3D printer rapid discharging mechanism for automobile part production
By designing a 3D printer rapid unloading mechanism for automotive parts production, and using technical means such as servo motors and electric push rods, automated unloading is achieved, solving the cumbersome problems of the existing 3D printer unloading process and improving production efficiency.
Patent Information
- Application Number
- CN202420875709.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-04-25
AI Technical Summary
The existing 3D printers require manual opening and closing of cabinet doors during use, resulting in cumbersome unloading process and reducing the production efficiency of automotive parts.
A 3D printer rapid unloading mechanism for automotive parts production was designed, using a servo motor to drive the screw and slide rod to form a limit sliding structure, combining electric push rods and conveyor belts to realize automatic unloading.
Through the automated unloading process, the production efficiency of 3D printers is improved, the time and labor intensity of manual operation are reduced, and the production efficiency of automotive parts is enhanced.
Smart Images

Figure CN222946220U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automobile parts production, in particular to a 3D printer quick unloading mechanism for automobile parts production. Background Art
[0002] Auto parts are the units that make up the whole auto parts processing and the products that serve the auto parts processing. Traditional auto parts can be roughly divided into seven categories, namely engine, transmission system, steering system, braking system, driving system, body accessories and electronic appliances. In the process of auto parts production, in order to process various raw materials into suitable shapes for use, the raw materials are processed and formed in the form of inkjet through 3D printers.
[0003] During the use of 3D printers, the auto parts are built layer by layer inside the machine body through the nozzle, so as to be stacked into various shapes. However, during the use of existing 3D printers, the cabinet door needs to be opened and closed manually, which makes the unloading process of the device more cumbersome, thereby reducing the production efficiency of the device for auto parts. Therefore, a 3D printer fast unloading mechanism for the production of auto parts is proposed to solve the above problem. Utility Model Content
[0004] The purpose of the utility model is to provide a 3D printer quick unloading mechanism for automobile parts production, so as to solve the problem that the existing 3D printer proposed in the above background technology needs to manually open and close the cabinet door during use, which makes the unloading process of the device more cumbersome, thereby reducing the production efficiency of the device for automobile parts.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a 3D printer quick unloading mechanism for automobile parts production, comprising an operating table, the operating table is provided with a 3D printer on the upper end surface, the 3D printer is provided with first fixing frames on both sides respectively, and the first fixing frames are provided with a first servo motor inside, one end of the output shaft of the first servo motor is connected to a screw rod through a coupling, and the screw rod is provided with a first sliding rod on one side, and the first sliding rod is also provided in another group of first fixing frames, the screw rod and the first sliding rod are respectively interspersed with first movable blocks, and the first movable blocks are respectively provided with baffles on opposite surfaces;
[0006] The front of the 3D printer is provided with support legs on both sides of the operating table, and the support legs are provided with motors inside, one end of the motor output shaft is connected to the driving wheel through a coupling, and one side of the driving wheel is correspondingly provided with a driven wheel between the support legs, and the driving wheel and the driven wheel are sleeved with a conveyor belt on the outer wall, the operating table is provided with a support frame on the upper end surface, and the support frame is respectively provided with two groups of electric push rods inside, the electric push rods are provided with telescopic arms, and the other end of the telescopic arms is connected to a fixed box, the fixed box is provided with a second servo motor inside, and the second servo motor is provided with an output shaft on the upper part, and the upper end of the output shaft is provided with a second fixed frame;
[0007] The second fixed frame is provided with a third servo motor inside, and one end of the output shaft of the third servo motor is connected to the bidirectional screw through a coupling, the bidirectional screw is provided with a second sliding rod on one side, and the bidirectional screw and the second sliding rod are respectively inserted with second movable blocks at both ends, and the second movable blocks are respectively provided with fixing rods, and the fixing rods are provided with L-shaped clamping rods at the lower ends, and the fixing rods are provided with limit plates at the upper ends, the 3D printer is provided with a bottom plate inside, and the bottom plate is provided with multiple groups of rollers on the lower end surface, and the bottom plate is respectively opened and closed with clamping grooves, and the L-shaped clamping rods are inserted in the clamping grooves.
[0008] Preferably, the baffle forms a limited sliding structure with the 3D printer through a screw rod, a first sliding rod, a first movable block under the action of the first servo motor.
[0009] Preferably, the second servo motor forms a horizontal pushing structure through the telescopic arm and the conveyor belt under the action of the electric push rod, and the second fixed frame forms a rotating structure through the output shaft and the fixed box under the action of the second servo motor.
[0010] Preferably, the L-shaped engaging rod and the limiting plate respectively form a bidirectional limiting sliding structure through a bidirectional screw rod, a second sliding rod and a second movable block under the action of a third servo motor.
[0011] Preferably, the bottom plate forms a sliding structure with the 3D printer via rollers.
[0012] Compared with the prior art, the beneficial effects of the utility model are as follows: the baffle of the 3D printer quick unloading mechanism for automobile parts production forms a limited sliding structure with the 3D printer through a screw, a first slide bar, a first movable block under the action of a first servo motor, so that the baffle is automatically driven to rise and fall by the first servo motor, so as to facilitate the subsequent limiting device to unload automobile parts; the second servo motor of the device forms a horizontal pushing structure through a telescopic arm and a conveyor belt under the action of an electric push rod, and the second fixed frame forms a rotating structure through an output shaft and a fixed box under the action of the second servo motor, so that the limiting assembly of the automobile parts is pushed horizontally by the electric push rod, and the new bottom plate is placed on the limiting device by the second servo motor; the L-shaped clamping rod and the limiting plate of the device respectively form a bidirectional limited sliding structure through a bidirectional screw, a second slide bar, and a second movable block under the action of a third servo motor, so that the bottom plate and the automobile parts above are driven to move and unload by the L-shaped clamping rod, and the automobile parts are protected by the limiting plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the structure of a quick unloading mechanism of a 3D printer used for the production of automobile parts in the utility model;
[0014] Figure 2 This is a side view structural diagram of a 3D printer quick unloading mechanism for automobile parts production according to the utility model;
[0015] Figure 3 This is a schematic diagram of a top view of a quick unloading mechanism of a 3D printer for automobile parts production according to the utility model;
[0016] Figure 4 The utility model is a schematic diagram of a top view of the structure of a limiting moving component of a limiting plate of a quick unloading mechanism of a 3D printer used for the production of automobile parts.
[0017] In the figure: 1. operating table, 2. 3D printer, 3. first fixed frame, 4. first servo motor, 5. screw, 6. first slide bar, 7. first movable block, 8. baffle, 9. support leg, 10. conveyor belt, 11. electric push rod, 12. telescopic arm, 13. second servo motor, 14. second fixed frame, 15. third servo motor, 16. bidirectional screw, 17. second slide bar, 18. second movable block, 19. fixed rod, 20. L-shaped locking rod, 21. limit plate, 22. bottom plate, 23. roller. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0019] See also Figure 1-4 The utility model provides a technical solution: a 3D printer quick unloading mechanism for automobile parts production, comprising an operating table 1, a 3D printer 2 is provided on the upper end surface of the operating table 1, first fixing frames 3 are provided on both sides of the 3D printer 2, and a first servo motor 4 is provided inside the first fixing frame 3, one end of the output shaft of the first servo motor 4 is connected to a screw rod 5 through a coupling, and a first slide rod 6 is correspondingly provided on one side of the screw rod 5, and a first slide rod 6 is also provided in another group of first fixing frames 3, first movable blocks 7 are respectively inserted on the screw rod 5 and the first slide rod 6, and baffles 8 are respectively provided on the opposite surfaces of the first movable blocks 7.
[0020] Furthermore, under the action of the first servo motor 4, the baffle 8 forms a limited sliding structure with the 3D printer 2 through the screw 5, the first slide bar 6, the first movable block 7, so that the device can automatically unload materials through the limited lifting of the baffle.
[0021] The front of the 3D printer 2 is provided with support legs 9 on both sides of the operating table 1, and the support legs 9 are provided with a motor inside. One end of the motor output shaft is connected to the driving wheel through a coupling, and a driven wheel is correspondingly provided between the support legs 9 on one side of the driving wheel. The driving wheel and the driven wheel are sleeved with a conveyor belt 10 on the outer wall. The operating table 1 is provided with a support frame on the upper end surface, and the support frame is respectively provided with two groups of electric push rods 11 inside. The electric push rods 11 are provided with telescopic arms 12, and the other end of the telescopic arms 12 is connected to a fixed box, and a second servo motor 13 is provided inside the fixed box, and the second servo motor 13 is provided with an output shaft on the top, and a second fixed frame 14 is provided at the upper end of the output shaft.
[0022] Furthermore, the second servo motor 13, under the action of the electric push rod 11, forms a horizontal pushing structure through the telescopic arm 12 and the conveyor belt 10, so that the electric push rod 11 can easily drive the limiting assembly of the automobile parts to move, and then unload the completed automobile parts, and the second fixed frame 14, under the action of the second servo motor 13, forms a rotating structure through the output shaft and the fixed box, so that the new base plate 22 can be installed conveniently through the rotatable limiting assembly.
[0023] The second fixed frame 14 is provided with a third servo motor 15 inside, and one end of the output shaft of the third servo motor 15 is connected to a bidirectional screw 16 through a coupling, and a second slide bar 17 is correspondingly provided on one side of the bidirectional screw 16, and second movable blocks 18 are respectively inserted at both ends of the bidirectional screw 16 and the second slide bar 17, and fixed rods 19 are respectively provided on the second movable blocks 18, and an L-shaped clamping rod 20 is provided at the lower end of the fixed rod 19, and a limit plate 21 is provided at the upper end of the fixed rod 19.
[0024] Furthermore, the L-shaped locking rod 20 and the limiting plate 21 respectively form a bidirectional limiting sliding structure through the bidirectional screw 16, the second sliding rod 17, and the second movable block 18 under the action of the third servo motor 15, so that the bottom plate 22 is squeezed and limited by the bidirectionally movable L-shaped locking rod 20, and the automobile parts after production are protected by the limiting plate 21.
[0025] The 3D printer 2 is provided with a bottom plate 22 inside, and a plurality of rollers 23 are provided on the lower end surface of the bottom plate 22 . Engagement grooves are respectively opened and closed on the bottom plate 22 , and L-shaped engagement rods 20 are inserted into the engagement grooves.
[0026] Furthermore, the bottom plate 22 forms a sliding structure with the 3D printer 2 through the rollers 23, so that the bottom plate 22 can slide onto the conveyor belt 10 for unloading under the action of the limiting assembly through the rollers 23.
[0027] Working principle: When using the 3D printer quick unloading mechanism for automobile parts production, first, when the 3D printer 2 is finished printing, the first servo motor 4 can be started, so that the baffle 8 is driven to limit and rise through the rotating screw 5, the first slide bar 6, and the first movable block 7, and then the electric push rod 11 can be started, and the electric push rod 11 drives the limit assembly to move through the telescopic arm 12, so that the L-shaped clamping rod 20 is inserted into the clamping groove on the bottom plate 22. When the L-shaped clamping rod 20 is inserted, the third servo motor 15 can be started, so that the L-shaped clamping rod 20 is driven to slide in a bidirectional manner through the bidirectional screw 16, the second slide bar 17, and the second movable block 18, so that the bottom plate 22 is locked by two groups of L-shaped clamping rods 20. Extrusion limiting is performed, and the automobile parts are protected on both sides by the limiting plates 21, thereby increasing the stability of the automobile parts during the unloading process; after the bottom plate 22 is limited, it is moved to the conveyor belt 10 for unloading through the electric push rod 11 and the roller 23; then the limiting component returns to its original position under the action of the electric push rod 11, and is rotated by the second servo motor 13, so as to facilitate the placement of the new bottom plate 22 on the L-shaped clamping rod 20, so that it can be limited and moved to the 3D printer 2 through the L-shaped clamping rod 20 to accumulate for printing, thereby ensuring that the 3D printer 2 can continue to work and unload. This is the use process of the 3D printer quick unloading mechanism for automobile parts production.
[0028] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art may still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection scope of the present invention.
Claims
1. A 3D printer quick unloading mechanism for automobile parts production, comprising an operating table (1), wherein a 3D printer (2) is provided on the upper end surface of the operating table (1), characterized in that: The 3D printer (2) is provided with first fixing frames (3) on both sides, and the first fixing frames (3) are provided with first servo motors (4) inside, one end of the output shaft of the first servo motor (4) is connected to a screw rod (5) via a coupling, and the screw rod (5) is provided with a first slide rod (6) on one side, and the first slide rod (6) is also provided in the other set of first fixing frames (3), and first movable blocks (7) are respectively inserted on the screw rods (5) and the first slide rods (6), and baffles (8) are respectively provided on opposite surfaces of the first movable blocks (7); The front of the 3D printer (2) is provided with support legs (9) on both sides of the operating table (1), and the support legs (9) are provided with motors inside. One end of the motor output shaft is connected to a driving wheel through a coupling, and one side of the driving wheel is provided with a driven wheel between the support legs (9) correspondingly. The driving wheel and the driven wheel are sleeved with a conveyor belt (10) on the outer wall. The operating table (1) is provided with a support frame on the upper end surface, and the support frame is provided with two groups of electric push rods (11) inside. The electric push rods (11) are provided with telescopic arms (12), and the other end of the telescopic arms (12) is connected to a fixing box. The fixing box is provided with a second servo motor (13) inside, and the second servo motor (13) is provided with an output shaft on the upper part, and the upper end of the output shaft is provided with a second fixing frame (14); The second fixed frame (14) is provided with a third servo motor (15) inside, and one end of the output shaft of the third servo motor (15) is connected to a bidirectional screw (16) through a coupling, the bidirectional screw (16) is provided with a second slide bar (17) on one side, and the bidirectional screw (16) and the second slide bar (17) are respectively inserted with second movable blocks (18) at both ends, and the second movable blocks (18) are respectively provided with fixed rods (19), and the fixed rods (19) are provided with L-shaped clamping rods (20) at the lower end, and the fixed rods (19) are provided with a limit plate (21) at the upper end, and the 3D printer (2) is provided with a bottom plate (22) inside, and the bottom plate (22) is provided with a plurality of rollers (23) at the lower end surface, and the bottom plate (22) is respectively provided with clamping grooves, and the L-shaped clamping rods (20) are inserted into the clamping grooves.
2. A 3D printer quick unloading mechanism for automobile parts production according to claim 1, characterized in that: The baffle (8) forms a limited sliding structure with the 3D printer (2) through the screw rod (5), the first sliding rod (6), the first movable block (7) under the action of the first servo motor (4).
3. The 3D printer quick unloading mechanism for automobile parts production according to claim 1, characterized in that: The second servo motor (13) forms a horizontal pushing structure through the telescopic arm (12) and the conveyor belt (10) under the action of the electric push rod (11), and the second fixed frame (14) forms a rotating structure through the output shaft and the fixed box under the action of the second servo motor (13).
4. A 3D printer quick unloading mechanism for automobile parts production according to claim 1, characterized in that: The L-shaped engaging rod (20) and the limiting plate (21) respectively form a bidirectional limiting sliding structure through a bidirectional screw rod (16), a second sliding rod (17) and a second movable block (18) under the action of a third servo motor (15).
5. The 3D printer quick unloading mechanism for automobile parts production according to claim 1, characterized in that: The bottom plate (22) forms a sliding structure with the 3D printer (2) via the roller (23).