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  2. BS 1088 - Wikipedia

    en.wikipedia.org/wiki/BS_1088

    Moisture Content-- BS 1088 plywood must have a moisture content between 6% and 14% when it leaves the factory. Finishing-- Boards will be sanded on both sides equally. Length & Width-- The length or width of a board produced as a standard size shall not be less than the specified size nor more than 6.3 mm (0.25") greater than the specified size.

  3. Medium density overlay panel - Wikipedia

    en.wikipedia.org/wiki/Medium_density_overlay_panel

    Medium density overlay panel, or MDO panel, is a paintable surface made of plywood with a weather-resistant resin overlay bonded to the wood by heat and pressure. The overlay, which has at least 27% resin content, [1] resists water, weather, wear and degradation. A similar product with a more rugged, smoother surface is called high density ...

  4. Fiberboard - Wikipedia

    en.wikipedia.org/wiki/Fiberboard

    Fiberboard, classified by ASTM C208, Standard Specification for Cellulosic Fiber Insulating Board, [4] has many benefits and is used in residential and commercial construction. Applications include: sound proofing/deadening; structural sheathing; low-slope roofing; sound deadening flooring underlayment

  5. Plywood - Wikipedia

    en.wikipedia.org/wiki/Plywood

    Marine plywood can be graded as being compliant with BS 1088, which is a British Standard for marine plywood and IS:710 is Bureau of Indian Standards (BIS) for marine grade plywood. There are few international standards for grading marine plywood and most of the standards are voluntary.

  6. Cross-laminated timber - Wikipedia

    en.wikipedia.org/wiki/Cross-laminated_timber

    This includes the grade, thickness, mill name, agency name or logo, ANSI/APA PRG 320 symbol, manufacturer designations, and a top stamp if it is a custom panel. These markings must be stamped at intervals of 8 feet (2.4 m) or less so that when longer pieces are delivered to site and cut, they still display the necessary information.

  7. Pressed wood - Wikipedia

    en.wikipedia.org/wiki/Pressed_wood

    Once the board is at its desired thickness, the board is placed into a press, where the board is pressed and heated. This process gives pressed wood its strength [2] advantage over other engineered wood types. [3] The boards are placed in a press where the press will press down on the boards with roughly 2.8 megapascals (400 psi) of pressure. [3]