Machining equipment for door and window production
By adopting structures such as transverse "L" shaped press plate and pneumatic push rod in door and window processing equipment, the multi-dimensional positioning of the workpiece is achieved, which solves the position deviation problem of the workpiece during the processing process, and improves the stability and efficiency of processing.
Patent Information
- Application Number
- CN202421685256.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-07-16
AI Technical Summary
The clamping plates and pressing plates of existing door and window processing equipment adopt a planar structure, which leads to the workpiece being easily positionally offset during processing, and the adjustment and stability of the limit structure are insufficient.
The pressure plate and pneumatic push rod with a transverse "L" shape are used to match the drive slider, lift frame and X-axis bidirectional lead screw to achieve multi-dimensional positioning and stable clamping of the workpiece. Through the cooperation of the servo motor and the Z-axis bidirectional lead screw, the workpiece can be flexibly adjusted and fixed.
Effectively avoid the deviation of the workpiece in the vertical and horizontal directions, ensure the accuracy and stability of processing, and improve the movement and positioning efficiency of the workpiece.
Smart Images

Figure CN223172926U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of door and window production, in particular to processing equipment for door and window production. Background Technique
[0002] The processing equipment for door and window production refers to the mechanical equipment required in the processing process of making doors and windows, which is usually called door and window equipment; it includes wooden door and window equipment, plastic-steel door and window equipment, aluminum door and window equipment and other types of door and window equipment, collectively referred to as door and window equipment;
[0003] Door and window equipment is the equipment that door and window enterprises need to use when producing and manufacturing doors and windows. Due to different door and window materials, the door and window equipment is also different. The common doors and windows in the market are generally: wooden windows, steel windows, plastic-steel windows, broken bridge aluminum doors and windows, high-grade wooden-clad aluminum doors and windows, etc. Regardless of the type of door and window, the equipment is generally divided into: cutting equipment, welding (corner assembling) equipment, corner cleaning equipment, milling equipment, stamping equipment, assembling equipment, etc.
[0004] For example, the utility model with the application number 202121746298.2 discloses a door and window processing and production equipment with strong practicability. In this door and window processing and production equipment, the output end of the push rod motor extends to push the first connecting plate to move outward, so that the first connecting plate drives the sliding block to slide outward along the first guide post. The sliding block drives the sliding sleeve to slide inward along the second guide post through the second connecting plate, and the sliding sleeve pushes the clamping plate to clamp and fix the door and window through the first connecting plate, realizing the clamping and fixing of doors and windows with different sizes, accelerating the fixing speed of the doors and windows, enhancing the fixing effect of the doors and windows, and reducing the probability of the phenomenon of door and window shaking during processing. However, for the door and window processing and production equipment similar to the above document, the clamping plate and the pressing plate adopt a planar structure to contact the surface of the workpiece, and at the same time, the adjustability and stability of its limiting structure are relatively limited, so that the workpiece may shift in the working process.
[0005] Therefore, in view of this, research and improvement are carried out on the existing structure and deficiencies, and processing equipment for door and window production is proposed. Content of the Utility Model
[0006] The purpose of the utility model is to provide processing equipment for door and window production to solve the problems raised in the above background technique.
[0007] To achieve the above object, the present utility model provides the following technical solutions: Based on the processing equipment for door and window production, including an operating table and a fixing frame. An auxiliary frame group is installed at the bottom of the operating table, and lifting frames are installed on the left and right sides of the auxiliary frame group. Moreover, a driving frame is horizontally installed at the top of the lifting frame. The fixing frame is installed at both ends of the driving frame. The fixing frame includes a driving slider, a pneumatic push rod, and a pressing plate. A pneumatic push rod is vertically installed on the side of the driving slider away from the driving frame, and a pressing plate is horizontally installed at the bottom output end of the pneumatic push rod.
[0008] Further, the operating table includes an operating table surface, guide grooves, a servo motor, and a Z-axis bidirectional lead screw. Guide grooves are provided on the surfaces of the left and right sides of the operating table surface, and servo motors are installed at one end of each of the left and right sides of the operating table surface. Moreover, the power output end of the servo motor is installed with a Z-axis bidirectional lead screw through a coupling.
[0009] Further, the auxiliary frame group includes electric feeding rollers, support frames, and connecting beams. Support frames are installed at both ends of the electric feeding rollers, and a connecting beam is horizontally connected to one side of the support frames.
[0010] Further, the connecting beam is horizontally and fixedly attached to the bottom surface of the operating table surface, and the electric feeding rollers are horizontally supported on the front and back sides of the operating table surface through the support frames.
[0011] Further, the lifting frame includes a Z-axis slider, a stabilizing pile, and an electric push rod. The top of the Z-axis slider is connected to the stabilizing pile, and an electric push rod is vertically installed at the top of the stabilizing pile.
[0012] Further, the driving frame includes a stabilizing table, a support beam, a driving motor, and an X-axis bidirectional lead screw. A support beam is horizontally installed at the top of the stabilizing table, and a driving motor is installed at one end of the support beam. Moreover, the power output end of the driving motor is installed with an X-axis bidirectional lead screw through a coupling.
[0013] Further, the surface structure of the side of the Z-axis slider close to the operating table matches the surface structure of the guide grooves, and the Z-axis slider is in threaded connection and sliding connection with the Z-axis bidirectional lead screw and the guide grooves respectively.
[0014] Further, the output end of the electric push rod is connected to the bottom of the stabilizing table, and the driving slider is in sliding connection and threaded connection with the support beam and the X-axis bidirectional lead screw respectively.
[0015] The present utility model provides a processing equipment for door and window production, having the following beneficial effects:
[0016] 1. In this utility model, fixed frames are symmetrically installed on the left and right sides of the surface of the driving frame. When the driving motor installed at one end of the support beam operates, it drives the X-axis bidirectional lead screw connected thereto to rotate horizontally along the axis, thereby enabling the driving slider on the surface to move horizontally. After the entire fixed frame is translated to an appropriate position, at this time, under the operation of the pneumatic push rod on the side of the driving slider, by utilizing the structural expansion and contraction of the pneumatic push rod in the vertical direction, the pressing plate at its bottom is pressed against the top surface of the edge of the workpiece. At the same time, since the pressing plate itself is arranged in a horizontal "L" - shaped structure, it can be clamped on the edge of the workpiece. By using the above - mentioned structure, it can not only avoid the situation of the workpiece jumping up and down in the vertical direction, but also avoid the left - right deviation of the workpiece in the horizontal direction caused by the acting force generated during the processing operation, and can provide effective structural limitation for the workpiece while minimizing the impact on the processing operation as much as possible, ensuring the accuracy of the processing operation.
[0017] 2. In this utility model, due to the installation of the lifting frame, under the operation of the electric push rod structure, through its structural expansion and contraction in the vertical direction, the entire driving frame and fixed frame connected to its top can be vertically adjusted within a certain range, so as to make appropriate adjustments in coordination with the structural thickness dimension of the workpiece to be processed. When the driving motor installed on the side of the operating table operates, it drives the X-axis bidirectional lead screw connected thereto to rotate horizontally along the axis, so that the Z-axis slider connected to the X-axis bidirectional lead screw drives the entire lifting frame, driving frame and fixed frame to move back and forth in the horizontal Z-axis direction. By using the above - mentioned structure, it can ensure that the entire equipment has sufficient structural flexibility, so as to ensure that the fixed frame can be flexibly and appropriately structurally adjusted to the maximum extent according to the structural dimensions of the workpiece, thereby ensuring the structural stability of the workpiece during processing.
[0018] 3. In this utility model, an auxiliary frame group is installed at the bottom of the operating table. Among them, the connecting beam can provide structural support from the bottom of the operating table to ensure that the operating table can stably process workpieces within a certain range. And through the electric feeding rollers horizontally installed at both ends of the connecting beam by the support frame, by utilizing the horizontal axial rotation of the electric feeding rollers, it can assist the operator to move the workpiece to the middle of the surface of the operating table or move the workpiece out of the surface of the operating table, thereby making it relatively time - saving and labor - saving to move the workpiece and improving the operation efficiency. Description of the Drawings
[0019] Figure 1 It is a schematic side - view structure diagram of the body of the processing equipment for door and window production according to this utility model;
[0020] Figure 2 It is a schematic partial - structure diagram of the operating table of the processing equipment for door and window production according to this utility model;
[0021] Figure 3This is a three-dimensional structure schematic diagram of the auxiliary frame group for the processing equipment used in the production of doors and windows according to the present utility model;
[0022] Figure 4 This is a three-dimensional structure schematic diagram of the lifting frame, driving frame and fixing frame of the processing equipment used in the production of doors and windows according to the present utility model.
[0023] In the figure: 1, operating table; 101, working table; 102, guiding groove; 103, servo motor; 104, Z-axis bidirectional lead screw; 2, auxiliary frame group; 201, electric feeding roller; 202, support frame; 203, connecting beam; 3, lifting frame; 301, Z-axis slider; 302, stabilizing pile; 303, electric push rod; 4, driving frame; 401, stabilizing table; 402, support beam; 403, driving motor; 404, X-axis bidirectional lead screw; 5, fixing frame; 501, driving slider; 502, pneumatic push rod; 503, pressing plate. Specific embodiments
[0024] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.
[0025] As Figures 1 to 4 shown, based on the processing equipment for door and window production, it includes an operating table 1 and a fixing frame 5. An auxiliary frame group 2 is installed at the bottom of the operating table 1, and lifting frames 3 are installed on the left and right sides of the auxiliary frame group 2. Moreover, a driving frame 4 is horizontally installed at the top of the lifting frame 3. The fixing frame 5 is installed at the left and right ends of the driving frame 4. The fixing frame 5 includes a driving slider 501, a pneumatic push rod 502 and a pressing plate 503. A pneumatic push rod 502 is vertically installed on the side of the driving slider 501 away from the driving frame 4, and a pressing plate 503 is horizontally installed at the bottom output end of the pneumatic push rod 502. When the driving motor 403 operates, it drives the connected X-axis bidirectional lead screw 404 to rotate horizontally axially, so as to horizontally move the driving slider 501 on its surface. After the entire fixing frame 5 is translated to an appropriate position, at this time, the pneumatic push rod 502 is used to expand and contract in the vertical direction to press the pressing plate 503 at its bottom against the top surface of the edge of the workpiece. At the same time, since the pressing plate 503 itself is arranged in a horizontal "L" shape, it can be clamped on the edge of the workpiece to ensure the stability of the workpiece.
[0026] As Figures 1 to 4As shown in the figure, the operating table 1 includes a working table 101, guide grooves 102, servo motors 103, and a Z-axis bidirectional lead screw 104. Guide grooves 102 are provided on the surfaces of both left and right sides of the working table 101, and servo motors 103 are installed at one end of both left and right sides of the working table 101. Moreover, the power output end of the servo motor 103 is installed with a Z-axis bidirectional lead screw 104 through a coupling. The auxiliary frame group 2 includes electric feeding rollers 201, support frames 202, and connecting beams 203. Support frames 202 are installed at both left and right ends of the electric feeding rollers 201, and a connecting beam 203 is horizontally connected to one side of the support frame 202. The connecting beam 203 is horizontally and fixedly attached to the bottom surface of the working table 101, and the electric feeding rollers 201 are horizontally mounted on both front and rear sides of the working table 101 through the support frames 202. Among them, the connecting beam 203 can provide structural support from the bottom of the working table 101. Then, by using the horizontal axial rotation of the electric feeding rollers 201, it can assist the operator to move the workpiece to the middle of the surface of the working table 101 or move the workpiece out of the surface of the working table 101.
[0027] As Figures 1 to 4 shown in the figure, the lifting frame 3 includes a Z-axis slider 301, stabilizing piles 302, and an electric push rod 303. The top of the Z-axis slider 301 is connected with a stabilizing pile 302, and an electric push rod 303 is vertically installed at the top of the stabilizing pile 302. The driving frame 4 includes a stabilizing platform 401, a support beam 402, a driving motor 403, and an X-axis bidirectional lead screw 404. A support beam 402 is horizontally installed at the top of the stabilizing platform 401, and a driving motor 403 is installed at one end of the support beam 402. Moreover, the power output end of the driving motor 403 is installed with an X-axis bidirectional lead screw 404 through a coupling. The surface structure of one side of the Z-axis slider 301 close to the working table 101 matches the surface structure of the guide groove 102, and the Z-axis slider 301 is in threaded connection and sliding connection with the Z-axis bidirectional lead screw 104 and the guide groove 102 respectively. The output end of the electric push rod 303 is connected to the bottom of the stabilizing platform 401. The driving slider 501 is in sliding connection and threaded connection with the support beam 402 and the X-axis bidirectional lead screw 404 respectively. So that under the operation of the structure of the electric push rod 303, the entire driving frame 4 and the fixing frame 5 connected to its top can be vertically adjusted within a certain range. And under the operation of the driving motor 403, the X-axis bidirectional lead screw 404 connected thereto is driven to rotate horizontally axially, so that the Z-axis slider 301 connected to the X-axis bidirectional lead screw 404 will drive the entire lifting frame 3, driving frame 4, and fixing frame 5 to move back and forth in the horizontal Z-axis direction.
[0028] In summary, as Figures 1 to 4As shown, for the processing equipment used in door and window production, during use, first start the electric feeding roller 201 horizontally installed at one end of the connecting beam 203 through the support frame 202. Utilize its horizontal and uniform axial rotation, so that the workpiece in contact with its surface structure will gradually move slowly and steadily to the middle of the surface of the operating table 1;
[0029] Then, according to the structural dimensions of the workpiece, start the operation adjustment of the operating table 1, the lifting frame 3, and the driving frame 4 to drive the fixed frame 5 to move to a suitable position. Among them, the servo motor 103 on one side of the operating table 101 will drive the Z-axis bidirectional lead screw 104 connected to its power output end to perform axial rotation in the horizontal direction, so that the Z-axis slider 301 connected to it will simultaneously move back and forth in the horizontal Z-axis direction along the surfaces of the Z-axis bidirectional lead screw 104 and the guide groove 102;
[0030] At the same time, the electric push rod 303 vertically installed on the top of the Z-axis slider 301 by the stabilizing pile 302 will perform structural expansion and contraction, so that the driving frame 4 connected to its top by the stabilizing table 401 will perform vertical lifting adjustment. Then, driven by the driving motor 403 at one end of the support beam 402, the X-axis bidirectional lead screw 404 connected to it will perform horizontal axial rotation, so that the driving slider 501 connected to it will simultaneously move left and right in the horizontal X-axis direction along the support beam 402 and the X-axis bidirectional lead screw 404;
[0031] Then, under the structural expansion and contraction of the pneumatic push rod 502 on one side of the driving slider 501, the pressing plate 503 at its bottom is pressed against the edge surface of the workpiece from top to bottom to realize the limit fixation of the workpiece, so as to facilitate subsequent stable processing operations.
[0032] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better illustrate the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.
Claims
1. A processing device for door and window production, comprising an operating table (1) and a fixing frame (5), characterized in that: An auxiliary frame group (2) is installed at the bottom of the operating table (1), lifting frames (3) are installed on the left and right sides of the auxiliary frame group (2), and a driving frame (4) is horizontally installed at the top of the lifting frame (3). The fixing frames (5) are installed at the left and right ends of the driving frame (4). The fixing frame (5) includes a driving slider (501), a pneumatic push rod (502), and a pressing plate (503). A pneumatic push rod (502) is vertically installed on the side of the driving slider (501) away from the driving frame (4), and a pressing plate (503) is horizontally installed at the bottom output end of the pneumatic push rod (502).
2. The processing equipment for door and window production according to claim 1, characterized in that, The operating table (1) includes an operating table (101), a guiding groove (102), a servo motor (103), and a Z-axis double screw (104). Guiding grooves (102) are formed on the surfaces of the left and right sides of the operating table (101), servo motors (103) are installed at one end of each of the left and right sides of the operating table (101), and a Z-axis double screw (104) is installed at the power output end of the servo motor (103) through a coupling.
3. The processing equipment for door and window production according to claim 1, characterized in that, The auxiliary frame group (2) includes an electric feeding roller (201), a support frame (202), and a connecting beam (203). Support frames (202) are installed at both ends of the electric feeding roller (201), and a connecting beam (203) is horizontally connected to one side of the support frame (202).
4. The processing equipment for door and window production according to claim 3, characterized in that, The connecting beam (203) is horizontally and fixedly attached to the bottom surface of the operating table (101), and the electric feeding roller (201) is horizontally mounted on the front and rear sides of the operating table (101) through the support frame (202).
5. The processing equipment for door and window production according to claim 2, characterized in that, The lifting frame (3) includes a Z-axis slider (301), a stabilizing pile (302), and an electric push rod (303). The top of the Z-axis slider (301) is connected to the stabilizing pile (302), and an electric push rod (303) is vertically installed at the top of the stabilizing pile (302).
6. The processing equipment for door and window production according to claim 5, characterized in that, The driving frame (4) includes a stabilizing table (401), a support beam (402), a driving motor (403), and an X-axis double screw (404). A support beam (402) is horizontally installed on the top of the stabilizing table (401), a driving motor (403) is installed at one end of the support beam (402), and an X-axis double screw (404) is installed at the power output end of the driving motor (403) through a coupling.
7. The processing equipment for door and window production according to claim 5, characterized in that, The surface structure of the side of the Z-axis slider (301) close to the operating table (101) matches the surface structure of the guiding groove (102), and the Z-axis slider (301) is in threaded connection and sliding connection with the Z-axis double screw (104) and the guiding groove (102) respectively.
8. The processing equipment for door and window production according to claim 6, characterized in that, The output end of the electric push rod (303) is connected to the bottom of the stabilizing table (401), and the driving slider (501) is in sliding connection and threaded connection with the support beam (402) and the X-axis double screw (404) respectively.
Citation Information
Patent Citations
Door and window processing production equipment with high practicability
CN215281688U