Efficient quartz sand dehydrator
By introducing vibration and cleaning mechanisms into the quartz sand dewatering machine, the problems of quartz sand accumulation and water vapor re-falling are solved, achieving a more thorough dewatering effect.
Patent Information
- Application Number
- CN202520241959.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-17
AI Technical Summary
In existing quartz sand dewatering machines, quartz sand tends to accumulate during high-temperature drying, making it difficult to completely dehydrate the sand inside. Furthermore, the evaporated water vapor falls back down, affecting the dehydration efficiency.
A vibration mechanism and a cleaning mechanism are used to clean up the condensed water vapor by vibrating and shaking the quartz sand and setting up the cleaning mechanism to prevent the water vapor from falling back down.
It achieves complete dehydration of quartz sand, improves dehydration efficiency, avoids the phenomenon of water vapor falling back down, and enhances the dehydration effect.
Smart Images

Figure CN223691461U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to quartz sand production technical field especially relates to a quartz sand high -efficient dehydrator. BACKGROUND
[0002] Quartz sand is quartz particle that quartzite is broken and is processed, and needs to use the dehydration equipment in the quartz sand processing process, and the quartz sand dehydration equipment is the equipment used for the dehydration grading of quartz sand.
[0003] The existing quartz sand dehydrator evaporates the water on the surface of quartz sand through high temperature by heating quartz sand, but quartz sand will be accumulated together, so that the quartz sand accumulated inside is difficult to be affected by high temperature, so that the quartz sand inside cannot reach the effect of overall dehydration, and when the quartz sand is high-temperature dried, the water vapor evaporated will accumulate to the top of the dehydrator, when the water vapor accumulates more, the water vapor will fall to the surface of quartz sand again under the action of gravity, so that the dehydration efficiency of quartz sand is affected. UTILITY MODEL CONTENT
[0004] In view of the deficiencies of the prior art, the utility model aims at providing a quartz sand high -efficient dehydrator, which aims at solving the above technical problems.
[0005] In order to realize the above object, the utility model adopts the following technical scheme:
[0006] A quartz sand high -efficient dehydrator, including frame body and support leg, the support leg is fixedly connected with the frame body, still including:
[0007] Supporting block has a plurality of, and the plurality of supporting blocks are evenly arranged on the frame body, and are fixedly connected with the frame body;
[0008] Supporting rod is arranged on the supporting block and is fixedly connected with the supporting block;
[0009] Supporting plate is rotatably connected with the supporting rod;
[0010] Handle is arranged on the supporting plate and is fixedly connected with the supporting plate;
[0011] Heating pipe has a plurality of, and the plurality of heating pipes are evenly arranged in the frame body, and are detachably fixedly connected with the frame body;
[0012] Vibration mechanism is arranged on the frame body and is used for shaking quartz sand;
[0013] Cleaning mechanism is arranged on the supporting plate and is used for cleaning the water vapor condensed on the supporting plate.
[0014] Preferably, the vibration mechanism includes:
[0015] A vibration frame is arranged on the frame body and fixedly connected with the frame body.
[0016] A vibration motor is fixedly connected with the vibration frame.
[0017] A vibration shaft is detachably fixedly connected with an output end of the vibration motor.
[0018] A vibration disc is fixedly connected with the vibration shaft.
[0019] A rotating shaft is eccentrically arranged on the vibration disc and fixedly connected with the vibration disc.
[0020] A vibration ring is slidingly connected with the rotating shaft.
[0021] A reciprocating component is arranged on the frame body.
[0022] Preferably, the reciprocating component comprises:
[0023] A reciprocating block is arranged in the frame body and fixedly connected with the frame body.
[0024] A reciprocating groove is arranged in the reciprocating block.
[0025] A plurality of first reciprocating rods are arranged on the vibration ring in a uniform manner, fixedly connected with the vibration ring, and slidingly connected with the reciprocating groove.
[0026] A reciprocating spring is fixedly connected with the first reciprocating rod.
[0027] A second reciprocating rod is fixedly connected with the reciprocating spring and slidingly connected with the first reciprocating rod.
[0028] A sliding assembly is arranged on the frame body.
[0029] Preferably, the sliding assembly comprises:
[0030] A sliding groove is arranged on the frame body.
[0031] A plurality of sliding blocks are arranged in the sliding groove in a uniform manner and slidingly connected with the sliding groove.
[0032] A filter frame is arranged on the sliding block, fixedly connected with the sliding block, and fixedly connected with the vibration ring.
[0033] Preferably, the cleaning mechanism comprises:
[0034] A cleaning cylinder is arranged on the support plate and fixedly connected with the support plate.
[0035] A cleaning rod is slidingly connected with the cleaning cylinder.
[0036] The cleaning block is fixedly connected with the cleaning rod.
[0037] The cleaning shaft is fixedly connected with the cleaning block.
[0038] The moving part is arranged on the cleaning shaft.
[0039] Preferably, the moving part comprises:
[0040] The moving plate is arranged on the cleaning shaft and is fixedly connected with the cleaning shaft.
[0041] The moving shaft is rotatably connected with the moving plate.
[0042] The moving groove is arranged on the support plate.
[0043] The moving block is slidably connected with the moving groove and is fixedly connected with the moving shaft.
[0044] The moving frame is fixedly connected with the moving block.
[0045] The cleaning sponge is detachably fixedly connected with the moving frame.
[0046] The connecting assembly is arranged on the support plate.
[0047] Preferably, the connecting assembly comprises:
[0048] The first connecting shaft is provided in plurality and is fixedly connected with the support plate.
[0049] The first connecting plate is rotatably connected with the first connecting shaft.
[0050] The second connecting shaft is rotatably connected with the first connecting plate.
[0051] The second connecting plate is rotatably connected with the second connecting shaft.
[0052] The third connecting shaft is rotatably connected with the second connecting plate and is fixedly connected with the moving frame.
[0053] In summary, due to the adoption of the above technical scheme, the present application has the following beneficial effects:
[0054] By arranging the vibration mechanism, the reciprocating part and the sliding assembly, the quartz sand is shaken, by arranging the cleaning mechanism, the moving part and the connecting assembly, the condensed water vapor on the support plate is cleaned, by arranging the vibration mechanism and the cleaning mechanism, the dehydration of the quartz sand is more thorough, and the evaporated water vapor is prevented from falling back to the surface of the quartz sand, thereby improving the dehydration efficiency of the quartz sand. BRIEF DESCRIPTION OF DRAWINGS
[0055] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings described below are only some of the embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.
[0056] Figure 1 A perspective structural schematic diagram of the quartz sand efficient dehydrator is shown.
[0057] Figure 2 A top view structural schematic diagram of the quartz sand efficient dehydrator is shown.
[0058] Figure 3 A front view cross-sectional structural schematic diagram of the quartz sand efficient dehydrator is shown.
[0059] Figure 4 A vibration mechanism exploded view of the quartz sand efficient dehydrator is shown.
[0060] Figure 5 A cleaning mechanism exploded view of the quartz sand efficient dehydrator is shown.
[0061] Legend:
[0062] 1, frame; 2, support leg; 3, support block; 4, support rod; 5, support plate; 6, handle; 7, heating pipe; 8, vibration frame; 9, vibration motor; 10, vibration shaft; 11, vibration disc; 12, rotating shaft; 13, vibration ring; 14, reciprocating block; 15, reciprocating groove; 16, first reciprocating rod; 17, reciprocating spring; 18, second reciprocating rod; 19, sliding groove; 20, sliding block; 21, filter frame; 22, cleaning cylinder; 23, cleaning rod; 24, cleaning block; 25, cleaning shaft; 26, moving plate; 27, moving shaft; 28, moving groove; 29, moving block; 30, moving frame; 31, cleaning sponge; 32, first connecting shaft; 33, first connecting plate; 34, second connecting shaft; 35, second connecting plate; 36, third connecting shaft. DETAILED DESCRIPTION
[0063] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0064] In the description of the utility model, it is necessary to understand that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or positional relationship shown based on the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model.
[0065] It should be noted that when a component is referred to as "fixed to" another component, it can be directly on the other component or there can be a middle component. When a component is referred to as "connected to" another component, it can be directly connected to the other component or there can be a middle component. When a component is referred to as "disposed on" another component, it can be directly disposed on the other component or there can be a middle component. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for illustrative purposes.
[0066] In addition, the terms "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0067] Referring to Figures 1 to 5 The utility model discloses a quartz sand high -efficient dehydrator embodiment makes further explanation.
[0068] A kind of quartz sand high -efficient dehydrator, including frame 1 and support leg 2, support leg 2 is fixedly connected with frame 1;Further include: support block 3, with multiple, and multiple support block 3 evenly set on frame 1, with frame 1 fixed connection;Supporting rod 4 is set on support block 3, with support block 3 fixed connection;Supporting plate 5 is rotatably connected with supporting rod 4;Handle 6 is set on supporting plate 5, with supporting plate 5 fixed connection;Heating pipe 7, with multiple, and multiple heating pipe 7 evenly set in frame 1, with frame 1 detachable fixed connection;Vibration mechanism, set on frame 1, for the quartz sand is shaken;Cleaning mechanism is set on supporting plate 5, for the water vapor condensed on supporting plate 5 is cleaned.
[0069] Referring to Figure 4, as a preferred embodiment, the vibrating mechanism comprises: a vibrating frame 8 arranged on the frame body 1 and fixedly connected with the frame body 1; a vibrating motor 9 fixedly connected with the vibrating frame 8; a vibrating shaft 10 detachably fixedly connected with the output end of the vibrating motor 9; a vibrating disc 11 fixedly connected with the vibrating shaft 10; a rotating shaft 12 eccentrically arranged on the vibrating disc 11 and fixedly connected with the vibrating disc 11; a vibrating ring 13 slidably connected with the rotating shaft 12; and a reciprocating component arranged on the frame body 1.
[0070] In this way, when the vibrating motor 9 operates, the vibrating shaft 10 detachably fixedly connected with the output end of the vibrating motor 9 is driven to rotate, so that the vibrating disc 11 fixedly connected with the vibrating shaft 10 is driven to rotate, thereby driving the rotating shaft 12 to slide in the vibrating ring 13 and providing power for the reciprocating component to operate.
[0071] Referring to Figure 4 , as a preferred embodiment, the reciprocating component comprises: a reciprocating block 14 arranged in the frame body 1 and fixedly connected with the frame body 1; a reciprocating groove 15 formed in the reciprocating block 14; a plurality of first reciprocating rods 16 uniformly arranged on the vibrating ring 13, fixedly connected with the vibrating ring 13, and slidably connected with the reciprocating groove 15; a reciprocating spring 17 fixedly connected with the first reciprocating rod 16; a second reciprocating rod 18 fixedly connected with the reciprocating spring 17 and slidably connected with the first reciprocating rod 16; and a sliding assembly arranged on the frame body 1.
[0072] In this way, the first reciprocating rod 16 fixedly connected with the vibrating ring 13 slides in the reciprocating groove 15 on the reciprocating block 14, so that when the second reciprocating rod 18 contacts the inner wall of the frame body 1, the reciprocating spring 17 fixedly connected with the second reciprocating rod 18 is compressed to generate elastic potential energy, thereby driving the second reciprocating rod 18 to slide towards the inside of the first reciprocating rod 16 and driving the sliding component to operate.
[0073] Referring to Figure 3 and Figure 4 , as a preferred embodiment, the sliding assembly comprises: a sliding groove 19 formed on the frame body 1; a plurality of sliding blocks 20 uniformly arranged in the sliding groove 19 and slidably connected with the sliding groove 19; and a filter frame 21 arranged on the sliding block 20, fixedly connected with the sliding block 20, and fixedly connected with the vibrating ring 13.
[0074] In this way, the filter frame 21 fixedly connected with the vibrating ring 13 drives the sliding block 20 to slide in the sliding groove 19, thereby achieving the shaking of the quartz sand.
[0075] Referring to Figure 1 and Figure 5As a preferred implementation form, the cleaning mechanism comprises: a cleaning cylinder 22 arranged on the support plate 5 and fixedly connected with the support plate 5; a cleaning rod 23 in sliding connection with the cleaning cylinder 22; a cleaning block 24 fixedly connected with the cleaning rod 23; a cleaning shaft 25 fixedly connected with the cleaning block 24; and a moving component arranged on the cleaning shaft 25.
[0076] In this way, when the cleaning cylinder 22 is in operation, the cleaning rod 23 in sliding connection with the cleaning cylinder 22 is driven to slide towards the cleaning cylinder 22, so that the cleaning block 24 fixedly connected with the cleaning rod 23 drives the cleaning shaft 25 to move, thereby driving the moving plate 26 fixedly connected with the cleaning shaft 25 to move towards the cleaning cylinder 22, and providing power for the moving component to operate.
[0077] With reference to Figure 1 and Figure 5 As a preferred implementation form, the moving component comprises: a moving plate 26 arranged on the cleaning shaft 25 and fixedly connected with the cleaning shaft 25; a moving shaft 27 in rotational connection with the moving plate 26; a moving groove 28 formed in the support plate 5; a moving block 29 in sliding connection with the moving groove 28 and fixedly connected with the moving shaft 27; a moving frame 30 fixedly connected with the moving block 29; a cleaning sponge 31 detachably fixedly connected with the moving frame 30; and a connecting assembly arranged on the support plate 5.
[0078] In this way, the moving block 29 fixedly connected with the moving shaft 27 slides in the moving groove 28, so that the moving frame 30 fixedly connected with the moving block 29 drives the cleaning sponge 31 to slide on the support plate 5, thereby driving the connecting assembly to operate.
[0079] With reference to Figure 5 As a preferred implementation form, the connecting assembly comprises: a plurality of first connecting shafts 32, which are uniformly arranged on the support plate 5 and fixedly connected with the support plate 5; a first connecting plate 33 in rotational connection with the first connecting shaft 32; a second connecting shaft 34 in rotational connection with the first connecting plate 33; a second connecting plate 35 in rotational connection with the second connecting shaft 34; and a third connecting shaft 36 in rotational connection with the second connecting plate 35 and fixedly connected with the moving frame 30.
[0080] In this way, the second connecting plate 35 in rotational connection with the third connecting shaft 36 rotates, so that the first connecting plate 33 in rotational connection with the second connecting shaft 34 rotates around the axis of the first connecting shaft 32, thereby achieving the cleaning of the condensed water vapor on the support plate 5.
[0081] Working principle: in working, firstly, the vibration motor 9 is started, the vibration shaft 10 fixedly connected with the output end of the vibration motor 9 is driven to rotate, the vibration disc 11 fixedly connected with the vibration shaft 10 is driven to rotate, the rotating shaft 12 is driven to slide in the vibration ring 13, the first reciprocating rod 16 fixedly connected with the vibration ring 13 is driven to slide in the reciprocating groove 15 on the reciprocating block 14, the second reciprocating rod 18 is in contact with the inner wall of the frame body 1, the reciprocating spring 17 fixedly connected with the second reciprocating rod 18 is compressed, the elastic potential energy is generated, the second reciprocating rod 18 is driven to slide to the inside of the first reciprocating rod 16, the filter frame 21 fixedly connected with the vibration ring 13 drives the sliding block 20 to slide in the sliding groove 19,
[0082] Then, the cleaning cylinder 22 is started, the cleaning rod 23 slidingly connected with the cleaning cylinder 22 is driven to slide to the direction close to the cleaning cylinder 22, the cleaning block 24 fixedly connected with the cleaning rod 23 drives the cleaning shaft 25 to move, the moving plate 26 fixedly connected with the cleaning shaft 25 is driven to move close to the cleaning cylinder 22, the moving block 29 fixedly connected with the moving shaft 27 is driven to slide in the moving groove 28, the moving frame 30 fixedly connected with the moving block 29 drives the cleaning sponge 31 to slide on the support plate 5, the second connecting plate 35 rotatably connected with the third connecting shaft 36 is driven to rotate, the first connecting plate 33 rotatably connected with the second connecting shaft 34 is driven to rotate around the axis of the first connecting shaft 32.
[0083] The above description of the embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Accordingly, the present application is not to be limited to the embodiments shown herein but is to be accorded the broadest scope consistent with the principles and novel features disclosed herein.
Claims
1. A high-efficiency quartz sand dewatering machine, comprising a frame (1) and supporting legs (2) fixedly connected with the frame (1); characterized in that, Also include: Supporting block (3) has a plurality of, and a plurality of supporting block (3) is evenly arranged on the frame (1), and is fixedly connected with the frame (1); Supporting rod (4) is arranged on the supporting block (3) and is fixedly connected with the supporting block (3); Supporting plate (5) is rotatably connected with the supporting rod (4); Handle (6) is arranged on the supporting plate (5) and is fixedly connected with the supporting plate (5); Heating pipe (7) has a plurality of, and a plurality of heating pipes (7) are evenly arranged in the frame (1), and are detachably fixedly connected with the frame (1); Vibration mechanism is arranged on the frame (1), and is used for shaking quartz sand; Cleaning mechanism is arranged on the supporting plate (5), and is used for cleaning condensed water vapor on the supporting plate (5).
2. The quartz sand high-efficiency dewatering machine according to claim 1, characterized in that, The vibration mechanism comprises: Vibration frame (8) is arranged on the frame (1) and is fixedly connected with the frame (1); Vibration motor (9) is fixedly connected with the vibration frame (8); Vibration shaft (10) is detachably fixedly connected with the output end of the vibration motor (9); Vibration disc (11) is fixedly connected with the vibration shaft (10); Rotating shaft (12) is eccentrically arranged on the vibration disc (11) and is fixedly connected with the vibration disc (11); Vibration ring (13) is slidably connected with the rotating shaft (12); Reciprocating component is arranged on the frame (1).
3. The quartz sand high-efficiency dewatering machine according to claim 2, characterized in that, The reciprocating component comprises: Reciprocating block (14) is arranged in the frame (1) and is fixedly connected with the frame (1); Reciprocating groove (15) is arranged in the reciprocating block (14); First reciprocating rod (16) has a plurality of, and a plurality of first reciprocating rods (16) are evenly arranged on the vibration ring (13) and are fixedly connected with the vibration ring (13), and are slidably connected with the reciprocating groove (15); Reciprocating spring (17) is fixedly connected with the first reciprocating rod (16); Second reciprocating rod (18) is fixedly connected with the reciprocating spring (17) and is slidably connected with the first reciprocating rod (16); Sliding assembly is arranged on the frame (1).
4. The quartz sand high-efficiency dewatering machine according to claim 3, characterized in that, The sliding assembly comprises: Sliding groove (19) is arranged on the frame (1); Sliding block (20) has a plurality of, and a plurality of sliding blocks (20) are evenly arranged in the sliding groove (19) and are slidably connected with the sliding groove (19); Filter frame (21) is arranged on the sliding block (20) and is fixedly connected with the sliding block (20) and the vibration ring (13).
5. The quartz sand high-efficiency dewatering machine according to claim 4, characterized in that, The cleaning mechanism comprises: Cleaning cylinder (22) is arranged on the supporting plate (5) and is fixedly connected with the supporting plate (5); Cleaning rod (23) is slidably connected with the cleaning cylinder (22); Cleaning block (24) is fixedly connected with the cleaning rod (23); Cleaning shaft (25) is fixedly connected with the cleaning block (24); Moving part is arranged on the cleaning shaft (25).
6. The quartz sand high-efficiency dewatering machine according to claim 5, characterized in that, The moving part comprises: Moving plate (26) is arranged on the cleaning shaft (25) and is fixedly connected with the cleaning shaft (25); Moving shaft (27) is rotatably connected with the moving plate (26); A moving groove (28) is arranged on the support plate (5); A moving block (29) is in sliding connection with the moving groove (28) and is fixedly connected with the moving shaft (27); A moving frame (30) is fixedly connected with the moving block (29); A cleaning sponge (31) is detachably fixedly connected with the moving frame (30); A connecting assembly is arranged on the support plate (5).
7. The quartz sand high-efficiency dewatering machine according to claim 6, characterized in that, The connecting assembly comprises: A plurality of first connecting shafts (32) are arranged on the support plate (5) and are fixedly connected with the support plate (5); A first connecting plate (33) is in rotary connection with the first connecting shaft (32); A second connecting shaft (34) is in rotary connection with the first connecting plate (33); A second connecting plate (35) is in rotary connection with the second connecting shaft (34); A third connecting shaft (36) is in rotary connection with the second connecting plate (35) and is fixedly connected with the moving frame (30).