Overview

CAD (Computer Aided Desiqn, Computer Aided Design) It uses computer to help engineering designers design, mainly used in the overall design, modeling design, structural design of mechanical, electronic, aerospace, construction, textile and other products. The earliest meaning of CAD is computer-aided drawing. With the continuous development of technology, the meaning of CAD has developed into the current computer-aided design. A complete CAD system should include an interactive graphics library, an engineering database, and an application library. For the design of products or engineering, CAD technology can greatly shorten the design cycle and improve design efficiency.

Classified product

·Unigraphics

Injection Mold Design Guide (Moldwizard)

Injection products occupy an important position in the automotive, consumer goods, electronics and medical industries.

Markets with strict competition rules require products and their plastic components to have the most advanced design, the most efficient processing methods and the best quality. The development of these products is in particular their plastic components, involving industrial design, mechanical engineering and processing engineering. Design and engineering expert systems are applied at different stages.

Cooperation and synergistic design methods

In a market-oriented environment, producing the most advanced products means shortening the product development cycle. While companies are pursuing high quality and shortening product development cycles, the use of collaborative and efficient design methods to coordinate the integration of design and processing solutions is on a positive upward trend.

Plastic parts are mainly made by injection molding. This process involves the use of a press machine called an injection mold. The press tool is a heavy-duty device that uses a hydraulic mechanism to open and close the mold, and the system melts the plastic and injects it into the mold.

Injection molds are complex and highly accurate mechanisms that require precise molding and are capable of cooling plastics in a molten state that is injected with high temperature and high pressure. The components of the mold are standard as well as the customer's own parts. The customer's own parts form the outer and inner sides of the plastic part, called the cavity and the core; the mechanism that fixes the cavity and the core is called the mold base; the mechanism that ejects the part is called the mold assembly. These can be found on the list and can be obtained from different professional suppliers.

Progressive Die Moldwizard

Most companies are now facing an increasingly competitive market environment, shortening product launch times, and offering different products is always the reason why they work hard. Progressive die design and machining is a pillar industry in the computer, automotive, electronics and electrical industries. In order to shorten the product launch cycle, improve product quality and more innovative design and expansion of applications, the need for progressive die design and manufacturing is even more urgent.

Progressive dies are used to transform metal girders into the required forming parts. This transformation is accomplished through a series of processes: cutting, embossing, deforming, and crimping the material to achieve the desired shape. Each step performed by the progressive die on the material is unique to each design. The various components that make up the mold have locating pins that are positioned in the exact position of the open mold.

The entire mold moves up and down by mechanical pressure, and the material is fed through the mold to transfer material from one station to another.

In order to maintain competitiveness, more and more progressive die companies are targeting 3D CAD technology. UG goes farther in this step through knowledge-based tools, better meeting the needs of every customer in terms of productivity and quality.

The challenge to the company to increase production capacity - CAM

Efforts to reduce costs and increase production capacity are challenging issues in the processing industry, and new hardware and controller technologies make this possible and are being adopted by most manufacturers. This requires a reduction in program errors that can cause disruption to the production schedule, and even more fatal is the cost of expensive updates. The lack of standardized processing methods and resources has greatly increased product costs. In the end, the role of professional technology in work pressures has gradually narrowed, resulting in delays in product launch, quality degradation, and production disruption.

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