Packaging engineering

Testing modified atmosphere in a plastic bag of carrots
Military shipping container being drop tested
Engineers developing methods of molding packaging components from renewable resources such as straw[1]
Package design involves interactions of several factors

Packaging engineering, also package engineering, packaging technology and packaging science, is a broad topic ranging from design conceptualization to product placement. All steps along the manufacturing process, and more, must be taken into account in the design of the package for any given product. Package engineering is an interdisciplinary field integrating science, engineering, technology and management to protect and identify products for distribution, storage, sale, and use. It encompasses the process of design, evaluation, and production of packages. It is a system integral to the value chain that impacts product quality, user satisfaction, distribution efficiencies, and safety. Package engineering includes industry-specific aspects of industrial engineering, marketing, materials science, industrial design and logistics. Packaging engineers must interact with research and development, manufacturing, marketing, graphic design, regulatory, purchasing, planning and so on. The package must sell and protect the product, while maintaining an efficient, cost-effective process cycle.[2]

Engineers develop packages from a wide variety of rigid and flexible materials. Some materials have scores or creases to allow controlled folding into package shapes (sometimes resembling origami[3]). Packaging involves extrusion, thermoforming, molding and other processing technologies. Packages are often developed for high speed fabrication, filling, processing, and shipment. Packaging engineers use principles of structural analysis and thermal analysis in their evaluations.

  1. ^ Wood, Marcia (April 2002). "Leftover Straw Gets New Life". Agricultural Research.
  2. ^ Johnson, C (1995). "In-House Testing of Computer Packaging". In Fiedler, R M (ed.). Distribution Packaging Technology. IoPP.
  3. ^ Merali, Zeeya (17 June 2011), "Origami Engineer Flexes to Create Stronger, More Agile Materials", Science, 332 (6036): 1376–1377, Bibcode:2011Sci...332.1376M, doi:10.1126/science.332.6036.1376, PMID 21680824

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