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  2. Fingerplate (door) - Wikipedia

    en.wikipedia.org/wiki/Fingerplate_(door)

    A fingerplate, also known as a pushplate, is a plate that is fixed to a door near the handle or keyhole to prevent soiling of the door, such as through fingerprints. It can be made of metal, plastic, ceramic or glass. [1] Due to this, fingerplates have historically been placed on the interior side of the door. Modern fingerplates do not adhere ...

  3. Glossary of locksmithing terms - Wikipedia

    en.wikipedia.org/wiki/Glossary_of_locksmithing_terms

    When the door is closed, the bolt extends into the hole in the strike plate and holds the door closed. The strike plate protects the jamb against friction from the bolt and increases security in the case of a jamb made of a softer material (such as wood) than the strike plate. Some strike plates have their hole size and placement calculated so ...

  4. Sill plate - Wikipedia

    en.wikipedia.org/wiki/Sill_plate

    A sill plate or sole plate in construction and architecture is the bottom horizontal member of a wall or building to which vertical members are attached. The word "plate" is typically omitted in America and carpenters speak simply of the "sill". Other names are rat sill, ground plate, ground sill, groundsel, night plate, and midnight sill. [1 ...

  5. Adhesive bonding - Wikipedia

    en.wikipedia.org/wiki/Adhesive_bonding

    Adhesive bonding is a joining technique used ... ceramic hobs or sealing windows in oven doors. The compounds must be able to withstand temperatures of up to 250 °C ...

  6. Electric strike - Wikipedia

    en.wikipedia.org/wiki/Electric_strike

    This is exactly the same principle as a child safety door lock which is installed on car doors. Electric strikes on AC may allow someone outside the door to hear when the door is unlocked. A buzzing noise is typically made by applying alternating current (AC) to the strike instead of direct current (DC). When using a DC powered strike, the ...

  7. Electromagnetic lock - Wikipedia

    en.wikipedia.org/wiki/Electromagnetic_lock

    The principle behind an electromagnetic lock is the use of electromagnetism to lock a door when energized. The holding force should be collinear with the load, and the lock and armature plate should be face-to-face to achieve optimal operation. The magnetic lock relies upon some of the basic concepts of electromagnetism.