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Solidified muck mass block for gravity energy storage and preparation method thereof
The invention discloses a solidified muck mass block for gravity energy storage and a preparation method of the solidified muck mass block. The solidified muck mass block comprises a solidified muck counterweight layer and a prefabricated reinforced concrete bottom plate. The prefabricated reinforced concrete bottom plate is of a cuboid structure which is horizontally and transversely arranged, and a rectangular groove is vertically formed in the middle of the upper surface of the prefabricated reinforced concrete bottom plate in an embedded mode. The solidified muck counterweight layer is of a horizontally and transversely arranged cuboid structure, a rectangular boss is horizontally and transversely arranged at the position, opposite to the rectangular groove, of the lower surface of the solidified muck counterweight layer, the rectangular boss is matched with the rectangular groove, and the rectangular boss and the solidified muck counterweight layer are integrally formed; adjusting holes are vertically formed in the upper surface of the solidified muck balance weight layer at intervals in the left-right direction in an embedded mode, the solidified muck balance weight layer is aligned and fixed to the prefabricated reinforced concrete bottom plate through clamping fit of a rectangular boss and a rectangular groove, and then the solidified muck mass block is obtained after maintenance and weight compensation of the adjusting holes. The engineering residue soil is used as the main raw material, so that the production cost of the mass block is reduced.
本发明公开了一种重力储能用固化渣土质量块及其制备方法,包括固化渣土配重层和预制钢筋混凝土底板;所述预制钢筋混凝土底板为水平横向设置的长方体结构,且在其上表面中间位置垂直嵌入开设有长方形凹槽;所述固化渣土配重层为水平横向设置的长方体结构,且在其下表面相对于长方形凹槽位置处还水平横向设有长方形凸台,长方形凸台与长方形凹槽相匹配,且与固化渣土配重层整体成型;在所述固化渣土配重层的上表面还左右间隔垂直嵌入开设有调整孔,且通过长方形凸台与长方形凹槽的卡接配合,固化渣土配重层对齐固定在预制钢筋混凝土底板上,进而经养护、调整孔补重后得到固化渣土质量块。本发明以工程渣土为主要原材料,降低了质量块的生产成本。
Solidified muck mass block for gravity energy storage and preparation method thereof
The invention discloses a solidified muck mass block for gravity energy storage and a preparation method of the solidified muck mass block. The solidified muck mass block comprises a solidified muck counterweight layer and a prefabricated reinforced concrete bottom plate. The prefabricated reinforced concrete bottom plate is of a cuboid structure which is horizontally and transversely arranged, and a rectangular groove is vertically formed in the middle of the upper surface of the prefabricated reinforced concrete bottom plate in an embedded mode. The solidified muck counterweight layer is of a horizontally and transversely arranged cuboid structure, a rectangular boss is horizontally and transversely arranged at the position, opposite to the rectangular groove, of the lower surface of the solidified muck counterweight layer, the rectangular boss is matched with the rectangular groove, and the rectangular boss and the solidified muck counterweight layer are integrally formed; adjusting holes are vertically formed in the upper surface of the solidified muck balance weight layer at intervals in the left-right direction in an embedded mode, the solidified muck balance weight layer is aligned and fixed to the prefabricated reinforced concrete bottom plate through clamping fit of a rectangular boss and a rectangular groove, and then the solidified muck mass block is obtained after maintenance and weight compensation of the adjusting holes. The engineering residue soil is used as the main raw material, so that the production cost of the mass block is reduced.
本发明公开了一种重力储能用固化渣土质量块及其制备方法,包括固化渣土配重层和预制钢筋混凝土底板;所述预制钢筋混凝土底板为水平横向设置的长方体结构,且在其上表面中间位置垂直嵌入开设有长方形凹槽;所述固化渣土配重层为水平横向设置的长方体结构,且在其下表面相对于长方形凹槽位置处还水平横向设有长方形凸台,长方形凸台与长方形凹槽相匹配,且与固化渣土配重层整体成型;在所述固化渣土配重层的上表面还左右间隔垂直嵌入开设有调整孔,且通过长方形凸台与长方形凹槽的卡接配合,固化渣土配重层对齐固定在预制钢筋混凝土底板上,进而经养护、调整孔补重后得到固化渣土质量块。本发明以工程渣土为主要原材料,降低了质量块的生产成本。
Solidified muck mass block for gravity energy storage and preparation method thereof
一种重力储能用固化渣土质量块及其制备方法
WU HONGLEI (Autor:in) / ZHOU JINGJING (Autor:in) / XU HONGSHENG (Autor:in) / CHEN HONGYI (Autor:in)
09.02.2024
Patent
Elektronische Ressource
Chinesisch
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