Novel ozone pipe bidirectional damping device
By designing a combined structure of ozone tube support rods, springs and insulating seats in the ozone generator, the risk of high-voltage short circuit and explosion caused by sagging of the ozone tube during transportation is solved, achieving the dual effects of shock absorption and insulation.
Patent Information
- Application Number
- CN202422478267.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-14
AI Technical Summary
When the ozone tube is installed vertically in a stainless steel pipe, it is easy to sag during transportation, causing the top high-voltage connecting piece to contact the outer shell and the bottom to collide with the base plate, resulting in high-voltage short circuit and explosion risk.
A new type of bidirectional vibration damping device for ozone tubes was designed. By setting a combined structure of an ozone discharge chamber, a support rod, a spring and an insulating seat in a stainless steel tube, elastic connections and insulating guides were used to reduce vibration and avoid contact between the ozone discharge chamber and the base plate.
It effectively reduces the vibration and bumps of the ozone discharge chamber during transportation, prevents short circuit and explosion, enhances the insulation effect, and ensures the safety and reliability of the device.
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Figure CN223447558U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ozone generator technical field, concretely is a novel ozone pipe bidirectional damping device. BACKGROUND
[0002] Ozone generator is used for making ozone gas device.
[0003] Ozone is easy to decompose, cannot store, needs to make on site and uses on site, so all need to use ozone generator in the place that can use ozone, ozone generator is widely applied in drinking water, sewage, industrial oxidation, food processing and preservation, medicine synthesis, space sterilization and the like, ozone gas that ozone generator generates can directly utilize, also can participate in reaction through mixing device and liquid, ozone pipe is the important part in ozone generator, now ozone pipe vertical installation in the stainless steel pipe inside in ozone generator, and ozone pipe is supported and fixed by four support points up and down, and there will be the phenomenon of jolting and drooping in the subsequent transportation process, leading to ozone pipe top high voltage connecting piece and stainless steel shell contact, and ozone pipe bottom is easy to cause high voltage and shell short circuit by colliding to the bottom plate. CONTENT OF THE UTILITY MODEL
[0004] The utility model discloses a novel ozone pipe bidirectional damping device, which solves the problem of vertical installation of ozone pipe in stainless steel pipe in the current ozone generator, support and fixation of ozone pipe by four support points up and down, jolting and drooping in the subsequent transportation process, contact of ozone pipe top high voltage connecting piece and stainless steel shell, and high voltage and shell short circuit caused by collision of ozone pipe bottom to the bottom plate.
[0005] To achieve the above object, the utility model provides the following technical scheme, a novel ozone pipe bidirectional damping device, including stainless steel pipe, the surface fixed connection of stainless steel pipe has the bottom plate, the surface of bottom plate is opened and has first hole, the inner surface of stainless steel pipe is provided with ozone discharge room, the surface of ozone discharge room is opened and has first thread hole, the surface screw thread connection of first thread hole has bolt, the surface fixed connection of bolt has support rod, the end away from bolt of support rod is fixedly connected with first boss, the surface of first boss is opened and has second hole, the surface of second hole is movably connected with first pin, the surface of first boss is movably connected with spring, the end away from first boss of spring is movably connected with second boss, the surface of second boss is opened and has third hole, the surface fixed connection of second boss has insulating seat, the surface of insulating seat is opened and has second thread hole, the surface of third hole is movably connected with second pin, the surface screw thread connection of second thread hole has screw.
[0006] Preferably, the stainless steel pipe is hollow, the bottom plate is circular, and the first holes are arranged in two groups on the bottom plate.
[0007] Preferably, the ozone discharge chamber is movably connected with the supporting rod through the first threaded hole and the bolt, and the supporting rod and the first boss are in a cylindrical shape.
[0008] Preferably, the second hole and the third hole are circular through holes, the first pin and the second pin are in a circular rod shape, the first pin penetrates the second hole, and the second pin penetrates the third hole.
[0009] Preferably, the first boss and the second boss are inserted into two ends of the spring respectively, and the spring is fixed with the first boss and the second boss through the first pin and the second pin.
[0010] Preferably, the insulating seat and the second boss are in a cylindrical shape, and the second threaded hole is arranged in two groups on the surface of the insulating seat.
[0011] Preferably, the screw is threadedly connected with the second threaded hole and the insulating seat, and the insulating seat is connected with the bottom plate through the screw.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] 1. The inner surface of the stainless steel pipe is provided with an ozone discharge chamber, the surface of the ozone discharge chamber is provided with a first threaded hole, the first threaded hole is threadedly connected with a bolt, the bolt is fixedly connected with a supporting rod, the supporting rod is fixedly connected with a first boss, the surface of the first boss is provided with a second hole, the second hole is movably connected with a first pin, and the first boss is movably connected with a spring.
[0014] 2. The surface of the second boss is provided with a third hole, the third hole is movably connected with a second pin, the second boss is fixedly connected with an insulating seat, the surface of the insulating seat is provided with a second threaded hole, the second threaded hole is threadedly connected with a screw, the stainless steel pipe is fixedly connected with a bottom plate, the surface of the bottom plate is provided with a first hole, the insulating seat not only guides the damping structure of the ozone discharge chamber but also increases the insulation effect of the damping structure of the ozone discharge chamber and the bottom plate, so that the damping structure of the ozone discharge chamber and the bottom plate are prevented from being in contact to cause short circuit and explosion. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structure front view cross section schematic view of the utility model;
[0016] Figure 2It is the structure front view schematic diagram of bidirectional damping structure of the utility model;
[0017] Figure 3 It is the structure front view sectional view schematic diagram of ozone discharge chamber of the utility model;
[0018] Figure 4 It is the structure front view sectional view schematic diagram of bidirectional damping structure of the utility model;
[0019] Figure 5 It is the structure front view partial schematic diagram of support rod of the utility model;
[0020] Figure 6 It is the structure front view partial sectional view schematic diagram of insulating seat of the utility model;
[0021] Figure 7 It is the structure three-dimensional partial schematic diagram of stainless steel pipe of the utility model.
[0022] In the drawing: 1, stainless steel pipe; 11, bottom plate; 12, first hole; 2, ozone discharge chamber; 21, first threaded hole; 3, support rod; 31, first boss; 32, second hole; 33, bolt; 4, first pin; 5, spring; 6, insulating seat; 61, second boss; 62, third hole; 63, second threaded hole; 7, second pin; 8, screw. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0024] Please refer to Figures 1-7 The utility model provides an embodiment:
[0025] The utility model provides a novel ozone pipe bidirectional damping device, including stainless steel pipe 1, stainless steel pipe 1 is used to place ozone discharge chamber 2, the surface fixed connection of stainless steel pipe 1 has bottom plate 11, bottom plate 11 is used to install fixed insulation seat 6, the surface of bottom plate 11 is opened first hole 12, first hole 12 is used for the insertion of screw 8 to pass through, the inner surface of stainless steel pipe 1 is provided with ozone discharge chamber 2, ozone discharge chamber 2 is used to generate ozone, the surface of ozone discharge chamber 2 is opened first threaded hole 21, the surface threaded connection of first threaded hole 21 has bolt 33, first threaded hole 21 and bolt 33 are used to install fixed support rod 3 on ozone discharge chamber 2, the surface fixed connection of bolt 33 has support rod 3, support rod 3 is used to support damping assembly, the fixed connection of support rod 3 away from bolt 33 one end has first boss 31, the surface of first boss 31 is opened second hole 32, the surface movable joint of second hole 32 has first pin 4, first boss 31 is inserted to one end of spring 5, and is inserted to the bottom, and then first pin 4 is inserted into the gap of spring 5, and penetrates second hole 32, so that one end of spring 5 is fixed with support rod 3, the surface movable joint of first boss 31 has spring 5, spring 5 is used to slow down the disengagement or collision of ozone discharge chamber 2 and bottom plate 11 due to factors such as vibration or jolt, the movable joint of one end of spring 5 away from first boss 31 has second boss 61, the surface of second boss 61 is opened third hole 62, the surface fixed connection of second boss 61 has insulation seat 6, insulation seat 6 is used to guide the damping structure of ozone discharge chamber 2, and the insulation effect of the damping structure of ozone discharge chamber 2 and bottom plate 11 is increased, to avoid the short circuit and explosion caused by the contact between the damping structure of ozone discharge chamber 2 and bottom plate 11, the surface of insulation seat 6 is opened second threaded hole 63, the surface movable joint of third hole 62 has second pin 7, the other end of spring 5 is inserted into second boss 61, and is inserted to the bottom, and then second pin 7 is inserted into the gap of spring 5, and penetrates third hole 62, so that the other end of spring 5 is fixed with insulation seat 6, the surface threaded connection of second threaded hole 63 has screw 8, screw 8 passes through first hole 12 and is screwed into second threaded hole 63, to fix insulation seat 6 on bottom plate 11, ozone discharge chamber 2 is the existing product, and is not the technical protection point of the utility model, and too much statement is not made here.
[0026] Further, the inside of stainless steel pipe 1 is hollow, stainless steel pipe 1 is used to place ozone discharge chamber 2, bottom plate 11 is round plate, bottom plate 11 is used to install fixed insulation seat 6, first hole 12 is distributed on bottom plate 11 in two groups, first hole 12 is used for the insertion of screw 8 to pass through.
[0027] Further, the ozone discharge chamber 2 is movably connected with the supporting rod 3 through the first threaded hole 21 and the bolt 33, the ozone discharge chamber 2 is used for generating ozone, the first threaded hole 21 and the bolt 33 are used for mounting and fixing the supporting rod 3 on the ozone discharge chamber 2, the supporting rod 3 and the first boss 31 are both in cylindrical shape, and the supporting rod 3 is used for supporting the damping assembly.
[0028] Further, the second hole 32 and the third hole 62 are both in circular through hole, the first pin 4 and the second pin 7 are both in circular rod shape, the first pin 4 penetrates through the second hole 32, and the second pin 7 penetrates through the third hole 62.
[0029] Further, the first boss 31 and the second boss 61 are respectively inserted into two ends of the spring 5, the first boss 31 is inserted into one end of the spring 5 and inserted to the bottom, then the first pin 4 is inserted into the gap of the spring 5 and penetrates through the second hole 32, so that one end of the spring 5 is fixed with the supporting rod 3, the other end of the spring 5 is inserted into the second boss 61 and inserted to the bottom, then the second pin 7 is inserted into the gap of the spring 5 and penetrates through the third hole 62, so that the other end of the spring 5 is fixed with the insulating base 6, the spring 5 is fixed with the first boss 31 and the second boss 61 through the first pin 4 and the second pin 7, and the spring 5 is used for reducing the disengagement or collision of the ozone discharge chamber 2 and the bottom plate 11 caused by vibration or bumping and the like.
[0030] Further, the insulating base 6 and the second boss 61 are both in cylindrical shape, the insulating base 6 not only guides the damping structure of the ozone discharge chamber 2, but also increases the insulation effect of the damping structure of the ozone discharge chamber 2 and the bottom plate 11, so as to avoid the short circuit and explosion caused by the contact between the damping structure of the ozone discharge chamber 2 and the bottom plate 11, and the second threaded hole 63 is distributed in two groups on the surface of the insulating base 6.
[0031] Further, the screw 8 is threadedly connected with the insulating base 6 through the second threaded hole 63, the insulating base 6 is connected with the bottom plate 11 through the screw 8, the screw 8 passes through the first hole 12 and is screwed into the second threaded hole 63, so as to fix the insulating base 6 on the bottom plate 11.
[0032] Working principle: the bolt 33 on the support rod 3 is connected with the first threaded hole 21 on the ozone discharge chamber 2, the first boss 31 on the support rod 3 is inserted into one end of the spring 5 and to the bottom, then the first pin 4 is inserted into the gap of the spring 5 and penetrates the second hole 32, so that one end of the spring 5 is fixed with the support rod 3, then the other end of the spring 5 is inserted into the second boss 61 on the insulating base 6 and to the bottom, then the second pin 7 is inserted into the gap of the spring 5 and penetrates the third hole 62, so that the other end of the spring 5 is fixed with the insulating base 6, the above components are inserted into the stainless steel pipe 1 to the bottom, and the insulating base 6 is attached to the bottom plate 11, then the first hole 12 is aligned with the second threaded hole 63 on the insulating base 6, finally the screw 8 is inserted through the first hole 12 on the bottom plate 11, and the screw 8 is connected with the second threaded hole 63 on the insulating base 6, so that the utility model is assembled.
[0033] The utility model can be aimed at the ozone discharge chamber 2 of large pipe diameter, and when vibration or jolt occurs, the spring 5 will have a buffering effect, reducing vibration or jolt and other factors to cause the ozone discharge chamber 2 and the bottom plate 11 to separate or collide, at the same time, the insulating base 6 not only guides the damping structure of the ozone discharge chamber 2, but also increases the insulation effect of the damping structure of the ozone discharge chamber 2 and the bottom plate 11, avoiding the damping structure of the ozone discharge chamber 2 and the bottom plate 11 from being in contact to cause short circuit and explosion.
[0034] It is apparent to those skilled in the art that the present utility model is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present utility model. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A novel bidirectional shock absorbing device for an ozone tube, comprising a stainless steel tube (1), characterized in that: The surface of the stainless steel tube (1) is fixedly connected to a bottom plate (11), and a first hole (12) is provided on the surface of the bottom plate (11). An ozone discharge chamber (2) is provided on the inner surface of the stainless steel tube (1), and a first threaded hole (21) is provided on the surface of the ozone discharge chamber (2). A bolt (33) is threadedly connected to the surface of the first threaded hole (21), and a support rod (3) is fixedly connected to the surface of the bolt (33). The end of the support rod (3) away from the bolt (33) is fixedly connected to a first boss (31), and a second hole (32) is provided on the surface of the first boss (31). The surface of the second hole (32) is movably connected to the first pin (4), the surface of the first boss (31) is movably connected to the spring (5), the end of the spring (5) away from the first boss (31) is movably connected to the second boss (61), the surface of the second boss (61) is provided with a third hole (62), the surface of the second boss (61) is fixedly connected to the insulating seat (6), the surface of the insulating seat (6) is provided with a second threaded hole (63), the surface of the third hole (62) is movably connected to the second pin (7), and the surface of the second threaded hole (63) is threadedly connected to a screw (8).
2. A novel ozone tube bidirectional shock absorbing device according to claim 1, characterized in that: The interior of the stainless steel tube (1) is in a hollow state, the bottom plate (11) is in a circular plate shape, and the first holes (12) are distributed in two groups on the bottom plate (11).
3. The novel ozone tube bidirectional shock absorbing device according to claim 1 is characterized in that: The ozone discharge chamber (2) is movably connected to the support rod (3) via a first threaded hole (21) and a bolt (33); the support rod (3) and the first boss (31) are both cylindrical.
4. The novel ozone tube bidirectional shock absorbing device according to claim 1 is characterized in that: The second hole (32) and the third hole (62) are both circular through holes, the first pin (4) and the second pin (7) are both round rod-shaped, the first pin (4) passes through the second hole (32), and the second pin (7) passes through the third hole (62).
5. The novel ozone tube bidirectional shock absorbing device according to claim 1 is characterized in that: The first boss (31) and the second boss (61) are respectively inserted into the two ends of the spring (5), and the spring (5) is fixed to the first boss (31) and the second boss (61) through a first pin (4) and a second pin (7).
6. The novel ozone tube bidirectional shock absorbing device according to claim 1 is characterized in that: The insulating seat (6) and the second boss (61) are both cylindrical in shape, and the second threaded holes (63) are distributed in two groups on the surface of the insulating seat (6).
7. The novel ozone tube bidirectional shock absorbing device according to claim 1 is characterized in that: The screw (8) is threadedly connected to the insulating seat (6) through the second threaded hole (63), and the insulating seat (6) is connected to the bottom plate (11) through the screw (8).