Large sliding block built-in pitched roof demolding mechanism for injection mold of automobile center console storage box
By designing a large slider with a built-in inclined ejector mechanism, the problem of difficult demolding during the injection molding of automotive center console storage boxes was solved, achieving efficient and automated mold conversion and shaping closure.
Patent Information
- Application Number
- CN202423113001.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Traditional injection molds are difficult to demold and have low conversion efficiency when processing automotive center console storage boxes.
A large slider with built-in inclined ejector demolding mechanism for injection mold of automotive center console storage box was designed, including a support mechanism, a control mechanism and a shaping mechanism. The slider and inclined ejector structure are driven by a drive motor to realize the automatic clamping and closing of the mold, thereby improving demolding efficiency.
It achieves efficient and automated demolding of the injection molding of the car center console storage box, improving the mold conversion efficiency and molding closure efficiency.
Smart Images

Figure CN223618170U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mold processing, specifically to a large slider built-in inclined ejector demolding mechanism for injection molds of automotive center console storage boxes. Background Technology
[0002] Injection molding, also known as injection molding, is a molding method that combines injection and molding. The advantages of injection molding include high production speed and efficiency, automated operation, a wide variety of designs and shapes (from simple to complex), and sizes ranging from large to small. It also produces dimensionally accurate products, facilitates product updates and replacements, and can create complex shapes. Injection molding is suitable for mass production and molding processes involving complex shapes.
[0003] A search revealed an application with application number CN201921717807.1 for an easily heat-dissipating injection mold. The application describes an easily heat-dissipating injection mold, comprising a top plate, a bottom plate, a lower mold, and an upper mold, as well as a base. Two opposing side plates are mounted on the top surface of the base. The injection mold is mounted on the top surface of the base via the bottom plate and is located inside the two side plates. Cooling fans are mounted on opposite sides of the two side plates. Inlet and outlet pipes are mounted on both sides of the upper mold, and cooling channels communicating with both pipes are provided within the upper mold. This injection mold, through its cooling fans and cooling channels, can simultaneously cool the mold from both the outside and inside, resulting in high cooling efficiency and high molding efficiency. When the upper and lower molds are closed, a manual auxiliary stabilizing component further stabilizes the mold, preventing vibration during injection, improving stability, and enhancing the quality of the molded parts.
[0004] Traditional injection molds are not convenient for injection molding of car consoles. According to the inspection of injection molds, in terms of the injection molding of car consoles, demolding is not convenient, and the efficiency of subsequent injection mold conversion is low. Utility Model Content
[0005] The purpose of this invention is to provide a large slider with built-in inclined ejector mechanism for injection molds of automotive center console storage boxes, in order to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a large slider built-in inclined ejector mechanism for injection molds of automotive center console storage boxes, including a support mechanism. The support mechanism includes a support base plate, a heat-conducting box for heat conduction installed on the side wall of the support base plate, a support block for support in the middle of the heat-conducting box, an adjusting mold installed at the top center of the support block, adjusting rods at the four corners of the bottom of the adjusting mold, the bottom of the adjusting rods supporting the surface of the support base plate, an upper push block installed at the top of the support block, a sliding protrusion at the top center of the upper push block, drive motors installed on both sides of the top of the sliding protrusion, a sliding frame installed at the top of the drive motor, and push support rods sequentially provided on the surface of the sliding frame.
[0007] The end of the push rod is provided with a first concave bracket, and the top center of the first concave bracket is provided with a control box body;
[0008] It also includes the control mechanism built into the control box body;
[0009] The control mechanism includes a large slider bracket, and the surface of the large slider bracket is provided with a second concave bracket. The top of the second concave bracket is provided with two independent third adjustment slots on both sides.
[0010] A concave adjustment groove is provided on one side of the large slider bracket, and a second small slider is slidably provided on the surface of the concave adjustment groove. The second small slider is slidably connected to the control box body.
[0011] The surface of the control box body is also equipped with an I-shaped inclined top structure. The top of the I-shaped inclined top structure is equipped with an inverted buckle structure. The side wall of the inverted buckle structure is equipped with a second assembly block. The second assembly block is snapped into the two sides of the top surface of the control box body.
[0012] As a preferred embodiment of this utility model: a shaping mechanism is provided at both ends of the control box body;
[0013] The top center of the shaping mechanism is provided with an upper mold for assembly. The surface of the upper mold is provided with a shaping block. The four sides of the shaping block are provided with a first small slider. The four corners of the first small slider are provided with connecting rods. The center is provided with wedge blocks in sequence.
[0014] As a preferred embodiment of the present invention: the end of the wedge block is provided with a trapezoidal block, the end of the trapezoidal block is provided with a push bracket for guiding, the top center of the push bracket is provided with a concave groove, the center of the concave groove is provided with a support frame, the end of the frame is provided with an adjusting rod for coordination, and the side wall of the adjusting rod is equipped with an injection guide rod for injection molding.
[0015] As a preferred embodiment of this utility model: an upper shaping bracket for shaping is installed at the top of the injection guide rod, an upper shaping mold is installed at the middle of the top of the upper shaping bracket, injection openings are sequentially provided on the side wall of the upper shaping mold, a first adjustment slot is provided at the top of the injection opening, a first assembly block for clamping is installed at both ends of the first adjustment slot, an adjustment block for fitting is provided at the end of the first assembly block, an assembly structure for assembly is provided at the end of the adjustment block, and a plurality of large sliders for controlling the sliding of the housing are provided on the surface of the assembly structure.
[0016] As a preferred embodiment of this utility model: the side of the large slider corresponds to the position of the corresponding first small slider, and the middle of the back of the upper shaping bracket is provided with an adjustment opening for linkage, and the bottom end of the adjustment opening corresponds to the position of one end of the upper shaping mold.
[0017] As a preferred embodiment of this utility model, a plurality of second adjustment slots are sequentially opened on the surface of the supporting base plate.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] 1. The supporting base plate and the heat-conducting box are clamped to one end of the top adjustment mold. The end of the bonding block moves back and forth with the top concave bracket and the sliding frame at both ends. After the drive motor is powered on, the surface position of the concave bracket is controlled by adjusting one end of the sliding frame to achieve clamping, thereby achieving automatic feeding and injection molding and improving the injection molding efficiency of the car center console storage box.
[0020] 2. The control box body and one end of the sliding frame are used to guide the forward and backward movement, and the sliding protrusion is used to achieve the up and down closing. The control box body and the corresponding upper mold are used to move up and down. The shaping block and the connecting rod guide the mold to achieve mold closing and shaping, which improves the closing efficiency of both. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the control box body structure of this utility model;
[0022] Figure 2 This is a schematic diagram of the control mechanism structure of this utility model;
[0023] Figure 3 This is a schematic diagram of the large slider support structure of this utility model.
[0024] Figure 4 This is a schematic diagram of the overall structure of this utility model;
[0025] Figure 5 This is a schematic diagram of the adjusting block structure of this utility model;
[0026] Figure 6 This is an anatomical diagram of the adjusting linkage structure of this utility model;
[0027] Figure 7 This is a schematic diagram of the upper mold structure of this utility model;
[0028] Figure 8 This is a schematic diagram of the shaping mechanism of this utility model.
[0029] In the diagram: 1. Support mechanism; 11. Support base plate; 111. Second adjustment slot; 12. Heat conduction box; 13. Adhesive block; 14. Adjustment mold; 15. Adjustment rod; 16. Top block; 17. Sliding protrusion; 18. Drive motor; 19. Sliding frame; 191. Push support rod; 192. First concave bracket; 193. Control box body;
[0030] 2. Shaping mechanism; 21. Upper mold; 22. Shaping block; 23. First small slider; 24. Connecting rod; 25. Wedge block; 26. Trapezoidal block; 27. Pushing support; 28. Concave slot; 29. Frame;
[0031] 31. Adjusting connecting rod; 32. Injection molding guide rod; 33. Upper molding bracket; 34. Upper molding mold; 341. Adjusting opening; 35. Injection molding opening; 36. First adjusting slot; 38. First assembly block; 39. Adjusting block; 391. Assembly structure; 392. Large slider;
[0032] 4. Control mechanism; 41. Large slider bracket; 42. Second concave bracket; 43. Third adjustment slot; 44. Concave adjustment slot; 45. Second small slider; 46. I-beam inclined top structure; 47. Inverted structure; 48. Second assembly block. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Please see Figure 1 - Figure 8This utility model provides a technical solution: a large slider with built-in inclined ejector mechanism for injection mold of automotive center console storage box, including a support mechanism 1, the support mechanism 1 including a support base plate 11, a heat conduction box 12 for heat conduction installed on the side wall of the support base plate 11, a bonding block 13 for support in the middle of the heat conduction box 12, an adjustment mold 14 installed at the top center of the bonding block 13, an adjustment rod 15 at the four corners of the bottom of the adjustment mold 14, the bottom of the adjustment rod 15 being supported by the surface of the support base plate 11, an upper push block 16 installed at the top of the bonding block 13, a sliding protrusion 17 at the top center of the upper push block 16, a drive motor 18 installed on both sides of the top of the sliding protrusion 17, a sliding frame 19 installed at the top of the drive motor 18, and push support rods 191 sequentially provided on the surface of the sliding frame 19.
[0035] In this embodiment: the end of the push support rod 191 is provided with a first concave bracket 192, and the top center of the first concave bracket 192 is provided with a control box body 193;
[0036] The end of the push rod 191 is provided with a first concave bracket 192, and the top center of the first concave bracket 192 is provided with a control box body 193;
[0037] It also includes a control mechanism 4 built into the control box body 193;
[0038] The control mechanism 4 includes a large slider bracket 41, and a second concave bracket 42 is provided on the surface side of the large slider bracket 41. Two independent third adjustment slots 43 are provided on the top two sides of the second concave bracket 42 respectively.
[0039] A concave adjustment groove 44 is provided on one side of the large slider bracket 41. A second small slider 45 is slidably provided on the surface of the concave adjustment groove 44. The second small slider 45 is slidably connected to the control box body 193.
[0040] The surface of the control box body 193 is also equipped with an I-shaped inclined top structure 46. The top of the I-shaped inclined top structure 46 is equipped with an inverted buckle structure 47. The side wall of the inverted buckle structure 47 is equipped with a second assembly block 48. The second assembly block 48 is snapped into the two sides of the top surface of the control box body 193.
[0041] The control box body 193 is provided with shaping mechanisms 2 at both ends;
[0042] The top center of the shaping mechanism 2 is provided with an upper mold 21 for assembly. The surface of the upper mold 21 is provided with a shaping block 22. The four sides of the shaping block 22 are provided with a first small slider 23. The four corners of the first small slider 23 are provided with connecting rods 24, and the center is provided with wedge blocks 25 in sequence.
[0043] The first small slider 23 and the connecting rod 24 are mainly used to ensure the positioning and fixation of the upper and lower molds. When the first small slider 23 is pressed down, it completes the auxiliary closing of the mold to avoid dislocation.
[0044] In this embodiment: the end of the wedge block 25 is provided with a trapezoidal block 26, the end of the trapezoidal block 26 is provided with a pusher bracket 27 for guiding, the top center of the pusher bracket 27 is provided with a concave slot 28, the center of the concave slot 28 is provided with a support frame 29, the end of the frame 29 is provided with an adjusting rod 31 for coordination, and the side wall of the adjusting rod 31 is equipped with an injection guide rod 32 for injection molding.
[0045] The adjustable connecting rod 31 and injection guide rod 32 are used to adjust the distance between the upper and lower molds, and the injection guide rod 32 guides the four corners of the mold for positioning and connection.
[0046] In this embodiment: an upper molding bracket 33 for molding is installed at the top of the injection guide rod 32. An upper molding mold 34 is installed at the middle of the top of the upper molding bracket 33. The side wall of the upper molding mold 34 is provided with injection openings 35 in sequence. A first adjustment slot 36 is provided at the top of the injection opening 35. A first assembly block 38 for clamping is installed at both ends of the first adjustment slot 36. An adjustment block 39 for fitting is provided at the end of the first assembly block 38. An assembly structure 391 for assembly is provided at the end of the adjustment block 39. The surface of the assembly structure 391 is provided with a plurality of large sliders 392 for controlling the sliding of the housing.
[0047] The upper molding mold 34 and the injection opening 35 are clamped together to complete the mold fit and inject the liquid required for the car's central control. The assembly structure 391 and one end of the large slider 392 are used to achieve corresponding assembly.
[0048] In this embodiment: the side of the large slider 392 corresponds to the position of the corresponding first small slider 23, and the upper shaping bracket 33 has an adjustment opening 341 for linkage in the middle of the back side, and the bottom end of the adjustment opening 341 corresponds to the position of one end of the upper shaping mold 34.
[0049] The adjustment opening 341 is mainly used so that the large slider 392 and the first small slider 23 slide along the surface of the adjustment opening 341 to achieve the buckle being aligned.
[0050] In this embodiment, a plurality of second adjustment slots 111 are sequentially formed on the surface of the supporting base plate 11.
[0051] Assembly is carried out at one end of the slot of the second adjustment slot 111.
[0052] Step 1: Assembling the mold;
[0053] At this time, the personnel adapt to the closure between the support base plate 11 and the sliding protrusion 17, assemble the structure according to the rod structure of the control box body 193 and the push support rod 191, assemble according to the sliding protrusion 17, clamp according to the top block 16 and the corresponding sliding protrusion 17, assemble according to the control box body 193, and place it with the assistance of multiple sliding frames 19, and inject the corresponding materials.
[0054] Step 2: Place the mold 14 and the bottom support plate 11 according to their lifting and placement.
[0055] First, by coordinating the surface state of the support base plate 11 with the second adjustment slot 111, one end of the connecting rod 24 at the top was clamped.
[0056] Finally, the upper mold 21 is closed by using one end of the shaping block 22. The top of the control box body 193 and the surface of the first concave bracket 192 correspond to the upper shaping mold 34 at the top to form a designated cavity. The device is closed by the first adjusting slot 36 and one end of the adjusting block 39 with the surface of the upper shaping mold 34. The control box body 193 and the large slider 392 are aligned and molded according to the surface of the large slider 392. The shaping is achieved according to the slot structure of the first assembly block 38 and the first adjusting slot 36. The upper shaping mold 34 is assembled by one end. The upper shaping bracket 33 provides support and closes the mold. When demolding, the first small slider 23 has an I-shaped inclined top. The slider moves backward and the inclined top moves downward to disengage from the undercut.
[0057] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0058] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A large slider built-in inclined ejector demolding mechanism for injection molds of automotive center console storage boxes, including a support mechanism (1), characterized in that, The support mechanism (1) includes a support base plate (11). A heat conduction box (12) for heat conduction is installed on the side wall of the support base plate (11). A bonding block (13) for support is provided in the middle of the heat conduction box (12). An adjustment mold (14) is installed in the middle of the top of the bonding block (13). An adjustment rod (15) is provided at the four corners of the bottom of the adjustment mold (14). The bottom of the adjustment rod (15) is supported on the surface of the support base plate (11). An upper top block (16) is installed at the top of the bonding block (13). A sliding protrusion (17) is provided in the middle of the top of the upper top block (16). A drive motor (18) is installed on both sides of the top of the sliding protrusion (17). A sliding frame (19) is installed at the top of the drive motor (18). Pushing support rods (191) are provided on the surface of the sliding frame (19) in sequence. The end of the pusher (191) is provided with a first concave bracket (192), and the top center of the first concave bracket (192) is provided with a control box body (193). It also includes a control mechanism (4) built into the control box body (193); The control mechanism (4) includes a large slider bracket (41), and a second concave bracket (42) is provided on the surface side of the large slider bracket (41). Two independent third adjustment slots (43) are provided on the top two sides of the second concave bracket (42). A concave adjustment groove (44) is provided on one side of the large slider bracket (41). A second small slider (45) is slidably provided on the surface of the concave adjustment groove (44). The second small slider (45) is slidably connected to the control box body (193). The surface of the control box body (193) is also equipped with an I-shaped inclined top structure (46), the top of the I-shaped inclined top structure (46) is equipped with an inverted buckle structure (47), and the side wall of the inverted buckle structure (47) is equipped with a second assembly block (48). The second assembly block (48) is snapped into the top surface of the control box body (193) on both sides.
2. The large slider built-in inclined ejector demolding mechanism for the injection mold of the automotive center console storage box according to claim 1, characterized in that: The control box body (193) is provided with shaping mechanisms (2) at both ends; The top center of the shaping mechanism (2) is provided with an upper mold (21) for assembly. The surface of the upper mold (21) is provided with a shaping block (22). The four sides of the shaping block (22) are provided with a first small slider (23). The four corners of the first small slider (23) are provided with connecting rods (24). The center is provided with wedge blocks (25).
3. The large slider built-in inclined ejector demolding mechanism for the injection mold of the automotive center console storage box according to claim 2, characterized in that: The end of the wedge block (25) is provided with a trapezoidal block (26), the end of the trapezoidal block (26) is provided with a pusher bracket (27) for guiding, the top center of the pusher bracket (27) is provided with a concave slot (28), the middle of the concave slot (28) is provided with a support frame (29), the end of the frame (29) is provided with an adjusting rod (31) for coordination, and the side wall of the adjusting rod (31) is equipped with an injection guide rod (32) for injection molding.
4. The large slider built-in inclined ejector demolding mechanism for the injection mold of the automotive center console storage box according to claim 3, characterized in that: The top of the injection guide rod (32) is equipped with an upper molding bracket (33) for molding. The upper molding mold (34) is installed in the middle of the top of the upper molding bracket (33). The side wall of the upper molding mold (34) is provided with injection openings (35). The top of the injection opening (35) is provided with a first adjustment slot (36). The two ends of the first adjustment slot (36) are respectively equipped with a first assembly block (38) for clamping. The end of the first assembly block (38) is provided with an adjustment block (39) for fitting. The end of the adjustment block (39) is provided with an assembly structure (391) for assembly. The surface of the assembly structure (391) is provided with a number of large sliders (392) for controlling the sliding of the box.
5. The large slider built-in inclined ejector demolding mechanism for the injection mold of the automotive center console storage box according to claim 4, characterized in that: The side of the large slider (392) corresponds to the position of the corresponding first small slider (23). An adjustment opening (341) for linkage is provided in the middle of the back of the upper shaping bracket (33). The bottom end of the adjustment opening (341) corresponds to the position of one end of the upper shaping mold (34).
6. The large slider built-in inclined ejector demolding mechanism for the injection mold of the automotive center console storage box according to claim 1, characterized in that: The surface of the supporting base plate (11) is provided with a number of second adjustment slots (111).
Citation Information
Patent Citations
Injection mold easy to dissipate heat
CN210758943U