Movable hexagonal hollow brick form stripping cart

By designing a mobile hexagonal hollow brick demolding trolley, which utilizes a material guiding mechanism and a hammering structure combined with its own gravity to achieve demolding, the problem that existing mechanical vibration demolding equipment is not suitable for small-scale processing environments is solved, and a highly efficient and labor-saving demolding effect is achieved.

CN224255673UActive Publication Date: 2026-05-19CHAOHU HUALIN NEW BUILDING MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHAOHU HUALIN NEW BUILDING MATERIALS CO LTD
Filing Date
2025-06-03
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing mechanical vibration demolding equipment is not suitable for small-scale and highly flexible processing environments. It is noisy, the vibration may cause bricks to crack, and the large structure makes it unsuitable for highly flexible processing environments.

Method used

A mobile hexagonal hollow brick demolding trolley was designed, comprising a trolley body, a material guiding mechanism, and a demolding mechanism. The material guiding mechanism guides the mold to a designated position, and the demolding is achieved by using a hammering structure combined with its own gravity. The structure is simple, labor-saving, and adaptable to highly flexible processing environments.

Benefits of technology

It enables efficient and labor-saving demolding operations in small-scale processing environments, adapts to highly flexible processing needs, and avoids brick damage and noise pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a movable hexagonal hollow brick form stripping cart. The movable type hexagonal hollow brick form removal cart comprises a cart body, a material guiding mechanism and a form removal mechanism. The cart body comprises a supporting bottom and a handrail installed on the side edge of the supporting bottom. The material guiding mechanism comprises a movable plate and a supporting piece. The end, deviating from the handrail, of the movable plate is longitudinally and rotationally connected with the supporting bottom, and the supporting piece is installed at the supporting bottom close to the handrail. The mold removing mechanism comprises a supporting frame and a beating structure. The supporting frame is installed on the handrail and located above the supporting bottom, the bottom of the supporting frame is provided with a first opening allowing a hexagonal hollow brick to longitudinally penetrate through, and the side portion of the supporting frame is provided with a second opening allowing a mold to transversely penetrate through. The beating structure is installed on the handrail, one movable end of the beating structure is located on the outer side of the handrail, and the other movable end is located above the middle section of the supporting frame. According to the utility model, the combination of trolley pushing and demolding is realized, the beating operation is more labor-saving, the small-scale processing requirement is met, and the trolley can adapt to the processing environment with higher flexibility.
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Description

Technical Field

[0001] This utility model relates to the technical field of hexagonal hollow bricks, specifically a mobile hexagonal hollow brick demolding cart. Background Technology

[0002] Hexagonal hollow bricks possess advantages such as lightweight, heat insulation, sound insulation, high strength, and environmental friendliness, making them widely used in the construction and engineering fields. Demolding is one step in the production process of hexagonal hollow bricks, and existing demolding methods include manual demolding, mechanical vibration demolding, and mechanical flipping demolding. Manual demolding is inefficient and labor-intensive. Mechanical flipping demolding achieves demolding through gravity, which is simpler than manual demolding, but the flipping operation is complex. Mechanical vibration demolding is widely used due to its high efficiency and suitability for large-scale production. However, most existing mechanical vibration demolding machines are continuous operation machines, which are not only noisy, but improper vibration operation may also cause brick cracking or damage; in addition, the machines are bulky and unsuitable for small-scale and highly flexible processing environments. Utility Model Content

[0003] Therefore, it is necessary to provide a mobile hexagonal hollow brick demolding trolley to address the problem that existing mechanical vibration demolding is not suitable for small-scale and highly flexible processing environments.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A mobile hexagonal hollow brick demolding trolley includes a trolley body, a material guiding mechanism, and a demolding mechanism.

[0006] The main body of the cart includes a support base and a handle installed on the side edge of the support base;

[0007] The material guiding mechanism includes a movable plate and a support member; the end of the movable plate away from the handrail is longitudinally rotatably connected to the bottom of the support, and the support member is installed on the bottom of the support near the handrail to support the movable plate and the bottom of the support to be horizontally flush.

[0008] The demolding mechanism includes a support frame and a striking structure. The support frame is installed on the handrail and above the bottom of the support. The bottom of the support frame has an opening 1 for the longitudinal passage of the hexagonal hollow brick, and the side has an opening 2 for the transverse passage of the mold. The striking structure is installed on the handrail. One movable end of the striking structure is located outside the handrail, and the other movable end is located above the middle section of the support frame. This end moves longitudinally downward to strike the mold located on the support frame.

[0009] Furthermore, the support frame includes L-shaped side plates, U-shaped end plates, and a protective net; the U-shaped end plates are detachably installed on the handrail, with their openings facing downwards to form the second opening; the ends of two symmetrical L-shaped side plates are connected to the U-shaped end plates, and the gap between the two L-shaped side plates forms the first opening; the protective net is installed longitudinally at the bottom of the L-shaped side plates to guide the hexagonal hollow bricks that run through the first opening to the movable plate.

[0010] Furthermore, the bottom of the L-shaped side panel facing away from the handrail contacts the top of the auxiliary support rod, and the bottom end of the auxiliary support rod is fixedly connected to the bottom of the support.

[0011] Furthermore, the auxiliary support rod is a telescopic rod that moves longitudinally.

[0012] Furthermore, the striking structure includes a fixed pulley, a connecting rope, and a striking hammer; the fixed pulley is movably mounted on the handrail, and the connecting rope is wound around the fixed pulley, with one end of the connecting rope located on the outside of the handrail and the other end connected to the striking hammer.

[0013] Furthermore, the handrail is equipped with a clamping structure for holding the connecting rope.

[0014] Furthermore, the striking structure includes a support block and a rotating rod; two support blocks are arranged opposite each other and installed on the handrail, the middle protrusion of the rotating rod is connected to the pivot of the support block, one end of the rotating rod located above the middle section of the support frame has a protruding block of the striking mold at its bottom, and the other end extends to the outside of the handrail.

[0015] Furthermore, the support block and the handrail are detachably connected.

[0016] Furthermore, the support includes a support column capable of longitudinal telescopic movement; the support column is fixed to the support bottom of the trolley body and is close to the handrail, supporting the end of the movable plate to maintain a horizontal state in its initial state.

[0017] Furthermore, the support component includes a telescopic cylinder, the fixed end of which is fixedly connected to the bottom support of the trolley body, and the movable end facing upward and in contact with the bottom of the movable plate near the handrail.

[0018] Compared with the prior art, the beneficial effects of this utility model include:

[0019] 1. This utility model, through the cooperation of the material guiding mechanism and the mold dismantling mechanism, can guide the mold to the designated position and knock it out. The structure is simple and realizes the combination of trolley and demolding. The knocking structure, combined with its own gravity, makes the knocking operation more labor-saving and meets the needs of small-scale processing. Its mobility can adapt to a highly flexible processing environment.

[0020] 2. The material guiding mechanism of this utility model can guide the hexagonal hollow bricks in the opposite direction to the empty mold after the hexagonal hollow bricks are demolded, so that the two are located in two directions of the trolley body, which facilitates subsequent operations. Attached Figure Description

[0021] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0022] Figure 1 A perspective view of a mobile hexagonal hollow brick demolding trolley as described in Embodiment 1 of this utility model;

[0023] Figure 2 For based on Figure 1 A three-dimensional view of a mobile hexagonal hollow brick demolding trolley from another perspective;

[0024] Figure 3 For based on Figure 1 Side view of a mobile hexagonal hollow brick demolding trolley;

[0025] Figure 4 This is a schematic diagram of the mobile hexagonal hollow brick demolding trolley described in Example 2.

[0026] The diagram shows the following labels: 1. Cart body; 2. Material guiding mechanism; 21. Movable plate; 22. Support component; 3. Demolding mechanism; 31. Support frame; 311. L-shaped side plate; 312. C-shaped end plate; 313. Protective net; 32. Hammering structure; 321. Fixed pulley; 322. Connecting rope; 323. Hammering hammer; 324. Support block; 325. Rotating rod; 4. Auxiliary support rod; 5. Clamping structure. Detailed Implementation

[0027] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0028] Example 1

[0029] Please see Figure 1This embodiment introduces a mobile hexagonal hollow brick demolding trolley, mainly composed of a trolley body 1, a material guiding mechanism 2, and a demolding mechanism 3. The trolley body 1 includes a supporting bottom and a handrail installed on the side edge of the supporting bottom. The four corners of the supporting bottom have rollers for moving the trolley body 1. The rollers can be universal wheels with anti-braking function. Since the planar shape of the supporting bottom is approximately rectangular, it has a long side and a wide side, and the handrail is installed on one of the wide side edges.

[0030] The material guiding mechanism 2 mainly consists of a movable plate 21 and a support member 22. A corresponding protrusion is located at the corner of the other wide side of the support bottom. The gap between the two protrusions is greater than the width of the movable plate 21, so one end of the movable plate 21 is located between the two protrusions and the two are connected by a pivot. The movable plate 21 rotates around the pivot as its central axis. To maintain the initial horizontal state of the movable plate 21, the support member 22 is located at the bottom of the other end of the movable plate 21, and the support member 22 is in contact with the movable plate 21. The support member 22 uses a telescopic cylinder. The fixed end of the telescopic cylinder is fixedly connected to the bottom of the support of the trolley body 1, and the movable end faces upward and contacts the bottom of the movable plate 21 near the handrail. To better push the movable plate 21, the movable end of the telescopic cylinder can be connected to an arc-shaped block or a spherical block, with the arc surface contacting the movable plate 21. In the initial state, the telescopic cylinder supports the movable plate 21, keeping it level with the bottom of the support. Extending the telescopic cylinder upward allows the movable plate 21 to tilt, tilting downward from the side near the handrail to the other side.

[0031] like Figure 1 and Figure 2 As shown, the demolding mechanism 3 mainly consists of a support frame 31 and a hammering structure 32. The support frame 31 includes an L-shaped side plate 311, a U-shaped end plate 312, and a protective net 313. There are two L-shaped side plates 311, arranged symmetrically, with one end connected to the U-shaped end plate 312. It should be noted that since the gap between the two L-shaped side plates 311 is smaller than the length of the U-shaped end plate 312, the gap between the L-shaped side plates 311 forms an opening one, which allows the hexagonal hollow brick to pass longitudinally through the support frame 31 and fall onto the movable plate 21. The U-shaped end plate 312 has a downward-facing opening forming an opening two, which allows the mold to pass horizontally through the support frame 31 and fall outside the trolley body 1. The U-shaped end plate 312 can be detachably installed on the handrail using bolts, clips, or other parts. The connection position between the U-shaped end plate 312 and the handrail can be adjusted according to actual needs to achieve the purpose of adjusting the height. The protective net 313 is installed at the bottom of the L-shaped side plate 311. The length of the protective net 313 is almost the same as that of the L-shaped side plate 311. There is a certain distance between the bottom of the protective net 313 and the movable plate 21 to prevent the protective net 313 from affecting the rotation of the movable plate 21. If the distance between the bottom of the protective net 313 and the movable plate 21 is small, the position of the U-shaped end plate 312 installed on the handrail can be adjusted.

[0032] Because the L-shaped side panel 311 has a certain length, in order to maintain the connection stability of the L-shaped side panel 311, an auxiliary support rod 4 is installed at the top of the side of the support base away from the handrail, and the top of the auxiliary support rod 4 contacts the L-shaped side panel 311. In order to facilitate the height adjustment of the support frame 31, the auxiliary support rod 4 can be a telescopic rod that can move longitudinally. For example, a telescopic rod consisting of an outer rod, an inner rod, and a buckle.

[0033] like Figure 3 As shown, the striking structure 32 mainly consists of a support block 324 and a rotating rod 325. Two support blocks 324 are positioned opposite each other and mounted on the handrail. The support blocks 324 are detachably connected to the handrail, facilitating position adjustment. This allows for adjustment not only to match the position of the support frame 31 but also to adjust the distance between the support blocks and the support frame 31, thus improving the striking effect on the mold. The middle section of the rotating rod 325 is connected to the pivot of the support block 324. One end of the rotating rod 325, located above the middle section of the L-shaped side plate, has a raised block at its bottom for striking the mold, while the other end extends to the outside of the handrail. By lifting the end of the rotating rod 325 located outside the handrail and then releasing it, the end of the rotating rod 325 with the raised block rotates downwards under gravity, striking the mold. This reciprocating operation continuously strikes the mold, causing the hexagonal hollow brick to separate from the mold.

[0034] In operation, a mold containing hexagonal hollow bricks is placed between two L-shaped side plates 311. Then, molds containing hexagonal hollow bricks are continuously added, with the later molds pushing the earlier molds to the striking structure 32. The striking structure 32 then strikes the molds, causing the hexagonal hollow bricks to fall through opening one onto the movable plate 21. The empty mold is pushed by the later mold through opening two of the U-shaped end plate 312 and falls to the outside of the trolley body 1. Adjusting the support 22 to tilt the movable plate 21 causes the hexagonal hollow bricks on the movable plate 21 to slide to the other side of the pushing body under the guidance of the movable plate 21.

[0035] In this embodiment, the material guiding mechanism 2 and the demolding mechanism 3 work together to guide the mold to a designated position and knock it out. The structure is simple and combines the trolley and demolding. The knocking structure 32, combined with its own gravity, makes the knocking operation more labor-saving and meets the needs of small-scale processing. Its mobility can adapt to a more flexible processing environment.

[0036] Example 2

[0037] like Figure 4As shown, this embodiment introduces a mobile hexagonal hollow brick demolding trolley, which has a basically the same structure as the mobile hexagonal hollow brick demolding trolley introduced in Embodiment 1. The difference lies in that the striking structure 32 in this embodiment mainly consists of a fixed pulley 321, a connecting rope 322, and a striking hammer 323. The fixed pulley 321 is movably mounted on the handrail, and the connecting rope 322 is wound around the fixed pulley 321. One end of the connecting rope 322 is located on the outside of the handrail, and the other end is connected to the striking hammer 323. By pulling down the end of the connecting rope 322 located on the handrail and then releasing it, the striking hammer 323 strikes the mold under the action of gravity. To prevent the connecting rope 322 from detaching from the handrail when not striking, a clamping structure 5 is provided on the handrail to hold the connecting rope 322. When striking is not required, the clamping structure 5 holds the connecting rope 322 in place to prevent it from detaching. The clamping structure 5 can be an existing clamp, gripper, or other structure.

[0038] This embodiment has the same beneficial effects as Embodiment 1.

[0039] Example 3

[0040] This embodiment introduces a mobile hexagonal hollow brick demolding trolley, which is basically the same in structure as the mobile hexagonal hollow brick demolding trolley introduced in Embodiment 1. The difference is that the support member 22 in this embodiment adopts a longitudinally telescopic support column. The support column is fixed to the support bottom of the trolley body 1 and is close to the handrail, supporting the end of the movable plate 21 to maintain its horizontal state in its initial state. The support column can also be a support column composed of an outer rod, an inner rod, and a buckle. When it is necessary to adjust the tilt angle of the movable plate 21, it can be done by manually adjusting the telescopic length of the support column. Although the operation of manual adjustment is slightly cumbersome, it can better adapt to processing environments with higher flexibility.

[0041] This embodiment has the same beneficial effects as Embodiment 1.

[0042] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A mobile hexagonal hollow brick demolding trolley, characterized in that, It includes: The trolley body (1) includes a support base and a handle mounted on the side edge of the support base; The material guiding mechanism (2) includes a movable plate (21) and a support member (22); the end of the movable plate (21) away from the handrail is longitudinally rotatably connected to the bottom of the support, and the support member (22) is installed on the bottom of the support near the handrail to support the movable plate (21) and the bottom of the support to be horizontally flush; The demolding mechanism (3) includes a support frame (31) and a striking structure (32); the support frame (31) is installed on the handrail and located above the bottom of the support. The bottom of the support frame (31) has an opening 1 for the longitudinal passage of a hexagonal hollow brick, and the side has an opening 2 for the transverse passage of the mold; the striking structure (32) is installed on the handrail. One movable end of the striking structure (32) is located outside the handrail, and the other movable end is located above the middle section of the support frame (31). This end moves longitudinally downward to strike the mold located on the support frame (31).

2. The mobile hexagonal hollow brick demolding trolley according to claim 1, characterized in that, The support frame (31) includes an L-shaped side plate (311), an U-shaped end plate (312), and a protective net (313); the U-shaped end plate (312) is detachably installed on the handrail, with its opening facing downward to form the second opening; the ends of two symmetrical L-shaped side plates (311) are connected to the U-shaped end plate (312), and the gap between the two L-shaped side plates (311) forms the first opening; the protective net (313) is installed longitudinally at the bottom of the L-shaped side plate (311) to guide the hexagonal hollow brick that runs through the first opening to the movable plate (21).

3. The mobile hexagonal hollow brick demolding trolley according to claim 2, characterized in that, The bottom of the L-shaped side plate (311) facing away from the handrail is in contact with the top of the auxiliary support rod (4), and the bottom of the auxiliary support rod (4) is fixed to the bottom of the support.

4. The mobile hexagonal hollow brick demolding trolley according to claim 3, characterized in that, The auxiliary support rod (4) is a telescopic rod that moves longitudinally.

5. The mobile hexagonal hollow brick demolding trolley according to claim 1, characterized in that, The striking structure (32) includes a fixed pulley (321), a connecting rope (322), and a striking hammer (323); the fixed pulley (321) is movably installed on the handrail, and the connecting rope (322) is wound around the fixed pulley (321). One end of the connecting rope (322) is located on the outside of the handrail, and the other end is connected to the striking hammer (323).

6. The mobile hexagonal hollow brick demolding trolley according to claim 5, characterized in that, The handrail is equipped with a clamping structure (5) for clamping the connecting rope (322).

7. The mobile hexagonal hollow brick demolding trolley according to claim 1, characterized in that, The striking structure (32) includes a support block (324) and a rotating rod (325); two support blocks (324) are arranged opposite to each other and installed on the handrail, the middle section of the rotating rod (325) is connected to the pivot of the support block (324), and the bottom of one end of the rotating rod (325) located above the middle section of the support frame (31) has a protruding block of the striking mold, and the other end extends to the outside of the handrail.

8. The mobile hexagonal hollow brick demolding trolley according to claim 5, characterized in that, The support block (324) is detachably connected to the handrail.

9. The mobile hexagonal hollow brick demolding trolley according to claim 1, characterized in that, The support member (22) includes a support column that can move longitudinally; the support column is fixed to the support bottom of the trolley body (1) and is close to the handrail to support the end of the movable plate (21) so that it is initially kept horizontal.

10. The mobile hexagonal hollow brick demolding trolley according to claim 1, characterized in that, The support member (22) includes a telescopic cylinder; the fixed end of the telescopic cylinder is fixedly connected to the support bottom of the trolley body (1), and the movable end faces upward and is in contact with the bottom of the movable plate (21) near the handrail.