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天大越華|數(shù)字孿生3D工藝仿真的涵義及應(yīng)用

發(fā)布人:武漢潤(rùn)華環(huán)保設(shè)備有限公司 發(fā)表時(shí)間:2024-07-24

數(shù)字孿生3D工藝仿真可以為各類(lèi)復(fù)雜環(huán)保裝備及產(chǎn)品的設(shè)計(jì)和制造提供產(chǎn)品可裝配性驗(yàn)證、裝配工藝規(guī)劃和分析、裝配操作培訓(xùn)與指導(dǎo)、裝配過(guò)程演示等完整解決方案。該解決方案為產(chǎn)品設(shè)計(jì)過(guò)程的裝配校驗(yàn)、產(chǎn)品制造過(guò)程的裝配工藝驗(yàn)證、裝配操作培訓(xùn)提供虛擬裝配仿真服務(wù)。數(shù)字孿生3D工藝仿真裝配工藝仿真對(duì)于產(chǎn)品裝配過(guò)程的意義主要包括以下幾點(diǎn):

Digital twin 3D process simulation can provide complete solutions for the design and manufacturing of various complex environmental protection equipment and products, including product assemblability verification, assembly process planning and analysis, assembly operation training and guidance, and assembly process demonstration. This solution provides virtual assembly simulation services for assembly verification in the product design process, assembly process verification in the product manufacturing process, and assembly operation training. The significance of digital twin 3D process simulation and assembly process simulation for product assembly process mainly includes the following points:

(1)有利于實(shí)現(xiàn)產(chǎn)品設(shè)計(jì)、工藝設(shè)計(jì)、工裝設(shè)計(jì)的并行開(kāi)展,從而降低產(chǎn)品研制風(fēng)險(xiǎn),縮短產(chǎn)品研制周期,減少開(kāi)發(fā)成本。

(1) It is conducive to the parallel development of product design, process design, and tooling design, thereby reducing product development risks, shortening product development cycles, and reducing development costs.

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(2)在產(chǎn)品實(shí)際(實(shí)物)裝配之前,通過(guò)裝配過(guò)程仿真,可及時(shí)地發(fā)現(xiàn)產(chǎn)品設(shè)計(jì)、工藝設(shè)計(jì)、工裝設(shè)計(jì)存在的問(wèn)題,有效地減少裝配缺陷和產(chǎn)品故障率,減少裝配干涉等問(wèn)題導(dǎo)致的重新設(shè)計(jì)和工程更改,保證了產(chǎn)品裝配的質(zhì)量。

(2) Before the actual (physical) assembly of the product, through assembly process simulation, problems in product design, process design, and tooling design can be discovered in a timely manner, effectively reducing assembly defects and product failure rates, minimizing redesign and engineering changes caused by assembly interference, and ensuring the quality of product assembly.

(3)數(shù)字孿生3D工藝裝配仿真過(guò)程生成的圖片、視頻錄像可直觀地演示裝配過(guò)程,使裝配工人更容易理解裝配要求,減少了裝配過(guò)程反復(fù),減少了人為差錯(cuò)。

(3) The images and video recordings generated during the digital twin 3D process assembly simulation can intuitively demonstrate the assembly process, making it easier for assembly workers to understand the assembly requirements, reducing the repetition of the assembly process, and minimizing human errors.

(4)數(shù)字孿生3D工藝裝配仿真過(guò)程產(chǎn)生的圖片、視頻錄像可用于對(duì)維修人員的培訓(xùn)。

(4) The images and video recordings generated during the digital twin 3D process assembly simulation can be used for training maintenance personnel.

(5)對(duì)于新產(chǎn)品的開(kāi)發(fā)而言,通過(guò)數(shù)字孿生3D裝配工藝設(shè)計(jì)與仿真,減少了技術(shù)決策風(fēng)險(xiǎn),降低了技術(shù)協(xié)調(diào)成本。

(5) For the development of new products, the use of digital twin 3D assembly process design and simulation reduces technical decision-making risks and lowers technical coordination costs.

(6)通過(guò)數(shù)字孿生3D裝配設(shè)計(jì)與仿真,可進(jìn)行裝配工時(shí)分析、生產(chǎn)線資源與工藝布局規(guī)劃和評(píng)估,有利于生產(chǎn)線的改造與建立。

(6) Through digital twin 3D assembly design and simulation, assembly time analysis, production line resource and process layout planning and evaluation can be carried out, which is beneficial for the transformation and establishment of production lines.

數(shù)字孿生的優(yōu)勢(shì)與應(yīng)用

The advantages and applications of digital twins

全面的測(cè)量環(huán)保設(shè)備實(shí)體的各種屬性;具有更全面的分析和預(yù)測(cè)能力;以及能夠提升效率和生產(chǎn)力。數(shù)字孿生技術(shù)在智慧工廠中的應(yīng)用正逐漸展現(xiàn)出強(qiáng)大的優(yōu)勢(shì)和潛力,通過(guò)構(gòu)建數(shù)字化的工廠環(huán)保設(shè)備模型,實(shí)現(xiàn)對(duì)實(shí)際環(huán)保設(shè)備運(yùn)行狀態(tài)的實(shí)時(shí)監(jiān)測(cè)、分析和預(yù)測(cè)。在廢氣、廢水、危廢設(shè)備運(yùn)行領(lǐng)域,數(shù)字孿生技術(shù)可以用于模擬設(shè)備的運(yùn)行狀態(tài),預(yù)測(cè)可能出現(xiàn)的問(wèn)題,從而提高環(huán)保設(shè)備的安全性和可靠性。

Comprehensive measurement of various attributes of environmental protection equipment entities; Having more comprehensive analytical and predictive abilities; And it can improve efficiency and productivity. The application of digital twin technology in smart factories is gradually demonstrating strong advantages and potential. By constructing a digital model of environmental protection equipment in factories, real-time monitoring, analysis, and prediction of the actual operating status of environmental protection equipment can be achieved. In the field of exhaust gas, wastewater, and hazardous waste equipment operation, digital twin technology can be used to simulate the operating status of equipment, predict possible problems, and thus improve the safety and reliability of environmental protection equipment.

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