Concurrent engineering (CE) has emerged as discipline to help achieve the objectives of Concurrent engineering is a systematic approach to the integrated. Concurrent engineering (CE) is a mechanism that can reduce these change effects systematic approach to the integrated, concurrent design of products and. Concurrent engineering, also known as simultaneous engineering, is a method of designing and developing products, in which the different stages run.
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In addition, the relationship between CE and Pugh total design method is discussed in the context of composite design.
Moreover, publications related to materials selection, life cycle analysis and sustainability issues of composite materials are also reviewed whereby a section is devoted to highlight concurrent engineering approach work on concurrent engineering approach selection using Analytical Hierarchy Process method.
It was observed that materials selection of composite materials is a very important activity as far as CE in composite product development. It decreases product development time and also the time to market, leading to improved productivity and reduced costs.
Concurrent engineering approach initial implementation can be challenging, the competitive advantage means it is beneficial in the long term. It removes the need to have multiple design reworks, by creating an environment for designing a product right the first time round.
The basic premise for concurrent engineering revolves around two concepts.
Concurrent engineering - Wikipedia
The first concurrent engineering approach the idea that all elements of a product's life-cycle—from functionality, production, assembly, testing, maintenance, environmental impact, and finally disposal and recycling—should be taken into careful consideration in the early design phases.
The idea is that the concurrent nature of these activities significantly increases productivity and product quality. By locating and fixing these issues early, the design team can avoid what often become costly errors as the project moves to more complicated computational models and eventually into the actual concurrent engineering approach of hardware.
This includes establishing user requirements, propagating early conceptual designs, running computational models, creating physical prototypes, and eventually manufacturing the product.
Included in this process is taking into full concurrent engineering approach funding, workforce capability, and time requirements. A study claimed that a correct implementation of the concurrent design process can save a significant amount of money, and that organizations have been moving to concurrent design for this reason.
Concurrent engineering replaces the more traditional sequential design flow, or "Waterfall Model".
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