Ultrasonic atomization pulverizer
By introducing scale lines, floating plates and stop mechanisms into the ultrasonic atomization equipment, the problem of inaccurate control of the atomization head depth is solved, and accurate exploration and improved processing effect is achieved.
Patent Information
- Application Number
- CN202422303160.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-20
AI Technical Summary
It is difficult for existing ultrasonic atomization equipment to accurately control the depth of the atomization head when probing into liquid media, which affects the processing effect.
A measuring mechanism including scale marks, floating plates, balls and stop mechanisms are designed. The depth is measured through the scale marks. The floating plates stay on the surface of the liquid medium. The balls improve movement smoothness. The stop mechanism controls the drop of the atomization head through the contact switch to ensure accurate exploration depth.
The precise introduction of the atomization head in liquid media is achieved, and the processing effect and accuracy are improved.
Smart Images

Figure CN223209594U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of ultrasonic atomization, in particular to an ultrasonic atomization pulverizer. Background Art
[0002] Ultrasonic atomization uses high-frequency electronic oscillations to break up the molecular structure of liquid water and produce naturally flowing water mist. It is widely used in industrial and other fields. Bismuth telluride material powder is a gray powder semiconductor material that can be used to manufacture semiconductor refrigeration chips. The requirements for powder are relatively strict. Due to its high-frequency oscillation characteristics, ultrasonic atomization has an extremely good performance in crushing bismuth telluride materials.
[0003] When using existing equipment, the atomizing head needs to be inserted into the liquid medium. Depending on the liquid material, the depth of insertion needs to be different. However, the existing technology usually relies on visual inspection by staff, which makes it difficult to ensure accuracy and affects the processing effect. Utility Model Content
[0004] In order to make up for the above deficiencies, the present invention provides an ultrasonic atomizing pulverizer that overcomes the above technical problems or at least partially solves the above problems.
[0005] The utility model is achieved in this way:
[0006] The utility model provides an ultrasonic atomizing pulverizer, comprising a lifting rod and an atomizing head.
[0007] A measuring mechanism, comprising:
[0008] Scale lines, the scale lines are provided on the surface of the lifting rod;
[0009] A floating plate, the floating plate being slidably sleeved on the surface of the lifting rod;
[0010] A ball bearing, the ball bearing being rotatably mounted inside the floating plate;
[0011] The floating plate is hollow, the scale lines are evenly distributed on the surface of the lifting rod, and the balls are in contact with the surface of the lifting rod;
[0012] The stopping mechanism is arranged on the surface of the lifting rod and is used to stop the lifting rod from descending.
[0013] In a preferred embodiment, the stopping mechanism includes:
[0014] A connection box, the connection box being slidably sleeved on the surface of the lifting rod;
[0015] The contact switch is arranged inside the connection box.
[0016] In a preferred embodiment, a cavity is provided inside the connection box, a center block is fixedly installed inside the cavity, an amplifying plate is rotatably sleeved inside the center block, and the distance between one side of the amplifying plate and the center block is greater than the distance between the other side of the amplifying plate and the center block.
[0017] In a preferred solution, a first sliding groove and a second sliding groove are provided on the surface of the amplifying plate, and a first sliding shaft and a second sliding shaft are slidably sleeved inside the first sliding groove and the second sliding groove respectively.
[0018] In a preferred solution, a first slide plate and a second slide plate are fixedly sleeved on the surfaces of the first sliding shaft and the second sliding shaft respectively, and the first slide plate extends through the bottom of the connection box.
[0019] In a preferred solution, a connecting plate is fixedly sleeved on the surface of the first slide plate, a spring is fixedly mounted on the bottom of the connecting plate, and the other end of the spring is fixedly connected to the bottom of the inner wall of the cavity.
[0020] In a preferred solution, a movable cavity is provided at the bottom of the cavity, the second slide plate penetrates into the movable cavity, and the contact switch is installed at the bottom of the inner wall of the movable cavity.
[0021] In a preferred solution, a positioning groove is provided on the surface of the lifting rod, and the connection box and the positioning groove are connected by bolts.
[0022] The utility model provides an ultrasonic atomizing pulverizer, the beneficial effects of which include:
[0023] 1. By setting up a measuring mechanism and starting the lifting rod, the atomizing head and the floating plate are driven to move downward, so that the atomizing head is inserted into the liquid medium, and the floating plate stays on the surface of the liquid medium. As the atomizing head continues to descend, the distance between the floating plate and the atomizing head increases. The setting of the ball makes the movement of the floating plate smoother. The scale lines on the surface of the lifting rod can easily know the depth of the lifting rod's penetration into the liquid medium, thereby improving the processing effect.
[0024] 2. By setting a stop mechanism, when the distance between the floating plate and the atomizing head increases, the distance between the floating plate and the connecting box decreases accordingly, until the floating plate reaches the preset position, the second slide touches the contact switch, and the descent of the lifting rod is stopped. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0026] Figure 1 It is a schematic diagram of the overall structure provided by the embodiment of the utility model;
[0027] Figure 2 An exploded view of the lifting rod and the floating plate is provided for the embodiment of the utility model;
[0028] Figure 3 A partial cross-sectional view of a connection box is provided for an embodiment of the present utility model;
[0029] Figure 4 Provided for the implementation of the utility model Figure 1 A partial enlarged view of point A in the middle.
[0030] In the figure: 1. lifting rod; 2. atomizing head; 3. scale line; 4. floating plate; 5. ball bearing; 6. connecting box; 7. contact switch; 8. cavity; 9. center block; 10. amplifying plate; 11. first slide groove; 12. second slide groove; 13. first slide shaft; 14. second slide shaft; 15. first slide plate; 16. second slide plate; 17. connecting plate; 18. spring; 19. movable cavity; 20. positioning groove. DETAILED DESCRIPTION
[0031] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] Reference Figure 1-4The utility model provides a technical solution: an ultrasonic atomizing pulverizer, including a lifting rod 1 and an atomizing head 2, a measuring mechanism including a scale line 3, a floating plate 4 and a ball 5, the scale line 3 is provided on the surface of the lifting rod 1, the floating plate 4 is slidably sleeved on the surface of the lifting rod 1, and the ball 5 is rotatably installed inside the floating plate 4; the floating plate 4 is hollow, the scale lines 3 are evenly distributed on the surface of the lifting rod 1, the ball 5 contacts the surface of the lifting rod 1, and a stopping mechanism is provided on the surface of the lifting rod 1 for stopping the lifting rod 1 from descending. By setting the measuring mechanism, the lifting rod 1 is started, driving the atomizing head 2 The floating plate 4 moves downward, so that the atomizing head 2 penetrates into the liquid medium. Since the floating plate 4 is hollow, the floating plate 4 is light in weight. After the atomizing head 2 penetrates into the liquid medium, the floating plate 4 stays on the surface of the liquid medium. As the atomizing head 2 continues to descend, the distance between the floating plate 4 and the atomizing head 2 increases until it reaches the preset position, and the atomizing head 2 is started to perform the crushing operation. The setting of the ball 5 makes the movement of the floating plate 4 smoother. The scale line 3 provided on the surface of the lifting rod 1 can be used to conveniently know the depth of the lifting rod 1 penetrating into the liquid medium, thereby improving the processing effect.
[0033] It is worth noting that the lifting rod 1 and the atomizing head 2 are prior art and are standard configurations in, for example, the jy92-iin model, and will not be described in detail here;
[0034] Reference Figure 1-4 The stop mechanism includes a connection box 6 and a contact switch 7. The connection box 6 is slidably mounted on the surface of the lifting rod 1, and the contact switch 7 is arranged inside the connection box 6. By setting the stop mechanism, when the distance between the floating plate 4 and the atomizing head 2 increases, the distance between the floating plate 4 and the connection box 6 decreases accordingly. When the floating plate reaches a preset position, the second slide 16 touches the contact switch 7, and the descent of the lifting rod 1 is stopped.
[0035] Reference Figure 1-4 A cavity 8 is provided inside the connection box 6, and a center block 9 is fixedly installed inside the cavity 8. An amplifying plate 10 is rotatably sleeved inside the center block 9. The distance between one side of the amplifying plate 10 and the center block 9 is greater than the distance between the other side of the amplifying plate 10 and the center block 9. By setting the amplifying plate 10, since the distance between one side of the amplifying plate 10 and the center block 9 is greater than the distance between the other side of the amplifying plate 10 and the center block 9, when the left side of the amplifying plate 10 rotates, the distance the right side of the amplifying plate 10 rotates will be greater than the distance the left side of the amplifying plate 10 rotates, thereby amplifying the moving stroke of the left side of the amplifying plate 10 and improving accuracy;
[0036] Reference Figure 1-4The surface of the amplifying plate 10 is provided with a first slide groove 11 and a second slide groove 12. The first slide groove 11 and the second slide groove 12 are respectively provided with a first slide shaft 13 and a second slide shaft 14. The surfaces of the first slide shaft 13 and the second slide shaft 14 are respectively provided with a first slide plate 15 and a second slide plate 16. The first slide plate 15 passes through the bottom of the connecting box 6. The bottom of the cavity 8 is provided with a movable cavity 19. The second slide plate 16 passes through the interior of the movable cavity 19. The contact switch 7 is installed at the bottom of the inner wall of the movable cavity 19. By setting the first slide plate 15 and the second slide plate 16. Since the bottom of the first slide plate 15 penetrates the bottom of the connection box 6, when the floating plate 4 moves upward to the preset position, it touches the first slide plate 15, and then squeezes the first slide plate 15, causing the first slide plate 15 to move upward. The first slide shaft 13 squeezes the inner wall of the first slide groove 11, thereby driving the amplifying plate 10 to rotate around the center block 9 as the center of the circle, causing the second slide plate 16 to move downward until the bottom of the first slide plate 15 is flush with the bottom of the connection box 6. At this time, the second slide plate 16 touches the contact switch 7, thereby controlling the lifting rod 1 to stop moving;
[0037] Reference Figure 1-4 A connecting plate 17 is fixedly mounted on the surface of the first slide 15. A spring 18 is fixedly mounted on the bottom of the connecting plate 17. The other end of the spring 18 is fixedly connected to the bottom of the inner wall of the cavity 8. By providing the connecting plate 17 and the spring 18, the amplifying plate 10 can maintain a horizontal state when no force is applied.
[0038] Reference Figure 1-4 A positioning groove 20 is provided on the surface of the lifting rod 1, and the connecting box 6 and the positioning groove 20 are connected by bolts. By setting the bolts, the connecting box 6 can be positioned on the surface of the lifting rod 1 through the connection between the bolts and the positioning groove 20, and a slide rail is installed on the inner wall of the equipment, and the connecting box 6 is slidably sleeved on the slide rail to limit the moving stroke of the connecting box 6.
[0039] Specifically, the working process or working principle of the ultrasonic atomizing pulverizer is as follows: when in use, according to the depth of penetration required for different liquid media, the thickness of the float plate 4 is subtracted to obtain the data of the required scale line 3, and the bottom of the positioning box is limited to the scale line 3 by a bolt, and the lifting rod 1 is started to drive the atomizing head 2 and the float plate 4 to move downward, so that the atomizing head 2 penetrates into the liquid medium. Since the float plate 4 is hollow, the float plate 4 is light in weight. After the atomizing head 2 penetrates into the liquid medium, the float plate 4 stays on the surface of the liquid medium. As the atomizing head 2 continues to descend, the distance between the float plate 4 and the atomizing head 2 increases, and the ball 5 The setting makes the movement of the floating plate 4 smoother. When the distance between the floating plate 4 and the atomizing head 2 increases, the distance between the floating plate 4 and the connecting box 6 is approached. When the floating plate 4 moves upward to the preset position, it touches the first slide plate 15, and then squeezes the first slide plate 15, causing the first slide plate 15 to move upward. The first slide shaft 13 squeezes the inner wall of the first slide groove 11, thereby driving the amplifying plate 10 to rotate with the center block 9 as the center of the circle, causing the second slide plate 16 to move downward until the bottom of the first slide plate 15 is flush with the bottom of the connecting box 6, and the second slide plate 16 just touches the contact switch 7, thereby controlling the lifting rod 1 to stop moving.
Claims
1. An ultrasonic atomizing pulverizer, comprising a lifting rod (1) and an atomizing head (2), characterized in that: A measuring mechanism, comprising: a scale line (3), wherein the scale line (3) is provided on the surface of the lifting rod (1); A floating plate (4), wherein the floating plate (4) is slidably sleeved on the surface of the lifting rod (1); A ball (5) rotatably mounted inside the floating plate (4); The floating plate (4) is hollow, the scale lines (3) are evenly distributed on the surface of the lifting rod (1), and the balls (5) are in contact with the surface of the lifting rod (1); A stopping mechanism is provided on the surface of the lifting rod (1) and is used to stop the lifting rod (1) from descending.
2. An ultrasonic atomizing pulverizer according to claim 1, characterized in that, The stopping mechanism includes: A connecting box (6), wherein the connecting box (6) is slidably sleeved on the surface of the lifting rod (1); A contact switch (7) is provided inside the connection box (6).
3. An ultrasonic atomizing pulverizer according to claim 2, characterized in that, A cavity (8) is provided inside the connection box (6), a center block (9) is fixedly installed inside the cavity (8), an amplifying plate (10) is rotatably sleeved inside the center block (9), and the distance between one side of the amplifying plate (10) and the center block (9) is greater than the distance between the other side of the amplifying plate (10) and the center block (9).
4. The ultrasonic atomizing pulverizer according to claim 3, characterized in that: A first sliding groove (11) and a second sliding groove (12) are provided on the surface of the amplifying plate (10), and a first sliding shaft (13) and a second sliding shaft (14) are respectively slidably sleeved inside the first sliding groove (11) and the second sliding groove (12).
5. The ultrasonic atomizing pulverizer according to claim 4, characterized in that: A first slide plate (15) and a second slide plate (16) are fixedly sleeved on the surfaces of the first sliding shaft (13) and the second sliding shaft (14), respectively. The first slide plate (15) extends through the bottom of the connection box (6).
6. The ultrasonic atomizing pulverizer according to claim 5, characterized in that: A connecting plate (17) is fixedly mounted on the surface of the first slide plate (15), a spring (18) is fixedly mounted on the bottom of the connecting plate (17), and the other end of the spring (18) is fixedly connected to the bottom of the inner wall of the cavity (8).
7. The ultrasonic atomizing pulverizer according to claim 5, characterized in that: A movable cavity (19) is provided at the bottom of the cavity (8), the second slide plate (16) penetrates into the interior of the movable cavity (19), and the contact switch (7) is installed at the bottom of the inner wall of the movable cavity (19).
8. The ultrasonic atomizing pulverizer according to claim 2, characterized in that: A positioning groove (20) is provided on the surface of the lifting rod (1), and the connection box (6) and the positioning groove (20) are connected by bolts.