BoPET
![](http://upload.wikimedia.org/wikipedia/commons/thumb/5/56/Myla32rp.jpg/220px-Myla32rp.jpg)
BoPET (biaxially oriented polyethylene terephthalate) is a
History
BoPET film was developed in the mid-1950s,.
In 1953 Buckminster Fuller used Mylar as a skin for a geodesic dome, which he built with students at the University of Oregon.[4]
In 1955
In 1964, NASA launched Echo II, a 40-metre (131 ft) diameter balloon constructed from a 9-micrometre (0.00035 in) thick mylar film sandwiched between two layers of 4.5-micrometre (0.00018 in) thick aluminium foil bonded together.[7]
Manufacture and properties
![](http://upload.wikimedia.org/wikipedia/commons/thumb/f/ff/Polyethylene_terephthalate.svg/300px-Polyethylene_terephthalate.svg.png)
The manufacturing process begins with a film of molten
Once the drawing is completed, the film is "
If it were produced without any additives, the surface of the film would be so smooth that layers would adhere strongly to one another when the film is wound up, similar to the sticking of clean glass plates when stacked. To make handling possible, microscopic inert inorganic particles, such as silicon dioxide, are usually embedded in the PET to roughen the surface of the film.[9]
Biaxially oriented PET film can be
Other coatings, such as conductive indium tin oxide (ITO), can be applied to boPET film by sputter deposition.
Applications
This section needs additional citations for verification. (January 2023) |
Uses for boPET polyester films include, but are not limited to:
Flexible packaging and food contact
![](http://upload.wikimedia.org/wikipedia/commons/thumb/7/79/Seafood_Packaging_%2896-132-17a%29.jpeg/220px-Seafood_Packaging_%2896-132-17a%29.jpeg)
- Laminates containing metallized boPET foil (in technical language called printin[check spelling] or laminate web substrate) protect food against oxidation and aroma loss, achieving long shelf life. Examples are coffee "foil" packaging and pouches for convenience foods.
- Pop-Tarts are sold in pairs wrapped in silver boPET. They were previously wrapped in foil.
- White boPET web substrate is used as lidding for dairy goods such as yogurt.
- Clear boPET web substrate is used as lidding for fresh or frozen ready meals. Due to its excellent heat resistance, it can remain on the package during microwave or oven heating.
- Roasting bags
- Metallised films
- Laminated sheet metal (aluminium or steel) used in the manufacture of cans (bisphenol A-free alternative to lacquers)
Covering over paper
- A clear overlay on a map, on which notations, additional data, or copied data, can be drawn without damaging the map
- Metallized boPET is used as a mirror-like decorative surface on some book covers, T-shirts, and other flexible cloths.
- Protective covering over buttons/pins/badges
- The glossy top layer of a Polaroid SX-70 photographic print
- As a backing for very fine sandpaper
- boPET film is used in bagging comic books, in order to best protect them during storage from environmental conditions (moisture, heat, and cold) that would otherwise cause paper to slowly deteriorate over time. This material is used for archival quality storage of documents by the Library of Congress (Mylar type D, ICI Melinex 516 or equivalent)[10][11] and several major library comic book research collections, including the Comic Art Collection at Michigan State University.[12] While boPET is widely (and effectively) used in this archival sense, it is not immune to the effects of fire and heat and could potentially melt, depending on the intensity of the heat source, causing further damage to the encased item.[13]
- Similarly, trading card decks (such as Pokémon, Magic: The Gathering, and Yu-Gi-Oh!) are packaged in pouches or sleeves made of metallized boPET. It can also be used to make the holographic artwork featured on some cards, typically known as "holos", "foils", "shinies", or "holofoils".
- For protecting the spine of important documents, such as medical records.
Insulating material
- An electrical insulatingmaterial
- Insulation for houses and tents, reflecting thermal radiation
- Five layers of metallized boPET film in NASA's spacesuits make them radiationresistant and help regulate temperature.
- Metallized boPET film emergency blankets conserve a shock victim's body heat.
- As a thin strip to form an airtight seal between the control surfaces and adjacent structure of aircraft, especially gliders.
- Light insulation for indoor gardening.
- Aluminized proximity suits used by fire fighters for protection from the high amount of heat release from fuel fires.
- Used in sock and glove liners to lock in warmth
- Gasketing material in fuel cells and related devices
Solar, marine, and aviation
- Metallized boPET is intended to be used for solar sails as an alternative means of propulsion for spacecraft such as Cosmos 1
- Translucent Mylar film, as wide as 48" and in up to 12' in length, found widespread use as a non-dimensional engineering drawing media in the aerospace industry due to its dimensional stability (also see Printing Media section below). This allows production and engineering staff to lay manufactured parts directly over or under the drawing film in order to verify the fidelity of part profiles, hole locations and other part features.[14]
- Metallized boPET solar curtains reflect sunlight and heat away from windows.
- Aluminized, as an inexpensive solar eclipse viewer, although care must be taken, because invisible fissures can form in the metal film, reducing its effectiveness.
- High performance kites
- Use boPET films as the back face of the PV modules in solar panels
- Metallized boPET as a reflector material for solar cooking stoves
- To bridge control surface gaps on profile drag
Science
- Amateur and professional visual and telescopic solar filters. BoPET films are often annealed to a glass element to improve thermal conductivity, and guarantee the necessary flat surface needed for even telescopic solar observation. Manufacturers will typically use films with thicknesses of 280–500 micrometres (0.011–0.020 in), in order to give the films better resilience. 250-micrometre (0.0098 in) thickness films with a heavy aluminium coating are generally preferred for naked-eye Solar observation during eclipses.
- Films in annular ring mounts on gas-tight cells, will readily deform into spherical mirrors. cosmic-rayobservatories often make use of these mirrors for inexpensive large (1.0 m and above), lightweight mirror surfaces for sky-sector low and medium energy cosmic ray research.
- As a light diaphragm material separating gases in hypersonic shock and expansion tube facilities.
- As a Fourier transform infrared spectroscopy, typically with laserapplications. Film thicknesses are often in the 500 micrometre range.
- Coating around hematocrit tubes.
- Insulating material for a cryocooler radiation shield.
- As a window material to confine gas in detectors and targets in nuclear physics.
- In CT scannersit acts as a physical barrier between the X-ray tube, detector ring and the patient allowing negligible attenuation of the X-ray beam when active.
- Spacecraft are insulated with a metallized BoPET film.
- The descent stage of the Apollo Lunar Module was covered with BoPET to control the temperature of equipment for lunar exploration carried in the Modular Equipment Stowage Assembly.
Electronic and acoustic
- Carrier for flexible printed circuits.
- BoPET film is often used as the diaphragm material in headphones, electrostatic loudspeakers and microphones.
- BoPET film has been used in the production of banjos and drumheads since 1958 due to its durability and acoustical properties when stretched over the bearing edge of the drum. They are made in single- and double-ply versions, with each ply being 2–10 mils (0.051–0.254 mm) in thickness, with a transparent or opaque surface, originally used by the company Evans.
- BoPET film is used as the substrate in practically all magnetic recording tapes and floppy disks.
- Metallized boPET film, along with other plastic films, is used as a dielectric in foil capacitors.
- Clear boPET bags are used as vinyl records.
- Clear and white boPET films are used as core layers and overlays in smart cards.
Printing media
- Before the widespread adoption of engineering drawings or architectural drawings were plotted onto sheets of boPET film, known as drafting film. The boPET sheets become legal documents from which copies or blueprints are made. boPET sheets are more durable and can withstand more handling than bond paper. Although "blueprint" duplication has fallen out of use, mylar is still used for its archival properties, typically as a record set of plans for building departments to keep on file.
- laser printers(boPET film withstands the high heat).
- Modern lithography printing plates aka "Pronto Plates" (boPET resists oil)
Other
- Balloons, metallic balloons
- Route information signs, called rollsignsor destination blinds, displayed by public transport vehicles
- For materials in kites
- Covering glass to decrease probability of shattering
- In theatre effects such as confetti
- As the adhesive strip to attach the string to a teabag
- One of the many materials used as windsavers or valves for valved harmonicas
- On farmland and domestic gardens, highly reflective aluminized PET film ribbons are used to keep birds away from plants
- Measuring tape
- Protecting pinball machine playfields from wear
- Used in dentistry when restoring teeth with composite
- In nail polish, as a coloured and finely shredded additive to create a glitter effect
- Numismatics – Storing coins for long periods of time. PVC was previously used for this, but over long periods of time PVC can release chlorine, which reacts with the silver and copper in coins. BoPET does not have this problem.
- In fishing fly tying, metallized Mylar strips are sometimes wound around the hook shank for reflective striping or shimmer in certain patterns.
- Military uniform accoutrements are often accented by gold mylar, such as shoulder epaulets or shoulder knots. For example: US Army Officer's Mess Dress Uniform.
See also
References
- ISBN 9780857092953.
- ^ a b Izard, Emmette Farr, "Production of polyethylene terephthalate", U.S. patent no. 2,534,028 (filed: 1948 May 13; issued: 1950 December 12).
- ^ Adams, John Francis Edward; Gerber, Kenneth George; Holmes-Walker, William Anthony, "Process for the production of biaxially oriented polyethylene terephthalate film", U.S. patent no. 3,177,277 (filed: 1957 May 10 ; issued: 1965 April 6).
- Oregon Daily Emerald, April 10, 1953
- Eastman Kodak Company. April 2015. Retrieved 2018-08-24.
- ISBN 978 1 59114 082 5, pp. 102, 115.
- ^ Staugaitis, C. & Kobren, L. (1966) "Mechanical And Physical Properties of the Echo II Metal-Polymer Laminate (NASA TN D-3409)", NASA Goddard Space Flight Center.
- ^ "Process Flow". Ampef.com. Archived from the original on 2017-11-20. Retrieved 2018-08-24.
- ^ Thiel, Ulrich. "Polyester Additives" (PDF). Dr. Thiele Polyester Technology. Retrieved 4 January 2019.
- ^ "Specifications for Polyester: Poly(ethylene-terephthalate)". Preservation. Library of Congress. Archived from the original on June 23, 2004.
- ^ "What is Mylar Paper - More Than Just Decoration". Jampaper.com. 23 October 2013. Retrieved 2015-07-02.
- .
- ^ Kristen Heinichen (June 17, 2008). "Albany library's entire collection exposed to smoke". Athens Messenger. Archived from the original on 2015-07-03. Retrieved 2015-07-02 – via Athens County Public Libraries.
- ^ "How to Convert Mylar Aerospace Drawings to 3D CAD". CAD / CAM Services. 31 January 2018.
External links
- History of Polymers & Plastics for Teachers. by The American Chemistry Council (HTML format) or (PDF format) - 1.9MB, which includes the "chasing arrow" recycling symbols (PET is #1) and a description of plastics.
- An interesting toy has been developed using boPET and a stick-shaped Van de Graaff generator.