Packaging engineering
Broad topic ranging from design conceptualization to product placement

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.
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). 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.
01Education
Some packaging engineers have backgrounds in other science, engineering, or design disciplines while some have college degrees specializing in this field.
Formal packaging programs might be listed as package engineering, packaging science, packaging technology, etc. BE, BS, MS, M.Tech and PhD programs are available. Students in a packaging program typically begin with generalized science, business, and engineering classes before progressing into industry-specific topics such as shelf life stability, corrugated box design, cushioning, engineering design, labeling regulations, project management, food safety, robotics, RFID tags, quality management, package testing, packaging machinery, tamper-evident methods, recycling, computer-aided design, etc.


02AI
Artificial intelligence is becoming useful in several aspects of packaging development. Packaging engineers are using AI systems in their operations research, project management, graphics, logistics, report writing, plant layout, presentation preparation, and many other types of business and engineering areas.
AI can also design novel packages. For example, the DABUS system designed containers for food and beverages with fractal patterns for gripping and for optical impact. Patent law is developing in this area. A World Patent has been issued with the inventor listed as DABUS but several jurisdictions indicate that a living person must be the inventor.

Sources and credits
This article is adapted from the Wikipedia article “Packaging engineering”, written by its contributors and licensed under CC BY-SA 4.0. Fathomly has changed the layout, removed citation markers, navigation and maintenance notices, and adjusted punctuation. This adapted version is shared under the same license. For references, see the original article.
Images, from Wikimedia Commons:
- Testing MAP for carrots.jpg by Photo by Peggy Greb., Public domain
- Drop test haz-mat.jpg by Photo Credit: Steve Grzezdzinski, Public domain
- Molding packaging from straw, k9837-1.jpg by Peggy Greb, Public domain
- Optimum Packaging Design chart.png by Filippo Ghisoni, CC BY-SA 4.0
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