Microsculpture placing material box for bracket bottom plate
By designing a micro-carved material placement box for the base plate of the tray, multi-layer stacking and stable storage of trays are achieved, solving the problems of low efficiency and tipping during the production of ceramic trays, and improving the convenience and stability of micro-carving processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-24
AI Technical Summary
In existing technologies, ceramic trays suffer from low processing efficiency and the risk of tipping over during production, which affects the convenience of micro-carving processing.
A micro-carved material placement box for the tray base plate was designed, which includes a box body, a sliding material plate, a cone, and a rubber sleeve. Through the interference fit of the cone and the sliding connection of the rubber sleeve, the multi-layer stacking and stable storage of the trays can be achieved. Combined with the spring and cotton block limit, it is ensured that the trays will not tip over during movement.
It improves the production efficiency and micro-carving convenience of the trays, avoids the trays tipping over during storage and movement, and ensures the stability and efficiency of the tray micro-carving process.
Smart Images

Figure CN224023731U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to orthodontic technical field, concretely relates to a kind of bracket bottom plate micro-engraving placing material box. BACKGROUND
[0002] Ceramic bracket belongs to a kind of bracket of oral cavity orthodontic appliance component, and it is physically corrected to tooth deformity by ceramic bracket and metal arch wire, and ceramic bracket is generally fixed on the surface of tooth by mechanical, chemical or mixed retention, so that ceramic bracket produced by industry has the characteristics of small volume and light weight.Ceramic bracket also needs to be laser micro-engraved on the surface during production process, so as to mark bracket serial number and product serial number.But conventional bracket micro-engraving is placed by ordinary storage box, and the producer manually disassembles the storage box after micro-engraving, which is low in processing efficiency, and due to the small volume and light weight of ceramic bracket, the producer may also move or install the storage box, which may cause bracket to move and turn over, so that the detection device needs to detect the micro-engraving effect of bracket, which affects the processing convenience of bracket micro-engraving and reduces the production efficiency of bracket. SUMMARY
[0003] The utility model mainly solves the technical problems existing in prior art, and provides a bracket bottom plate micro-engraving placing material box, which can store brackets in multiple layers, effectively prevent brackets from moving and turning over, improve the production efficiency and processing convenience of bracket micro-engraving.
[0004] The utility model discloses a bracket bottom plate micro-engraving placing material box, which comprises a box body, a material plate slidingly arranged in the box body, a bottom plate connected to the lower part of the box body, a core block connected to the center of the bottom plate, a stand connected to the upper part of the core block, a pressure groove arranged on the outer part of the box body, two or more material plates, a claw head connected to the upper part of each material plate, a pressing plate arranged below the material plate, a spring connected between the pressing plate and the material plate, and a plurality of material cavities arranged on the upper surface of the bottom plate and the material plate for placing brackets.
[0005] Preferably, the core block and the cone cylinder are conical structures, and the core block is in interference fit with the cone cylinder arranged above the core block, and the cone cylinders between the adjacent two material plates are in interference fit, the angle range a of the lower part of the cone cylinder is between 80 degrees and 85 degrees, the material plate can be stacked in the box body, the central cone cylinder of the material plate at the bottom of the box body can be sleeved outside the core block, and the stacked material plates are connected in interference fit through the cone cylinders, so that the material plate can be stably placed in the box body.
[0006] Preferably, a rubber sleeve is connected to the top of the cone, and the rubber sleeve is interference-fitted with the column. Two or more slots are evenly distributed on the outer side of the rubber sleeve so that the cone can be slidably fitted onto the outside of the column through the rubber sleeve, thereby increasing the stability and firmness of the cone fitted onto the column, so that the cone can only move up and down when subjected to external force.
[0007] Preferably, cotton blocks are evenly connected below the pressure plate, and the cotton blocks and the material cavity are correspondingly matched. A through hole is provided in the center of the pressure plate. The diameter of the through hole is larger than the outer diameter of the cone below, so that when two adjacent material plates are stacked, the cotton blocks can be pressed into the material cavity, thereby limiting the slot placed in the material cavity. The through hole facilitates the column to pass through the pressure plate and cooperate with the cone.
[0008] Preferably, the inner sides of the box are provided with a first sliding groove and a second sliding groove, which are staggered on the sides of the box. The material plate is connected to a first slider and a second slider on both sides. The first slider and the first sliding groove, and the second slider and the second sliding groove are slidably connected. The material plate is installed inside the box along the first sliding groove and the second sliding groove through the sliding engagement of the first slider and the first sliding groove and the second slider and the second sliding groove, which facilitates the lifting and gripping of the material plate by an external robotic arm. At the same time, the staggered distribution design of the first sliding groove and the second sliding groove also makes the first slider and the second slider correspondingly staggered, so that the external robotic arm can smoothly lift the material plate by the claw connected to the first slider, and the pressure plate can be driven as a whole by the spring connected to the lower part of the second slider.
[0009] Preferably, a connecting rod is connected above the first slider, and a recessed hole for the claw head to be inserted is provided below the first slider. The claw head is connected above the connecting rod and has a spherical structure, so that an external robotic arm can grasp and lift the material plate by engaging with the claw head, so as to remove the material plate from the box. The claw head can be replaced with a magnet, and the corresponding robotic arm is an electromagnet that is magnetically attracted to the magnet. The robotic arm can be a liftable pneumatic finger or a cylinder with an electromagnet. The recessed hole allows the connecting rod and claw head to be inserted into the recessed hole when the material plates are stacked, avoiding insufficient stacking of the material plates.
[0010] Preferably, a limiting post is connected below the second slider. One end of the spring is sleeved on the outside of the limiting post and connected to the second slider. The other end of the spring is connected to the pressure plate. The pressure plate is connected to the bottom of the material plate by the spring, and the limiting post limits the direction of the elastic deformation of the spring to ensure that the pressure plate is subjected to force and rises and falls vertically.
[0011] The utility model discloses a beneficial effect is: because the bottom plate is connected to the bottom of box body, the inside slide of box body is provided with two or more than two material board, and the surface of bottom plate and material board all is provided with a plurality of material cavity for placing the support groove, makes the support groove can be placed in different material cavity respectively, and is stored and removes through the box body unification, in order to the batch integral removal handling of support groove for producer, the subsequent support groove is convenient for unified micro -engraving processing through laser, the batch multilayer stacking storage of support groove for producer is convenient, and the taper cylinder of material board center is sleeved on the outside of stand, and the taper cylinder is conical structure, and when the material board is stacked, the taper cylinder is mutually shrink fit, in order to the cooperation of rubber sleeve on the top of taper cylinder and stand, the cooperation between taper cylinder and taper cylinder is used to increase the stability between the material board after stacking, reduces the problem that the support groove inside material cavity moves and turns on one side because of material board shaking, guarantees the convenience of subsequent laser micro -engraving of support groove, and the pressure plate is connected below the material board, and the cotton block below the pressure plate and the recess cavity correspond to each other, so that the material cavity on the upper surface of the adjacent two material boards after stacking can be blocked and filled by the cotton block, further limit the fixing of the support groove placed in the material cavity, effectively avoid the activity of the support groove in the material cavity because of the possible movement of material board, reduce the influence of processing because of the turning on one side of itself during the micro -engraving process of support groove, effectively guarantee the micro -engraving production effect and processing convenience of support groove. BRIEF DESCRIPTION OF DRAWINGS
[0012] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by the person skilled in the art without creating labor.
[0013] Figure 1 It is the whole structure schematic diagram of the utility model discloses a kind of support groove bottom plate micro -engraving placing material box;
[0014] Figure 2 It is the whole structure sectional view of the utility model discloses a kind of support groove bottom plate micro -engraving placing material box;
[0015] Figure 3 It is the connection structure drawing of the utility model discloses a kind of support groove bottom plate micro -engraving placing material box in material board and pressure plate;
[0016] Figure 4 It is Figure 3 Another direction structure schematic view. DETAILED DESCRIPTION
[0017] The preferred embodiments of the utility model are described in detail below with reference to the drawings, so that the advantages and features of the utility model can be more easily understood by those skilled in the art, and the protection scope of the utility model can be more clearly and explicitly defined.
[0018] As Figures 1 to 4 The utility model relates to a kind of micro-engraving placement material boxes of bracket bottom plate, including box body 1, and the material plate 2 of slidingly being set in the inside of box body 1, the bottom plate 14 is connected in the inside of box body 1 below, the central core block 141 of bottom plate 14 is connected, and the upper portion of core block 141 is connected with stand 11, the outside of box body 1 is provided with pressure groove 15, the material plate 2 is provided with more than two, and the central core block 141 of each material plate 2 is connected with the taper cylinder 3 of stand 11 mutual cooperation, the upper portion of material plate 2 is connected with claw head 51, the lower portion of material plate 2 is provided with pressing plate 4, and spring 6 is connected between pressing plate 4 and material plate 2, the upper surface of bottom plate 14 and material plate 2 is provided with several material cavities 21 for placing bracket.
[0019] The core block 141 and taper cylinder 3 are all conical structure, and the core block 141 and the taper cylinder 3 placed above the core block 141 are interference fit, the taper cylinder 3 between adjacent two material plates 2 is interference fit, the angle range a below taper cylinder 3 is between 80 degrees-85 degrees, so that material plate 2 can be stacked in the inside of box body 1, and the central taper cylinder 3 of material plate 2 at the bottom of box body 1 can be connected outside the core block 141, and the material plate 2 is stacked by taper cylinder 3 and is connected with interference fit, so that material plate 2 can be stably placed in the inside of box body 1.
[0020] The upper portion of taper cylinder 3 is connected with rubber sleeve 31, and rubber sleeve 31 and stand 11 are interference fit, the outside of rubber sleeve 31 is evenly distributed with more than two notches 32, so that taper cylinder 3 can be slidably connected outside stand 11 by rubber sleeve 31, and the stability and firmness of taper cylinder 3 connected on stand 11 are increased, so that taper cylinder 3 can only be lifted and lowered under external force.
[0021] The lower portion of pressing plate 4 is evenly connected with cotton block 41, the cotton block 41 and material cavity 21 are mutually corresponding fit, the central portion of pressing plate 4 is provided with through hole 42, the diameter of through hole 42 is greater than the outer diameter below taper cylinder 3, so that cotton block 41 can be pressed in material cavity 21 after adjacent two material plates 2 are stacked, and then the bracket placed in material cavity 21 is limited, and the setting of through hole 42 facilitates stand 11 to pass through pressing plate 4 and cooperate with taper cylinder 3.
[0022] The first sliding groove 12 and the second sliding groove 13 are arranged on the two sides of the box body 1, and the first sliding groove 12 and the second sliding groove 13 are staggered and distributed on the side of the box body 1, the first sliding block 22 and the second sliding block 23 are connected to the two sides of the material plate 2 respectively, the first sliding block 22 and the first sliding groove 12, the second sliding block 23 and the second sliding groove 13 are connected in sliding fit, the material plate 2 is installed in the box body 1 through the sliding fit of the first sliding block 22 and the first sliding groove 12, the second sliding block 23 and the second sliding groove 13, and the material plate 2 is lifted and grabbed by the external mechanical hand, and the staggered distribution of the first sliding groove 12 and the second sliding groove 13 also makes the first sliding block 22 and the second sliding block 23 correspondingly staggered, so that the external mechanical hand can stably lift the material plate 2 through the claw head 51 connected to the first sliding block 22, and the spring 6 connected below the second sliding block 23 drives the whole pressure plate 4.
[0023] The first sliding block 22 is connected with the connecting rod 5, the lower side of the first sliding block 22 is provided with the recess hole 221 for embedding the claw head 51, the claw head 51 is connected above the connecting rod 5, and the claw head 51 is a spherical structure, so that the external mechanical hand can be used to grab and lift the material plate 2 through mutual clamping with the claw head 51, so as to take out the material plate 2 from the box body 1, the claw head 51 can be replaced by a magnet, and the corresponding mechanical hand is an electromagnet that is magnetically attracted to the magnet, the mechanical hand can be a liftable pneumatic finger or a pneumatic cylinder with an electromagnet, and the recess hole 221 is arranged so that the connecting rod 5 and the claw head 51 can be placed in the recess hole 221 when the material plates 2 are stacked, avoiding the stacking of the material plates 2.
[0024] The second sliding block 23 is connected with the limiting column (not marked), one end of the spring 6 is sleeved outside the limiting column and connected with the second sliding block 23, the other end of the spring 6 is connected with the pressure plate 4, the pressure plate 4 is connected below the material plate 2 through the spring 6, and the elastic deformation direction of the spring 6 is limited by the limiting column to ensure that the pressure plate 4 is straight and lifted.
[0025] The tray bottom plate micro-sculpture placement material box can sequentially stack and store the brackets for processing, part of the brackets are placed in the material cavity 21 of the bottom plate 14 first, and then the material plate 2 is placed in the box body 1 through the sliding cooperation of the first sliding block 22 and the first sliding groove 12 and the second sliding block 23 and the second sliding groove 13, so that the pressing plate 4 below the material plate 2 is stacked above the bottom plate 14, the cotton block 41 on the lower surface of the pressing plate 4 is filled into the material cavity 21 on the surface of the bottom plate 14 to limit the brackets, and the conical barrel 3 in the center of the material plate 2 is embedded outside the core block 141 to be fixed, then the brackets are placed into the material cavity 21 on the surface of the material plate 2 again, and another material plate 2 is stacked on the material plate 2 in the box body 1 again through the sliding cooperation of the first sliding block 22 and the first sliding groove 12 and the second sliding block 23 and the second sliding groove 13, so that the pressing plate 4 of the upper material plate 2 is limited on the lower material plate 2, the cotton block 41 fills and limits the material cavity 21, and the conical barrel 3 of the upper material plate 2 is preliminarily fixed outside the conical barrel 3 of the lower material plate 2 through interference fit, and the material plate 2 is sequentially stacked until the material plate 2 in the box body 1 is completely placed; when the brackets are micro-sculpted, the box body 1 is fixed through the cooperation of the pressing buckle or bolt on the workbench and the pressing groove 15, so that the brackets in the material cavity 21 are micro-sculpted by an external fine carving machine, when the brackets in a layer of material plate 2 are all processed, the material plate 2 is grabbed through the cooperation of the mechanical claw and the claw head 51 at the end of the connecting rod 5 to extract the material plate 2 in the box body 1 layer by layer and process the brackets.
[0026] The box body is connected with a bottom plate at the bottom, two or more material plates are slidably arranged in the box body, and the surface of the bottom plate and the surface of the material plate are both provided with a plurality of material cavities for placing brackets, so that the brackets can be placed in different material cavities and stored and moved uniformly through the box body, so that the brackets can be moved and processed in batches by the producer, the brackets can be uniformly micro-sculpted by laser in the subsequent process, the brackets can be stored in batches and stacked in multiple layers, the conical barrel in the center of the material plate is sleeved outside the stand, the conical barrel has a conical structure, and the conical barrels are interference-fitted with each other when the material plates are stacked, so that the stability between the stacked material plates is improved through the cooperation of the rubber sleeve above the conical barrel and the stand and the cooperation between the conical barrels, the problem that the brackets in the material cavities move and turn over due to shaking of the material plates is reduced, the convenience of subsequent laser micro-sculpting of the brackets is ensured, the bottom of the material plate is connected with a pressing plate through a spring, the cotton block below the pressing plate corresponds to the recess, the material cavities on the upper surface of the two adjacent material plates can be blocked and filled by the cotton block after the two material plates are stacked, the brackets placed in the material cavities are further limited and fixed, the activity of the brackets in the material cavities due to possible movement of the material plates is effectively avoided, the processing is not affected by the turning over of the brackets during the micro-sculpting process, and the production effect and processing convenience of the bracket micro-sculpting are effectively ensured.
[0027] The above merely describes a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any change or replacement not through creative labor should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be limited by the protection scope defined in the claims.
Claims
1. A micro-etching bracket base plate placement box, characterized in that: The utility model provides a kind of material plate and box body, the box body is connected with the bottom plate in the lower part of the inside of box body, the central part of bottom plate is connected with the core block, and the upper part of core block is connected with the column, the outside of box body is provided with pressure groove, the material plate is provided with more than two, and the central part of each material plate is connected with the taper cylinder that is mutually matched with column, the upper part of material plate is connected with claw head, the lower part of material plate is provided with pressing plate, and spring is connected between pressing plate and material plate, the upper surface of bottom plate and material plate is provided with a plurality of material cavities for placing support groove.
2. The micro-sculpture placement box for bracket base according to claim 1, characterized in that: The core block and the taper cylinder are both conical structure, and the taper cylinder between the core block and the taper cylinder placed above the core block is interference fit, the taper cylinder between the adjacent two material plates is interference fit, the angle range a below the taper cylinder is between 80 degrees-85 degrees.
3. The micro-sculpture placement box for bracket base according to claim 2, characterized in that: The upper part of the taper cylinder is connected with rubber sleeve, and the rubber sleeve and the column are interference fit, the outside of rubber sleeve is uniformly distributed with more than two notches.
4. The micro-sculpture placement box for bracket base according to claim 2, characterized in that: The lower part of the pressing plate is uniformly connected with cotton block, the cotton block and the material cavity are mutually matched, the central part of the pressing plate is provided with through hole, and the diameter of the through hole is greater than the outer diameter below the taper cylinder.
5. The micro-sculpture placement box for bracket base plate according to any one of claims 1-4, characterized in that: The two sides of the inside of the box body are provided with first sliding groove and second sliding groove, and first sliding groove and second sliding groove are staggered distribution in the side of box body, the two sides of the material plate are respectively connected with first sliding block and second sliding block, the first sliding block and the first sliding groove, the second sliding block and the second sliding groove are slidingly connected.
6. The micro-sculpture placement box for bracket base according to claim 5, characterized in that: The upper part of the first sliding block is connected with connecting rod, the lower part of the first sliding block is provided with recessed hole for claw head embedding, the claw head is connected above the connecting rod, and the claw head is spherical structure.
7. The micro-sculpture placement box for bracket base according to claim 5, characterized in that: The lower part of the second sliding block is connected with limiting column, one end of the spring is sleeved outside the limiting column and connected with the second sliding block, and the other end of the spring is mutually connected with the pressing plate.