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Composite vacuum heat insulation rock wool sandwich panel
The invention discloses a composite vacuum heat insulation rock wool sandwich panel which comprises an upper metal plate, a lower metal plate and a rock wool panel arranged between the upper metal plate and the lower metal plate, a plurality of heat insulation panel reserved bins are formed in the side face of the rock wool panel, and heat insulation panel clamping rails are arranged at the two ends of the inner wall of each heat insulation panel reserved bin; a vacuum heat insulation plate is arranged in the heat insulation plate reserving bin, and sliding grooves matched with the corresponding heat insulation plate clamping rails are formed in the two sides of the vacuum heat insulation plate respectively. According to the composite board, the heat insulation board reserved bin is arranged in the rock wool board, the vacuum heat insulation board is arranged in the heat insulation board reserved bin, and the vacuum heat insulation board is inserted into the rock wool board, so that compared with a rock wool sandwich board, the composite board has the advantages that the heat transfer coefficient is greatly reduced, and on the premise that the national energy-saving standard is met, the thickness of outer skins of buildings such as wall surfaces and roofs is reduced; subsequent construction is facilitated, and the technical problem that in the prior art, the thickness of the rock wool board meeting the standard requirement is large is solved.
本发明公开了一种复合真空绝热岩棉夹芯板,包括上金属板和下金属板,以及设置在上金属板和下金属板之间的岩棉板,所述的岩棉板的侧面开设有多个绝热板预留仓,每一个所述的绝热板预留仓的内壁两端设置有绝热板卡轨;所述的绝热板预留仓中设置有真空绝热板,所述的真空绝热板两侧分别开设有与对应的绝热板卡轨配合的滑槽。本发明中通过在岩棉板中设置绝热板预留仓,在绝热板预留仓中设置真空绝热板,真空绝热板插入岩棉板的这种复合板,相对于岩棉夹心板,传热系数大大降低,在满足国家节能规范的前提下,有利于减小墙面、屋面等建筑外皮的厚度,方便后续施工,解决了现有技术中满足规范要求的岩棉板的厚度较大的技术问题。
Composite vacuum heat insulation rock wool sandwich panel
The invention discloses a composite vacuum heat insulation rock wool sandwich panel which comprises an upper metal plate, a lower metal plate and a rock wool panel arranged between the upper metal plate and the lower metal plate, a plurality of heat insulation panel reserved bins are formed in the side face of the rock wool panel, and heat insulation panel clamping rails are arranged at the two ends of the inner wall of each heat insulation panel reserved bin; a vacuum heat insulation plate is arranged in the heat insulation plate reserving bin, and sliding grooves matched with the corresponding heat insulation plate clamping rails are formed in the two sides of the vacuum heat insulation plate respectively. According to the composite board, the heat insulation board reserved bin is arranged in the rock wool board, the vacuum heat insulation board is arranged in the heat insulation board reserved bin, and the vacuum heat insulation board is inserted into the rock wool board, so that compared with a rock wool sandwich board, the composite board has the advantages that the heat transfer coefficient is greatly reduced, and on the premise that the national energy-saving standard is met, the thickness of outer skins of buildings such as wall surfaces and roofs is reduced; subsequent construction is facilitated, and the technical problem that in the prior art, the thickness of the rock wool board meeting the standard requirement is large is solved.
本发明公开了一种复合真空绝热岩棉夹芯板,包括上金属板和下金属板,以及设置在上金属板和下金属板之间的岩棉板,所述的岩棉板的侧面开设有多个绝热板预留仓,每一个所述的绝热板预留仓的内壁两端设置有绝热板卡轨;所述的绝热板预留仓中设置有真空绝热板,所述的真空绝热板两侧分别开设有与对应的绝热板卡轨配合的滑槽。本发明中通过在岩棉板中设置绝热板预留仓,在绝热板预留仓中设置真空绝热板,真空绝热板插入岩棉板的这种复合板,相对于岩棉夹心板,传热系数大大降低,在满足国家节能规范的前提下,有利于减小墙面、屋面等建筑外皮的厚度,方便后续施工,解决了现有技术中满足规范要求的岩棉板的厚度较大的技术问题。
Composite vacuum heat insulation rock wool sandwich panel
一种复合真空绝热岩棉夹芯板
LIU ERYAN (Autor:in) / LI ZHONGYU (Autor:in) / SUN NAN (Autor:in) / GUO QIONG (Autor:in) / ZHENG YANHONG (Autor:in) / LYU JIAN (Autor:in) / FENG QIANGQIANG (Autor:in)
26.12.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
B32B
LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
,
Schichtkörper, d.h. aus Ebenen oder gewölbten Schichten, z.B. mit zell- oder wabenförmiger Form, aufgebaute Erzeugnisse
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