Platform structure for cutting haunched plate template
By designing a platform structure including platform rotating seat, synchronization belt, servo motor and other components, the problem of being unable to accurately adjust the platform angle and length in the prior art is solved, and efficient and precise cutting of armpit templates with different specifications is achieved.
Patent Information
- Application Number
- CN202510366431.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2025-06-24
AI Technical Summary
The existing platform devices for cutting armpit templates cannot accurately adjust the angle and length of the platform according to the different cutting needs of the armpit templates, and cannot adapt to different types and specifications of armpit templates.
A platform structure including platform components, equipment components, bracket components and cutting components is designed, and components such as platform rotating seats, synchronization belts, servo motors, platform chutes and racks are used to realize the electric adjustment of the platform and the precise movement of the cutting platform.
Through this device, the platform can be accurately adjusted to the required inclination angle according to the cutting requirements of the axle plate template, to adapt to the cutting requirements of the axle plate template of different types and specifications, and improve the cutting accuracy and efficiency.
Smart Images

Figure CN120190868A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of haunched plates, and particularly to a platform structure for cutting haunched plate templates. Background Art
[0002] A haunched plate is an important component used to enhance the strength and stability of joints in building structures, and the cutting accuracy of its template directly affects the quality of the haunched plate. The platform for cutting haunched plate templates is a working platform specifically designed for cutting haunched plate templates, which can withstand the pressure and friction during the cutting process. Its main purpose is to efficiently and accurately cut haunched plate templates, facilitating precise cutting operations for haunched plate templates of different specifications.
[0003] However, the existing device does not install components for electrically adjusting the angle and length of the platform, and cannot accurately adjust the platform to the required inclination angle according to the cutting requirements of the haunched plate template, nor can it enable the special platform to adapt to the cutting requirements of haunched plate templates of different types and specifications. Summary of the Invention
[0004] To achieve the above object, the present invention provides the following technical solutions:
[0005] A platform structure for cutting haunched plate templates, which includes a platform component, a device component, a bracket component, and a cutting component;
[0006] The platform component is arranged on the device component, the bracket component is fixed on the platform component, and the cutting component is movably connected to the bracket component;
[0007] The platform component includes a platform base, a platform frame, a platform rotating seat, a cutting platform, a first servo motor, and a second servo motor. The platform base is arranged on the device component, the platform frame is fixedly installed on the platform base, a platform column is fixedly installed on the front side of the upper surface of the platform base, a platform rotating seat is movably installed on the platform column, and the platform rotating seat is connected to the first servo motor to rotate under the drive of the first servo motor; a platform chute is arranged on the upper surface of the platform rotating seat, the cutting platform is slidably installed on the platform rotating seat through a platform slider adapted to the platform chute, and a rack is fixedly installed on the lower surface of the cutting platform. The second servo motor is fixedly installed on the rear side of the platform rotating seat, the second servo motor is connected with a gear, and the gear is meshed and connected to the rack to drive the cutting platform to slide along the platform chute under the drive of the second servo motor.
[0008] In some of these embodiments, a synchronous belt is meshingly installed on the outer surface of the platform rotating base, the first servo motor is fixedly installed on the platform base, and the lower surface of the synchronous belt is meshingly installed on the first servo motor.
[0009] In some of these embodiments, the interior of the equipment assembly contains an equipment box, and a maintenance door is hingedly installed on the front outer surface of the equipment box.
[0010] In some of these embodiments, an anti-slip pad is fixedly installed on the lower surface of the equipment box, and a plurality of ventilation fans are fixedly installed on the rear outer surface of the equipment box.
[0011] In some of these embodiments, the bracket assembly includes a plurality of limiting frames fixedly installed on the outer surface of the platform frame and a square frame disposed above the platform frame structure. The limiting frames are L-shaped, and a threaded rod is rotatably installed inside the vertical portion of the limiting frame. A first stepping motor is fixedly installed on the upper surface of the threaded rod to rotate under the drive of the first stepping motor. The outer side of the square frame is threadedly connected to the outer surface of the threaded rod through a limiting block. The square frame includes two first sliding rails arranged oppositely and a reinforcing frame connecting the two ends of the two first sliding rails correspondingly. Both ends of the cutting assembly are slidably connected to the first sliding rails through first electric sliders adapted to the first sliding rails.
[0012] In some of these embodiments, an inverted T-shaped sliding groove is formed on the first sliding rail, and the first electric slider is adapted to the inverted T-shaped sliding groove.
[0013] In some of these embodiments, the cutting assembly includes a second sliding rail and first electric sliders fixedly arranged below both ends of the second sliding rail. A second electric slider adapted to the second sliding rail is slidably connected to the second sliding rail. A cutting saw blade is rotatably connected to the lower surface of the second electric slider.
[0014] In some of these embodiments, an electric telescopic rod is installed on the lower surface of the electric rotating shaft. The cutting saw blade is installed at the telescopic end of the electric telescopic rod, and a second stepping motor is fixedly installed on the outer surface of the cutting saw blade to rotate under the action of the second stepping motor.
[0015] Compared with the prior art, the present invention has at least one of the following beneficial effects:
[0016] 1. In the present invention, the platform base serves as the installation foundation for the entire platform component and is used to fix itself on the upper surface of the device component. When the platform component is in a planar state, the platform frame shares the weight of the upper surface of the platform. A combination of platform columns and a platform rotating seat is adopted. The platform columns can support the front part of the platform component, and a rotating shaft is connected between the platform columns and the platform rotating seat, providing conditions for the platform to rotate and change the inclination angle. The platform rotating seat rotates around the rotating shaft at the upper end of the platform column, which can change the orientation of the haunch formwork so that the formwork can be processed from different angles during the cutting process to adapt to the complex shape and size requirements of the haunch formwork. A synchronous pulley is arranged on the outer surface of the left side of the platform rotating seat and is used to receive the power for its own rotation.
[0017] 2. In the present invention, the synchronous belt is mainly used to transmit power. It connects the first servo motor and the platform rotating seat, accurately transmitting the rotational motion of the motor to the platform rotating seat and driving the platform to rotate. The output shaft of the first servo motor also uses a synchronous pulley to engage with the synchronous belt. The first servo motor is the power source for the platform rotation. It can accurately control the rotation speed, angle, and position. A combination of a platform chute and a platform slider is adopted. The platform chute provides guidance and support for the platform slider, defining the moving direction of the platform slider so that the platform slider can only move linearly along the direction of the chute, thereby ensuring that the platform component can smoothly extend or retract outward in a predetermined direction. The platform slider is connected to the cutting platform and the platform chute, transmitting the weight of the cutting platform to the platform chute and sliding within the platform chute to drive the cutting platform to achieve the action of extending or retracting outward.
[0018] 3. In the present invention, the rack is used to define the travel range of the cutting platform and can convert the rotational motion of the motor into the linear motion of the cutting platform. A combination of two second servo motors and gears is adopted. The two second servo motors are respectively arranged with gears on the outside. The second servo motor is the power source for driving the cutting platform to move and can control the length of its own outward extension. The upper surface of the gear meshes with the rack, converting the rotational motion of the second servo motor into a linear motion and driving the cutting platform to expand or contract outward. By installing a component for electrically adjusting the angle and length of the platform on this device, the platform can be accurately adjusted to the required inclination angle according to the cutting requirements of the haunch formwork, and the special platform can also adapt to the cutting requirements of different types and specifications of haunch formworks. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] By reading the detailed description of the non-limiting embodiments with reference to the following drawings, the present invention and its features, shape, and advantages will become more obvious. The same reference numerals indicate the same parts in all the drawings. The drawings are not drawn to scale, and the emphasis is on showing the gist of the present invention.
[0020] Figure 1 This is a schematic diagram of the overall front - side three - dimensional structure of the platform structure for cutting the haunch - plate template in the embodiments of the present invention;
[0021] Figure 2 This is a schematic diagram of the overall rear - side three - dimensional structure of the platform structure for cutting the haunch - plate template in the embodiments of the present invention;
[0022] Figure 3 This is a schematic diagram of the front - side structure of the platform component in the embodiments of the present invention;
[0023] Figure 4 This is a schematic diagram of the rear - side structure of the platform component in the embodiments of the present invention;
[0024] Figure 5 This is a schematic diagram of the bracket component structure in the embodiments of the present invention;
[0025] Figure 6 This is a schematic diagram of the cutting component structure in the embodiments of the present invention;
[0026] Markings in the figure: 1 - platform component, 2 - equipment component, 3 - bracket component, 4 - cutting component, 11 - platform base, 12 - platform frame, 13 - platform column, 14 - platform rotating seat, 15 - synchronous belt, 16 - first servo motor, 17 - platform chute, 18 - platform slider, 19 - cutting platform, 110 - rack, 111 - second servo motor, 112 - gear, 21 - equipment box, 22 - maintenance door, 23 - anti - slip pad, 24 - ventilation fan, 31 - limit frame, 32 - threaded rod, 33 - first stepping motor, 34 - limit block, 35 - first slide rail, 36 - reinforcement frame, 41 - first electric slider, 42 - second slide rail, 43 - second electric slider, 44 - electric rotating shaft, 45 - electric telescopic rod, 46 - cutting saw blade, 47 - second stepping motor. Detailed implementation manners
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0028] Refer to Figures 1-4, including a platform component 1, a device component 2, a bracket component 3, and a cutting component 4. The platform component 1 serves as the infrastructure of the entire dedicated platform, providing support and installation positions for other components. It usually has a large load-bearing capacity and can stably place the haunch plate formwork to ensure that the formwork does not shake or displace during the cutting process. The device component 2 is used to integrate various devices in a box, making the electrical system of the entire platform more compact and tidy, facilitating maintenance and management. The bracket component 3 serves as the support and guiding structure for the cutting component 4. The bracket component 3 can fix the cutting tool and guide it to move along a predetermined cutting path. The cutting component 4 is the part that directly cuts the haunch plate formwork. The platform base 11 serves as the installation foundation of the entire platform component 1 and is used to fix itself on the upper surface of the device component 2. The platform frame 12, when the platform component is in a plane, shares the weight of the upper surface of the platform. The combination of the platform column 13 and the platform rotating seat 14 is adopted. The platform column 13 can support the front part of the platform component, and a rotating shaft is connected between the platform column 13 and the platform rotating seat 14, providing conditions for the platform to rotate and change the inclination angle. The platform rotating seat 14 rotates around the rotating shaft at the upper end of the platform column 13, and the orientation of the haunch plate formwork can be changed so that the formwork can be processed from different angles during the cutting process to adapt to the complex shape and size requirements of the haunch plate formwork. A synchronous pulley is provided on the left outer surface of the platform rotating seat 14 to receive the power to make itself rotate. The synchronous belt 15 is mainly used to transmit power. It connects the first servo motor 16 and the platform rotating seat 14, accurately transmitting the rotational motion of the motor to the platform rotating seat 14 to drive the platform to rotate. The output shaft of the first servo motor 16 also meshes with the synchronous belt 15 using a synchronous pulley. The first servo motor 16 is the power source for the platform rotation, and it can accurately control the rotation speed, angle, and position;A combination of a platform slide 17 and a platform slider 18 is adopted. The platform slide 17 provides guidance and support for the platform slider 18, and limits the moving direction of the platform slider 18, so that the platform slider 18 can only move in a straight line along the direction of the platform slide 17, thereby ensuring that the platform component can smoothly extend or retract outward in a predetermined direction. The platform slider 18 connects the cutting platform 19 and the platform slide 17, transfers the weight of the cutting platform 19 to the platform slide 17, and slides in the platform slide 17, driving the cutting platform 19 to extend or retract outward. The rack 110 is used to limit the travel range of the cutting platform 19, and can convert the rotational motion of the motor into the linear motion of the cutting platform 19. The combination of two servo motors 111 and gears 112, the second servo motor 111 is divided into two groups, and the gears 112 are respectively arranged outwardly. The second servo motor 111 is used as a power source to drive the cutting platform 19 to move, and can control the length of itself extending outward. The upper surface of the gear 112 is meshed with the rack 110 to convert the rotational motion of the second servo motor 111 into a linear motion, driving the cutting platform 19 to expand or contract outward. By installing a component for electrically adjusting the angle and length of the platform in the device, the platform can be accurately adjusted to the required inclination angle according to the cutting requirements of the axil plate template, and the dedicated platform can also be adapted to the cutting requirements of different types and specifications of axil plate templates. ;
[0029] Reference Figure 1 and Figure 2 The equipment box 21 is used to accommodate and protect some key components of the dedicated platform, such as electrical equipment, control elements, transmission devices, such as PLC controllers, power supplies, etc. The electrical components in the equipment assembly 2 are electrically connected to other electrical components through cables. The inspection door 22 allows maintenance personnel to quickly and conveniently enter the equipment to inspect, repair and replace parts when the equipment fails or requires regular maintenance.
[0030] Reference Figure 1 and Figure 2 The anti-skid pad 23 increases the friction between the equipment box and the placement surface, which can effectively prevent the equipment component 2 from sliding on the ground or other supporting surfaces, especially when the equipment is vibrating or subjected to external forces during operation. The stable position of the equipment box 21 can be maintained. The ventilation fan 24 adopts an in-and-out ventilation setting to promote air circulation in the equipment box 21. When the equipment is running, the internal electrical equipment and components will generate heat. The ventilation fan 24 draws external cold air into the equipment box 21 and discharges the hot air inside the equipment box 21 at the same time, thereby achieving heat exchange and achieving the purpose of heat dissipation and cooling.
[0031] Reference Figure 1 , Figure 2 and Figure 5, the limiting frame 31 is an L-shaped limiting frame. The limiting frame 31 limits a certain range for the up-and-down height adjustment of the bracket assembly 3. The limiting frame 31 also supports the cutting assembly 4. The threaded rod 32 rotates itself to drive other components cooperating with it to move along the axial direction of the threaded rod 32, thereby providing conditions for changing the support height of the bracket assembly 3.
[0032] Refer to Figure 5 , the first stepping motor 33 is one of the power driving elements, mainly used to provide power for the rotation of the threaded rod 32, so that the limiting block 34 on the outer surface of the threaded rod 32 changes its own height. A threaded hole is provided inside the limiting block 34 for threadedly fitting with the outer surface of the threaded rod 32, so that the first stepping motor 33 can drive the threaded rod 32 to change the height of the bracket assembly 3.
[0033] Refer to Figure 2 And Figure 5 , the first slide rail 35 provides a position for the cutting assembly 4 to move on its upper surface, and is used to drive the upper surface components of itself to move back and forth within a limited range, thereby changing the position of the cutting assembly 4 in the front-back direction. The reinforcing frame 36 is used to reinforce the front and rear sides of the first slide rail 35 to prevent the cutting assembly 4 from sinking when it moves forward to the two ends of the first slide rail 35 as much as possible.
[0034] Refer to Figure 1 , the lower surface of the first electric slider 41 is fitted and installed with the first slide rail 35. The first electric slider 41 is used to move within the range defined by the first slide rail 35, so as to realize the movement of related components on the platform in the front-back direction. The second slide rail 42 provides a track for lateral movement, so that other components of the cutting assembly 4 can slide left and right on the second slide rail 42. Combined with the front-back movement of the first electric slider 41, the cutting assembly 4 can realize two-dimensional position adjustment on the plane.
[0035] Refer to Figure 1 , the second electric slider 43 moves laterally on the second slide rail 42, driving the related components of the cutting assembly 4 installed below it to move together, realizing precise adjustment of the lateral position during the cutting of the haunch plate template. The electric rotating shaft 44 can adjust the angle of the cutting assembly by electrically controlling the rotation angle of the shaft in the horizontal direction to meet the cutting requirements of different angles of the haunch plate template.
[0036] Refer to Figure 1, the electric telescopic rod 45 connects the electric rotating shaft 44 and the cutting saw blade 46. The electric telescopic rod 45 can adjust the distance between the cutting saw blade 46 and the haunch board template through telescopic movement, control the feed amount of the saw blade. The cutting saw blade 46 serves as a tool for directly cutting the haunch board template. Under the coordinated action of other components in the cutting assembly 4, the template is cut at a preset position and angle, and the template is cut into the required shape and size. The second stepping motor 47 provides power for the rotation of the cutting saw blade 46. By controlling the rotation speed and rotation direction of the cutting saw blade 46, the second stepping motor 47 can accurately control the cutting speed and cutting direction of the cutting saw blade 46 to ensure that it can stably and efficiently cut the haunch board template.
[0037] Working principle:
[0038] The platform base 11 serves as the installation foundation of the entire platform assembly 1 and is used to fix itself on the upper surface of the equipment assembly 2. When the platform assembly is in a flat plane, the platform frame 12 shares the weight of the upper surface of the platform. With the combination of the platform column 13 and the platform rotating seat 14, the platform column 13 can support the front part of the platform assembly. And a rotating shaft is connected between the platform column 13 and the platform rotating seat 14, providing conditions for the platform to rotate and change the inclination angle. The platform rotating seat 14 rotates around the rotating shaft at the upper end of the platform column 13, which can change the orientation of the haunch board template so that the template can be processed from different angles during the cutting process to adapt to the complex shape and size requirements of the haunch board template. A synchronous pulley is provided on the outer surface of the left side of the platform rotating seat 14 for receiving the power to make itself rotate;
[0039] The synchronous belt 15 is mainly used to transmit power. It connects the first servo motor 16 and the platform rotating seat 14, and accurately transmits the rotational motion of the motor to the platform rotating seat 14 to drive the platform to rotate. The output shaft of the first servo motor 16 also uses a synchronous pulley to mesh with the synchronous belt 15. The first servo motor 16 is the power source for the platform rotation. It can accurately control the rotation speed, angle, and position. With the combination of the platform chute 17 and the platform slider 18, the platform chute 17 provides guidance and support for the platform slider 18, defining the moving direction of the platform slider 18 so that the platform slider 18 can only move linearly along the direction of the platform chute 17, thereby ensuring that the platform assembly can smoothly extend or retract outward in a predetermined direction. The platform slider 18 connects the cutting platform 19 and the platform chute 17, transmits the weight of the cutting platform 19 to the platform chute 17, and slides within the platform chute 17 to drive the cutting platform 19 to perform the action of extending or retracting outward;
[0040] The rack 110 is used to define the stroke range of the cutting platform 19 and can convert the rotational motion of the motor into the linear motion of the cutting platform 19. It adopts the combination of the second servo motor 111 and the gear 112. There are two groups of the second servo motors 111, and the gears 112 are respectively arranged on the outside. The second servo motor 111 serves as the power source for driving the cutting platform 19 to move and can control the length of its own outward extension. The upper surface of the gear 112 meshes with the rack 110, converting the rotational motion of the second servo motor 111 into a linear motion, driving the cutting platform 19 to expand or contract outward. By installing a component for electrically adjusting the angle and length of the platform in this device, the platform can be accurately adjusted to the required tilt angle according to the cutting requirements of the haunch plate template, and the special platform can also be adapted to the cutting requirements of different types and specifications of haunch plate templates.
[0041] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A platform structure for cutting axil plate template, characterized in that: Including platform assembly, equipment assembly, bracket assembly and cutting assembly; The platform assembly is arranged on the equipment assembly, the bracket assembly is fixed on the platform assembly, and the cutting assembly is movably connected to the bracket assembly; The platform assembly includes a platform base, a platform frame, a platform rotating seat, a cutting platform, a first servo motor and a second servo motor. The platform base is arranged on the equipment assembly, the platform frame is fixedly installed on the platform base, a platform column is fixedly installed on the front side of the upper surface of the platform base, a platform rotating seat is movably installed on the platform column, and the platform rotating seat is connected to the first servo motor so as to rotate under the drive of the first servo motor; a platform slide groove is arranged on the upper surface of the platform rotating seat, the cutting platform is slidably installed on the platform rotating seat through a platform slider matched with the platform slide groove, and a rack is fixedly installed on the lower surface of the cutting platform, the second servo motor is fixedly installed on the rear side of the platform rotating seat, the second servo motor is connected to a gear, and the gear is meshed and connected to the rack to drive the cutting platform to slide along the platform slide groove under the drive of the second servo motor.
2. The platform structure for cutting the haunch plate template according to claim 1, characterized in that: The outer surface of the platform rotating seat is meshed with a synchronous belt, the first servo motor is fixedly installed on the platform base, and the lower surface of the synchronous belt is meshed with the first servo motor.
3. The platform structure for cutting the haunch plate template according to claim 1, characterized in that: The interior of the equipment assembly includes an equipment box, and an inspection door is hingedly installed on the front outer surface of the equipment box.
4. The platform structure for cutting the haunch plate template according to claim 1, characterized in that: An anti-skid pad is fixedly installed on the lower surface of the equipment box, and a plurality of ventilation fans are fixedly installed on the rear outer surface of the equipment box.
5. The platform structure for cutting the haunch plate template according to claim 1, characterized in that: The bracket assembly includes a plurality of limit frames fixedly mounted on the outer surface of the platform frame and a square frame arranged above the platform frame structure, the limit frame is L-shaped, and a threaded rod is rotatably mounted inside the vertical portion of the limit frame, a first stepper motor is fixedly mounted on the upper surface of the threaded rod so as to rotate under the drive of the first stepper motor, the outer side of the square frame is threadedly connected to the outer surface of the threaded rod through a limit block, and the square frame includes two first slide rails arranged opposite to each other and a reinforcement frame correspondingly connecting the two ends of the two first slide rails together, and the two ends of the cutting assembly are slidably connected to the first slide rail through a first electric slider adapted to the first slide rail.
6. The platform structure for cutting the haunch plate template according to claim 5, characterized in that: An inverted T-shaped slide groove is provided on the first slide rail, and the first electric sliding block is adapted to the inverted T-shaped slide groove.
7. The platform structure for cutting the haunch plate template according to claim 5, characterized in that: The cutting assembly includes a second slide rail and a first electric slider fixedly arranged below both ends of the second slide rail, and a second electric slider adapted to the second slide rail is slidably connected to the second slide rail, and a cutting saw blade is rotatably connected to the lower surface of the second electric slider.
8. The platform structure for cutting the haunch plate template according to claim 7, characterized in that: An electric telescopic rod is installed on the lower surface of the electric rotating shaft, the cutting saw blade is installed on the telescopic end of the electric telescopic rod, and a second stepping motor is fixedly installed on the outer surface of the cutting saw blade to rotate under the action of the second stepping motor.