A high-purity quartz sand flotation dewatering test device
Patent Information
- Application Number
- CN202522224454.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-21
AI Technical Summary
[0004]为了解决上述技术问题,本实用新型提供一种高纯石英砂浮选脱水试验装置,以解决现有类似装置中,浮动板轴拆装繁琐耗时,增加劳动强度,不便清洗维护,影响维护效率;清洗方式单一,难以全面除杂,效果不佳;沥干缺乏往复机制,沥干不充分,影响后续工序及产品质量的问题
浮动板轴的设置,有利于通过插杆外端的连接杆滑动安装于连接板的滑孔上,向外拉动插杆,将浮动板轴上的花键槽套接安装于浮选电机的花键轴上,至浮动板轴移动至安装位置后,松开插杆,在连接杆上弹性件的作用下,浮动板轴外端的插槽转动安装于插杆上,从而使得本装置的浮动板轴方便进行快速拆装,以便对浮动板轴进行清洗维护,提高了装置的维护效率。
Smart Images

Figure CN224749627U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of quartz sand production technology, and more specifically, it relates to a high-purity quartz sand flotation dewatering test device. Background Technology
[0002] In the production process of quartz sand, acid washing and flotation dewatering are required, thus necessitating a high-purity quartz sand flotation dewatering test device.
[0003] Existing high-purity quartz sand flotation dewatering test equipment suffers from cumbersome and time-consuming disassembly and assembly processes for key components such as the floating plate shaft, which increases the labor intensity of operators and makes cleaning and maintenance of the floating plate shaft extremely inconvenient, seriously affecting the overall maintenance efficiency of the equipment. The existing equipment has a relatively simple cleaning method, mostly only able to rinse the quartz sand from a fixed angle, which is difficult to completely remove impurities attached to the surface of the quartz sand, resulting in poor cleaning effect. Moreover, the draining process lacks an effective reciprocating motion mechanism, resulting in insufficient draining of the quartz sand and a large amount of residual moisture, which not only affects subsequent processing steps but also reduces the quality of the final product. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a high-purity quartz sand flotation dewatering test device. This device solves the problems in existing similar devices, such as the cumbersome and time-consuming disassembly and assembly of the floating plate shaft, which increases labor intensity, makes cleaning and maintenance inconvenient, and affects maintenance efficiency; the single cleaning method makes it difficult to completely remove impurities, resulting in poor effect; and the lack of a reciprocating mechanism in the draining process leads to insufficient draining, affecting subsequent processes and product quality.
[0005] This utility model of a high-purity quartz sand flotation dewatering test device is achieved through the following specific technical means: A high-purity quartz sand flotation dewatering test device includes an acid washing tank and a floating plate shaft; The pickling tank is equipped with a set of pickling liquid outlets. A flotation motor is fixed to the right end of the pickling tank. A set of insert rods is slidably installed on the right end of the pickling tank. A set of slots is opened on the outer end of the floating plate shaft, and the slots on the outer end of the floating plate shaft are rotatably installed on the insert rods. A water collection tank is fixed to the right end of the pickling tank. A material collection tank is fixedly installed on the right end of the water collection tank. A set of movable frames is slidably installed on the top of the water collection tank. Two sets of water spray plates are also fixed on the top of the water collection tank. Two sets of first rollers are rotatably installed on the left end of the movable frames. A first conveyor belt is driven and installed on the two sets of first rollers. The first conveyor belt has a left-low and right-high structure. Two sets of second rollers are rotatably installed on the right end of the movable frames. A second conveyor belt is driven and installed on the two sets of second rollers. A conveyor motor is also fixedly installed on the outer end of the movable frames.
[0006] Furthermore, a set of spline grooves are provided on the floating plate shaft, and a set of spline shafts are fixedly installed on the drive shaft of the flotation motor, with the spline grooves on the floating plate shaft sleeved on the spline shafts of the flotation motor.
[0007] Furthermore, a set of drive motors is fixedly installed on the top of the water collection tank, a set of turntables is fixedly installed on the drive shaft of the drive motors, and a set of connecting shafts is fixedly installed on the outer end of the turntables. A set of connecting slots is opened on the top of the mobile frame, and the connecting shafts at the outer end of the turntables are slidably installed on the connecting slots on the top of the mobile frame.
[0008] Furthermore, a set of elastic elements is sleeved on the connecting rod at the outer end of the insertion rod, and the outer end of the elastic elements is in contact with the inner end face of the connecting plate on the pickling tank.
[0009] Furthermore, a set of synchronous pulleys is fixedly installed on the outer end of the first roller, and a set of synchronous pulleys is fixedly installed on the outer end of the second roller. The synchronous pulleys of the right-end first roller and the left-end second roller are connected by a synchronous belt drive.
[0010] Furthermore, two sets of guide rods are fixedly installed on the top of the water collection tank, and four sets of guide holes are opened on the top of the movable frame. The guide holes on the top of the movable frame are slidably installed on the guide rods on the top of the water collection tank.
[0011] Furthermore, a set of connecting plates is fixedly installed on the outer end of the pickling tank. A set of sliding holes are opened on the connecting plates. A set of connecting rods is fixedly installed on the outer end of the insertion rod, and the connecting rods at the outer end of the insertion rod are slidably installed on the sliding holes of the connecting plates.
[0012] Compared with the prior art, the high-purity quartz sand flotation dewatering test device of this utility model has the following beneficial effects: The floating plate shaft is designed to be easily installed on the sliding hole of the connecting plate via the connecting rod at the outer end of the insert rod. Pulling the insert rod outward allows the spline groove on the floating plate shaft to be fitted onto the spline shaft of the flotation motor. Once the floating plate shaft has moved to the installation position, the insert rod is released. Under the action of the elastic element on the connecting rod, the slot at the outer end of the floating plate shaft rotates and is installed on the insert rod. This allows for quick and easy disassembly and assembly of the floating plate shaft, facilitating cleaning and maintenance and improving the maintenance efficiency of the device.
[0013] The movable frame is designed to facilitate the connection between the synchronous pulleys of the first roller on the right and the second roller on the left via a synchronous belt drive. The conveyor motor drives the second roller to rotate, which in turn drives the first roller to rotate. The connecting shaft at the outer end of the turntable is slidably mounted on the connecting groove at the top of the movable frame. The guide hole at the top of the movable frame is slidably mounted on the guide rod at the top of the water collection tank. The drive motor drives the turntable to rotate, which in turn drives the movable frame to move back and forth. Combined with the water spray plate on the water collection tank and the left-low-right-high structure of the first conveyor belt, the device can perform multi-angle cleaning and reciprocating draining of quartz sand, thus improving the working efficiency of the device. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the front side axis of this utility model.
[0015] Figure 2 This is a schematic diagram of the rear side shaft of this utility model.
[0016] Figure 3 This is a schematic diagram of the disassembly and assembly of the mobile frame of this utility model.
[0017] Figure 4 This is a schematic diagram of the installation of the floating plate shaft of this utility model.
[0018] Figure 5 This is a schematic diagram of the disassembly and assembly of the floating plate shaft of this utility model.
[0019] Figure 6 This is a schematic diagram of the installation of the flotation motor of this utility model.
[0020] In the diagram, the correspondence between component names and drawing numbers is as follows: 1. Pickling tank; 101. Pickling liquid outlet; 102. Flotation motor; 1021. Splined shaft; 103. Floating plate shaft; 1031. Slot; 1032. Spline groove; 104. Insert rod; 1041. Connecting rod; 1042. Elastic element; 105. Connecting plate; 2. Water collection tank; 201. Material collection tank; 202. Guide rod; 203. Water spray plate; 204. Turntable; 2041. Connecting shaft; 205. Drive motor; 3. Moving frame; 301. First conveyor belt; 3011. First roller; 302. Second conveyor belt; 3021. Second roller; 303. Synchronous belt; 304. Guide hole; 305. Connecting groove; 306. Conveyor motor. Detailed Implementation
[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0022] As attached Figure 1 To be continued Figure 6 As shown: Example 1: This utility model provides a high-purity quartz sand flotation dewatering test device, including an acid washing tank 1 and a floating plate shaft 103; A set of pickling liquid outlets 101 are installed inside the pickling tank 1. A flotation motor 102 is fixed to the right end of the pickling tank 1. A set of insert rods 104 are slidably installed on the right end of the pickling tank 1. A set of slots 1031 are opened on the outer end of the floating plate shaft 103, and the slots 1031 on the outer end of the floating plate shaft 103 are rotatably installed on the insert rods 104. A water collection tank 2 is fixed to the right end of the pickling tank 1. A material collection trough 201 is fixedly installed on the right end of the water collection tank 2. A set of moving parts is slidably installed on the top of the water collection tank 2. The top of the moving frame 3 and the water collection tank 2 is also fixed with two sets of water spray plates 203. The left end of the moving frame 3 is rotatably mounted with two sets of first rollers 3011. The two sets of first rollers 3011 are driven to install a first conveyor belt 301. The first conveyor belt 301 has a left-low and right-high structure. The right end of the moving frame 3 is rotatably mounted with two sets of second rollers 3021. The two sets of second rollers 3021 are driven to install a second conveyor belt 302. The outer end of the moving frame 3 is also fixedly mounted with a conveyor motor 306.
[0023] like Figures 4 to 6 As shown, a set of connecting plates 105 are fixedly installed on the outer end of the pickling tank 1. A set of sliding holes are provided on the connecting plates 105. A set of connecting rods 1041 are fixedly installed on the outer end of the insert rod 104, and the connecting rods 1041 at the outer end of the insert rod 104 are slidably installed on the sliding holes of the connecting plates 105. A set of elastic elements 1042 are sleeved on the connecting rods 1041 at the outer end of the insert rod 104, and the outer end of the elastic element 1042 is in contact with the inner end face of the connecting plate 105 on the pickling tank 1. A set of spline grooves 1032 are provided on the floating plate shaft 103. A set of spline shafts 1021 are fixedly installed on the drive shaft of the flotation motor 102, and the spline grooves 1032 on the floating plate shaft 103 are sleeved on the floating plate shaft 103. The splined shaft 1021 of the flotation motor 102 is used for the following: Specifically, the connecting rod 1041 at the outer end of the insert rod 104 is slidably installed on the sliding hole of the connecting plate 105. Pulling the insert rod 104 outward causes the spline groove 1032 on the floating plate shaft 103 to be sleeved and installed on the splined shaft 1021 of the flotation motor 102. After the floating plate shaft 103 moves to the installation position, the insert rod 104 is released. Under the action of the elastic element 1042 on the connecting rod 1041, the slot 1031 at the outer end of the floating plate shaft 103 rotates and is installed on the insert rod 104. This allows the floating plate shaft 103 of the device to be easily and quickly disassembled and assembled, so as to clean and maintain the floating plate shaft 103, thereby improving the maintenance efficiency of the device.
[0024] Example 2: Based on Example 1, as follows Figure 2 and Figure 3As shown, two sets of guide rods 202 are fixedly installed on the top of the water collection tank 2. Four sets of guide holes 304 are opened on the top of the moving frame 3. The guide holes 304 on the top of the moving frame 3 are slidably installed on the guide rods 202 on the top of the water collection tank 2. A set of drive motors 205 are also fixedly installed on the top of the water collection tank 2. A set of turntables 204 are fixedly installed on the transmission shaft of the drive motors 205. A set of connecting shafts 2041 are fixedly installed on the outer end of the turntables 204. A set of connecting grooves 305 are opened on the top of the moving frame 3. The connecting shafts 2041 at the outer end of the turntables 204 are slidably installed on the connecting grooves 305 on the top of the moving frame 3. A set of synchronous pulleys is fixedly installed on the outer end of the first roller 3011. A set of synchronous pulleys is fixedly installed on the outer end of the second roller 3021. The synchronous pulleys of the right first roller 3011 and the left second roller 3021 are connected by a synchronous pulley. The synchronous pulleys of 21 are connected by a synchronous belt 303. Specifically, the synchronous pulleys of the first roller 3011 on the right end and the second roller 3021 on the left end are connected by a synchronous belt 303. The conveyor motor 306 drives the second roller 3021 to rotate, thereby driving the first roller 3011 to rotate. The connecting shaft 2041 at the outer end of the turntable 204 is slidably installed on the connecting groove 305 at the top of the moving frame 3. The guide hole 304 at the top of the moving frame 3 is slidably installed on the guide rod 202 at the top of the water collection tank 2. The drive motor 205 drives the turntable 204 to rotate, thereby driving the moving frame 3 to move back and forth. In conjunction with the water spray plate 203 on the water collection tank 2 and the first conveyor belt 301, which has a left-low and right-high structure, the device can perform multi-angle cleaning and reciprocating draining of quartz sand, thereby improving the working efficiency of the device.
[0025] The specific usage and function of this embodiment are as follows: In use, the connecting rod 1041 at the outer end of the insertion rod 104 is slidably mounted on the sliding hole of the connecting plate 105. Pulling the insertion rod 104 outwards causes the spline groove 1032 on the floating plate shaft 103 to be sleeved onto the spline shaft 1021 of the flotation motor 102. After the floating plate shaft 103 moves to the installation position, the insertion rod 104 is released. Under the action of the elastic element 1042 on the connecting rod 1041, the slot 1031 at the outer end of the floating plate shaft 103 rotates and is mounted on the insertion rod 104. This allows for quick and easy disassembly and assembly of the floating plate shaft 103, facilitating cleaning and maintenance and improving the maintenance efficiency of the device. The right end first roller 3011 is synchronized... The wheel and the synchronous pulley of the second roller 3021 on the left end are connected by a synchronous belt 303. The conveyor motor 306 drives the second roller 3021 to rotate, thereby driving the first roller 3011 to rotate. The connecting shaft 2041 at the outer end of the turntable 204 is slidably installed on the connecting groove 305 on the top of the moving frame 3. The guide hole 304 on the top of the moving frame 3 is slidably installed on the guide rod 202 on the top of the water collection tank 2. The drive motor 205 drives the turntable 204 to rotate, thereby driving the moving frame 3 to move back and forth. With the water spray plate 203 on the water collection tank 2 and the first conveyor belt 301 having a left-low and right-high structure, the device can perform multi-angle cleaning and reciprocating draining of quartz sand, improving the working efficiency of the device.
[0026] The following points should be noted in this article: 1. The accompanying drawings of this utility model embodiment only involve the structures involved in this utility model embodiment; other structures can refer to general designs.
[0027] 2. Where there is no conflict, the embodiments of this utility model and the features in the embodiments can be combined with each other to obtain new embodiments.
[0028] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A high-purity quartz sand flotation dewatering test device, characterized in that: Includes pickling tank (1) and floating plate shaft (103); The pickling tank (1) is equipped with a set of pickling liquid outlets (101). A flotation motor (102) is fixed to the right end of the pickling tank (1). A set of insert rods (104) is slidably installed on the right end of the pickling tank (1). A set of slots (1031) is opened at the outer end of the floating plate shaft (103), and the slots (1031) at the outer end of the floating plate shaft (103) are rotatably installed on the insert rods (104). A water collection tank (2) is fixed to the right end of the pickling tank (1). A material collection tank (201) is fixedly installed on the right end of the water collection tank (2). A material collection tank (201) is slidably installed on the top of the water collection tank (2). A set of movable frames (3) are provided. Two sets of water spray plates (203) are fixed on the top of the water collection tank (2). Two sets of first rollers (3011) are rotatably installed on the left end of the movable frame (3). A first conveyor belt (301) is driven on the two sets of first rollers (3011). The first conveyor belt (301) has a left-low and right-high structure. Two sets of second rollers (3021) are rotatably installed on the right end of the movable frame (3). A second conveyor belt (302) is driven on the two sets of second rollers (3021). A conveyor motor (306) is fixedly installed on the outer end of the movable frame (3).
2. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: A set of connecting plates (105) is fixedly installed on the outer end of the pickling tank (1). A set of sliding holes are provided on the connecting plates (105). A set of connecting rods (1041) is fixedly installed on the outer end of the insert rod (104), and the connecting rods (1041) at the outer end of the insert rod (104) are slidably installed on the sliding holes of the connecting plates (105).
3. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: A set of elastic elements (1042) is sleeved on the connecting rod (1041) at the outer end of the insertion rod (104), and the outer end of the elastic element (1042) is in contact with the inner end face of the connecting plate (105) on the pickling tank (1).
4. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: A set of spline grooves (1032) are provided on the floating plate shaft (103), and a set of spline shafts (1021) are fixedly installed on the drive shaft of the flotation motor (102), and the spline grooves (1032) on the floating plate shaft (103) are sleeved on the spline shafts (1021) of the flotation motor (102).
5. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: Two sets of guide rods (202) are fixedly installed on the top of the water collection tank (2), and four sets of guide holes (304) are opened on the top of the moving frame (3). The guide holes (304) on the top of the moving frame (3) are slidably installed on the guide rods (202) on the top of the water collection tank (2).
6. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: A set of drive motors (205) is fixedly installed on the top of the water collection tank (2). A set of turntables (204) is fixedly installed on the drive shaft of the drive motors (205), and a set of connecting shafts (2041) is fixedly installed on the outer end of the turntables (204). A set of connecting grooves (305) is opened on the top of the moving frame (3). The connecting shafts (2041) at the outer end of the turntables (204) are slidably installed on the connecting grooves (305) on the top of the moving frame (3).
7. The high-purity quartz sand flotation dewatering test device according to claim 1, characterized in that: A set of synchronous pulleys is fixedly installed on the outer end of the first roller (3011), and a set of synchronous pulleys is fixedly installed on the outer end of the second roller (3021). The synchronous pulleys of the right-end first roller (3011) and the synchronous pulleys of the left-end second roller (3021) are connected by a synchronous belt (303).