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CN-224215769-U - Quartz raw material rolling and dewatering device

CN224215769UCN 224215769 UCN224215769 UCN 224215769UCN-224215769-U

Abstract

The utility model discloses a quartz stone raw material rolling dehydration device which comprises two support plates, wherein two first rotating rollers are arranged on two sides of one side, which are close to each other, of each support plate, press filtration belts are arranged on the outer rings of the two first rotating rollers, a plurality of press rollers are arranged on one side, which is close to each other, of each support plate, the upper parts of the press filtration belts are arranged on the outer rings of the press filtration belts, extrusion belts are arranged on the outer rings of the press filtration belts, an extrusion table is welded on one side, which is close to each other, of the two support plates, a water receiving hopper is fixedly arranged at the bottom of the extrusion table, and a drainage groove penetrating through and extending to the outside of the front support plate is fixedly arranged at the lower part of the water receiving hopper. According to the quartz raw material rolling dehydration device, the purpose of dehydrating quartz raw materials is achieved by arranging the pressing filter bag, the pressing belt and the like, and the purpose of adjusting raw material outflow in the feeding box is achieved by arranging the pulling plate, the adjusting plate, the limiting nut and the like.

Inventors

  • ZENG XIANGRONG
  • FENG JIEZHAO
  • WEI JIANING
  • LI XIANJIN
  • ZENG XIANGJIA

Assignees

  • 广州海格丽斯石英石有限公司

Dates

Publication Date
20260508
Application Date
20250604

Claims (7)

  1. 1. The utility model provides a quartz raw materials roll-in dewatering device, its characterized in that, including backup pad (1), backup pad (1) have two, and one side both sides that two backup pads (1) are close to each other all install first rotating roll (8), two the outer lane of first rotating roll (8) is provided with filter-pressing area (7), two one side that backup pad (1) are close to each other and be located the upper portion of filter-pressing area (7) and install a plurality of compression rollers (12), and the outer lane of a plurality of compression rollers (12) is provided with extrusion area (4), two one side welding that backup pad (1) are close to each other has extrusion platform (10), the bottom fixed mounting of extrusion platform (10) has water receiving bucket (11), the lower part fixed mounting of water receiving bucket (11) has run through and extends to be located outside water drainage tank (2) of openly backup pad (1), two right side fixed mounting that backup pad (1) are close to each other has charging box (6), left side lateral wall sliding connection of charging box (6) has regulating plate (601).
  2. 2. The quartz stone raw material rolling dehydration device according to claim 1, wherein a supporting seat (15) is fixedly arranged on one side of the outer wall of the supporting plate (1) positioned on the back, and a driving motor (13) and a speed reducer (14) are fixedly arranged on the top surface of the supporting seat (15) through bolts.
  3. 3. The quartz stone raw material rolling dehydration device according to claim 2, wherein the output end of the driving motor (13) is connected with the input end of a speed reducer (14), the output end of the speed reducer (14) is connected with a first rotating roller (8) positioned on the right side, and a discharge groove (3) is fixedly arranged on one side, close to each other, of the two supporting plates (1) and positioned on the left side of the press filtration belt (7).
  4. 4. The quartz stone raw material rolling dehydration device according to claim 1, wherein a mounting seat (501) is fixedly mounted on one side of the outer wall of the supporting plate (1) positioned on the back, a low-speed motor (5) is fixedly mounted on the top surface of the mounting seat (501), and the output end of the low-speed motor (5) is connected with one end of a pressing roller (12) positioned on the right side.
  5. 5. The quartz stone raw material rolling dehydration device according to claim 1, wherein two sides of one side of the two supporting plates (1) which are close to each other are both rotationally connected with a limiting roller (9), the filter pressing belt (7) positioned on the upper part is arranged on the lower part of the limiting roller (9), and the extruding table (10) is provided with meshes.
  6. 6. The quartz stone raw material rolling and dewatering device according to claim 1, wherein a discharge chute is formed in the lower left side of the feeding box (6), two long strip-shaped through holes are formed in the adjusting plate (601), and two threaded rods (602) penetrating through the two through holes formed in the adjusting plate (601) respectively are welded on one side of the feeding box (6) where the discharge chute is formed.
  7. 7. The quartz stone raw material rolling and dehydrating device according to claim 6, characterized in that the outer rings of the two threaded rods (602) are provided with limit nuts (604) matched with the threaded rods, and a pull plate (603) is welded on the upper part of the adjusting plate (601).

Description

Quartz raw material rolling and dewatering device Technical Field The utility model relates to the technical field of quartz stone raw material dehydration, in particular to a quartz stone raw material rolling dehydration device. Background The quartz stone is a new stone material which is artificially synthesized by quartz crystal of more than 90 percent, resin and other microelements, and is a large-specification plate which is pressed by a special machine under certain physical and chemical conditions. In the production process of quartz, dehydration is an important link in raw material treatment, if the quartz raw material contains more water, the effect of subsequent processing procedures such as crushing, grinding, flotation, reselection and the like can be influenced, and further the quality and the production efficiency of products are influenced, so that the quartz raw material needs to be dehydrated, the smooth proceeding of the subsequent processing procedures is facilitated, and meanwhile, the quality and the production efficiency of the products can be improved. The existing equipment can not adjust the quantity of the quartz raw material when the quartz raw material is dehydrated, too much or too little quartz raw material has adverse effect on dehydration, too much accumulation can occur, uneven stress is caused, and too little pressure can not be applied by the compression roller. Disclosure of utility model The utility model aims to overcome the defects of the prior art and provides a quartz stone raw material rolling dehydration device so as to solve the problems in the prior art. To achieve the purpose, the utility model adopts the following technical scheme: The utility model provides a quartz raw materials roll-in dewatering device, includes the backup pad, the backup pad has two, and two backup pads are all installed on one side both sides that are close to each other first rotating roller, two the outer lane of first rotating roller is provided with the filter-pressing area, two one side that the backup pad is close to each other and be located the upper portion of filter-pressing area install a plurality of compression rollers, and the outer lane of a plurality of compression rollers is provided with the extrusion area, two one side welding that the backup pad is close to each other has the extrusion platform, the bottom fixed mounting of extrusion platform has a water receiving bucket, the lower part fixed mounting of water receiving bucket has the water drainage tank that runs through and extends to be located the front backup pad outside, two the right side fixed mounting that the backup pad is close to each other has the charging box, the left side lateral wall sliding connection of charging box has the regulating plate. As a preferable scheme of the quartz raw material rolling dehydration device, a supporting seat is fixedly arranged on one side of the outer wall of the supporting plate and positioned on the back surface, and a driving motor and a speed reducer are fixedly arranged on the top surface of the supporting seat through bolts. As a preferred scheme of quartz raw material roll-in dewatering device, driving motor's output is connected with the input of speed reducer, the output of speed reducer is connected with the first rotating roll that is located the right side, two the backup pad is close to each other one side and be located filter-pressing area left side fixed mounting and have the drain groove. As a preferable scheme of the quartz raw material rolling dehydration device, a mounting seat is fixedly arranged on one side of the outer wall of the supporting plate and positioned on the back surface, a low-speed motor is fixedly arranged on the top surface of the mounting seat, and the output end of the low-speed motor is connected with one end of a pressing roller positioned on the right side. As a preferred scheme of quartz raw material roll-in dewatering device, two the backup pad is all rotated and is connected with the spacing roller in one side both sides that are close to each other, the filter-pressing area that is located upper portion is in the lower part of spacing roller, the mesh has been seted up on the extrusion platform. As a preferred scheme of quartz raw materials roll-in dewatering device, the blown down tank has been seted up to the left side lower part of charging box, two rectangular shape through-holes have been seted up on the regulating plate, the charging box is located one side welding of seting up the blown down tank and has two threaded rods that run through two through-holes that the regulating plate was seted up respectively. As a preferable scheme of the quartz raw material rolling dehydration device, the outer rings of the two threaded rods are provided with limit nuts matched with the threaded rods, and the upper part of the adjusting plate is welded with a pull plate. The utility model has the beneficial effects that: (1) According