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Environment-friendly high-strength anti-deformation aluminum-clad heat preservation door and manufacturing method thereof
The invention discloses an environment-friendly high-strength anti-deformation aluminum-clad heat preservation door and a manufacturing method thereof. The environment-friendly high-strength anti-deformation aluminum-clad heat preservation door comprises a door core 1, aluminum clad wood door cross frames 2, aluminum clad wood door vertical frames 3 and a surface layer 4. The manufacturing method comprises the steps of step one, shaving, drying and pressing scrap edge environment-friendly wood materials to form middle-density veneers; step two, splicing the middle-density veneers into integrated plates to classify and glue; step three, pressing the middle-density veneers into multi-layer plates, then standing, conditioning, sanding the multi-layer plates into fixed thickness, and coating ZS-211 reflective heat insulation and heat preservation coating on the surfaces; step four, cutting the multi-layer plates into plate strips according to specifications, manufacturing the plate strips used for manufacturing door frames into concave shapes and splicing the plate strips used for manufacturing the door core and a door surface into specified specifications by using a splicing machine; step five, cladding aluminum plates outside the plate materials used for manufacturing the door frames, and forming through holes and blind holes in the door frames, the door core and the door surface.
Environment-friendly high-strength anti-deformation aluminum-clad heat preservation door and manufacturing method thereof
The invention discloses an environment-friendly high-strength anti-deformation aluminum-clad heat preservation door and a manufacturing method thereof. The environment-friendly high-strength anti-deformation aluminum-clad heat preservation door comprises a door core 1, aluminum clad wood door cross frames 2, aluminum clad wood door vertical frames 3 and a surface layer 4. The manufacturing method comprises the steps of step one, shaving, drying and pressing scrap edge environment-friendly wood materials to form middle-density veneers; step two, splicing the middle-density veneers into integrated plates to classify and glue; step three, pressing the middle-density veneers into multi-layer plates, then standing, conditioning, sanding the multi-layer plates into fixed thickness, and coating ZS-211 reflective heat insulation and heat preservation coating on the surfaces; step four, cutting the multi-layer plates into plate strips according to specifications, manufacturing the plate strips used for manufacturing door frames into concave shapes and splicing the plate strips used for manufacturing the door core and a door surface into specified specifications by using a splicing machine; step five, cladding aluminum plates outside the plate materials used for manufacturing the door frames, and forming through holes and blind holes in the door frames, the door core and the door surface.
Environment-friendly high-strength anti-deformation aluminum-clad heat preservation door and manufacturing method thereof
LIU SHULAN (Autor:in)
29.04.2015
Patent
Elektronische Ressource
Englisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
/
B27M
Holzbearbeitung, soweit nicht in den Unterklassen B27B-B27L vorgesehen
,
WORKING OF WOOD NOT PROVIDED FOR IN SUBCLASSES B27B-B27L
Europäisches Patentamt | 2015
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