An automated door and window lintel fabrication device that is transferable and highly adjustable
By combining the shaping mechanism and pouring mechanism of the automated door and window lintel fabrication device, the problems of inconvenient size adjustment and low efficiency in the existing technology are solved, realizing rapid adjustment and efficient material output, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202310988756.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-08
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2043-08-08
AI Technical Summary
The current process of manufacturing door and window lintels is inconvenient and inefficient in terms of size adjustment, resulting in high manufacturing costs. Existing devices cannot quickly adapt to different size requirements.
An automated door and window lintel fabrication device with good transferability and adjustability is adopted, including a shaping mechanism, a pouring mechanism, a pushing mechanism, a moving mechanism, a blocking mechanism, and a placement mechanism. Through the combined use of lead screws, hydraulic cylinders, and motors, it can quickly adjust the size and efficiently discharge materials, which is convenient for mass production.
It enables rapid adjustment and efficient material discharge of door and window lintels, improving production efficiency, reducing costs, and facilitating equipment transportation and carrying.
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Figure CN116901214B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of interior building technology, and in particular to an automated door and window lintel fabrication device that is transferable and adjustable. Background Technology
[0002] A lintel is a horizontal beam above a door or window opening. Its function is to bear the load above the opening and transfer it to the walls on both sides of the door or window to prevent the door or window frame from being crushed or deformed. In the current process of making lintels, on-site measurements are required using tools, and then the lintel is made according to the measured dimensions. During the manufacturing process, limit blocks are used to assemble the lintel shape of the corresponding size, or the dimensions are recorded and then directly produced in the factory for use. However, this process is too costly and time-consuming. Both methods greatly reduce the efficiency of lintel manufacturing. The former makes it inconvenient to adjust the size of the lintel during the manufacturing process, while the latter requires a lot of cost.
[0003] Therefore, in order to address the above problems, we are now developing an automated door and window lintel fabrication device that is transferable and adaptable, allowing for rapid adjustment of dimensions and specifications during the lintel fabrication process. Summary of the Invention
[0004] In order to overcome the shortcomings of existing devices that are inconvenient to adjust the size of the lintel during the manufacturing process and reduce the manufacturing efficiency, this invention provides an automated door and window lintel manufacturing device that is transferable and has good adjustability, and can quickly adjust the size specifications during the lintel manufacturing process.
[0005] The technical solution of this invention is: an automated door and window lintel fabrication device that is transferable and adjustable, comprising a mounting base, a storage cavity, a fixing plate, a limiting frame, and a shaping mechanism. The mounting base has a storage cavity inside. A fixing plate is provided on the left side of the mounting base, and symmetrical limiting frames are provided on the upper right side of the fixing plate. A shaping mechanism is placed on the mounting base. The shaping mechanism includes a first blocking member, a second blocking member, a first lead screw, a first baffle, a second baffle, a sliding plate, a first torsion spring, a second torsion spring, and a first locking member. A second blocking member is placed on the upper part of the mounting base. A first blocking member is slidably disposed near the fixed plate. A first lead screw is rotatably disposed on the right side of the second blocking member. The first lead screw is threadedly connected to the first blocking member. A first baffle is slidably disposed between the first and second blocking members. A second baffle is rotatably disposed at the rear of the second blocking member. A sliding plate is slidably disposed on the left side of the first blocking member. Two second torsion springs are symmetrically disposed between the second baffle and the second blocking member. A first locking member is rotatably disposed on the left rear of the second blocking member. A first torsion spring is disposed between the first locking member and the second blocking member.
[0006] Furthermore, it also includes an irrigation mechanism, which includes an irrigation frame, a drive motor, a second lead screw, a third baffle, a first hydraulic cylinder, connecting parts, and guide parts. The irrigation frame is slidably arranged between the fixed plate and the limit frame. The drive motor is arranged on the upper left side of the irrigation frame. The second lead screw is threaded on the top of the fixed plate and connected to the output shaft of the drive motor. The third baffle is slidably arranged at the lower part of the irrigation frame. The first hydraulic cylinders are symmetrically arranged on the upper right side of the irrigation frame. The guide parts are arranged on the right side of the irrigation frame. Connecting parts are rotatably arranged on both the front and rear sides of the guide parts. The connecting parts are all engaged with the telescopic ends of the adjacent first hydraulic cylinders. The connecting parts are all rotatably connected to the third baffle.
[0007] Furthermore, it also includes a pushing mechanism, which includes a second hydraulic cylinder, a mounting component, a limiting component, and a sliding component. The second hydraulic cylinder is provided on the upper front side of the mounting base, and the mounting component is provided on the front side of the first baffle. The telescopic end of the second hydraulic cylinder is engaged with the mounting component. Two limiting components are evenly arranged on the upper left side of the second blocking component, and a sliding component is slidably arranged between the limiting components. The front part of the sliding component is connected to the first baffle.
[0008] Furthermore, it also includes a moving mechanism, which includes a lifting frame, a moving component, a first fixing member, and a fixing rod. The first fixing member is provided on both the left and right sides of the front and rear parts of the mounting base. A fixing rod is slidably provided on each of the first fixing members. The lifting frame is provided between the bottom of the fixing rods. The moving component is provided on each of the four corners of the bottom of the lifting frame.
[0009] Furthermore, it also includes a shielding mechanism, which includes a second fixing member and a fourth baffle. The second fixing member is provided on the lower side of both the front and rear parts of the pouring frame, and the fourth baffle is rotatably provided on each of the second fixing members.
[0010] Furthermore, it also includes a placement mechanism, which includes a placement plate, a support plate, and a second locking member. The support plate is rotatably mounted on the lower left and right sides of the placement plate, and the second locking member is slidably mounted between the support plate and the placement plate.
[0011] Furthermore, the first locking element has a T-shaped structure.
[0012] Furthermore, the bottom of the pouring frame has a sloping structure.
[0013] Furthermore, the moving component includes moving rollers and tracks. Two symmetrical moving rollers are rotatably arranged at each of the four corners of the bottom of the lifting frame, and tracks are wound between adjacent moving rollers.
[0014] Furthermore, the placement plate and support plate can be folded and placed inside the storage cavity.
[0015] The beneficial effects of the present invention are as follows: 1. The present invention adjusts the position of the first blocking member by adjusting the first lead screw, thereby quickly adjusting the width of the door and window lintel, and pushes the first baffle to move to quickly adjust the length of the door and window lintel. At the same time, after the cement is filled, the second blocking member and its components can be taken out, and the empty shaping mechanism can be placed on the mounting base, which facilitates the batch production of door and window lintels and improves production efficiency.
[0016] 2. The present invention drives the connecting parts to move through the telescopic end of the first hydraulic cylinder, so that the third baffle slides open, thereby achieving the effect of quantitative cement discharge. At the same time, during the transfer of the device, the output shaft of the drive motor controls the rotation of the second lead screw, thereby storing the pouring frame for easy subsequent transfer and carrying.
[0017] 3. In this invention, the extension end of the second hydraulic cylinder drives the installation component to move, thereby causing the first baffle to move accordingly. At this time, the first baffle drives the sliding component to move forward first to unlock the second baffle, and then moves backward to push the door and window lintel to discharge material, thereby improving the discharge efficiency.
[0018] 4. As described above, the present invention uses the downward movement of the pouring frame to push the lifting frame downward, thereby making the moving component contact the ground and pushing the mounting base to disengage from the ground. Thus, under the action of the moving component, the operator is assisted in transporting the device. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0020] Figure 2 This is a schematic diagram of the first three-dimensional structure of the shaping mechanism of the present invention.
[0021] Figure 3 This is a schematic diagram of a second three-dimensional structure of the shaping mechanism of the present invention.
[0022] Figure 4 This is a partial cross-sectional structural diagram of the shaping mechanism of the present invention.
[0023] Figure 5 This is a schematic diagram of the first structure of the shaping mechanism of the present invention.
[0024] Figure 6 This is a schematic diagram of the second structure of the shaping mechanism of the present invention.
[0025] Figure 7 This is a three-dimensional structural diagram of the irrigation mechanism of the present invention.
[0026] Figure 8 This is a partial cross-sectional three-dimensional structural schematic diagram of the irrigation mechanism of the present invention.
[0027] Figure 9This is a three-dimensional structural diagram of the actuating mechanism of the present invention.
[0028] Figure 10 This is a schematic diagram of the structure of the actuating mechanism of the present invention.
[0029] Figure 11 This is a three-dimensional structural diagram of the moving mechanism of the present invention.
[0030] Figure 12 This is a three-dimensional structural diagram of the shielding mechanism of the present invention.
[0031] Figure 13 This is a three-dimensional structural diagram of the placement mechanism of the present invention.
[0032] Figure 14 This is a schematic diagram of the placement mechanism of the present invention.
[0033] Reference numerals: 1_Mounting base, 2_Receiving cavity, 3_Fixing plate, 4_Limiting bracket, 5_Shaping mechanism, 51_First blocking element, 52_Second blocking element, 53_First lead screw, 54_First baffle, 55_Second baffle, 56_Sliding plate, 57_First torsion spring, 58_Second torsion spring, 59_First locking element, 6_Pouring mechanism, 61_Pouring frame, 62_Drive motor, 63_Second lead screw, 64_Third baffle, 65_... A hydraulic cylinder, 66_connector, 67_guide, 7_pushing mechanism, 71_second hydraulic cylinder, 72_mounting component, 73_limiting component, 74_sliding component, 8_moving mechanism, 81_lifting frame, 82_moving assembly, 83_first fixing component, 84_fixing rod, 9_blocking mechanism, 91_second fixing component, 92_fourth baffle, 10_placement mechanism, 101_placement plate, 102_support plate, 103_second locking component. Detailed Implementation
[0034] The present invention will now be described in detail with reference to the accompanying drawings.
[0035] An automated door and window lintel fabrication device that is transferable and easily adjustable, such as Figure 1 and Figure 2 As shown, it includes a mounting base 1, a storage cavity 2, a fixing plate 3, a limiting frame 4, and a shaping mechanism 5. The mounting base 1 has a storage cavity 2 inside. The fixing plate 3 is connected to the left side of the mounting base 1. The upper right side of the fixing plate 3 is connected to the front and rear symmetrical limiting frames 4 by bolts. The shaping mechanism 5 for shaping cement is placed on the mounting base 1.
[0036] It should be noted that, in order to improve production efficiency when manufacturing door and window lintels, this device can be used to hold and shape cement. First, place the shaping mechanism 5 on the mounting base 1, then pour the cement into the shaping mechanism 5 for shaping. After the shaping is completed, send out the shaping mechanism 5 and place another shaping mechanism 5 to quickly mass-produce door and window lintels, thereby improving the production efficiency of door and window lintels.
[0037] like Figures 1-6 As shown, the shaping mechanism 5 includes a first blocking member 51, a second blocking member 52, a first lead screw 53, a first baffle 54, a second baffle 55, a sliding plate 56, a first torsion spring 57, a second torsion spring 58, and a first locking member 59. The second blocking member 52 is placed on the upper part of the mounting base 1. A portion of the second blocking member 52 near the fixed plate 3 is slidably connected to the first blocking member 51 for holding and shaping the cement. The right side of the second blocking member 52 is rotatably connected to the first lead screw 53, which passes through the right side of the second blocking member 52. The first lead screw 53 is threadedly connected to the first blocking member 51. A sliding connection exists between the first blocking member 51 and the second blocking member 52 to push the shaped cement. The first baffle 54 is used to limit the length of the lintel of the door and window. The rear of the second blocking member 52 is rotatably connected to a second baffle 55 for blocking cement. The left side of the first blocking member 51 is slidably connected to a sliding plate 56 that is pushed by the first baffle 54. Two second torsion springs 58 are connected between the second baffle 55 and the second blocking member 52, and the second torsion springs 58 are both wrapped around the second baffle 55. The left rear of the second blocking member 52 is rotatably connected to a first locking member 59 for limiting and locking the second baffle 55. The first locking member 59 is connected to the second blocking member 52 with a first torsion spring 57, and the first torsion spring 57 is wrapped around the first locking member 59. The first locking member 59 has a T-shaped structure.
[0038] It should be noted that during the fabrication of the door and window lintel, the positions of the first baffle 54 and the first blocking member 51 need to be adjusted according to the specifications of the door and window lintel. First, by rotating the first screw 53, the first blocking member 51 slides under the guidance of the second blocking member 52, thereby adjusting the distance between the first blocking member 51 and the second blocking member 52, and thus adjusting the width of the door and window lintel. Then, the first baffle 54 is pushed to slide backward. As the first baffle 54 begins to slide backward, it will drive the sliding plate 56 to slide backward synchronously, preventing cement from flowing out in an unformed state. After the cement enters between the first blocking member 51 and the second blocking member 52, both the second blocking member 52 and the first blocking member 51 are disengaged from the mounting base 1. Wait for the cement to set. After completion, the first locking member 59 is rotated forward and flipped up, so that the first locking member 59 no longer locks the second baffle 55. At the same time, the first When the torsion spring 57 is subjected to force and deforms, the second torsion spring 58 is initially in a state of force deformation. As the second baffle 55 is no longer locked, under the action of the second torsion spring 58, the second baffle 55 will flip backward and open, making it easy for the operator to remove the formed door and window lintel. As the door and window lintel is removed, the second baffle 55 is flipped forward to reset, and the first locking member 59 is released. Under the action of the first torsion spring 57, the first locking member 59 will rotate backward to reset and lock the second baffle 55. In summary, by adjusting the position of the first blocking member 51 through the first screw 53, the width of the door and window lintel can be quickly adjusted, and the length of the door and window lintel can be quickly adjusted by pushing the first baffle 54 to move. At the same time, after the cement is poured, the second blocking member 52 and its components can be removed, and the empty shaping mechanism 5 can be placed on the mounting base 1, which facilitates the batch production of door and window lintels and improves production efficiency.
[0039] like Figure 1 , Figure 7 and Figure 8As shown, it also includes a pouring mechanism 6, which includes a pouring frame 61, a drive motor 62, a second lead screw 63, a third baffle 64, a first hydraulic cylinder 65, a connecting piece 66, and a guide piece 67. A pouring frame 61 for holding cement material is slidably connected between the fixed plate 3 and the limiting frame 4. The bottom of the pouring frame 61 has a sloping structure to facilitate cement discharge. The drive motor 62 is bolted to the upper left side of the pouring frame 61. The output shaft of the drive motor 62 is oriented downwards. The top of the fixed plate 3 is threaded... A second lead screw 63 is connected to the output shaft of the drive motor 62. A third baffle 64 for blocking cement is slidably connected to the lower part of the pouring frame 61. A first hydraulic cylinder 65 symmetrically connected to the front and rear is bolted to the upper right side of the pouring frame 61. A guide 67 is bolted to the right side of the pouring frame 61. Connectors 66 are rotatably connected to both the front and rear sides of the guide 67. The connectors 66 are all engaged with the telescopic ends of the adjacent first hydraulic cylinder 65. The connectors 66 are all rotatably connected to the third baffle 64.
[0040] It should be noted that when constructing the lintels for doors and windows, a measured amount of cement needs to be poured between the second blocking member 52 and the first blocking member 51. To avoid difficulties in ensuring the correct amount of cement is dispensed manually, the extension and retraction ends of the first hydraulic cylinder 65 can be controlled to move the connecting member 66, causing it to rotate and slide the third baffle 64 to the right, thus ceasing to block the pouring frame 61. At this point, the cement in the pouring frame 61 will exit through the inclined surface. When the cement discharge reaches a certain level, the extension and retraction ends of the first hydraulic cylinder 65 can be controlled to retract upwards and reset, causing the connecting member 66 to rotate and slide the third baffle 64 to the left and reset, thereby blocking the pouring frame 61 and preventing further cement discharge. Special care is required. It should be noted that after the lintel of the door and window is made, in order to facilitate the transport and handling of the device, the drive motor 62 can be started as the shaping mechanism 5 is taken out. The output shaft of the drive motor 62 drives the second lead screw 63 to rotate, so that the pouring frame 61 slides down under the guidance of the fixing plate 3 and the limiting frame 4, so that the bottom of the pouring frame 61 can contact the top of the mounting base 1, thereby completing the storage. In summary, the first hydraulic cylinder 65 drives the connecting piece 66 to move through its telescopic end, so that the third baffle 64 slides open, thereby achieving the effect of quantitative cement discharge. At the same time, during the transportation of the device, the output shaft of the drive motor 62 controls the rotation of the second lead screw 63 to store the pouring frame 61, which is convenient for subsequent transportation and handling.
[0041] like Figure 1 , Figure 9 and Figure 10As shown, it also includes a pushing mechanism 7, which includes a second hydraulic cylinder 71, a mounting component 72, a limiting component 73, and a sliding component 74. The second hydraulic cylinder 71 is bolted to the upper front side of the mounting base 1, and the mounting component 72 is bolted to the front side of the first baffle 54. The telescopic end of the second hydraulic cylinder 71 is engaged with the mounting component 72. Two limiting components 73 are evenly connected to the upper left side of the second blocking component 52. The sliding component 74 for pushing and controlling the first locking component 59 is slidably connected between the limiting components 73. The front of the sliding component 74 is connected to the first baffle 54.
[0042] It should be noted that when removing the formed door and window lintel, the extension end of the second hydraulic cylinder 71 can be controlled to retract first, causing the first baffle 54 to move the sliding member 74 forward a short distance. At this time, the sliding member 74 will slide forward under the guidance of the limiting member 73, thereby pushing the first locking member 59 to rotate forward. As the first locking member 59 moves, the second baffle 55 is released from the locked state. Then, the extension end of the second hydraulic cylinder 71 is controlled to extend, causing the mounting member 72 to move the first baffle 54 backward, thereby pushing the formed door and window lintel to slide backward for discharge. In summary, by using the extension end of the second hydraulic cylinder 71 to drive the mounting member 72 to move, the first baffle 54 moves accordingly. At this time, the first baffle 54 drives the sliding member 74 to move forward first to unlock the second baffle 55, and then moves backward to push the door and window lintel for discharge, improving discharge efficiency.
[0043] like Figure 1 and Figure 11 As shown, it also includes a moving mechanism 8, which includes a lifting frame 81, a moving component 82, a first fixing member 83, and a fixing rod 84. The first fixing member 83 is connected to the left and right sides of the front and rear parts of the mounting base 1. The fixing rod 84 is slidably connected to the first fixing member 83. The lifting frame 81, which is pushed by the pouring frame 61, is connected between the bottom of the fixing rod 84. The moving component 82 is connected to the four corners of the bottom of the lifting frame 81. The moving component 82 includes a moving roller and a track. Two symmetrical moving rollers are rotatably connected to the four corners of the bottom of the lifting frame 81. The track is wound between the adjacent moving rollers.
[0044] It should be noted that as the pouring frame 61 begins to move downwards and retract, it pushes the lifting frame 81 downwards, causing the fixed rods 84 to slide downwards. Simultaneously, the moving component 82 also moves downwards. Once the moving component 82 is in contact with the ground, it stops moving. Under the interaction force, the mounting base 1 slides upwards, causing it to detach from the ground. The operator can then directly push the mounting base 1, allowing it to move quickly with the assistance of the moving component 82, facilitating transport. In summary, the downward movement of the pouring frame 61 pushes the lifting frame 81 downwards, causing the moving component 82 to contact the ground and push the mounting base 1 to detach from the ground. Thus, the moving component 82 assists the operator in transporting the device.
[0045] like Figure 1 and Figure 12 As shown, it also includes a shielding mechanism 9, which includes a second fixing member 91 and a fourth baffle 92. The lower sides of the front and rear parts of the pouring frame 61 are connected to the second fixing member 91, and the second fixing member 91 is rotatably connected to the fourth baffle 92 for blocking and preventing cement from splashing.
[0046] It should be noted that when cement is discharged through the lower side of the pouring frame 61, the cement material will be blocked by the fourth baffle 92 to prevent the cement from splashing forward and backward during the discharge process, thus avoiding waste of raw materials.
[0047] like Figure 1 , Figure 13 and Figure 14 As shown, it also includes a placement mechanism 10, which includes a placement plate 101, a support plate 102, and a second locking member 103. The support plate 102 is rotatably connected to the lower left and right sides of the placement plate 101. The support plate 102 and the placement plate 101 are slidably connected to the second locking member 103 for locking and fixing. After the placement plate 101 and the support plate 102 are folded, they can be placed in the storage cavity 2.
[0048] It should be noted that when removing the shaping mechanism 5, the shaping mechanism 5 can be placed on the placement plate 101 and supported by the support plate 102. When the device needs to be transported, the second locking member 103 can be pulled out so that the placement plate 101 and the support plate 102 are no longer locked. Then, the support plate 102 can be folded up and stored, and the placement plate 101, the support plate 102 and the second locking member 103 can be placed in the storage cavity 2 for storage.
[0049] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. An automated door and window lintel fabrication device that is transferable and adjustable, comprising a mounting base (1), a storage cavity (2), a fixing plate (3), a limiting frame (4), and a shaping mechanism (5), wherein the mounting base (1) has a storage cavity (2) inside, the fixing plate (3) is provided on the left side of the mounting base (1), the limiting frame (4) is provided symmetrically on the upper right side of the fixing plate (3), and the shaping mechanism (5) is placed on the mounting base (1), characterized in that, The shaping mechanism (5) includes a first blocking member (51), a second blocking member (52), a first lead screw (53), a first baffle (54), a second baffle (55), a sliding plate (56), a first torsion spring (57), a second torsion spring (58), and a first locking member (59). The second blocking member (52) is placed on the upper part of the mounting base (1). The first blocking member (51) is slidably arranged on a part of the second blocking member (52) near the fixed plate (3). The first lead screw (53) is rotatably arranged on the right side of the second blocking member (52). The first lead screw (53) and the first blocking member (51) are connected. The connection is threaded. A first baffle (54) is slidably provided between the first blocking member (51) and the second blocking member (52). A second baffle (55) is rotatably provided at the rear of the second blocking member (52). A sliding plate (56) is slidably provided on the left side of the first blocking member (51). Two second torsion springs (58) are symmetrically provided between the second baffle (55) and the second blocking member (52). A first locking member (59) is rotatably provided at the rear left side of the second blocking member (52). A first torsion spring (57) is provided between the first locking member (59) and the second blocking member (52). It also includes an irrigation mechanism (6), which includes an irrigation frame (61), a drive motor (62), a second lead screw (63), a third baffle (64), a first hydraulic cylinder (65), a connector (66), and a guide (67). The irrigation frame (61) is slidably arranged between the fixed plate (3) and the limit frame (4). The drive motor (62) is arranged on the upper left side of the irrigation frame (61). The second lead screw (63) is threadedly arranged on the top of the fixed plate (3). The third baffle (64) is slidably provided on the lower part of the pouring frame (61). The first hydraulic cylinder (65) is symmetrically arranged on the upper right side of the pouring frame (61). The guide (67) is provided on the right side of the pouring frame (61). The guide (67) is rotatably provided on both the front and rear sides. The connecting parts (66) are all engaged with the telescopic ends of the adjacent first hydraulic cylinder (65). The connecting parts (66) are all rotatably connected to the third baffle (64). It also includes a pushing mechanism (7), which includes a second hydraulic cylinder (71), a mounting part (72), a limiting part (73) and a sliding part (74). The second hydraulic cylinder (71) is provided on the upper front side of the mounting base (1), and the mounting part (72) is provided on the front side of the first baffle (54). The extension end of the second hydraulic cylinder (71) is engaged with the mounting part (72). Two limiting parts (73) are evenly provided on the upper left side of the second blocking part (52). A sliding part (74) is slidably provided between the limiting parts (73). The front part of the sliding part (74) is connected to the first baffle (54).
2. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 1, characterized in that, It also includes a moving mechanism (8), which includes a lifting frame (81), a moving component (82), a first fixing member (83) and a fixing rod (84). The first fixing member (83) is provided on both the left and right sides of the front and rear parts of the mounting base (1). The fixing rod (84) is slidably provided on the first fixing member (83). The lifting frame (81) is provided between the bottom of the fixing rod (84). The moving component (82) is provided on the four corners of the bottom of the lifting frame (81).
3. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 2, characterized in that, It also includes a shielding mechanism (9), which includes a second fixing member (91) and a fourth baffle (92). The second fixing member (91) is provided on the lower side of the front and rear parts of the pouring frame (61), and the fourth baffle (92) is rotatably provided on the second fixing member (91).
4. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 3, characterized in that, It also includes a placement mechanism (10), which includes a placement plate (101), a support plate (102), and a second locking member (103). The support plate (102) is rotatably provided on the lower left and right sides of the placement plate (101), and the second locking member (103) is slidably provided between the support plate (102) and the placement plate (101).
5. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 4, characterized in that, The first locking element (59) has a T-shaped structure.
6. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 5, characterized in that, The bottom of the pouring frame (61) is a sloping structure.
7. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 6, characterized in that, The moving component (82) includes moving rollers and tracks. Two symmetrical moving rollers are rotatably arranged at the four corners of the bottom of the lifting frame (81), and tracks are wound between adjacent moving rollers.
8. The automated door and window lintel fabrication device with good transportability and adjustability according to claim 7, characterized in that, The placement plate (101) and the support plate (102) can be folded and placed in the storage cavity (2).
Citation Information
Patent Citations
Adjustable precast block pouring template
CN213859873U