粘結(jié)方式不同。典型的快速成型技術(shù)有光固化快速成型(SLA)、熔融沉積(FDM)、激光粉末燒結(jié)(SLS)和疊層輪廓(LOM)。
The Rapid prototyping technology is based on the discrete/stacking principle. According to the 3D CAD model, the CAD model is layered according to a certain thickness, and the 3D model is transformed into a 2D plane model with very thin thickness. Then, the two-dimensional model is subjected to data processing, processing parameters are added, and each thin layer is continuously processed in a planar machining manner under the control of the CNC system, and bonded to form. There are many process methods for Rapid prototyping. All Rapid prototyping methods manufacture parts layer by layer. The difference is that each method uses different materials and different bonding methods. Typical Rapid prototyping technologies include photocurable Rapid prototyping (SLA), fused deposition (FDM), laser powder sintering (SLS), and laminated contour (LOM).
與傳統(tǒng)的處理方式相比,快速成型技術(shù)在速度性、集成化、適用性、可調(diào)整性和自動(dòng)化等方面具有明顯優(yōu)勢(shì)。比如:快速成型技術(shù)實(shí)現(xiàn)了完全的自動(dòng)化成型,只需操作員輸入相關(guān)的參數(shù),在不需要過(guò)多干涉的情況下,就可以實(shí)現(xiàn)整個(gè)過(guò)程的自動(dòng)運(yùn)轉(zhuǎn)。
Compared with traditional processing methods, Rapid prototyping technology has obvious advantages in speed, integration, applicability, adjustability and automation. For example, the Rapid prototyping technology has realized complete automatic molding. Only the operator needs to input relevant parameters, and the automatic operation of the whole process can be realized without too much interference.
更近幾年,快速成型技術(shù)得到了極大發(fā)展,其涉及的領(lǐng)域廣泛,應(yīng)用行業(yè)眾多,主要集中在工業(yè)制造、建筑行業(yè)、醫(yī)學(xué)領(lǐng)域、藝術(shù)創(chuàng)造、考古研究、航空空間等領(lǐng)域。
In recent years, Rapid prototyping technology has been greatly developed. It involves a wide range of fields and has many applications, mainly in industrial manufacturing, construction industry, medical field, art creation, archaeological research, aerospace and other fields.
隨著快速成型技術(shù)的發(fā)展,其被廣泛應(yīng)用于模具制造過(guò)程中。該技術(shù)可以進(jìn)行新產(chǎn)品的快速試制,制作周期僅為傳統(tǒng)技術(shù)的1/4左右,可以有效提升模具制造的一次成功率。該技術(shù)是將模具的概念設(shè)計(jì)和生產(chǎn)工藝在CAD系統(tǒng)能進(jìn)行綜合,利用計(jì)算機(jī)的模擬分析形成新型的模具設(shè)計(jì)制造系統(tǒng),無(wú)需數(shù)控切削加工就可以制造出復(fù)雜的曲面等結(jié)構(gòu),有利于提高模具的制造柔性和質(zhì)量。
With the development of Rapid prototyping technology, it is widely used in mold manufacturing process. This technology can be used for rapid trial production of new products, and the production cycle is only about 1/4 of traditional technology, which can effectively improve the one-time success rate of mold manufacturing. This technology integrates the conceptual design and production process of molds in a CAD system, utilizing computer simulation analysis to form a new type of mold design and manufacturing system. Without the need for CNC cutting, complex surfaces and other structures can be manufactured, which is conducive to improving the manufacturing flexibility and quality of molds.
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