Showing posts with label leading journal. Show all posts
Showing posts with label leading journal. Show all posts

Friday, November 17, 2017

International Journal of Science Technology and Engineering [ISSN(online : 2349-784X)]

 IJSTE Journal : IC Value of 2016 : 69.90

International Journal of Science Technology and Engineering is a peer-reviewed, monthly, online international research journal, which publishes original articles, research articles, review articles from all areas of Engineering and Technology Research and their application including Civil, Mechanical, Computer science, Electrical, Electronics and Communication and many more. Research Scholar in all engineering and technology fields are swayed to help articles focused around late research.
         The Journal is begun with honorable exertion to help the analysts in their work and likewise to impart learning and exploration thoughts. All examination intrigued researchers are given best chance to make world mindful of their work. With exact and expository portrayal of information by our commentators, International Journal of Science Technology and Engineering is giving implemental economy and most recent worldwide transposition to research.

IJSTE Journal ISSN (Online) : 2349-784X
IJSTE Call for Papers Subject Category : Engineering Science and Technology
IJSTE Call for Papers Frequency : Monthly, 12 issues per year
IJSTE Call for Papers Published by : IJSTE, India
IC Value of 2016 : 69.90
For more Information : http://ijste.org/

Why IJSTE (International Journal of Science Technology and Engineering)?
This monthly journal is mainly started to help researching peers belongs to Undergraduate, Postgraduate and Research students. IJSTE (International Journal of Science Technology and Engineering) is making the bridge between research and industrial developments. IJSTE (International Journal of Science Technology and Engineering) is an e-journal that covers popular research topics from branches of engineering and technology. It provides paper publication at very affordable cost.
      The aim of the IJSTE (International Journal of Science Technology and Engineering) is to provide an international forum for the publication and dissemination of original work that contributes to the understanding of the main and related disciplines of engineering, either empirical or theoretical. This journal is an e-journal having full access to the research and review papers.

IC Value of 2016 : https://journals.indexcopernicus.com/search/details?jmlId=24787605&org=International%20Journal%20of%20Science%20Technology%20and%20Engineering,p24787605,3.html

Sunday, September 27, 2015

Distributed Manufacturing #IJSTE JOURNAL#



Subject: 

Distributed Manufacturing


Distributed manufacturing turns on its head the way we make and distribute products. In traditional manufacturing, raw materials are brought together, assembled and fabricated in large centralized factories into identical finished products that are then distributed to the customer. In distributed manufacturing, the raw materials and methods of fabrication are decentralized, and the final product is manufactured very close to the final customer.
In essence, the idea of distributed manufacturing is to replace as much of the material supply chain as possible with digital information. To manufacture a chair, for example, rather than sourcing wood and fabricating it into chairs in a central factory, digital plans for cutting the parts of a chair can be distributed to local manufacturing hubs using computerized cutting tools known as CNC routers. Parts can then be assembled by the consumer or by local fabrication workshops that can turn them into finished products. One company already using this model is the US furniture company AtFAB.
Current uses of distributed manufacturing rely heavily on the DIY “maker movement”, in which enthusiasts use their own local 3D printers and make products out of local materials. There are elements of open-source thinking here, in that consumers can customize products to their own needs and preferences. Instead of being centrally driven, the creative design element can be more crowdsourced; products may take on an evolutionary character as more people get involved in visualizing and producing them.
Distributed manufacturing is expected to enable a more efficient use of resources, with less wasted capacity in centralized factories. It also lowers the barriers to market entry by reducing the amount of capital required to build the first prototypes and products. Importantly, it should reduce the overall environmental impact of manufacturing: digital information is shipped over the web rather than physical products over roads or rails, or on ships; and raw materials are sourced locally, further reducing the amount of energy required for transportation.
If it becomes more widespread, distributed manufacturing will disrupt traditional labour markets and the economics of traditional manufacturing. It does pose risks: it may be more difficult to regulate and control remotely manufactured medical devices, for example, while products such as weapons may be illegal or dangerous. Not everything can be made via distributed manufacturing, and traditional manufacturing and supply chains will still have to be maintained for many of the most important and complex consumer goods.
Distributed manufacturing may encourage broader diversity in objects that are today standardized, such as smartphones and automobiles. Scale is no object: one UK company, Facit Homes, uses personalized designs and 3D printing to create customized houses to suit the consumer. Product features will evolve to serve different markets and geographies, and there will be a rapid proliferation of goods and services to regions of the world not currently well served by traditional manufacturing.

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