Computers and internet in business
The introduction of computers and the internet largely changed how business is conducted. The engineering and manufacturing industry is one of the areas that has been severely impacted. Complex procedures may now be carried out with less resources thanks to the advent of computer-aided manufacturing. A crucial component of precise production in the future, it seems, is computer assisted manufacturing. This essay examines computer-aided manufacturing from the viewpoint of a YouTube video, discussing both its benefits and drawbacks. The study also contrasts the advantages of technology with the value of manual labor. This process is known as computer-aided manufacturing uses software control machine tools and related accessories in the engineering of work pieces. Mostly, it entails the use of the computer in manufacturing operations including management, planning, transportation, and storage (Abduo, Lyons, & Bennamoun, 2014). The primary purpose of such systems is to quicken production process including production of tooling and components that have precise material consistency and precision. In the film posted by “w.w.w.vnmech.com” on YouTube, a software name Pro E/Engineering is applied in designing a machine component name Nguyencong 1 Project. The software uses a series of computer-aided steps to help engineers and component designers to recreate a desirable representation of machine components using 3-D graphical mapping. The most exciting thing about the video is that all this is done on a computer that uses Microsoft Windows with the help of computer-aided features and control instruments.
CAM is beneficial as it produces consistent results. Unlike where physical efforts are applied to develop components and tools, CAM is more precise. It minimizes the mistakes that are common to humankind by ensuring that the preferred design is replicated across all physical objects that follow along with the model. For instance, the prototype designed in the film can inform the production of thousands of physical components with similar perfections. Also, applying CAM software gives the user flexibility that allows implementation of swift changes to keep pace with changing market demands. Finally, the need for a prototype can lessen material wastage as all the necessary adjustments can be made on the prototype before committing raw materials in a manufacturing process. Nonetheless, CAM can also be disadvantageous, as it requires high initial costs (Majerik & Jambor, 2014). Moreover, CAM's application in manufacturing is a complicated procedure that requires high skills.
When compared to manual operations, CAM has the upper hand. The perfection that comes with using CAM manufacturing is desirable by the market. Nevertheless, the importance of manual processes cannot be underestimated. It serves as an essential fallback where computer-aided operations fail. Also, it serves a vital role in helping the company develop technical and crafting skills that can further support computer-aided production. This area can form a critical competitive resource as more enterprises adopt CAM and as it becomes essential to have more than just technology to be competitive in the market.
Overall, Computer Aided Manufacturing is an important turnaround in manufacturing and has an indispensable role in future business operations. As seen in the video by w.w.w.vnmech.com, the methodology is excellent at perfecting the reproduction and design of components and tools. Also, it is flexible making it worthwhile for an environment where design changes are rapid. Even so, the significance of manual operations should not be overlooked as it is essential in grooming physical talents and skills within a company that eventually will be an added advantage to CAM operations.
References
w.w.w.vnmech.com”. (2015) Computer Aided Manufacturing (CAD/CAM) with Pro E Available on YouTube. Retrieved from https://www.youtube.com/watch?v=-FHzRskfxEM
Abduo, J., Lyons, K., & Bennamoun, M. (2014). Trends in Computer-Aided Manufacturing in Prosthodontics: A Review of the Available Streams. Hindawi Publishing Corporation International Journal of Dentistry, 2014 (783948)
Majerik, J., & Jambor, J. (2014). Computer-aided design and manufacturing evaluation of milling cutter when high-speed machining of hardened steels. Elsevier Journals, 100 (2015): 450-459. Retrieved from https://ac.els-cdn.com/S1877705815004178/1-s2.0-S1877705815004178-main.pdf?_tid=7951c112-da93-11e7-a7f7-00000aacb361&acdnat=1512571439_b6ac2cc56ec41e0e48aacfc673460548
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