Edible salt vibration drying bed with scattering preventing structure
By introducing vibration shock absorbing components into the edible salt vibration drying bed, the combined structure of connecting rods, springs and guide columns dispersing vibration energy, solving the problem of component wear caused by vibration transmission, and improving the stability and durability of the equipment.
Patent Information
- Application Number
- CN202421924255.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-09
AI Technical Summary
The existing edible salt vibration drying beds cannot effectively absorb vibration energy due to the spring components, resulting in long-term vibration transmission to other components, causing wear and looseness of the parts.
An edible salt vibration drying bed containing vibration damping components was designed. By installing multiple shock absorbing components on the vibration base, the combined structure of connecting rods, springs, guide columns and guide cylinders is used to disperse and consume vibration energy, and combine the damping effect to avoid damage to other components of the drying bed by vibration.
Effectively dispers and consume vibration energy, avoid damage to other parts inside the dry bed box, reduce wear and loosening caused by vibration, and improve the stability and service life of the equipment.
Smart Images

Figure CN223077299U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of packaging equipment, in particular to an edible salt vibrating drying bed with a discharging and scattering structure. Background Technique
[0002] The working principle of the edible salt vibrating drying bed with a discharging and scattering structure is mainly based on the vibration fluidized bed technology. Through the vibration and hot air fluidization effects, rapid and uniform drying of edible salt is achieved. The edible salt is thrown towards the outlet end under the action of the exciting force on the porous plate and conveyed to the discharging end. At the same time, hot air is blown in from below the porous plate, passes through the material layer, transfers heat to the edible salt and carries moisture out through the exhaust port, thereby realizing the drying of the edible salt.
[0003] For the current edible salt vibrating drying bed with a discharging and scattering structure, the drying bed is vibrated by an electric motor, and the edible salt is conveyed inside the drying bed using a scattering device. The edible salt is dried by the hot air drying device at the top of the drying bed. Due to the long-term vibration of the edible salt vibrating drying bed, since the spring assembly cannot effectively absorb the vibration energy, the long-term vibration will be directly transmitted to other components of the drying bed, resulting in vibration of the components, and thus accelerating wear and loosening. Content of the Utility Model
[0004] The purpose of the utility model is to provide an edible salt vibrating drying bed with a discharging and scattering structure to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: An edible salt vibrating drying bed with a discharging and scattering structure, including an edible salt vibrating drying bed mechanism and a vibration damping component. The vibration damping component includes a vibration base. One end of the vibration base is provided with a plurality of damping components. The damping component includes a lower layer plate. The upper end of the lower layer plate is provided with a lower bracket. The upper end of the lower bracket is provided with a movable sleeve. A movable bolt penetrates through the inside of the movable sleeve and is connected with a plurality of connecting rods. One end of the plurality of connecting rods penetrates through a movable bolt. The movable bolt penetrates through the movable sleeve inside the upper bracket. The upper end of the upper bracket is provided with an upper layer plate. The lower end of the upper layer plate is fixedly installed with a gantry. A rotating shaft penetrates through the inside of the gantry. The rotating shaft is provided with a limiting plate. One end of the limiting plate is provided with a spring and fixedly installed with a guide post. The guide post is installed inside a guide cylinder. One end of the guide cylinder is provided with a bottom plate. One end of the spring is installed on the bottom plate.
[0006] As a further preferred of this technical solution, the guide post and the guide cylinder penetrate through the guide plate with the spring. A long-shaped through-hole structure is formed inside the guide plate. The guide plate is installed on both sides of the plurality of connecting rods.
[0007] As a further optimization of this technical solution, the upper end of the upper layer board is fixedly connected with a shock pad through bolts, and the upper end of the shock pad is connected with a drying bed box body through bolts.
[0008] As a further optimization of this technical solution, the drying bed box body includes an edible salt vibrating drying bed mechanism.
[0009] As a further optimization of this technical solution, a spillage feeding interface and a hot air drying inlet are arranged at the upper end of the drying bed box body.
[0010] As a further optimization of this technical solution, a limiting groove is opened inside the vibration base, and the lower layer board is fixedly connected inside the limiting groove through bolts.
[0011] As a further optimization of this technical solution, a fixing clamp block is clamped and fixed at the upper end of the lower layer board, and the fixing clamp block is connected to one end of the vibration base through fixing bolts.
[0012] The present utility model provides an edible salt vibrating drying bed with a spillage prevention structure, which has the following
[0013] Beneficial effects:
[0014] (1) When the drying bed box body vibrates in the present utility model, the vibration will be transmitted to the upper layer board and the lower layer board. Multiple connecting rods move inside the movable sleeves through movable bolts, causing the upper layer board and the lower layer board to move back and forth through the resilience of the springs, thereby dispersing and consuming the vibration energy. The movement of the guide posts inside the guide cylinders is affected by the vibration force and will generate a damping effect. This damping effect can further disperse and consume the vibration energy, effectively preventing the vibration from damaging other parts inside the drying bed box body.
[0015] (2) In the present utility model, the lower layer board of the shock absorption component is connected inside the limiting groove through bolts, and further, the fixing clamp block is clamped and fixed at the upper end of the lower layer board and fixed through fixing bolts, which can prevent the shock absorption component from shifting or shaking due to the vibration of the drying bed box body. Description of the Drawings
[0016] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0017] Figure 2 is a schematic diagram of the vibration shock absorption component structure of the present utility model;
[0018] Figure 3 is a schematic diagram of the shock pad and the vibration base structure of the present utility model;
[0019] Figure 4 is a schematic diagram of the limiting groove and the fixing clamp block structure of the present utility model;
[0020] Figure 5 This is a schematic diagram of the structure of the second - perspective vibration damper of the present utility model;
[0021] Figure 6 This is a schematic diagram of the structure of the first - perspective vibration damper of the present utility model;
[0022] Figure 7 This is a schematic diagram of the structure of the guide post, guide cylinder and spring of the present utility model;
[0023] In the figure: 100, vibration damping assembly; 101, vibration base; 102, lower layer plate; 103, lower bracket; 104, upper layer plate; 105, upper bracket; 106, movable sleeve; 107, multiple connecting rods; 108, gantry; 109, movable bolt; 112, guide plate; 114, rotating shaft; 115, limiting plate; 116, guide post; 117, spring; 118, guide cylinder; 120, bottom plate; 122, shock - absorbing pad; 123, fixed clamping block; 124, limiting groove; 125, fixed bolt; 200, edible salt vibrating drying bed mechanism; 201, drying bed box body; 203, scattering feeding interface; 204, hot - air drying inlet. Detailed implementation manners
[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.
[0025] The present utility model provides a technical solution: As Figure 1-2 、 Figure 5-7 shown, in this embodiment, an edible salt vibrating drying bed with a structure for preventing scattering includes an edible salt vibrating drying bed mechanism 200 and a vibration damping assembly 100. The vibration damping assembly 100 includes a vibration base 101. One end of the vibration base 101 is provided with a plurality of damping components. The damping components include a lower layer plate 102. The upper end of the lower layer plate 102 is provided with a lower bracket 103. The upper end of the lower bracket 103 is provided with a movable sleeve 106. A movable bolt 109 penetrates through the inside of the movable sleeve 106 of the lower bracket 103 and is connected to a plurality of connecting rods 107. One end of the plurality of connecting rods 107 penetrates through the movable bolt 109. The movable bolt 109 penetrates through the movable sleeve 106 inside the upper bracket 105. The upper end of the upper bracket 105 is provided with an upper layer plate 104. The lower end of the upper layer plate 104 is fixedly installed with a gantry 108. A rotating shaft 114 penetrates through the inside of the gantry 108. The rotating shaft 114 is installed with a limiting plate 115. One end of the limiting plate 115 is installed with a spring 117 and fixedly installed with a guide post 116. The guide post 116 is installed inside the guide cylinder 118. One end of the guide cylinder 118 is provided with a bottom plate 120. One end of the spring 117 is installed on the bottom plate 120.
[0026] As Figure 1-3 andFigure 5-6 As shown in the figure, the guide post 116 and the guide cylinder 118 penetrate through the guide plate 112 together with the spring 117. A long through-hole structure is provided inside the guide plate 112. The guide plate 112 is installed on both sides of a plurality of connecting rods 107. The upper end of the upper layer plate 104 is connected and fixed with a shock pad 122 by bolts. The upper end of the shock pad 122 is connected with a drying bed box body 201 by bolts. The drying bed box body 201 includes a vibrating drying bed mechanism 200 for edible salt. The upper end of the drying bed box body 201 is provided with a spill feeding interface 203 and a hot air drying inlet 204.
[0027] Through the operation of the edible salt vibrating drying bed mechanism 200 by the staff, the edible salt enters the inside of the drying bed box body 201 from the spill feeding interface 203, and further, the drying hot air is conveyed into the inside of the drying bed box body 201 through the hot air drying inlet 204 for drying. When the drying bed box body 201 vibrates, the vibration will be transmitted to the upper layer plate 104 and the lower layer plate 102. A plurality of connecting rods 107 can move inside the movable sleeve 106 through the movable bolts 109. The movable bolts 109 penetrate through the movable sleeve 106 inside the upper support 105. The upper support 105 and a plurality of connecting rods 107 move inside the movable sleeve 106 through the movable bolts 109. A plurality of connecting rods 107 will be affected by the vibration force, causing the upper layer plate 104 and the lower layer plate 102 to move back and forth due to the resilience of the spring 117. When the upper layer plate 104 and the lower layer plate 102 are affected by the vibration force through the connecting rods, it will also cause the guide post 116 to move back and forth inside the guide cylinder 118. During the movement of the guide post 116 inside the guide cylinder 118, it is affected by the vibration force and will produce effects such as damping. The damping effect further disperses and consumes the vibration energy, and can effectively absorb the vibration energy, avoiding damage to other parts inside the drying bed box body 201 caused by vibration.
[0028] As Figure 4-5 shown, a limiting groove 124 is provided inside the vibration base 101. The lower layer plate 102 is connected and fixed inside the limiting groove 124 by bolts. A fixed clamping block 123 is clamped and fixed at the upper end of the lower layer plate 102. The fixed clamping block 123 is connected to one end of the vibration base 101 by a fixed bolt 125.
[0029] By connecting the lower layer plate 102 of the shock absorption component to the inside of the limiting groove 124 by bolts, and further clamping and fixing the fixed clamping block 123 at the upper end of the lower layer plate 102 and fixing it with the fixed bolt 125, it is possible to prevent the shock absorption component from shifting or shaking due to the vibration of the drying bed box body 201.
[0030] The utility model provides an edible salt vibration drying bed with a structure for preventing scattering, and the specific working principle is as follows: Through the operation of the edible salt vibration drying bed mechanism 200 by the staff, the edible salt enters the inside of the drying bed box body 201 from the scattering feeding interface 203, and further the drying hot air is conveyed into the inside of the drying bed box body 201 through the hot air drying inlet 204 for drying. When the drying bed box body 201 vibrates, the vibration will be transmitted to the upper layer plate 104 and the lower layer plate 102. Multiple connecting rods 107 can move inside the movable sleeve 106 through the movable bolts 109. The movable bolts 109 penetrate through the movable sleeve 106 inside the upper support 105. The upper support 105 and multiple connecting rods 107 move inside the movable sleeve 106 through the movable bolts 109. Multiple connecting rods 107 will be affected by the vibration force, causing the upper layer plate 104 and the lower layer plate 102 to move back and forth due to the resilience of the spring 117. When the upper layer plate 104 and the lower layer plate 102 are affected by the vibration force through the connecting rods, it will also cause the guide post 116 to move back and forth inside the guide cylinder 118. The movement process of the guide post 116 inside the guide cylinder 118 is affected by the vibration force and will produce effects such as damping. The damping effect further disperses and consumes the vibration energy, and can effectively absorb the vibration energy to avoid damage to other parts inside the drying bed box body 201 caused by vibration, etc. By connecting the lower layer plate 102 of the shock absorption component to the inside of the limit groove 124 through bolts, and further clamping and fixing the fixed clamping block 123 to the upper end of the lower layer plate 102 through the fixing bolt 125, it can be avoided that the vibration of the drying bed box body 201 causes the shock absorption component to shift or shake.
[0031] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. An edible salt vibrating drying bed with a structure for preventing salt scattering, comprising an edible salt vibrating drying bed mechanism (200) and a vibration damping component (100), characterized in that: The vibration damping assembly (100) includes a vibration base (101). One end of the vibration base (101) is provided with a plurality of damping components. The damping component includes a lower layer plate (102). The upper end of the lower layer plate (102) is provided with a lower bracket (103). The upper end of the lower bracket (103) is provided with a movable sleeve (106). An activity bolt (109) penetrates through the inside of the movable sleeve (106) and is connected with a plurality of connecting rods (107). One end of the plurality of connecting rods (107) penetrates through the activity bolt (109). The activity bolt (109) penetrates through the inside of the movable sleeve (106) of the upper bracket (105). The upper end of the upper bracket (105) is provided with an upper layer plate (104). The lower end of the upper layer plate (104) is fixedly installed with a gantry (108). A rotating shaft (114) penetrates through the inside of the gantry (108). A limiting plate (115) is installed on the rotating shaft (114). One end of the limiting plate (115) is installed with a spring (117) and fixedly installed with a guide post (116). The guide post (116) is installed inside a guide cylinder (118). One end of the guide cylinder (118) is provided with a bottom plate (120). One end of the spring (117) is installed on the bottom plate (120).
2. The vibrating drying bed for edible salt with a structure for preventing scattering according to claim 1, wherein: The guide post (116) and the guide cylinder (118) penetrate through a guide plate (112) together with the spring (117). A long through-hole structure is formed inside the guide plate (112). The guide plate (112) is installed on both sides of the plurality of connecting rods (107).
3. The vibrating drying bed for edible salt with a structure for preventing scattering according to claim 1, wherein: The upper end of the upper layer plate (104) is connected and fixed with a damping pad (122) by bolts. The upper end of the damping pad (122) is connected with a drying bed box body (201) by bolts.
4. The vibrating drying bed for edible salt with a structure for preventing scattering according to claim 3, characterized in that: The drying bed box body (201) includes an edible salt vibration drying bed mechanism (200).
5. A vibrating drying bed for edible salt with a structure for preventing scattering according to claim 4, characterized in that: The upper end of the drying bed box body (201) is provided with a spill feeding interface (203) and a hot air drying inlet (204).
6. The vibrating drying bed for edible salt with a structure for preventing scattering according to claim 1, wherein: A limiting groove (124) is formed inside the vibration base (101). The lower layer plate (102) is connected and fixed inside the limiting groove (124) by bolts.
7. The vibrating drying bed for edible salt with a structure for preventing scattering according to claim 6, characterized in that: A fixed clamp block (123) is clamped and fixed at the upper end of the lower layer plate (102). The fixed clamp block (123) is connected to one end of the vibration base (101) by a fixing bolt (125).