Integrated support mold

By designing an integrated support mold lifting component and baffle structure, the automatic ejection and stable separation of the support product after casting were achieved, solving the problem of difficult manual material unloading and improving material unloading efficiency and safety.

CN224115115UActive Publication Date: 2026-04-14ZHUHAI TIANMU PLASTIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

After casting is completed, existing casting molds require manual removal of the upper mold from the lower mold, which increases the workload of workers and the difficulty of material handling, thus affecting material handling efficiency.

Method used

An integrated support mold was designed, which includes a base plate, columns, lower mold, upper mold and lifting components. The support product is automatically ejected by the lifting components, and the friction is increased by the baffle frame and guide rod to achieve automatic material unloading.

Benefits of technology

It improves the portability and efficiency of material cutting, reduces the risk of the bracket product falling during the movement of the upper mold, and simplifies the material cutting operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dies, in particular to an integrated support die. The integrated support mold comprises a bottom plate, stand columns are arranged at the four corners of the top of the bottom plate, a fixedly-connected lower mold body and a movably-connected upper mold body are arranged on the stand columns, and a jacking assembly used for discharging is arranged on the bottom plate; the jacking assembly comprises a supporting frame, jacking air cylinders are arranged on the two sides of the bottom of the supporting frame, the bottom ends of the jacking air cylinders are connected with the bottom plate, a plurality of evenly-distributed rotating motors are arranged on the top of the supporting frame, and fixedly-connected linkage rods are arranged at the output ends of the rotating motors. According to the integrated support mold, due to the arrangement of the jacking assembly, after casting of a support product is completed, the support product can be automatically jacked out from the lower mold through work of the jacking assembly, at the moment, workers directly take the jacked support outwards for discharging, and therefore the discharging portability and the discharging efficiency of the integrated support mold can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of mold technology, and in particular to an integrated bracket mold. Background Technology

[0002] Molds are various shapes and tools used in industrial production to obtain desired products through methods such as injection molding, blow molding, extrusion, die casting, forging, smelting, stamping, and stretching. A casting mold is a pre-made part in the shape of another easily formable material, which is then placed in a sand mold. This creates a cavity in the sand mold that matches the dimensions of the part. A fluid is then poured into this cavity, and after cooling and solidifying, a part with the same shape as the mold is formed.

[0003] After casting, the upper mold needs to be manually removed from the lower mold to extract the cast parts. This not only increases the workload of the workers and the difficulty of material cutting, but also affects the efficiency of material cutting.

[0004] Therefore, it is necessary to provide a new integrated bracket mold to solve the above-mentioned technical problems. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides an integrated bracket mold.

[0006] The integrated support mold provided by this utility model includes: a base plate, with columns at the four corners of the top of the base plate, a fixedly connected lower mold and a movably connected upper mold on the columns, and a lifting component for unloading materials on the base plate;

[0007] The lifting assembly includes a support frame, with lifting cylinders on both sides of the bottom of the support frame. The bottom end of the lifting cylinder is connected to the base plate. The top of the support frame is provided with several evenly distributed rotating motors. The output end of each rotating motor is provided with a fixedly connected linkage rod, and the top end of the linkage rod is provided with a fixedly connected sealing block.

[0008] Preferably, both sides of the top of the lower mold are provided with slidingly connected baffles, both sides of the outer wall of the baffles are provided with electric push rods, and the ends of the two electric push rods on the same side are provided with the same fixedly connected support strip, and the support strip is fixedly connected to the lower mold.

[0009] Preferably, the outer wall of the retaining frame is provided with a fixedly connected guide rod on the side near the support bar, the end of the guide rod passes through the corresponding support bar, and the outer wall of the guide rod abuts against and is slidably connected to the inner wall of the support bar.

[0010] Preferably, the lower mold has a plurality of evenly distributed through holes inside, and the inner wall of the through holes abuts against and slides with the outer wall of the sealing block.

[0011] Preferably, the outer wall of the support frame is provided with symmetrically distributed linkage plates, and the interior of the linkage plates abuts against and slides against the outer wall of the column.

[0012] Preferably, a driving hydraulic rod is mounted on the column, the bottom end of the driving hydraulic rod is fixedly connected to the top of the upper mold, and the inner top of the upper mold is provided with a through casting hole.

[0013] Compared with related technologies, the integrated support mold provided by this utility model has the following advantages:

[0014] 1. By setting up a lifting component, this utility model can automatically push the bracket product out of the lower mold after the casting of the bracket product is completed. At this time, the staff can directly take the lifted bracket out for unloading. Therefore, the unloading portability and unloading efficiency of this device can be improved.

[0015] 2. This utility model can increase the friction between the bracket product and the lower mold, thereby making the separation of the bracket product from the upper mold smoother. At the same time, it can also reduce the phenomenon that the bracket product will fall and be damaged when the upper mold moves upward. Attached Figure Description

[0016] Figure 1 A schematic diagram of a preferred embodiment of the integrated bracket mold provided by this utility model;

[0017] Figure 2 for Figure 1 The diagram shows the structure of the base plate and its components.

[0018] Figure 3 for Figure 1 The diagram shows the structure of the lifting assembly.

[0019] Figure 4 for Figure 1 The diagram shows the structure of the retaining frame and its components.

[0020] The following are the labeling elements in the diagram: 1. Base plate; 11. Column; 12. Drive hydraulic rod; 2. Lower mold; 21. Through hole; 3. Upper mold; 31. Casting hole; 4. Lifting assembly; 41. Support frame; 411. Rotary motor; 42. Linkage rod; 421. Sealing block; 43. Lifting cylinder; 44. Linkage plate; 5. Baffle frame; 51. Electric push rod; 52. Support bar; 53. Guide rod. Detailed Implementation

[0021] 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 merely illustrative of the present utility model and are not intended to limit the present utility model.

[0022] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.

[0023] Please see Figures 1 to 4 The present invention provides an integrated support mold, which includes a base plate 1.

[0024] In the embodiments of this utility model, please refer to Figures 1 to 4 The base plate 1 has four columns 11 at the top corners. The columns 11 are fixedly connected to the lower mold 2 and movably connected to the upper mold 3. The base plate 1 is also equipped with a lifting assembly 4 for unloading. The lifting assembly 4 includes a support frame 41. The bottom of the support frame 41 is equipped with lifting cylinders 43 on both sides. The bottom end of the lifting cylinders 43 is connected to the base plate 1. The top of the support frame 41 is equipped with several evenly distributed rotating motors 411. The output end of the rotating motors 411 is equipped with a fixedly connected linkage rod 42. The top end of the linkage rod 42 is equipped with a fixedly connected sealing block 421. The lower mold 2 has several evenly distributed through holes 21 inside. The inner wall of the through holes 21 abuts against and slides against the outer wall of the sealing block 421.

[0025] It should be noted that when material unloading is required, the rotating motor 411 can be controlled to work. The working rotating motor 411 will drive the sealing block 421 to rotate through the linkage rod 42, so that the top of the sealing block 421 can move and rotate with the bottom of the cast bracket product. Then, the lifting cylinder 43 can be controlled to extend. The extended lifting cylinder 43 will move the sealing block 421 upward through the support frame 41 inside the through hole 21. The upwardly moving sealing block 421 can lift the bottom of the bracket product, so that the bracket product can be removed from the lower mold 2. Later, the staff can directly take out the lifted bracket product. Therefore, the unloading portability and unloading efficiency of this device can be improved.

[0026] In the embodiments of this utility model, please refer to Figures 1 to 4 Both sides of the top of the lower mold 2 are provided with slidingly connected baffle frames 5. Both sides of the outer wall of the baffle frame 5 are provided with electric push rods 51. The ends of the two electric push rods 51 on the same side are provided with the same fixedly connected support strip 52, and the support strip 52 is fixedly connected to the lower mold 2. The side of the outer wall of the baffle frame 5 near the support strip 52 is provided with a fixedly connected guide rod 53. The end of the guide rod 53 passes through the corresponding support strip 52, and the outer wall of the guide rod 53 abuts against and is slidably connected to the inner wall of the support strip 52.

[0027] It should be noted that by setting baffles 5 on both sides of the top of the lower mold 2, a protruding edge can be cast below the baffles 5 during casting. When the upper mold 3 moves upward to separate, the protruding pieces formed below the baffles 5 can increase the friction between the bracket product and the lower mold 2 by abutting against the baffles 5. This makes the separation of the bracket product from the upper mold 3 smoother and also reduces the possibility of the bracket product falling and being damaged when the upper mold 3 moves upward.

[0028] By setting the guide rod 53, when the electric push rod 51 drives the baffle 5 to move, the guide rod 53 will increase the axial torsional force of the electric push rod 51, thereby making the movement of the baffle 51 driven by the electric push rod 51 more stable.

[0029] In the embodiments of this utility model, please refer to Figures 1 to 4 The outer wall of the support frame 41 is provided with symmetrically distributed linkage plates 44, and the interior of the linkage plates 44 abuts against and slides with the outer wall of the column 11.

[0030] It should be noted that: with the setting of the linkage plate 44, when the lifting cylinder 43 drives the support frame 41 to move, the linkage plate 44 will move synchronously with the support frame 41 on the outer wall of the column 11. Thus, the horizontal support strength of the support frame 41 and the lifting cylinder 43 can be increased by the abutment between the linkage plate 44 and the column 11, making the subsequent movement of the support frame 41 more stable.

[0031] In the embodiments of this utility model, please refer to Figures 1 to 4 A driving hydraulic rod 12 is mounted on the column 11. The bottom end of the driving hydraulic rod 12 is fixedly connected to the top of the upper mold 3, and the inner top of the upper mold 3 is provided with a through casting hole 31.

[0032] It should be noted that: by setting up the hydraulic rod 12, the hydraulic rod 12 will drive the upper mold 3 to move during operation, which makes it easier for the operator to control the state of the upper mold 3 and the lower mold 2.

[0033] The working principle of the integrated bracket mold provided by this utility model is as follows:

[0034] When using this device, the operator can inject the raw liquid required for casting into the upper mold 3 through the casting hole 31, so that the raw liquid is formed between the upper mold 3 and the lower mold 2. After the bracket product is formed, the driving hydraulic rod 12 can be controlled to shrink. The shrinking driving hydraulic rod 12 will drive the upper mold 3 to slide upward on the column 11 and separate from the lower mold 2.

[0035] During this process, baffles 5 are set on both sides of the top of the lower mold 2. When casting, the lower part of the baffles 5 can be cast to form a protruding edge. When the upper mold 3 moves upward to separate, the protruding piece formed below the baffles 5 can increase the friction between the bracket product and the lower mold 2 by abutting against the baffles 5. This makes the separation of the bracket product from the upper mold 3 smoother and also reduces the phenomenon of the bracket product falling and being damaged when the upper mold 3 moves upward.

[0036] After the upper mold 3 is moved, the electric push rod 51 can be controlled to retract. The retracted electric push rod 51 will drive the baffle 5 to move outward, thereby separating the baffle 5 from the cast bracket product. At the same time, the rotary motor 411 can be controlled to work. The working rotary motor 411 will drive the sealing block 421 to rotate through the linkage rod 42, thereby allowing the top of the sealing block 421 to move and rotate with the bottom of the cast bracket product.

[0037] Next, the lifting cylinder 43 can be controlled to extend. The extended lifting cylinder 43 will move upward inside the through hole 21 through the support frame 41 with the sealing block 421. The upwardly moving sealing block 421 can lift the bottom of the bracket product, so that the bracket product is removed from the lower mold 2. Later, the staff can directly take out the lifted bracket product. Therefore, the unloading portability and unloading efficiency of this device can be improved.

[0038] The circuits and controls involved in this utility model are all existing technologies, and will not be described in detail here.

[0039] The above are merely embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. An integrated support mold, characterized in that, include: The base plate (1) has four columns (11) at the top corners. The columns (11) are provided with a fixedly connected lower mold (2) and a movably connected upper mold (3). The base plate (1) is provided with a lifting assembly (4) for unloading materials. The lifting assembly (4) includes a support frame (41), and lifting cylinders (43) are provided on both sides of the bottom of the support frame (41). The bottom end of the lifting cylinder (43) is connected to the base plate (1). The top of the support frame (41) is provided with a plurality of evenly distributed rotating motors (411). The output end of the rotating motor (411) is provided with a fixedly connected linkage rod (42), and the top end of the linkage rod (42) is provided with a fixedly connected sealing block (421).

2. The integrated stent-mold of claim 1, wherein, Both sides of the top of the lower mold (2) are provided with slidingly connected baffle frames (5). Both sides of the outer wall of the baffle frame (5) are provided with electric push rods (51). The ends of the two electric push rods (51) on the same side are provided with the same fixedly connected support strip (52), and the support strip (52) is fixedly connected to the lower mold (2).

3. The integrated stent-mold of claim 2, wherein, The outer wall of the baffle (5) is provided with a fixedly connected guide rod (53) on the side near the support bar (52). The end of the guide rod (53) passes through the corresponding support bar (52), and the outer wall of the guide rod (53) abuts against and slides with the inner wall of the support bar (52).

4. The integrated stent mold of claim 1, wherein, The lower mold (2) has several evenly distributed through holes (21) inside, and the inner wall of the through holes (21) abuts against and slides with the outer wall of the sealing block (421).

5. The integrated stent mold of claim 1, wherein, The outer wall of the support frame (41) is provided with symmetrically distributed linkage plates (44), and the interior of the linkage plates (44) abuts against and slides with the outer wall of the column (11).

6. The integrated stent mold of claim 1, wherein, A driving hydraulic rod (12) is mounted on the column (11). The bottom end of the driving hydraulic rod (12) is fixedly connected to the top of the upper mold (3), and the inner top of the upper mold (3) is provided with a connecting casting hole (31).