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Carborundum spreader for floor construction
The invention belongs to the field of wear-resistant floor construction equipment, and discloses a carborundum spreader for floor construction, comprising: a screening mechanism for separating small-particle carborundum from large-particle carborundum in carborundum; the material scattering mechanism is arranged below the screening mechanism; the material scattering mechanism comprises a material storage box, the material storage box is in a rectangular frame shape with openings in the two ends of the upper end, a connecting plate is fixed to the bottom of the material storage box, the peripheral wall of the connecting plate is attached to the peripheral wall of the material storage box, and a partition plate is fixed to the upper portion of the connecting plate and divides the material storage box into two symmetrically-arranged cavities. The two cavities are used for storing small-particle carborundum and large-particle carborundum which are separated by the screening mechanism respectively, and a pair of rotating rollers which are coaxially arranged with the partition plate is rotationally connected into the connecting plate; the problem that in the prior art, due to the fact that carborundum particles are not uniform in size, carborundum is accumulated on the terrace or locally lacks during material scattering is solved, and the surface of the terrace is evenly and appropriately covered with carborundum.
本发明属于耐磨地坪施工设备领域,公开一种用于地坪施工的金刚砂撒料机,包括:筛分机构,筛分机构用于对金刚砂中小颗粒金刚砂与大颗粒金刚砂进行分离;撒料机构,撒料机构设置于筛分机构下方;撒料机构包括储料箱,储料箱呈上端两端均开口的矩形框体状,储料箱底部固定有连接板,连接板周壁与储料箱周壁贴合,连接板上方固定有隔板,隔板将储料箱分隔为对称放置的两个腔体,两腔体分别用于储存经筛分机构分离后的小颗粒金刚砂和大颗粒金刚砂,连接板内转动连接有一对与隔板呈同轴向放置的转辊;解决了现有技术中存在的因金刚砂颗粒大小不均匀,而带来撒料时地坪上出现金刚砂堆积或者局部缺失的问题,实现金刚砂在地坪表面均匀且适量地覆盖。
Carborundum spreader for floor construction
The invention belongs to the field of wear-resistant floor construction equipment, and discloses a carborundum spreader for floor construction, comprising: a screening mechanism for separating small-particle carborundum from large-particle carborundum in carborundum; the material scattering mechanism is arranged below the screening mechanism; the material scattering mechanism comprises a material storage box, the material storage box is in a rectangular frame shape with openings in the two ends of the upper end, a connecting plate is fixed to the bottom of the material storage box, the peripheral wall of the connecting plate is attached to the peripheral wall of the material storage box, and a partition plate is fixed to the upper portion of the connecting plate and divides the material storage box into two symmetrically-arranged cavities. The two cavities are used for storing small-particle carborundum and large-particle carborundum which are separated by the screening mechanism respectively, and a pair of rotating rollers which are coaxially arranged with the partition plate is rotationally connected into the connecting plate; the problem that in the prior art, due to the fact that carborundum particles are not uniform in size, carborundum is accumulated on the terrace or locally lacks during material scattering is solved, and the surface of the terrace is evenly and appropriately covered with carborundum.
本发明属于耐磨地坪施工设备领域,公开一种用于地坪施工的金刚砂撒料机,包括:筛分机构,筛分机构用于对金刚砂中小颗粒金刚砂与大颗粒金刚砂进行分离;撒料机构,撒料机构设置于筛分机构下方;撒料机构包括储料箱,储料箱呈上端两端均开口的矩形框体状,储料箱底部固定有连接板,连接板周壁与储料箱周壁贴合,连接板上方固定有隔板,隔板将储料箱分隔为对称放置的两个腔体,两腔体分别用于储存经筛分机构分离后的小颗粒金刚砂和大颗粒金刚砂,连接板内转动连接有一对与隔板呈同轴向放置的转辊;解决了现有技术中存在的因金刚砂颗粒大小不均匀,而带来撒料时地坪上出现金刚砂堆积或者局部缺失的问题,实现金刚砂在地坪表面均匀且适量地覆盖。
Carborundum spreader for floor construction
一种用于地坪施工的金刚砂撒料机
ZHAO YANFENG (author) / JIANG AIQIANG (author) / MENG GUOXIANG (author) / SU LEI (author) / YU HAILI (author) / CHEN LIANG (author) / WANG KUNPENG (author) / FAN LIHUA (author)
2024-09-13
Patent
Electronic Resource
Chinese
IPC:
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
/
B07B
Trennen fester Stoffe von festen Stoffen durch Sieben, Klassieren oder Sichten oder durch Verwendung von Gasströmungen
,
SEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, OR SIFTING OR BY USING GAS CURRENTS