Damping type zirconium bead grinding equipment
By introducing a buffer and shock absorption mechanism into the zirconium bead grinding machine, and using a variety of buffer components to offset vibration damage, the problem of poor shock absorption in traditional grinding machines is solved, achieving efficient shock absorption and extending equipment life.
Patent Information
- Application Number
- CN202520274816.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Traditional grinding machines use simple materials for their shock absorption devices, resulting in poor shock absorption and frequent vibration damage, which affects work efficiency.
The system employs a buffer and shock absorption mechanism, including a mounting plate, a buffer plate, a shock absorption box, a first buffer assembly, and a second buffer assembly. Through components such as a support module, a buffer base, a guide block, and a hydraulic oil tank, it constructs a comprehensive buffer system to offset the damage caused by vibration.
It effectively ensures shock absorption, extends the service life of the zirconium bead grinding machine, and improves work efficiency.
Smart Images

Figure CN223635236U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of grinding equipment, particularly to a shock attenuation type zirconium bead grinding equipment. BACKGROUND
[0002] Grinding is a common process in industrial production, which aims to grind the material to be ground to a very fine particle diameter, so that it can meet the performance requirements and be widely used in the fields of chemical industry, pesticide, pharmaceutical and the like. The commonly used grinding equipment in industrial production includes a grinding machine, a bead mill and the like. Zirconium beads are a kind of medium commonly used in grinding machinery to grind materials, and are mainly applied in the industries of paint, ink, coating and pesticide, which need to finely grind materials. The commonly seen zirconium bead products on the market include zirconium silicate beads and pure zirconium beads, which have high hardness and low abrasion.
[0003] The shock attenuation position of the traditional grinding machine generally only adopts a plastic material, and has a simple structure and poor shock attenuation effect. When the grinding machine works, frequent vibration can easily cause the shock attenuation device to be damaged, thereby affecting the shock attenuation effect, being inconvenient to use, and needing to be frequently replaced, which results in low work efficiency. SUMMARY
[0004] Therefore, the utility model discloses the purpose of providing a shock attenuation type zirconium bead grinding equipment which can guarantee the shock attenuation effect and improve the efficiency.
[0005] The utility model discloses the following technical scheme:
[0006] A shock attenuation type zirconium bead grinding equipment, including equipment body, the equipment body includes zirconium bead grinding machine, buffer shock attenuation mechanism, the zirconium bead grinding machine is connected in the top of buffer shock attenuation mechanism, buffer shock attenuation mechanism includes mounting plate, buffer plate, shock attenuation box, first buffer subassembly and a plurality of second buffer subassembly, the mounting plate is connected in the bottom of zirconium bead grinding machine, the buffer plate is connected in the bottom of mounting plate, and with shock attenuation box swing joint, the inside of shock attenuation box is equipped with shock attenuation cavity, first buffer subassembly and a plurality of second buffer subassembly are arranged respectively in the inside of shock attenuation cavity, and are connected respectively with the bottom of buffer plate, first buffer subassembly includes a plurality of support module, buffer base, the upper portion of a plurality of support module is connected in the bottom of buffer plate, and the bottom of the support module is connected with support plate, buffer base is connected in the bottom of support plate.
[0007] Further improvement of the above technical scheme is that the bottom of the zirconium bead grinding machine is respectively provided with a first support seat, a second support seat and a third support seat, and the first support seat, the second support seat and the third support seat are respectively connected to the top of the mounting plate.
[0008] Further improvement of the above technical scheme is that the zirconium bead grinder comprises a grinding barrel, a grinding shaft and a grinding motor; the lower part of the grinding barrel is connected to the upper part of the first support seat and the second support seat respectively; the grinding shaft is arranged in the interior of the grinding barrel; the grinding motor is used for driving the grinding shaft to rotate, and the lower part of the grinding motor is connected to the upper part of the third support seat.
[0009] Further improvement of the above technical scheme is that the two sides of the buffer plate are respectively provided with guide blocks, the guide blocks are movably connected with guide rods, and the guide rods are connected to the inner wall of the damping cavity.
[0010] Further improvement of the above technical scheme is that the support module comprises a support rod, a support box and a support spring; the support rod is slidably connected to the inner side of the support box; the support box is fixed to the upper part of the support plate; and the two ends of the support spring are respectively connected to the inner bottom of the support box and the lower part of the support rod.
[0011] Further improvement of the above technical scheme is that the upper end of the support rod is connected with a backing plate, and the backing plate is connected to the lower part of the buffer plate.
[0012] Further improvement of the above technical scheme is that the interior of the buffer base is provided with a mounting cavity, the interior of the mounting cavity is provided with two groups of sliding rods arranged in parallel, the two ends of the sliding rods are movably connected with sliding blocks, one end of the sliding block is connected with a transverse moving spring, and the end of the transverse moving spring, which is away from the sliding block, is connected to the inner wall of the mounting cavity.
[0013] Further improvement of the above technical scheme is that the upper part of the sliding block is connected with a first rotating seat, the first rotating seat is hingedly connected with a connecting inclined rod, the upper part of the connecting inclined rod is hingedly connected with a second rotating seat, and the second rotating seat is mounted to the bottom of the support plate.
[0014] Further improvement of the above technical scheme is that the second buffer assembly comprises an oil tank, a stress rod, a stress plate, a stress spring and a pressing block; the oil tank is arranged at the bottom of the damping cavity; the lower part of the stress rod is connected to the stress plate; the stress plate is movably connected to the inner side of the oil tank; the stress spring is arranged around the outer surface of the stress rod; and the two ends of the pressing block are respectively connected to the buffer plate and the stress rod.
[0015] Further improvement of the above technical scheme is that the stress plate is provided with a plurality of through holes.
[0016] The beneficial effects of the utility model are as follows:
[0017] The utility model discloses a buffer damping mechanism is provided, through the mounting plate, buffer board, shock attenuation box, first buffer subassembly, second buffer subassembly of this mechanism, the zirconium bead grinding machine can almost all offset the harm of vibration, guarantee the damping effect, avoid vibration damage to zirconium bead grinding machine to cause serious damage, greatly prolong the service life of zirconium bead grinding machine, improve efficiency, and the design practicability is very strong. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the structure schematic diagram of the shock attenuation type zirconium bead grinding equipment of the utility model;
[0019] Figure 2 It is Figure 1 The structure section view of the buffer damping mechanism of the shock attenuation type zirconium bead grinding equipment of
[0020] Figure 3 It is Figure 2 The partial enlarged view of circle A of the buffer damping mechanism of
[0021] Figure 4 It is Figure 2 The structure schematic diagram of the second buffer subassembly of the buffer damping mechanism of
[0022] Marked in the drawing is:
[0023] 10, equipment body;11, support plate;20, zirconium bead grinding machine;21, first support seat;22, second support seat;23, third support seat;24, grinding barrel body;25, grinding motor;30, buffer damping mechanism;31, mounting plate;40, buffer board;41, guide block;42, guide rod;50, shock attenuation box;51, shock attenuation cavity;60, first buffer subassembly;70, second buffer subassembly;71, oil tank;72, stress rod;73, stress plate;74, stress spring;75, pressing block;76, through -hole;80, support module;81, support rod;82, support box;83, support spring;84, backing plate;90, buffer base;91, mounting cavity;92, sliding rod;93, sliding block;94, transverse movement spring;95, first rotary seat;96, connecting inclined rod;97, second rotary seat. DETAILED DESCRIPTION
[0024] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor are within the protection scope of the utility model.
[0025] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0026] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0027] like Figures 1 to 4 The image shows an embodiment of the present invention, relating to a shock-absorbing zirconium bead grinding device, comprising a device body 10, the device body 10 including a zirconium bead grinding machine 20 and a buffer shock-absorbing mechanism 30; the zirconium bead grinding machine 20 is connected above the buffer shock-absorbing mechanism 30; the buffer shock-absorbing mechanism 30 includes a mounting plate 31, a buffer plate 40, a shock-absorbing box 50, a first buffer assembly 60 and several second buffer assemblies 70; the mounting plate 31 is connected below the zirconium bead grinding machine 20; the buffer plate 40 is connected to the mounting plate. Below 31, and movably connected to the shock absorber box 50; the shock absorber box 50 has a shock absorber cavity 51 inside; the first buffer assembly 60 and several second buffer assemblies 70 are respectively disposed inside the shock absorber cavity 51 and respectively connected to the lower part of the buffer plate 40; the first buffer assembly 60 includes several support modules 80 and a buffer base 90; the upper part of the several support modules 80 is connected to the bottom of the buffer plate 40, and the lower part of the support module 80 is connected to the support plate 11; the buffer base 90 is connected to the lower part of the support plate 11.
[0028] Furthermore, a first support base 21, a second support base 22, and a third support base 23 are respectively provided below the zirconium bead grinding machine 20, and the first support base 21, the second support base 22, and the third support base 23 are respectively connected to the upper part of the mounting plate 31. Specifically, the first support base 21, the second support base 22, and the third support base 23 are provided to effectively and stably connect the zirconium bead grinding machine 20 to the buffer and shock absorption mechanism 30, ensuring that the zirconium bead grinding machine 20 can perform normal buffer and shock absorption, thereby protecting the zirconium bead grinding machine 20.
[0029] Further, the zirconium bead grinder 20 comprises a grinding barrel 24, a grinding shaft (not shown in the figure) and a grinding motor 25; the lower part of the grinding barrel 24 is connected to the upper part of the first support base 21 and the second support base 22 respectively; the grinding shaft (not shown in the figure) is arranged in the interior of the grinding barrel 24; the grinding motor 25 is used to drive the grinding shaft (not shown in the figure) to rotate, and the lower part of the grinding motor 25 is connected to the upper part of the third support base 23. Specifically, the grinding motor 25 drives the grinding shaft (not shown in the figure) to rotate, and the grinding shaft (not shown in the figure) grinds the material in the interior of the grinding barrel 24, which has strong practicability; in some embodiments, the zirconium bead grinder 20 of the utility model can be an existing zirconium bead grinding device.
[0030] Further, the two sides of the buffer plate 40 are respectively provided with guide blocks 41, the guide blocks 41 are movably connected with guide rods 42, and the guide rods 42 are connected to the inner wall of the damping cavity 51. Specifically, the guide rods 42 play a limiting role on the guide blocks 41, so as to keep the stability of the buffer plate 40; during the operation of the zirconium bead grinder 20, a certain impact force will occur, the impact force is transmitted from the zirconium bead grinder 20 to the guide blocks 41 of the buffer plate 40, the guide blocks 41 drive the zirconium bead grinder 20 to move up and down, and the zirconium bead grinder 20 is fixedly connected with the buffer plate 40 in a mode including but not limited to a mode of being connected through bolts and nuts.
[0031] Further, the support module 80 comprises a support rod 81, a support box 82 and a support spring 83; the support rod 81 is slidably connected to the inner side of the support box 82; the support box 82 is fixed to the upper part of the support plate 11; the two ends of the support spring 83 are respectively connected to the inner bottom of the support box 82 and the lower part of the support rod 81; the upper end of the support rod 81 is connected with a pad plate 84, and the pad plate 84 is connected to the lower part of the buffer plate 40. Specifically, a plurality of groups of support modules 80 are arranged and equidistantly distributed on the upper part of the support plate 11, which simultaneously plays a role of supporting and buffering; when the buffer plate 40 is pressed downward, the other end of the support rod 81 slides into the interior of the support box 82, so as to extrude the support spring 83, a part of the downward impact force is reduced through the support spring 83, the support spring 83 is extruded and thus generates a thrust force on the support rod 81, so as to make the support rod 81 generate an upward supporting force, the buffer plate 40 is pushed upward, and the zirconium bead grinder 20 is reset upward.
[0032] Further, the inside of the buffer base 90 is provided with a mounting cavity 91, two groups of slide rods 92 are arranged in parallel in the mounting cavity 91, slide blocks 93 are movably connected to the two ends of the slide rods 92 respectively, transverse moving springs 94 are connected to one end of the slide blocks 93, and the other end of the transverse moving springs 94 is connected to the inner wall of the mounting cavity 91; the upper part of the slide block 93 is connected with a first rotating seat 95, the first rotating seat 95 is hinged with a connecting inclined rod 96, the upper part of the connecting inclined rod 96 is hinged with a second rotating seat 97, and the second rotating seat 97 is mounted on the bottom of the supporting plate 11. Specifically, in use, the zirconium bead grinder 20 works to generate vibration, the buffer plate 40 is pressed downward, the supporting module 80 is stressed, and the impact force is transmitted to the connecting inclined rod 96 through the supporting plate 11, under the drive of the first rotating seat 95 and the second rotating seat 97, the slide blocks 93 on the two sides are driven to move in opposite directions along the slide rods 92, and the transverse moving springs 94 are extruded, and the transverse moving springs 94 generate a thrust force on the slide blocks 93, thereby offsetting part of the vibration damage.
[0033] Further, the second buffer assembly 70 comprises an oil tank 71, a force receiving rod 72, a force receiving plate 73, a force receiving spring 74 and a pressing block 75; the oil tank 71 is arranged at the bottom of the damping cavity 51; the lower part of the force receiving rod 72 is connected to the force receiving plate 73; the force receiving plate 73 is movably connected to the inner side of the oil tank 71; the force receiving spring 74 is arranged around the outer surface of the force receiving rod 72; the pressing block 75 is connected to the buffer plate 40 and the force receiving rod 72 at two ends respectively; and the force receiving plate 73 is provided with a plurality of through holes 76. Specifically, when the buffer plate 40 is impacted and falls, the force receiving rod 72 under the pressing block 75 falls, at this time, the force receiving plate 73 extrudes the hydraulic oil in the oil tank 71, the hydraulic oil passes through the through holes 76 on the force receiving plate 73, and when the hydraulic oil passes through the through holes 76, the damping force opposite to the extrusion force of the force receiving plate 73 is generated, thereby slowing down the falling speed of the force receiving rod 72, reducing part of the impact force of the buffer plate 40 transferred to the force receiving rod 72, and the force receiving spring 74 is contracted to generate an upward thrust force on the buffer plate 40, thereby driving the buffer plate 40 to reset.
[0034] The buffer damping mechanism 30 is arranged, the mounting plate 31, the buffer plate 40, the damping box 50, the first buffer assembly 60 and the second buffer assembly 70 are arranged, the zirconium bead grinder 20 can almost offset the damage caused by vibration, the damping effect is guaranteed, the vibration damage is avoided to cause serious damage to the zirconium bead grinder 20, the service life of the zirconium bead grinder 20 is greatly prolonged, the efficiency is improved, and the design is very practical.
[0035] The above merely expresses the preferred technical solutions of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, and the present application also intends to include these changes and modifications.
Claims
1. A shock-absorbing type zirconium bead polishing apparatus, characterized by, The device body comprises a zirconium bead grinder, a buffer damping mechanism; the zirconium bead grinder is connected to the upper side of the buffer damping mechanism; the buffer damping mechanism comprises a mounting plate, a buffer plate, a damping box, a first buffer assembly and a plurality of second buffer assemblies; the mounting plate is connected to the lower side of the zirconium bead grinder; the buffer plate is connected to the lower side of the mounting plate and is movably connected with the damping box; the damping box is internally provided with a damping cavity; the first buffer assembly and the plurality of second buffer assemblies are respectively arranged in the damping cavity and are respectively connected to the lower side of the buffer plate; the first buffer assembly comprises a plurality of support modules and a buffer base; the upper side of the plurality of support modules is connected to the bottom of the buffer plate, and the lower side of the support module is connected with a support plate; the buffer base is connected to the lower side of the support plate.
2. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The lower side of the zirconium bead grinder is respectively provided with a first support seat, a second support seat and a third support seat, and the first support seat, the second support seat and the third support seat are respectively connected to the upper side of the mounting plate.
3. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The zirconium bead grinder comprises a grinding barrel, a grinding shaft and a grinding motor; the lower side of the grinding barrel is respectively connected to the upper side of the first support seat and the second support seat; The grinding shaft is arranged in the interior of the grinding barrel; The grinding motor is used for driving the grinding shaft to rotate, and the lower side of the grinding motor is connected to the upper side of the third support seat.
4. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The buffer plate is respectively provided with a guide block on both sides, the guide block is movably connected with a guide rod, and the guide rod is connected to the inner wall of the damping cavity.
5. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The support module comprises a support rod, a support box and a support spring; the support rod is slidably connected to the inner side of the support box; the support box is fixed to the upper side of the support plate; the support spring is respectively connected to the inner bottom of the support box and the lower side of the support rod.
6. The shock-absorbing zirconium bead polishing apparatus according to claim 5, wherein The upper end of the support rod is connected with a pad plate, and the pad plate is connected to the lower side of the buffer plate.
7. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The interior of the buffer base is provided with an installation cavity, the interior of the installation cavity is provided with two groups of slide rods arranged in parallel, the two ends of the slide rod are movably connected with a slide block, one end of the slide block is connected with a transverse moving spring, and the end of the transverse moving spring away from the slide block is connected to the inner wall of the installation cavity.
8. The shock-absorbing zirconium bead polishing apparatus according to claim 7, wherein The upper part of the slide block is connected with a first rotating seat, the first rotating seat is hingedly connected with a connecting inclined rod, the upper part of the connecting inclined rod is hingedly connected with a second rotating seat, and the second rotating seat is mounted to the bottom of the support plate.
9. The shock-absorbing zirconium bead polishing apparatus according to claim 1, wherein The second buffer assembly comprises an oil tank, a stress rod, a stress plate, a stress spring and a pressing block; the oil tank is arranged at the bottom of the damping cavity; the lower side of the stress rod is connected to the stress plate; the stress plate is movably connected to the inner side of the oil tank; the stress spring is arranged around the outer surface of the stress rod; and the two ends of the pressing block are respectively connected to the buffer plate and the stress rod.
10. The shock-absorbing zirconium bead polishing apparatus according to claim 9, wherein The stress plate is provided with a plurality of through holes.