Nutrient solution separation device for spirulina powder production
By designing clamping components and installation components in the nutritional solution separation device for spirulina powder production, the problem of cumbersome operation of the device is solved, and the staff can quickly install and disassemble the filter box and filter layer, improving work efficiency.
Patent Information
- Application Number
- CN202421606531.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The existing nutrient solution separation device for spirulina powder production has cumbersome steps during the operation, which consumes time and effort, resulting in low work efficiency.
A nutrient solution separation device including a clamping assembly and a mounting assembly is designed. The clamping assembly drives the rocker rotation through the elastic properties of the torsion spring to achieve limit clamping of the filter box; the installation assembly drives the baffle movement through the elastic properties of the spring to achieve or cancel the limit effect on the filter layer.
It realizes staff to quickly install and disassemble the filter box and filter layer, save time, improve work efficiency, and solves the problem of cumbersome operation of existing devices.
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Figure CN222846701U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of spirulina powder production and related equipment, in particular to a nutrient solution separation device for spirulina powder production. Background Art
[0002] With the development of society and technology, equipment in various fields has been greatly improved. Spirulina powder is a powder made by grinding spirulina, which can be divided into feed grade, food grade and special purpose, etc. Before grinding spirulina, it is generally necessary to use a nutrient solution separation device to separate and remove the nutrient solution attached to the spirulina to avoid the nutrient solution affecting the quality of the ground product.
[0003] After searching, the publication number CN213447111U, application date 2020.09.23 discloses a nutrient solution separation device for spirulina powder production, including a water pool, a water pump is installed inside the water pool, and the top of the water pump is connected to a water pipe, and a nozzle is installed on the outside of the water pipe; a fixed rod is fixedly connected to the top of the water pool, and a filter box is installed on the outside of the fixed rod, a positioning mechanism is connected between the filter box and the fixed rod, and an adjusting vibration mechanism is arranged between the filter box and the nozzle, and a replacement mechanism is installed inside the filter box.
[0004] However, it still has the following disadvantages in actual use:
[0005] 1. The above-mentioned nutrient solution separation device for spirulina powder production uses threaded rods, clamps and other structures to clamp and position the filter box when in use. However, this method is complicated and time-consuming and labor-intensive during the operation of the staff, resulting in low work efficiency.
[0006] 2. The above-mentioned nutrient solution separation device for spirulina powder production is installed by positioning bolts to limit the filter layer during use, and this method is relatively cumbersome and time-consuming and labor-intensive during the operation of the staff, resulting in low work efficiency. To this end, we provide a nutrient solution separation device for spirulina powder production to solve the above problems. Utility Model Content
[0007] The purpose of the utility model is to provide a nutrient solution separation device for spirulina powder production, which realizes the limited clamping of the filter box by setting a clamping component, so that the staff can quickly install and disassemble the filter box, save time and have high work efficiency. The installation component is also convenient for the staff to quickly disassemble and replace the filter layer, which saves time and has high work efficiency.
[0008] In order to solve the above technical problems, the utility model is realized by the following technical solutions:
[0009] The utility model discloses a nutrient solution separation device for producing spirulina powder, comprising a water pool and a left support plate and a right support plate respectively fixed on both sides of the upper surface of the water pool, wherein the left support plate and the right support plate are both provided with a slide groove at the center position of the relative end surface, the inside of the slide groove is slidably connected with a slider, the outer side wall of the slider is fixedly connected with a support plate, a filter box is placed on the inner wall of the adjacent support plate, a through groove is provided above the end surface of the front and rear ends of the filter box, a clamping assembly is provided at the front and rear ends of the outer wall of the support plate, and a mounting assembly is provided inside the through groove;
[0010] The clamping assembly includes a seesaw and a rotating shaft fixedly connected to the inner wall thereof through a connecting block, and a torsion spring is sleeved on the outer side of the outer wall of the rotating shaft;
[0011] The mounting assembly comprises a pressing block and a linkage frame movably connected to the inner wall of the pressing block through a hinge, and the other end of the linkage frame is movably connected to the outer wall of the moving plate through a hinge.
[0012] The utility model is further configured that a flushing mechanism is arranged on one side of the interior of the pool, and a buffer mechanism is arranged on the inner bottom end of the chute.
[0013] The utility model is further configured that an adjusting vibration mechanism is arranged on the outer side of the outer wall of the left supporting plate, and a filter layer is installed inside the filter box.
[0014] The utility model is further configured such that a non-slip pad is bonded to the outer side of the bottom end of the inner wall of the seesaw, two ends of the rotating shaft are respectively installed in bearings on the inner walls of adjacent side plates, and one end surface of the side plate is fixed to the outer wall of the support plate.
[0015] The utility model is further configured that a limiting rod is arranged at the inner center position of the linkage frame, and two ends of the limiting rod penetrate the top and bottom of the linkage frame and are fixedly installed on the inner wall of the through groove.
[0016] The utility model is further configured that the inner wall of the movable plate is fixedly connected with connecting rods at uniform intervals in the horizontal direction, and the other end of the connecting rod passes through the through hole on the outer wall of the fixed plate and is connected with the baffle.
[0017] The utility model is further configured that a spring is sleeved on the outer side of the outer wall of the connecting rod, the spring is located between the fixing plate and the baffle plate, and the outer wall of the fixing plate is fixed on the inner wall of the through groove.
[0018] The utility model has the following beneficial effects:
[0019] 1. The utility model provides a clamping assembly, which drives the seesaw to rotate with the rotating shaft as the center under the action of the elastic properties of the torsion spring, thereby achieving limited clamping of the filter box, making it convenient for workers to quickly install and disassemble the filter box, saving time and improving work efficiency. It solves the problem that the nutrient solution separation device for spirulina powder production uses threaded rods, clamping plates and other structures to clamp and position the filter box during use, while this method is relatively cumbersome and time-consuming and labor-intensive during the operation of the workers, resulting in low work efficiency.
[0020] 2. The utility model sets an installation component to drive the baffle to move under the action of the elastic properties of the spring, thereby achieving or canceling the limiting effect of the baffle on the filter layer, thereby facilitating the staff to quickly disassemble and replace the filter layer, saving time and improving work efficiency. It solves the problem that the nutrient solution separation device for spirulina powder production uses positioning bolts to achieve the limiting installation of the filter layer during use, while this method is relatively cumbersome and time-consuming and labor-intensive during the operation of the staff, resulting in low work efficiency.
[0021] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the utility model, the drawings required for describing the embodiments are briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0023] Figure 1 This is a schematic diagram of the structure of a nutrient solution separation device for producing spirulina powder.
[0024] Figure 2 A cross-sectional view of a nutrient solution separation device for producing spirulina powder.
[0025] Figure 3 This is a structural diagram of the slider.
[0026] Figure 4 A cross-sectional view of the filter box.
[0027] Figure 5 A structural diagram of the clamping assembly.
[0028] Figure 6 A structural diagram of the installation components.
[0029] In the accompanying drawings, the components represented by the reference numerals are listed as follows:
[0030] 1. Water tank; 101. Flushing mechanism; 102. Left support plate; 1021. Slide; 1022. Buffer mechanism; 103. Right support plate; 104. Adjusting vibration mechanism; 105. Slider; 1051. Support plate; 106. Filter box; 1061. Filter layer; 1062. Through slot; 2. Clamping assembly; 201. Rocker; 2011. Anti-slip pad; 202. Rotating shaft; 203. Torsion spring; 204. Side plate; 3. Mounting assembly; 301. Press block; 302. Linkage frame; 3021. Limit rod; 303. Moving plate; 304. Fixed plate; 305. Connecting rod; 306. Spring; 307. Baffle. DETAILED DESCRIPTION
[0031] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model. Specific embodiment 1
[0033] See also Figures 1 to 5 The utility model is a nutrient solution separation device for spirulina powder production, comprising a water pool 1 and a left support plate 102 and a right support plate 103 respectively fixed on both sides of the upper surface thereof, a slide groove 1021 is provided at the center position of the relative end surface of the left support plate 102 and the right support plate 103, a slider 105 is slidably connected inside the slide groove 1021, a support plate 1051 is fixedly connected to the outer wall of the slider 105, a filter box 106 is placed on the inner wall of the adjacent support plate 1051, a through groove 1062 is provided above the front and rear end surfaces of the filter box 106, and a clamping assembly 2 is provided at the front and rear ends of the outer wall of the support plate 1051; the clamping assembly 2 comprises a seesaw 201 and a rotating shaft 202 fixedly connected to the inner wall thereof through a connecting block, and a torsion spring 203 is sleeved on the outer side of the outer wall of the rotating shaft 202;
[0034] Specifically, a flushing mechanism 101 is provided on one side of the interior of the pool 1, a buffer mechanism 1022 is provided on the inner bottom end of the slide 1021, an adjusting vibration mechanism 104 is provided on the outer side of the outer wall of the left support plate 102, a filter layer 1061 is installed inside the filter box 106, an anti-slip pad 2011 is bonded to the outer side of the bottom end of the inner wall of the rocker 201, both ends of the rotating shaft 202 are respectively installed in bearings on the inner walls of adjacent side plates 204, and one end face of the side plate 204 is fixed on the outer wall of the support plate 1051.
[0035] Furthermore, the left support plate 102 and the right support plate 103 are the same in shape and size, the slider 105 can slide inside the slide groove 1021, and under the elastic performance of the torsion spring 203, it can drive the seesaw 201 to rotate with the rotating shaft 202 as the center. The flushing mechanism 101, the buffer mechanism 1022, the adjustment vibration mechanism 104, etc. are all existing technologies, so they will not be elaborated here. The anti-slip pad 2011 can improve the clamping and limiting effect of the seesaw 201 on the filter box 106, and the side plate 204 plays a role in limiting and assisting the rotation of the rotating shaft 202.
[0036] The operation process of this embodiment is as follows: first, put the spirulina into the interior of the filter box 106, and then press the bottom ends of the surrounding seesaw plates 201 inward. The bottom ends of the seesaw plates 201 are subjected to force and rotate with the rotating shaft 202 as the center, and the torsion spring 203 is squeezed. At this time, the top of the seesaw plate 201 can be rotated outward, and then the filter box 106 is placed on the surface of the left and right adjacent support plates 1051, and then the force applied to the seesaw plate 201 is stopped. At this time, the seesaw plate 201 is rebounded to the initial position under the elastic performance of the torsion spring 203, and the top of the seesaw plate 201 plays a role of limiting and clamping the top of the filter box 106, completing the installation of the filter box 106. The same is true when disassembling, which makes it convenient for the staff to quickly install and disassemble the filter box 106, saving time and high work efficiency. Then the staff can separate the nutrient solution on the spirulina through the flushing mechanism 101, the buffer mechanism 1022, the adjustment vibration mechanism 104, etc. Specific embodiment 2
[0038] See also Figure 4 , Figure 6 On the basis of the first specific embodiment, an installation component 3 is arranged inside the through groove 1062, and the installation component 3 includes a pressing block 301 and a linkage frame 302 movably connected to its inner wall through a hinge, and the other end of the linkage frame 302 is movably connected to the outer wall of the movable plate 303 through a hinge.
[0039] Specifically, a limit rod 3021 is set at the inner center position of the linkage frame 302, and the two ends of the limit rod 3021 pass through the top and bottom of the linkage frame 302 and are fixedly installed on the inner wall of the through groove 1062. The inner wall of the movable plate 303 is evenly spaced and fixedly connected with connecting rods 305 in the horizontal direction. The other end of the connecting rod 305 passes through the through hole on the outer wall of the fixed plate 304 and is connected with the baffle 307. A spring 306 is sleeved on the outer side of the outer wall of the connecting rod 305. The spring 306 is located between the fixed plate 304 and the baffle 307. The outer wall of the fixed plate 304 is fixed on the inner wall of the through groove 1062.
[0040] Furthermore, under the action of the hinge and the linkage frame 302, the pressure block 301 and the movable plate 303 are connected, and the pressure block 301 and the movable plate 303 move in opposite directions when subjected to force. The limit rod 3021 limits the linkage frame 302, and the movable plate 303 and the baffle 307 are connected by the connecting rod 305, which plays a role of connecting transmission, and drives the baffle 307 to move under the elastic performance of the spring 306.
[0041] The operation process of this embodiment is as follows: after a long period of nutrient solution separation operation, the filter layer 1061 inside the filter box 106 needs to be replaced. At this time, the front and rear pressing blocks 301 are pushed inward, and the pressing blocks 301 are forced to move into the through groove 1062. The two ends of the linkage frame 302 are movably connected to the pressing block 301 and the movable plate 303 through hinges, and the inner center position of the linkage frame 302 is limited by the limiting rod 3021. Therefore, when the pressing block 301 moves into the through groove 1062, the movable plate 303 is pulled outward by the action of the hinge and the linkage frame 302, and the inner wall of the movable plate 303 is connected by the hinge. The rod 305 is connected to the baffle 307. Therefore, when the movable plate 303 moves, the baffle 307 will be driven to move under the action of the connecting rod 305 and squeeze the spring 306, which can cancel the limiting effect of the baffle 307 on the top of the filter layer 1061, and then it can be taken out and replaced. Similarly, when installing, put the new filter layer 1061 into the filter box 106 and stop applying force to the pressing block 301. At this time, the baffle 307 is rebounded to the initial position under the action of the elastic performance of the spring 306, and the filter layer 1061 is limited to complete the installation, which is convenient for the staff to quickly disassemble and replace the filter layer 1061, saving time and improving work efficiency.
[0042] In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0043] The preferred embodiments of the utility model disclosed above are only used to help explain the utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the utility model to the specific implementation methods described. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that technicians in the relevant technical field can well understand and use the utility model. The utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A nutrient solution separation device for producing spirulina powder, comprising a water pool (1) and a left support plate (102) and a right support plate (103) respectively fixed on both sides of the upper surface thereof, wherein the left support plate (102) and the right support plate (103) are both provided with a chute (1021) at the center position of the relative end faces, a slider (105) is slidably connected inside the chute (1021), a support plate (1051) is fixedly connected to the outer wall of the slider (105), a filter box (106) is placed on the inner wall adjacent to the support plate (1051), and a through groove (1062) is provided above the front and rear end faces of the filter box (106), characterized in that: The front and rear ends of the outer wall of the support plate (1051) are both provided with clamping components (2), and the interior of the through slot (1062) is provided with a mounting component (3); The clamping assembly (2) comprises a seesaw (201) and a rotating shaft (202) fixedly connected to the inner wall thereof via a connecting block, and a torsion spring (203) is sleeved on the outer side of the outer wall of the rotating shaft (202); The mounting assembly (3) comprises a pressing block (301) and a linkage frame (302) movably connected to the inner wall thereof via a hinge, and the other end of the linkage frame (302) is movably connected to the outer wall of the movable plate (303) via a hinge.
2. A nutrient solution separation device for producing spirulina powder according to claim 1, characterized in that: A flushing mechanism (101) is provided on one side of the interior of the water pool (1), and a buffer mechanism (1022) is provided at the inner bottom end of the chute (1021).
3. A nutrient solution separation device for producing spirulina powder according to claim 2, characterized in that: An adjusting vibration mechanism (104) is arranged on the outer side of the outer wall of the left supporting plate (102), and a filter layer (1061) is installed inside the filter box (106).
4. The nutrient solution separation device for producing spirulina powder according to claim 1, characterized in that: An anti-slip pad (2011) is bonded to the outer side of the bottom end of the inner wall of the seesaw (201), and the two ends of the rotating shaft (202) are respectively installed in bearings on the inner walls of adjacent side plates (204), and one end surface of the side plate (204) is fixed to the outer wall of the support plate (1051).
5. The nutrient solution separation device for producing spirulina powder according to claim 1, characterized in that: A limiting rod (3021) is arranged at the inner center position of the linkage frame (302), and two ends of the limiting rod (3021) pass through the top and bottom of the linkage frame (302) and are fixedly mounted on the inner wall of the through slot (1062).
6. A nutrient solution separation device for producing spirulina powder according to claim 5, characterized in that: The inner wall of the movable plate (303) is fixedly connected with connecting rods (305) at even intervals in the horizontal direction, and the other end of the connecting rod (305) passes through the through hole on the outer wall of the fixed plate (304) and is connected to the baffle (307).
7. A nutrient solution separation device for producing spirulina powder according to claim 6, characterized in that: A spring (306) is sleeved on the outer side of the outer wall of the connecting rod (305), and the spring (306) is located between the fixing plate (304) and the baffle (307). The outer wall of the fixing plate (304) is fixed to the inner wall of the through groove (1062).
Citation Information
Patent Citations
Nutrient solution separation device for spirulina powder production
CN213447111U