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Hot Stamp Coders Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016 – 2023

  • Date Submitted: 06/16/2016 02:57 AM
  • Flesch-Kincaid Score: 36.7 
  • Words: 960
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Hot stamping is a process of transfering a pigment from a carrier strip, which is known as a foil, onto a substrate with heat and pressure. Hot stamping provides best solutions in the field of packaging wherein environment with low temperatures, high humidity, and dust impact the packaged products. Hot stamp coders enable labelling the products in a better way than the electronic printers. Hot stamp coders are made up of stainless steel and aluminum (Al). Foils are mainly of two types: metallic and non-metallic foils. Non-metallic foils consist of an adhesive material, a color layer, and a release layer. In metallic foils, the color layer is replaced by a layer of vacuum-metallized aluminum or chrome. Metallic foil is available in different metal forms, such as silver, bronze, copper and gold. Pigment layer does not have a metallic sheen. Meanwhile, the holographic foil contains a 3-dimensional image which bestows a unique appearance. The principle of hot stamp coders is to spread over ink with the help of a heated metal stamp, in order to press an ink-coated film against the product. The ink consists of an adhesive material which quickly solidifies the surface of the product. The ink provides a distinct print which is not soluble in water or oil, are thermally stable and provides good effectiveness in terms of labelling the products.

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The number of different packaging solution at one facility across industries primarily drives global hot stamp coder market. This has provided a wider scope for market growth. Hot stamp coders have various advantages over the conventional equipment, such as they are more effective and ensure better efficacy. Automated stamp coders are easy in terms of operation and are also more accurate. The real time data is transferred to a PC systems, connected with the integrated manufacturing line, so that the operation can be controlled from...

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