High-stability bathtub processing demolding auxiliary supporting structure
Through the design of positioning screw and electric push rod in conjunction with the limit plate, stable and synchronous demoulding of the bathtub side mold is achieved, which solves the problem of unstable side mold demoulding in the existing technology and improves demoulding efficiency and stability.
Patent Information
- Application Number
- CN202422561474.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-23
AI Technical Summary
During the existing bathtub demoulding process, the side mold demoulding is unstable, which easily affects the quality of the bathtub.
The positioning screw is used to connect the rotating plate and the connecting plate, and the limit plate is used to limit the position of the rotating plate. The position of the extrusion plate is controlled by an electric push rod to drive the moving plate to slide, thereby realizing the synchronous demoulding of multiple side molds.
Improves the stability and efficiency of bathtub demoulding, ensures that the side mold and bathtub move synchronously, and avoids the instability of manual operation.
Smart Images

Figure CN223302029U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bathtub demoulding, in particular to a bathtub processing demoulding auxiliary support structure with high stability. Background Art
[0002] When demolding an existing bathtub, the side molds on the four sides need to be manually demolded one by one. During demolding, the side molds are likely to contact the bathtub, affecting the quality of the bathtub. Therefore, a highly stable bathtub processing demolding auxiliary support structure is urgently needed to solve the above problems. Utility Model Content
[0003] The purpose of the present invention is to address the defects and shortcomings of the existing technology and provide a highly stable bathtub processing demoulding auxiliary support structure, the technical features of which can solve the above problems.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: it comprises side forms; a plurality of side forms are overlapped and arranged with bolts;
[0005] It also contains:
[0006] A positioning plate, wherein the four corners of the positioning plate are fixed with positioning posts, and the bottom surface of the positioning plate is provided with a plurality of sliding grooves;
[0007] Connecting plates, there are several connecting plates, and the connecting plates are respectively arranged on the outer walls of the side molds;
[0008] There are multiple movable plates, which are slidably arranged in the slide groove by means of an extrusion assembly, and the outer ends of the movable plates are respectively provided with grooves;
[0009] Rotating plates, wherein there are several rotating plates, one end of each of which is screwed into the groove using a rotating rod, and the rotating plates are connected to the corresponding connecting plates using a positioning screw. After the positioning screw passes through the rotating plate, it is screwed onto the connecting plate;
[0010] There are several limit plates, which are arranged on the side walls of the rotating plate, and the limit plates are arranged to cooperate with the positioning plates to interfere with each other.
[0011] By adopting the above design scheme, the position of the rotating plate is restricted by the limiting plate so that the rotating plate and the side mold remain perpendicular, and then the connecting plate and the rotating plate are connected by the positioning screw, thereby improving the stability during demolding, and the movable plate is moved to demold several side molds at the same time.
[0012] Furthermore, the extrusion assembly comprises:
[0013] An electric push rod, which is fixedly arranged below the positioning plate, has an extrusion disk at its output end, and is connected to an external power supply;
[0014] Thrust plates, there are several thrust plates, one end of each of which is screwed to the extrusion plate at equal angles using a hinge seat, and the other end of each thrust plate is screwed to the corresponding movable plate using a hinge seat;
[0015] The limiting blocks are multiple limiting plates, and the multiple limiting blocks are arranged on the side walls of the movable plate, and the limiting blocks are slidably arranged in the sliding groove.
[0016] With the above design, an electric push rod is used to control the position of the extrusion plate, and the extrusion plate cooperates with the thrust plate to drive several movable plates to slide in the slide groove, thereby demoulding the side molds on four sides at the same time.
[0017] Furthermore, a plurality of limiting plates are provided on their bottom surfaces with a resistance plate, which movably abuts against the movable plate. The resistance plate is used to limit the position of the limiting plate to ensure that the rotating plate and the side mold remain level.
[0018] Furthermore, a plurality of rotating plates are respectively provided with pull rods, and the pull rods are used to drive the rotating plates to rotate.
[0019] Furthermore, the positioning plate is provided with a plurality of interference shafts which are screwed together by bearings, and the interference shafts are arranged to cooperate with the limiting plate to interfere with each other, so that the limiting plate can move on the interference shafts.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] The rotating plate and the connecting plate are connected by positioning screws, and the limiting function of the limiting plate is used to improve the stability of demoulding. Then, the moving plate is used to demould several side molds at the same time, thereby improving the efficiency of demoulding.
[0022] An extrusion assembly is set up, and an electric push rod is used to control the position of the extrusion plate. The thrust plate drives the movable plate to slide in the slide groove, and the movable plate drives the corresponding rotating plate to move, ensuring that several side molds are subjected to stress at the same time. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a structural diagram of the present utility model.
[0024] Figure 2 It is a structural diagram of the positioning plate in the utility model.
[0025] Figure 3 It is a structural schematic diagram of the positioning plate and the extrusion component in the utility model.
[0026] Figure 4 It is a structural schematic diagram of the movable plate and the rotating plate in the utility model.
[0027] Description of reference numerals:
[0028] Side mold 1, positioning plate 2, positioning column 3, slide groove 4, connecting plate 5, movable plate 6, extrusion assembly 7, groove 8, rotating plate 9, positioning screw 10, limit plate 11, electric push rod 12, extrusion disk 13, thrust plate 14, limit block 15, resistance plate 16, pull rod 17, resistance shaft 18. DETAILED DESCRIPTION
[0029] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. The preferred embodiments in the description are only used as examples. All other embodiments obtained by those skilled in the art without making any creative work are within the scope of protection of the present invention.
[0030] like Figures 1-4 As shown, this specific embodiment adopts the following technical solution: it includes a side mold 1; a plurality of side molds 1 are overlapped and arranged with each other using bolts;
[0031] It also contains:
[0032] Positioning plate 2, the four corners of the positioning plate 2 are fixed with positioning columns 3, the bottom surface of the positioning plate 2 is provided with several slide grooves 4, the positioning plate 2 plays a positioning role, the bathtub and the template are placed on the positioning plate 2;
[0033] Connecting plates 5, there are several connecting plates 5, which are respectively arranged on the outer wall of the side mold 1, and the connecting plates 5 play a connecting role;
[0034] The movable plate 6 is a plurality of movable plates 6, which are slidably arranged in the chute 4 by means of an extrusion assembly 7, and the outer ends of the movable plates 6 are respectively provided with grooves 8 to facilitate the sliding of the movable plates 6 in the chute 4;
[0035] The rotating plate 9 is a plurality of rotating plates 9, one end of each rotating plate 9 is screwed into the groove 8 by a rotating rod, and the rotating plate 9 is connected to the corresponding connecting plate 5 by a positioning screw 10. After the positioning screw 10 passes through the rotating plate 9, it is screwed onto the connecting plate 5. The rotating plate 9 is connected to the connecting plate 5 by the positioning screw 10, so that the rotating plate 9 drives the corresponding connecting plate 5 to move synchronously at the same time. A pull rod 17 is provided on each of the rotating plates 9, and the pull rod 17 is used to drive the rotating plate 9 to rotate;
[0036] The limiting plates 11 are several in number, and the limiting plates 11 are arranged on the side walls of the rotating plate 9, and the limiting plates 11 are arranged in a conflicting manner with the positioning plates 2. The limiting plates 11 limit the position of the rotating plate 9, so that the rotating plate 9 is perpendicular to the positioning plates 2 and remains horizontal with the corresponding side mold 1. The bottom surfaces of the limiting plates 11 are provided with conflicting plates 16, which are movably in conflict with the movable plate 6. The conflicting plates 16 are used to limit the position of the limiting plates 11 to ensure that the rotating plate 9 and the side mold 1 remain horizontal. The positioning plate 2 is screwed with several conflicting shafts 18 using bearings. The conflicting shafts 18 are arranged in a conflicting manner with the limiting plates 11, so that the limiting plates 11 can move on the conflicting shafts 18.
[0037] The extrusion assembly 7 comprises:
[0038] An electric push rod 12 is fixedly arranged below the positioning plate 2. An extrusion disk 13 is provided at the output end of the electric push rod 12. The electric push rod 12 is connected to an external power supply and serves to adjust the position of the extrusion disk 13.
[0039] Thrust plates 14, there are several thrust plates 14, one end of each of the thrust plates 14 is screwed to the extrusion plate 13 at equal angles using a hinge seat, and the other end of each of the thrust plates 14 is screwed to the corresponding movable plate 6 using a hinge seat. The thrust plates 14 are used to disperse the thrust on the extrusion plate to the movable plate 6, thereby making the several movable plates 6 move synchronously;
[0040] The limit blocks 15 , the limit plates 11 are several, and the limit blocks 15 are arranged on the side walls of the movable plate 6 . The limit blocks 15 are slidably arranged in the chute 4 . The limit blocks 15 limit the position of the movable plate 6 so that the movable plate 6 can only slide along the direction of the chute 4 .
[0041] When using the present utility model, the operator first places the bathtub and the template on the positioning plate 2, and then rotates the rotating plate 9 so that the limit plate 11 contacts the interference shaft 18. At this time, the rotating plate 9 and the corresponding side mold 1 are in a vertical state. Then, the positioning screw 10 is used to connect the rotating plate 9 with the connecting plate 5, and then the electric push rod 12 is started. The electric push rod 12 drives the extrusion plate 13 to move, and the extrusion plate 13 drives the thrust plate 14 to rotate. The thrust of the electric push rod 12 is dispersed to several movable plates 6 through the thrust plate 14. The movable plate 6 cooperates with the limit block 15 to move along the direction of the slide groove 4. The movable plate 6 drives the rotating plate 9 to move in the direction away from the positioning plate 2, and the rotating plate 9 drives the side mold 1 to move, and several side molds 1 are demoulded at the same time. When the rotating plate 9 drives the side mold 1 to move to the appropriate position, the operator drives the rotating plate 9 to rotate through the pull rod 17, so that the side mold 1 is flipped away from the bathtub, which is convenient for taking out the bathtub.
[0042] Compared with the prior art, the beneficial effects of the present invention are:
[0043] 1. Use the positioning screw 10 to connect the rotating plate 9 with the connecting plate 5, cooperate with the limiting function of the limiting plate 11 to improve the stability of demoulding, and then use the moving plate 6 to demould several side molds 1 at the same time to improve the efficiency of demoulding;
[0044] 2. Set up the extrusion assembly 7, use the electric push rod 12 to control the position of the extrusion plate 13, cooperate with the thrust plate 14 to drive the movable plate 6 to slide in the slide groove 4, and the movable plate 6 drives the corresponding rotating plate 9 to move to ensure that several side molds 1 are subjected to stress at the same time.
[0045] For those skilled in the art, they can modify the technical solutions described in the aforementioned embodiments and make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present utility model should be included in the scope of protection of the present utility model.
Claims
1. A high-stability bathtub processing demoulding auxiliary support structure, comprising a side mold (1); a plurality of side molds (1) are overlapped and arranged with bolts; It is characterized by: It also contains: A positioning plate (2), wherein positioning columns (3) are fixedly provided at the four corners of the positioning plate (2), and a plurality of sliding grooves (4) are provided on the bottom surface of the positioning plate (2); Connecting plates (5), there are multiple connecting plates (5), and the multiple connecting plates (5) are respectively arranged on the outer wall of the side mold (1); A movable plate (6), wherein the movable plates (6) are multiple, and the multiple movable plates (6) are slidably arranged in the slide groove (4) by using an extrusion component (7), and the outer ends of the movable plates (6) are respectively provided with grooves (8); A rotating plate (9), wherein the rotating plates (9) are in plurality, one end of each of the rotating plates (9) is screwed into the groove (8) by a rotating rod, and the rotating plate (9) is connected to the corresponding connecting plate (5) by a positioning screw (10). After the positioning screw (10) passes through the rotating plate (9), it is screwed onto the connecting plate (5); The limiting plates (11) are multiple, and the multiple limiting plates (11) are arranged on the side wall of the rotating plate (9), and the limiting plates (11) are arranged to cooperate with the positioning plate (2) to interfere with each other.
2. A high-stability bathtub processing demoulding auxiliary support structure according to claim 1, characterized in that: The extrusion assembly (7) comprises: An electric push rod (12), wherein the electric push rod (12) is fixedly arranged below the positioning plate (2), an output end of the electric push rod (12) is provided with an extrusion disk (13), and the electric push rod (12) is connected to an external power supply; Thrust plates (14), wherein there are several thrust plates (14), one end of each of the thrust plates (14) is screwed to the extrusion disk (13) at equal angles using a hinge seat, and the other end of the thrust plate (14) is screwed to the corresponding movable plate (6) using a hinge seat; The limiting blocks (15) are multiple limiting plates (11), and the multiple limiting blocks (15) are arranged on the side walls of the movable plate (6). The limiting blocks (15) are slidably arranged in the sliding groove (4).
3. The high-stability bathtub processing demoulding auxiliary support structure according to claim 1, characterized in that: A resisting plate (16) is provided on the bottom surface of the plurality of limiting plates (11), and the resisting plate (16) movably resists the movable plate (6).
4. The high-stability bathtub processing demoulding auxiliary support structure according to claim 1, characterized in that: Pull rods (17) are respectively provided on the plurality of rotating plates (9).
5. The high-stability bathtub processing demoulding auxiliary support structure according to claim 1, characterized in that: The positioning plate (2) is provided with a plurality of abutment shafts (18) which are screwed together by bearings, and the abutment shafts (18) are arranged to abut against the limiting plate (11).