3D printing model multifunctional post-processing all-in-one machine

CN224738847UActive Publication Date: 2026-09-11XIAMEN JIECHENG 3D TECH CO LTD
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Patent Information

Application Number
CN202522078479.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-11
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0004]针对现有技术的以上缺陷或改进需求中的一种或者多种,本实用新型提供了一种3D打印模型多功能后处理一体机,旨在解决传统后处理设备功能单一、效率低、处理不均匀等问题,实现集成固化、清洁等多种后处理功能,高效且均匀地对3D打印模型进行后处理,提升后处理质量和效率

Benefits of technology

[0011]总体而言,通过本实用新型所构思的以上技术方案与现有技术相比,具有的有益效果包括:

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Abstract

The utility model discloses a 3D printing model multifunctional post-processing all -in -one belongs to 3D printing field, including belt conveyor, support frame, erects the top of belt conveyor, two rotatory bearing spare, rotatable and penetrates support frame, double -end servo motor and two drive parts, all set up in support frame top, two drive parts are connected with double -end servo motor two output respectively, and another end is connected with adjacent rotatory bearing spare. The utility model discloses a 3D printing model multifunctional post-processing all -in -one, its through the integration of ultraviolet curing and fan cleaning function, need not use multiple separate equipment, has saved the site space, has simplified the operation process, has improved the post -processing efficiency, through double -end servo motor, drive part and rotatory bearing spare's cooperation simultaneously, drives ultraviolet curing lamp and fan and revolves around the model, has realized to the all -round, even processing of model, avoided the problem of traditional equipment processing uneven, improved the post -processing quality.
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Description

Technical Field

[0001] This utility model belongs to the field of 3D printing, specifically relating to a multi-functional post-processing machine for 3D printed models. Background Technology

[0002] In the field of 3D printing, after the model is printed, post-processing operations such as curing and cleaning are usually required to improve the model's performance and appearance, and to prepare it for subsequent processes such as coloring.

[0003] Traditional 3D printed model post-processing often involves multiple separate devices for curing, cleaning, and other operations. This not only requires a large space but also suffers from cumbersome operation and low efficiency. Furthermore, transferring models between different devices can easily damage them, affecting the final quality. To address these issues, a multi-functional post-processing machine for printed models is proposed. Utility Model Content

[0004] In response to one or more of the above-mentioned defects or improvement needs of the existing technology, this utility model provides a multi-functional post-processing machine for 3D printed models, which aims to solve the problems of single function, low efficiency and uneven processing of traditional post-processing equipment, realize the integration of multiple post-processing functions such as curing and cleaning, and perform efficient and uniform post-processing of 3D printed models, thereby improving the quality and efficiency of post-processing.

[0005] To achieve the above objectives, this utility model provides a multi-functional post-processing machine for 3D printed models, including a belt conveyor; The support frame is erected above the belt conveyor; Two rotating load-bearing components can rotatably pass through the support frame; The dual-head servo motor and two drive units are all located on the top of the support frame. The two drive units are connected to the two output ends of the dual-head servo motor respectively, and the other end is connected to the adjacent rotating bearing component. The UV curing lamp and the fan are respectively mounted on two rotating support components; the UV curing lamp is used for secondary curing of the model, and the fan is used for cleaning the surface of the model. The dual-head servo motor is used to drive two rotating carrier components to rotate via a drive component; the rotating carrier components are used to drive the ultraviolet curing lamp and the fan to rotate around the model. Two rotating power supply components are respectively installed on the top of the support frame and electrically connected to the ultraviolet curing lamp and the fan.

[0006] Furthermore, the rotating bearing includes a sleeve that can rotatably pass through the support frame; an mounting plate at the bottom of the sleeve, the mounting plate having an L-shaped plate structure; an ultraviolet curing lamp and a fan respectively mounted on the two mounting plates; and a toothed ring fitted on the upper part of the sleeve.

[0007] Furthermore, the drive component includes a support frame mounted on top of the support frame; a rotating rod rotatably passing through the support frame, one end of which is connected to one of the output ends of a dual-head servo motor; and a gear mounted on the other end of the rotating rod and meshing with a gear ring.

[0008] Furthermore, the rotating power supply component includes a fixed frame mounted on top of the support frame; a conductive slip ring extending through the fixed frame; and conductive slip rings on the two rotating power supply components are electrically connected to the ultraviolet curing lamp and the fan respectively via wires.

[0009] Furthermore, two limiting plates are positioned on both sides of the belt conveyor and extend above the belt conveyor.

[0010] The aforementioned improved technical features can be combined with each other as long as they do not conflict with each other.

[0011] In summary, the beneficial effects of the above-described technical solutions conceived by this utility model compared with the prior art include: This utility model discloses a multi-functional post-processing machine for 3D printed models. By integrating ultraviolet curing and fan cleaning functions into one unit, it eliminates the need for multiple separate devices, saving space, simplifying the operation process, and improving post-processing efficiency. At the same time, through the cooperation of dual-head servo motors, drive components, and rotating bearing components, the ultraviolet curing lamp and fan are driven to rotate around the model, achieving all-round and uniform processing of the model. This avoids the problem of uneven processing in traditional equipment and improves the quality of post-processing. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a partial cross-sectional structural diagram of the rotating bearing component of this utility model.

[0013] In all the accompanying drawings, the same reference numerals denote the same technical features, specifically: 1. Belt conveyor; 2. Support frame; 3. Rotating bearing component; 31. Sleeve; 32. Mounting plate; 33. Gear ring; 4. Dual-head servo motor; 5. Drive component; 51. Bearing frame; 52. Rotating rod; 53. Gear; 6. Ultraviolet curing lamp; 7. Fan; 8. Rotating power supply component; 81. Fixing frame; 82. Conductive slip ring; 83. Wire; 9. Limiting plate. Detailed Implementation

[0014] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments; It should be understood that the specific embodiments described herein are only for explaining the present invention and are not intended to limit the present invention; furthermore, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other. Please see Figure 1-2 The 3D printing model multi-functional post-processing machine in the preferred embodiment includes a belt conveyor 1; Support frame 2 is erected above belt conveyor 1; Two rotating bearing components 3 can rotatably pass through the support frame 2; The dual-head servo motor 4 and two drive units 5 are both located on the top of the support frame 2. The two drive units 5 are respectively connected to the two output ends of the dual-head servo motor 4, and the other end is connected to the adjacent rotating bearing unit 3. The ultraviolet curing lamp 6 and the fan 7 are respectively mounted on two rotating support components 3; the ultraviolet curing lamp 6 is used for secondary curing of the model, and the fan 7 is used for cleaning the surface of the model. The dual-head servo motor 4 is used to drive the two rotating bearings 3 to rotate via the drive component 5; the rotating bearings 3 are used to drive the ultraviolet curing lamp 6 and the fan 7 to rotate around the model. Two rotating power supply components 8 are respectively installed on the top of the support frame 2 and are electrically connected to the ultraviolet curing lamp 6 and the fan 7 respectively.

[0015] Specifically, refer to Figure 2 The rotating bearing 3 includes a sleeve 31 that can rotatably pass through the support frame 2, providing a mounting base and rotational support for the mounting plate 32 and the gear ring 33; the mounting plate 32, which is an L-shaped plate structure, is set at the bottom of the sleeve 31, providing a mounting platform for the ultraviolet curing lamp 6 and the fan 7, enabling them to rotate stably with the sleeve 31; the gear ring 33, which is sleeved on the upper part of the sleeve 31, meshes with the gear 53 of the driving component 5, receives the power of the driving component 5, and drives the sleeve 31 to rotate.

[0016] Specifically, refer to Figure 2 The driving component 5 includes a support frame 51 set on the top of the support frame 2, which provides rotational support for the rotating rod 52; a rotating rod 52 that can rotatably pass through the support frame 51, one end of the rotating rod 52 is connected to one of the output ends of the dual-head servo motor 4, and receives the power of the dual-head servo motor 4; a gear 53 set at the other end of the rotating rod 52 and meshing with the gear ring 33, transmits the rotational power of the rotating rod 52 to the gear ring 33 of the rotating support component 3, thereby driving the sleeve 31 to rotate.

[0017] Specifically, refer to Figure 2The rotating power supply component 8 includes a fixed frame 81 set on the top of the support frame 2, which provides mounting support for the conductive slip ring 82; the conductive slip ring 82, which is set through the fixed frame 81, can maintain electrical connection with the ultraviolet curing lamp 6 and the fan 7 when the rotating bearing component 3 rotates; the conductive slip rings 82 on the two rotating power supply components 8 are electrically connected to the ultraviolet curing lamp 6 and the fan 7 respectively through wires 83 to transmit electrical energy.

[0018] Specifically, refer to Figure 1 Two limiting plates 9 are set on both sides of the belt conveyor 1 and extend above the belt conveyor 1 to limit the 3D printed model on the belt conveyor 1, prevent the model from shifting during the conveying process, and ensure that the model can accurately reach the post-processing position and be aligned with the processing range of the ultraviolet curing lamp 6 and the fan 7.

[0019] Working principle During operation, the 3D printed model is placed on the belt conveyor 1. Under the limiting action of the limiting plate 9, the belt conveyor 1 transports the model to the designated post-processing position below the support frame 2. Then, the dual-head servo motor 4 is started. The two output ends of the dual-head servo motor 4 drive the rotating rods 52 of the two drive components 5 to rotate. The rotation of the rotating rods 52 drives the gear 53 to rotate. The gear 53 meshes with the toothed ring 33 of the rotating bearing component 3, causing the sleeve 31 to rotate on the support frame 2. The rotation of sleeve 31 drives the bottom mounting plate 32 to rotate, which in turn drives the UV curing lamp 6 and fan 7 to rotate around the model. At the same time, the conductive slip ring 82 of the rotating power supply component 8 continuously supplies power to the rotating UV curing lamp 6 and fan 7 through wire 83, enabling the UV curing lamp 6 and fan 7 to work normally. During the rotation, the UV curing lamp 6 performs all-round secondary curing on the model, enhancing the model's performance. During the rotation, the fan 7 thoroughly cleans the model surface and blows away impurities. After curing and cleaning are completed, the belt conveyor 1 transports the model to the next process, such as the coloring process.

[0020] Those skilled in the art will readily understand that the above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A multifunctional post-processing all-in-one machine for 3D printed models, characterized in that, Including belt conveyor (1); The support frame (2) is erected above the belt conveyor (1); Two rotating bearing components (3) can rotatably pass through the support frame (2); The dual-head servo motor (4) and two drive units (5) are both set on the top of the support frame (2). The two drive units (5) are respectively connected to the two output ends of the dual-head servo motor (4) and the other end is connected to the adjacent rotating bearing unit (3). The ultraviolet curing lamp (6) and the fan (7) are respectively installed on the two rotating bearings (3); the ultraviolet curing lamp (6) is used to perform secondary curing on the model, and the fan (7) is used to clean the surface of the model; The dual-head servo motor (4) is used to drive the two rotating bearings (3) to rotate via the drive component (5); the rotating bearings (3) are used to drive the ultraviolet curing lamp (6) and the fan (7) to rotate around the model; Two rotating power supply components (8) are respectively installed on the top of the support frame (2) and are electrically connected to the ultraviolet curing lamp (6) and the fan (7). 2.The 3D printing model multifunctional post-processing all-in-one machine according to claim 1, characterized in that, The rotating bearing (3) includes a sleeve (31) that can rotatably pass through the support frame (2); an mounting plate (32) set at the bottom of the sleeve (31), the mounting plate (32) being an L-shaped plate structure; an ultraviolet curing lamp (6) and a fan (7) respectively set on the two mounting plates (32); and a toothed ring (33) fitted on the upper part of the sleeve (31).

3. The multifunctional post-processing all-in-one machine for 3D printing models according to claim 2, characterized in that, The drive unit (5) includes a support frame (51) set on top of the support frame (2); a rotating rod (52) that can rotatably pass through the support frame (51), one end of the rotating rod (52) being connected to one of the output ends of the dual-head servo motor (4); and a gear (53) set on the other end of the rotating rod (52) and meshing with the gear ring (33).

4. The multifunctional post-processing all-in-one machine for 3D printed models according to claim 1, characterized in that, The rotating power supply component (8) includes a fixed frame (81) set on the top of the support frame (2); a conductive slip ring (82) that passes through the fixed frame (81); and the conductive slip rings (82) on the two rotating power supply components (8) are electrically connected to the ultraviolet curing lamp (6) and the fan (7) respectively through wires (83).

5. The multifunctional post-processing all-in-one machine for 3D printed models according to claim 1, characterized in that, Two limiting plates (9) are set on both sides of the belt conveyor (1) and extend above the belt conveyor (1).