A mobile flipper demoulding machine
By designing a mobile flipping demolding machine, which uses a geared motor to drive the mold to flip and move, the problems of pallet damage and transportation are solved, achieving efficient demolding operation and reducing equipment costs and maintenance frequency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHANPENG (FUJIAN) IND & TRADE CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-06-02
AI Technical Summary
Conventional brick making machines are prone to damage to the pallets during the forming process, and there are problems with the transportation of brick blanks after demolding, resulting in high equipment costs and frequent maintenance.
Design a mobile flipping demolding machine, which includes a demolding mechanism and a moving mechanism. It uses a geared motor to drive the mold to flip and moves it by walking wheels, eliminating the need for pallets and other supporting equipment, and allowing demolding operations to be performed directly on the construction site.
It reduces pallet damage and transportation costs, lowers equipment complexity and maintenance expenses, and improves production efficiency.
Smart Images

Figure CN224310890U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of brick-making equipment technology, and in particular to a mobile flipping demolding machine. Background Technology
[0002] A "brick machine," as the name suggests, is a mechanical device used to produce bricks. It typically uses stone powder, fly ash, slag, mineral slag, crushed stone, sand, and water as raw materials. It efficiently utilizes fly ash, slag, stone powder, desulfurization ash, mineral slag, coal gangue, phosphogypsum, and tailings sand to produce new wall materials, such as autoclaved fly ash bricks, autoclaved lime-sand bricks, and aerated concrete products. Bricks produced by brick machines use clay as the main raw material. The production process is simple. Bricks made primarily with fly ash and using gypsum and quicklime as the main binders are gradually replacing traditional clay bricks. The clay is mixed in a clay mixer with some sand and stone powder until homogeneous. Then, it is conveyed by a conveyor belt to a vacuum brick machine, where it is pressed under vacuum pressure to form brick blanks.
[0003] Conventional block making machines require a large number of pallets, as well as corresponding supporting equipment such as pallet feeders and stacking machines. During molding, the mold moves onto the pallet, and after feeding, vibration, and pressure molding, the mold is lifted upwards, leaving the brick blank on the pallet. The pallets are easily damaged during the molding process due to vibration and other factors. In addition, there are transportation issues after the brick blanks are demolded.
[0004] In view of this, the inventor of this case conducted in-depth research, which led to the creation of this case. Utility Model Content
[0005] The purpose of this invention is to provide a mobile flipping demolding machine.
[0006] To achieve the above objectives, the technical solution of this utility model is as follows:
[0007] A mobile flipping demolding machine includes a demolding mechanism, a moving mechanism, and a support body. The demolding mechanism includes a flipping mechanism and a mold. The flipping mechanism includes a mold lifting assembly and a flipping drive mechanism. The flipping drive mechanism is a geared motor. The mold lifting assembly includes a first mold lifting rod, a second mold lifting rod, a first mold lifting seat, and a second mold lifting seat. The first mold lifting rod and the second mold lifting rod are respectively arranged alternately in the vertical direction. A crossbeam is connected between the top of the first mold lifting rod and the top of the second mold lifting rod to form an inverted U-shaped frame. The bottom of the first mold lifting rod is fixedly connected to the first mold lifting seat, and the bottom of the second mold lifting rod is fixedly connected to the second mold lifting seat. The first mold lifting seat and the second mold lifting seat are respectively installed on the support body. The mold is installed between the first mold lifting seat and the second mold lifting seat in a flip-able manner.
[0008] The geared motor is mounted on the first mold lifting base. The first mold lifting base is provided with a bearing seat corresponding to the position of the output shaft of the geared motor. The output shaft passes through the bearing hole of the bearing seat to form a rotatable connection. The end of the output shaft is fixedly connected to one end of the mold, and the other end of the mold is rotatably connected to the second mold lifting base.
[0009] The moving mechanism includes a moving motor and traveling wheels. The traveling wheels are located at the bottom of the support body, the motor shaft of the moving motor is connected to the traveling wheels, and the moving motor is mounted on the support body.
[0010] Furthermore, one end of the mold is mounted on the first mold lifting base via a first connector, and the other end of the mold is mounted on the second mold lifting base via a second connector;
[0011] One end of the mold is detachably fixed to the first connector, and the other end of the mold is detachably fixed to the second connector;
[0012] The first connector is movably mounted on the first mold lifting base in a flip-out manner, the second connector is movably mounted on the second mold lifting base in a flip-out manner, the end of the output shaft is fixedly connected to the first connector, and the second connector is connected to the second mold lifting base via a rotating shaft.
[0013] Furthermore, there are two geared motors, which are installed one-to-one on the first mold lifting base and the second mold lifting base. The connection structure between the two geared motors and the mold, as well as their respective mold lifting bases, is the same.
[0014] Furthermore, the main body of the support is square, and the number of the traveling wheels is four, namely the first traveling wheel, the second traveling wheel, the third traveling wheel and the fourth traveling wheel. The four traveling wheels are respectively arranged at the four bottom corners of the main body of the support. The first traveling wheel and the second traveling wheel are arranged on the side where the first lifting rod is located, and the third traveling wheel and the fourth traveling wheel are arranged on the side where the second lifting rod is located.
[0015] Furthermore, the moving mechanism also includes a first guide rail and a second guide rail arranged alternately and parallel to each other. The vertical distance between the first traveling wheel and the third traveling wheel, and the vertical distance between the second traveling wheel and the fourth traveling wheel, are respectively matched with the spacing between the first guide rail and the second guide rail. The first traveling wheel and the second traveling wheel are respectively slidably connected to the first guide rail, and the third traveling wheel and the fourth traveling wheel are respectively slidably connected to the second guide rail.
[0016] Furthermore, the mold includes a mold body and a movable side plate. The movable side plate is detachably assembled with the mold body. The movable side plate is equipped with a driving cylinder. The cylinder body of the driving cylinder is fixedly installed on the first connecting member. The telescopic rod of the driving cylinder is connected to the movable side plate. The forming surface of the movable side plate is a concave-convex surface.
[0017] Furthermore, the first and second lifting mold bases are respectively installed on the support body in a way that allows them to be lifted up and down.
[0018] Furthermore, the first lifting mold base and the second lifting mold base are respectively fixed on different lifting guide sleeves, and the lifting guide sleeves are respectively equipped with lifting guide rails. The lifting guide rails are fixedly installed on the support body in the vertical direction. The top of the first lifting mold rod and the second lifting mold rod are respectively provided with toothed racks. The support body is also provided with a lifting motor. The output shaft of the lifting motor is equipped with a gear, and the gear meshes with the toothed racks.
[0019] With the above technical solution, during use, the output shaft is driven to rotate by the geared motor, which in turn drives the mold to rotate or even flip, finally achieving demolding. At the same time, a moving mechanism is set up, which drives the walking wheels to rotate by the rotation of the moving motor, thereby moving the main body of the support, which in turn drives the demolding mechanism to move. After moving to the designated position, the flipping demolding operation is performed. In this way, production can be carried out directly on the construction site, saving large structural components, avoiding high transportation costs, and eliminating the need for conventional block making machine supporting equipment, as well as the costs of pallets and damage repair. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of the mobile flipping demolding machine of this utility model;
[0021] Figure 2 This is a structural schematic diagram of the mobile flipping demolding machine of this utility model from another angle;
[0022] Figure 3 This is a schematic diagram of the flipping mechanism of this utility model;
[0023] Figure 4 This is a top view of the flipping structure of this utility model.
[0024] In the picture:
[0025] Support body 1; Tilting mechanism 2; First lifting rod 21; Second lifting rod 22; First lifting seat 23; Second lifting seat 24; Bearing seat 25; First connector 26; Second connector 27; Gear motor 28; Output shaft 281; Mold 3; Moving motor 41; Walking wheel 42; Lifting guide sleeve 51; Lifting guide rail 52; Gear rack 53; Gear 54. Detailed Implementation
[0026] This utility model relates to a mobile flipping demolding machine, such as... Figures 1-4 As shown, the device includes a demolding mechanism, a moving mechanism, and a support body 1. The demolding mechanism includes a flipping mechanism 2 and a mold 3. The flipping mechanism 2 includes a mold lifting assembly and a flipping drive mechanism. The flipping drive mechanism is a geared motor 28. The mold lifting assembly includes a first mold lifting rod 21, a second mold lifting rod 22, a first mold lifting seat 23, and a second mold lifting seat 24. The first mold lifting rod 21 and the second mold lifting rod 22 are arranged alternately in the vertical direction. A crossbeam is connected between the top of the first mold lifting rod 21 and the top of the second mold lifting rod 22 to form an inverted U-shaped frame. The bottom of the first mold lifting rod 21 is fixedly connected to the first mold lifting seat 23, and the bottom of the second mold lifting rod 21 is fixedly connected to the second mold lifting seat 24. The first mold lifting seat 23 and the second mold lifting seat 24 are respectively installed on the support body 1. The mold 3 is installed between the first mold lifting seat 23 and the second mold lifting seat 24 in a flip-able manner.
[0027] The geared motor 28 is installed on the first mold lifting base 23. The first mold lifting base 23 is provided with a bearing seat 25 corresponding to the position of the output shaft 281 of the geared motor 28. The output shaft 281 passes through the bearing hole of the bearing seat 25 to form a rotatable connection. The end of the output shaft 281 is fixedly connected to one end of the mold 3, and the other end of the mold 3 is rotatably connected to the second mold lifting base 24.
[0028] The moving mechanism includes a moving motor 41 and a traveling wheel 42. The traveling wheel 42 is located at the bottom of the support body 1. The motor shaft of the moving motor 41 is connected to the traveling wheel 42. The moving motor 41 is mounted on the support body 1.
[0029] This utility model discloses a mobile flipping demolding machine. In use, the output shaft 281 is driven to rotate by the reduction motor 28, which in turn drives the mold 3 to rotate or even flip, finally achieving demolding. At the same time, a moving mechanism is set up. The rotation of the moving motor drives the walking wheels to rotate, which in turn moves the support body 1, thereby driving the demolding mechanism to move accordingly. After moving to the designated position, the flipping demolding operation is performed. In this way, production can be carried out directly on the construction site, saving large structural components, avoiding high transportation costs, and eliminating the need for conventional block making machine supporting equipment, pallet costs, and damage and repair costs.
[0030] Furthermore, in a preferred embodiment, one end of the mold 3 is mounted on the first mold lifting base 23 via the first connector 26, and the other end of the mold 3 is mounted on the second mold lifting base 24 via the second connector 27. One end of the mold 3 is locked to the first connector 26, and the other end of the mold 3 is locked to the second connector 27.
[0031] The first connector 26 is movably mounted on the first mold lifting base 23 in a rotatable manner, and the second connector 27 is movably mounted on the second mold lifting base 24 in a rotatable manner.
[0032] The end of the output shaft 281 is fixedly connected to the first connector 26, and the second connector 27 is connected to the second mold lifting base 24 via a rotating shaft.
[0033] There are two geared motors 28, which are installed one-to-one on the first mold lifting base 23 and the second mold lifting base 24. The connection structure between the two geared motors 28 and the mold 3, as well as their respective mold lifting bases and connecting parts, is the same and will not be described in detail here.
[0034] The main body 1 of the support frame is square in shape, and it has four traveling wheels 42, namely the first traveling wheel, the second traveling wheel, the third traveling wheel, and the fourth traveling wheel. The four traveling wheels 42 are respectively set at the four bottom corners of the main body 1. The first traveling wheel and the second traveling wheel are set on the side where the first lifting rod 23 is located, and the third traveling wheel and the fourth traveling wheel are set on the side where the second lifting rod 24 is located. The traveling wheels can move on the ground, that is, the rotating demolding machine can move directly on the ground.
[0035] The moving mechanism also includes a first guide rail and a second guide rail (not shown in the figure) arranged alternately and parallel to each other. The vertical distance between the first traveling wheel and the third traveling wheel, and the vertical distance between the second traveling wheel and the fourth traveling wheel are respectively matched with the spacing between the first guide rail and the second guide rail. The first traveling wheel and the second traveling wheel are respectively slidably connected to the first guide rail, and the third traveling wheel and the fourth traveling wheel are respectively slidably connected to the second guide rail.
[0036] In a preferred embodiment, mold 3 includes a mold body and a movable side plate. The movable side plate is detachably assembled with the mold body. The movable side plate is equipped with a driving cylinder. The cylinder body of the driving cylinder is fixedly installed on the first connecting member. The telescopic rod of the driving cylinder is connected to the movable side plate. The forming surface of the movable side plate is a concave-convex surface. This satisfies the demolding requirement for brick blanks with concave-convex textures.
[0037] In one preferred embodiment, the first mold lifting base 23 and the second mold lifting base 24 are respectively installed on the support body 1 in a way that allows them to be lifted up and down.
[0038] Furthermore, the first lifting mold base 23 and the second lifting mold base 24 are respectively fixed on different lifting guide sleeves 51. The lifting guide sleeves 51 are correspondingly equipped with lifting guide rails 52, which are fixedly installed on the support body 1 in the vertical direction. The tops of the first lifting mold rod 21 and the second lifting mold rod 22 are respectively provided with gear racks 53. The support body 1 is also provided with a lifting motor (not shown in the figure). The output shaft of the lifting motor is equipped with a gear 54, which meshes with the gear racks 53. In this way, the height can be adjusted according to different molds, making it convenient to complete the flipping and demolding operation.
[0039] The above embodiments and accompanying drawings are not intended to limit the product form and style of this utility model. Any appropriate changes or modifications made by those skilled in the art should be considered as not departing from the patent scope of this utility model.
Claims
1. A mobile flipping demolding machine, characterized in that: The device includes a demolding mechanism, a moving mechanism, and a support body. The demolding mechanism includes a flipping mechanism and a mold. The flipping mechanism includes a mold lifting assembly and a flipping drive mechanism. The flipping drive mechanism is a geared motor. The mold lifting assembly includes a first mold lifting rod, a second mold lifting rod, a first mold lifting seat, and a second mold lifting seat. The first mold lifting rod and the second mold lifting rod are respectively arranged alternately in the vertical direction. A crossbeam is connected between the top of the first mold lifting rod and the top of the second mold lifting rod to form an inverted U-shaped frame. The bottom of the first mold lifting rod is fixedly connected to the first mold lifting seat, and the bottom of the second mold lifting rod is fixedly connected to the second mold lifting seat. The first mold lifting seat and the second mold lifting seat are respectively installed on the support body. The mold is installed between the first mold lifting seat and the second mold lifting seat in a flip-able manner. The geared motor is mounted on the first mold lifting base. The first mold lifting base is provided with a bearing seat corresponding to the position of the output shaft of the geared motor. The output shaft passes through the bearing hole of the bearing seat to form a rotatable connection. The end of the output shaft is fixedly connected to one end of the mold, and the other end of the mold is rotatably connected to the second mold lifting base. The moving mechanism includes a moving motor and traveling wheels. The traveling wheels are located at the bottom of the support body, the motor shaft of the moving motor is connected to the traveling wheels, and the moving motor is mounted on the support body.
2. The mobile flipping demolding machine as described in claim 1, characterized in that: One end of the mold is mounted on the first mold lifting base via a first connector, and the other end of the mold is mounted on the second mold lifting base via a second connector; One end of the mold is detachably fixed to the first connector, and the other end of the mold is detachably fixed to the second connector; The first connector is movably mounted on the first mold lifting base in a flip-out manner, the second connector is movably mounted on the second mold lifting base in a flip-out manner, the end of the output shaft is fixedly connected to the first connector, and the second connector is connected to the second mold lifting base via a rotating shaft.
3. The mobile flipping demolding machine as described in claim 1, characterized in that: The number of reduction motors is two, and the two reduction motors are installed one-to-one on the first mold lifting base and the second mold lifting base. The connection structure between the two reduction motors and the mold, as well as their respective corresponding mold lifting bases, is the same.
4. A mobile flipping demolding machine as described in claim 1, characterized in that: The main body of the support is square, and there are four traveling wheels, namely the first traveling wheel, the second traveling wheel, the third traveling wheel and the fourth traveling wheel. The four traveling wheels are respectively arranged at the four bottom corners of the main body of the support. The first traveling wheel and the second traveling wheel are arranged on the side where the first lifting rod is located, and the third traveling wheel and the fourth traveling wheel are arranged on the side where the second lifting rod is located.
5. A mobile flipping demolding machine as described in claim 4, characterized in that: The moving mechanism further includes a first guide rail and a second guide rail arranged alternately and parallel to each other. The vertical distance between the first traveling wheel and the third traveling wheel, and the vertical distance between the second traveling wheel and the fourth traveling wheel, are respectively matched with the spacing between the first guide rail and the second guide rail. The first traveling wheel and the second traveling wheel are respectively slidably connected to the first guide rail, and the third traveling wheel and the fourth traveling wheel are respectively slidably connected to the second guide rail.
6. A mobile flipping demolding machine as described in claim 2, characterized in that: The mold includes a mold body and a movable side plate. The movable side plate is detachably assembled with the mold body. The movable side plate is equipped with a driving cylinder. The cylinder body of the driving cylinder is fixedly installed on the first connecting member. The telescopic rod of the driving cylinder is connected to the movable side plate. The forming surface of the movable side plate is a concave-convex surface.
7. A mobile flipping demolding machine as described in claim 1, characterized in that: The first and second lifting mold bases are respectively installed on the support body in a way that allows them to be lifted up and down.
8. A mobile flipping demolding machine as described in claim 7, characterized in that: The first and second lifting mold bases are respectively fixed on different lifting guide sleeves, and the lifting guide sleeves are respectively equipped with lifting guide rails. The lifting guide rails are fixedly installed on the support body in the vertical direction. The tops of the first and second lifting mold rods are respectively provided with toothed racks. The support body is also provided with a lifting motor. The output shaft of the lifting motor is equipped with a gear, and the gear meshes with the toothed rack.