Resin 3D printing anti-deformation supporting structure generator
By introducing slide rails, lead screws, and spring assemblies into the resin 3D printed anti-deformation support structure generator, the problem of time-consuming and laborious generator disassembly is solved, enabling rapid installation and convenient replacement of the worktable, thereby improving printing efficiency and material support flexibility.
Patent Information
- Application Number
- CN202520018425.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing resin 3D printed anti-deformation support structure generators are time-consuming and labor-intensive to disassemble and install, affecting print quality and application range.
The design employs a slide rail, lead screw, and spring assembly. The generator drives the slot to slide, and the spring's restoring force enables quick installation and disassembly, simplifying the generator's assembly and disassembly process. It also facilitates worktable replacement and material support.
It enables quick assembly and disassembly of the generator and convenient replacement of the worktable, reducing the difficulty of operation and improving printing efficiency and material support flexibility.
Smart Images

Figure CN223657631U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to printing technical field, concretely is a resin 3D printing anti -deformation support structure generator. BACKGROUND
[0002] Today, resin 3D printing technology is increasingly mature, its high precision, complex structure manufacturing capacity and extensive material adaptability make it show great application potential in multiple fields. However, the deformation problem existing in the resin 3D printing process, especially the deformation of large, thin-walled or complex structure parts, seriously restricts the expansion of printing quality and application range. In order to solve this problem, resin 3D printing anti-deformation support structure generator emerges as the times require, but there are still some deficiencies to be improved.
[0003] And the existing resin 3D printing anti-deformation support structure generator is usually fixed on the support frame by bolts, and when the generator needs to be disassembled, the bolts need to be disassembled one by one, so the generator is time-consuming and laborious to disassemble, therefore we provide a resin 3D printing anti-deformation support structure generator to solve the above problems. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a resin 3D printing anti-deformation support structure generator to solve the problems raised in the background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a resin 3D printing anti-deformation support structure generator, including support frame, the support frame top is equipped with slide rail, the slide rail on sliding has mounting panel, the mounting panel front end is equipped with generator, the support frame below the generator is equipped with lead screw, the lead screw on sliding has workstation, the mounting panel with generator between being equipped with connecting assembly, the mounting panel passes through connecting assembly and is connected with generator, the workstation with lead screw between being equipped with installation assembly, the lead screw passes through installation assembly and is connected with workstation.
[0006] As a further preferred embodiment of the present technical solution, the connecting assembly includes two groups of assembly grooves opened in the mounting panel, the assembly grooves are both slidingly provided with assembly blocks, the assembly blocks are provided with generators at the front ends, the left outer wall of the generator is provided with a movable bin, the movable bin is slidingly provided with a brake disc, the brake disc is provided with a plug rod in the middle, the plug rod surface in the movable bin is wound with a first spring, the left outer wall of the mounting panel is provided with a socket, and the first spring is slidingly connected with the socket.
[0007] As a further preferred embodiment of the present technical solution, the plug rod is provided with a handle at the front end, and the handle is designed in a cylindrical shape.
[0008] As a further preferred of the technical solution, one end of the first spring is welded on the inner wall of the movable bin, and the other end of the first spring is welded on the brake disc.
[0009] As a further preferred of the technical solution, the mounting assembly comprises a mounting seat arranged on the screw rod, a clamping groove is slidably arranged on the mounting seat, a workbench is arranged on the top of the clamping groove, a spring groove is arranged on the front end surface of the mounting seat, a second spring is arranged on the inner wall of the spring groove, and a positioning block is fixedly connected to the other end of the second spring.
[0010] As a further preferred of the technical solution, an anti-skid pattern is arranged on the front end surface of the positioning block, and the positioning block is designed in a rectangular shape, and the positioning groove is designed in a rectangular groove matched with the positioning block.
[0011] As a further preferred of the technical solution, the second spring is arranged at the middle position on the inner wall of the spring groove, and one end of the second spring is welded on the inner end of the positioning block.
[0012] The resin 3D printing anti-deformation support structure generator has the following beneficial effects:
[0013] 1. The generator drives the clamping groove to slide in the mounting seat, aligns the insertion rod with the socket, resets the brake disc in the movable bin by the restoring force of the first spring, and drives the first spring to penetrate the socket synchronously, so that the generator is convenient to install, the insertion rod is slid out of the socket, the generator drives the clamping groove to slide out of the mounting seat, the generator is convenient to disassemble and assemble, and the generator is convenient to maintain and overhaul.
[0014] 2. The positioning block is slid into the spring groove from the positioning groove, the positioning block continuously extrudes the second spring, the clamping groove is slid out of the mounting seat, a new workbench drives the clamping groove to be sleeved on the mounting seat, the positioning block is aligned with the positioning groove, the positioning block is driven to penetrate the positioning groove by the restoring force of the second spring, so that the workbench is convenient to replace, a workbench with a larger area is installed according to requirements, and materials are supported. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0016] Figure 2 It is a local section structure schematic view of the connecting assembly of the utility model;
[0017] Figure 3The partial section structure schematic diagram of the installation assembly of the utility model is shown in the figure.
[0018] Figure 4 The partial section structure schematic diagram of the installation assembly of the utility model is shown in the figure. Figure 2 The enlarged structure schematic diagram of A of the utility model is shown in the figure.
[0019] Figure 5 The partial section structure schematic diagram of the installation assembly of the utility model is shown in the figure. Figure 3 The enlarged structure schematic diagram of B of the utility model is shown in the figure.
[0020] In the figure: 1, support frame; 2, sliding rail; 3, mounting plate; 4, generator; 5, screw rod; 6, workbench; 7, connecting assembly; 71, assembly groove; 72, assembly block; 73, movable bin; 74, brake disc; 75, insertion rod; 76, first spring; 77, socket; 8, installation assembly; 81, mounting seat; 82, clamping groove; 83, spring groove; 84, second spring; 85, positioning block; 86, positioning groove. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model.
[0022] The utility model provides technical schemes: as Figures 1 to 5 As shown in the figure, in the embodiment, a resin 3D printing anti-deformation support structure generator includes a support frame 1, the top of the support frame 1 is provided with a sliding rail 2, the mounting plate 3 is slid on the sliding rail 2, the front end of the mounting plate 3 is provided with a generator 4, the support frame 1 below the generator 4 is provided with a screw rod 5, the workbench 6 is slid on the screw rod 5, the connecting assembly 7 is arranged between the mounting plate 3 and the generator 4, the mounting plate 3 is connected with the generator 4 through the connecting assembly 7, the installation assembly 8 is arranged between the workbench 6 and the screw rod 5, and the screw rod 5 is connected with the workbench 6 through the installation assembly 8.
[0023] In other embodiments, the connecting assembly 7 includes two groups of assembly grooves 71 opened in the mounting plate 3, the assembly block 72 is slid in the assembly groove 71, the front end of the assembly block 72 is provided with the generator 4, the left outer wall of the generator 4 is provided with the movable bin 73, the brake disc 74 is slid in the movable bin 73, the insertion rod 75 is arranged in the middle of the brake disc 74, the first spring 76 is wound on the surface of the insertion rod 75 in the movable bin 73, the left outer wall of the mounting plate 3 is provided with the socket 77, and the first spring 76 is slidably connected with the socket 77.
[0024] The generator 4 drives the clamping groove 82 to slide in the mounting seat 81, the insertion rod 75 is aligned with the socket 77, the brake disc 74 is reset and slides in the movable bin 73 by the restoring force of the first spring 76, the brake disc 74 synchronously drives the first spring 76 to penetrate the socket 77, so that the staff can install the generator 4, the insertion rod 75 is slid out of the socket 77, the generator 4 drives the clamping groove 82 to slide out of the mounting seat 81, so that the staff can disassemble and assemble the generator 4, the staff can maintain and repair the generator 4, and the disassembly difficulty of the generator 4 is reduced.
[0025] In other embodiments, the insertion rod 75 is provided with a handle at the front end, and the handle is designed in a cylindrical shape.
[0026] Through the design, the staff can pull the insertion rod 75, the insertion rod 75 drives the brake disc 74 to slide in the movable bin 73 and extrude the first spring 76, the insertion rod 75 is prevented from slipping during pulling, the insertion rod 75 is prevented from sliding to the original position under the action of the first spring 76, and the repeated pulling is prevented.
[0027] In other embodiments, one end of the first spring 76 is welded to the inner wall of the movable bin 73, and the other end of the first spring 76 is welded to the brake disc 74.
[0028] Through the design, the two ends of the first spring 76 are fixed, the rebound force of the first spring 76 is prevented from driving the first spring 76 to impact the movable bin 73 or the brake disc 74 back and forth, and the noise pollution of the environment is prevented.
[0029] In other embodiments, the mounting assembly 8 comprises a mounting seat 81 arranged on the lead screw 5, the clamping groove 82 is slidably arranged on the mounting seat 81, the workbench 6 is arranged at the top of the clamping groove 82, the spring groove 83 is arranged on the front end surface of the mounting seat 81, the second spring 84 is arranged on the inner wall of the spring groove 83, the other end of the second spring 84 is fixedly connected with the positioning block 85, and the positioning groove 86 is arranged on the inner wall of the clamping groove 82 corresponding to the front end surface of the positioning block 85.
[0030] The positioning block 85 is slid into the spring groove 83 from the positioning groove 86, the positioning block 85 continuously extrudes the second spring 84, the clamping groove 82 is slid out of the mounting seat 81, the new workbench 6 drives the clamping groove 82 to be sleeved on the mounting seat 81, the positioning block 85 is aligned with the positioning groove 86, the positioning block 85 is driven to penetrate the positioning groove 86 by the restoring force of the second spring 84, so that the staff can replace the workbench 6, the staff can install a larger workbench 6 according to the needs, and the material can be supported.
[0031] In other embodiments, the front end surface of the positioning block 85 is provided with anti-skid lines, the positioning block 85 is designed in a rectangular shape, and the positioning groove 86 is designed as a rectangular groove matched with the positioning block 85.
[0032] Through the design, the positioning block 85 can be conveniently pushed into the spring groove 83 by the staff with hands, and the situation that the hands slip during pushing the positioning block 85 is prevented.
[0033] In other embodiments, the second spring 84 is arranged at a middle position on the inner wall of the spring groove 83, and one end of the second spring 84 is welded to the inner end of the positioning block 85.
[0034] Through the design, the elastic force of the second spring 84 can be uniformly output to both sides of the positioning block 85, and the situation that the positioning block 85 is stuck in the spring groove 83 and cannot slide due to excessive force on one side of the positioning block 85 is prevented.
[0035] The utility model provides a resin 3D printing anti -deformation support structure generator, specific working principle is as follows:
[0036] When using, first pull the plug rod 75 in the direction of being away from the generator 4, make the plug rod 75 drive the brake disc 74 slide in the movable bin 73, and slide into the movable bin 73, simultaneously, the brake disc 74 constantly extrudes the first spring 76, then drive the clamping groove 82 in the mounting seat 81 again through the generator 4, and make the plug rod 75 align with the socket 77, then reset the slide of the brake disc 74 in the movable bin 73 through the restoring force of the first spring 76, and make the brake disc 74 drive the first spring 76 through the socket 77 simultaneously, so as to facilitate the staff to install the generator 4, then make the generator 4 drive the clamping groove 82 slide out from the mounting seat 81 again through the plug rod 75 from the socket 77, so as to facilitate the staff to dismount the generator 4.
[0037] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A resin 3D printing anti-deformation support structure generator comprising a support frame (1), characterized in that: The support frame (1) top is equipped with slide rail (2), the slide rail (2) on the sliding mounting plate (3), the mounting plate (3) front end is equipped with generator (4), the support frame (1) below the generator (4) is equipped with screw rod (5), the screw rod (5) on the sliding workbench (6), the mounting plate (3) and generator (4) between being equipped with connecting assembly (7), the mounting plate (3) is connected with generator (4) through connecting assembly (7), the workbench (6) and screw rod (5) between being equipped with installation assembly (8), the screw rod (5) is connected with workbench (6) through installation assembly (8).
2. The resin 3D printing deformation-preventing support structure generator of claim 1, wherein: The connecting assembly (7) includes two groups of assembly slots (71) in the mounting plate (3), the assembly slot (71) in the sliding assembly block (72), the assembly block (72) front end is equipped with generator (4), the generator (4) left side outer wall is equipped with movable bin (73), the movable bin (73) in the sliding brake disc (74), the brake disc (74) middle part is equipped with plug rod (75), the plug rod (75) surface in the movable bin (73) is wound with first spring (76), the mounting plate (3) left side outer wall is equipped with socket (77), the first spring (76) and socket (77) sliding connection.
3. A resin 3D printing anti-deformation support structure generator according to claim 2, characterized in that: The plug rod (75) front end is equipped with handle, and the handle is cylindrical design.
4. The resin 3D printing anti-deformation support structure generator according to claim 2, characterized in that: One end of the first spring (76) is welded on the inner wall of the movable bin (73), and the other end of the first spring (76) is welded on the brake disc (74).
5. The resin 3D printing deformation-preventing support structure generator of claim 1, wherein: The installation assembly (8) includes the mounting seat (81) provided on the screw rod (5), the clamping groove (82) is slid on the mounting seat (81), the clamping groove (82) top is equipped with workbench (6), the mounting seat (81) front end surface is equipped with spring groove (83), the spring groove (83) inner wall is equipped with second spring (84), the other end of the second spring (84) is fixedly connected with the positioning block (85), the positioning groove (86) is formed in the inner wall of the clamping groove (82) corresponding to the front end surface of the positioning block (85).
6. A resin 3D printing anti-deformation support structure generator according to claim 5, characterized in that: The front end surface of the positioning block (85) is provided with anti-skid lines, and the positioning block (85) is designed in a rectangular shape, and the positioning groove (86) is designed as a rectangular groove matched with the positioning block (85).
7. The resin 3D printing anti-deformation support structure generator according to claim 5, characterized in that: The second spring (84) is arranged at the middle position of the inner wall of the spring groove (83), and one end of the second spring (84) is welded on the inner end of the positioning block (85).