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Ultralow-energy-consumption green building aluminum-plastic co-extrusion profile
The invention discloses an ultralow-energy-consumption green building aluminum-plastic co-extrusion profile, and particularly relates to the field of aluminum-plastic co-extrusion profiles. The ultralow-energy-consumption green building aluminum-plastic co-extrusion profile comprises an outer plastic body, wherein a reinforcing cavity is formed in the outer plastic body, a first shaping cavity isformed in one side of the reinforcing cavity, a second shaping cavity is formed in one side of the first shaping cavity, and replacement mechanisms are arranged in the first shaping cavity and the second shaping cavity; and each replacement mechanism comprises two reinforcing aluminum cores, wherein an extension aluminum core is arranged on one side of one reinforcing aluminum core, and the extension aluminum core is matched with the reinforcing cavity. By arranging the replacement mechanisms, first springs push a lifting plate to clamp a positioning block into a positioning groove, so that the reinforced aluminum cores can be effectively fixed, the reinforced aluminum cores can be conveniently replaced when an internal aluminum lining is broken in the using process of the aluminum-plasticco-extrusion profile, and overall replacement is not needed; and meanwhile, an external plastic composite part can be reutilized.
本发明公开了一种超低能耗绿色建筑用铝塑共挤型材,具体涉及铝塑共挤型材领域,包括外塑体,所述外塑体内部设有加固腔体,所述加固腔体一侧设有第一定型腔体,所述第一定型腔体一侧设有第二定型腔体,所述第一定型腔体和第二定型腔体内部均设有更换机构;所述更换机构包括两个加固铝芯,一个所述加固铝芯一侧设有延长铝芯,所述延长铝芯与加固腔体相匹配。本发明通过设置更换机构,第一弹簧推动升降板将定位块卡入到定位槽内部,从而可以对加固铝芯进行有效的固定,铝塑共挤型材在使用过程中当内部的铝衬发生断裂时可以对加固铝芯进行便捷更换,无需整体进行替换,同时可以对外部的塑料复合部分进行二次利用。
Ultralow-energy-consumption green building aluminum-plastic co-extrusion profile
The invention discloses an ultralow-energy-consumption green building aluminum-plastic co-extrusion profile, and particularly relates to the field of aluminum-plastic co-extrusion profiles. The ultralow-energy-consumption green building aluminum-plastic co-extrusion profile comprises an outer plastic body, wherein a reinforcing cavity is formed in the outer plastic body, a first shaping cavity isformed in one side of the reinforcing cavity, a second shaping cavity is formed in one side of the first shaping cavity, and replacement mechanisms are arranged in the first shaping cavity and the second shaping cavity; and each replacement mechanism comprises two reinforcing aluminum cores, wherein an extension aluminum core is arranged on one side of one reinforcing aluminum core, and the extension aluminum core is matched with the reinforcing cavity. By arranging the replacement mechanisms, first springs push a lifting plate to clamp a positioning block into a positioning groove, so that the reinforced aluminum cores can be effectively fixed, the reinforced aluminum cores can be conveniently replaced when an internal aluminum lining is broken in the using process of the aluminum-plasticco-extrusion profile, and overall replacement is not needed; and meanwhile, an external plastic composite part can be reutilized.
本发明公开了一种超低能耗绿色建筑用铝塑共挤型材,具体涉及铝塑共挤型材领域,包括外塑体,所述外塑体内部设有加固腔体,所述加固腔体一侧设有第一定型腔体,所述第一定型腔体一侧设有第二定型腔体,所述第一定型腔体和第二定型腔体内部均设有更换机构;所述更换机构包括两个加固铝芯,一个所述加固铝芯一侧设有延长铝芯,所述延长铝芯与加固腔体相匹配。本发明通过设置更换机构,第一弹簧推动升降板将定位块卡入到定位槽内部,从而可以对加固铝芯进行有效的固定,铝塑共挤型材在使用过程中当内部的铝衬发生断裂时可以对加固铝芯进行便捷更换,无需整体进行替换,同时可以对外部的塑料复合部分进行二次利用。
Ultralow-energy-consumption green building aluminum-plastic co-extrusion profile
一种超低能耗绿色建筑用铝塑共挤型材
ZHOU BO (author) / HE CHENGCHENG (author) / CAO JINDAN (author) / CHEN KAIWEN (author) / CHEN SIXIN (author) / XU XIAOMIN (author)
2020-11-03
Patent
Electronic Resource
Chinese
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
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