Upright lockrand metal roof intelligent opener system and edging cutting method

Through the upright locked metal roof intelligent opening system, the problems of poor accuracy, insufficient aesthetics and low construction efficiency in traditional metal roof exterior edge closing technology are solved, and high-precision, aesthetics and efficient metal roof construction is achieved.

CN119981378APending Publication Date: 2025-05-13CENT INT GROUP
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Patent Information

Application Number
CN202510299506.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Traditional metal roof exterior edge closing technology has problems such as poor cutting accuracy, insufficient aesthetics and low construction efficiency.

Method used

The upright locked metal roof intelligent opening system is adopted, which includes positioning components, precision control components, cutters and power devices. Through precise positioning and automated cutting, high-precision waterproof edge cutting operation is achieved.

Benefits of technology

It significantly improves cutting accuracy and aesthetics, reduces leakage risks, improves construction efficiency, reduces labor and time costs, and meets the quality, efficiency and aesthetic requirements of modern construction projects for metal roof construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent opener system for a vertical lockrand metal roof and an edge closing and cutting method.The system comprises a positioning assembly, a precision control assembly, a cutter and a power device which are integrated, and the positioning assembly comprises a plate type positioning mold and a base; the cross section of the plate type positioning mold is the same as the cross section of a middle ridge or a side ridge on the vertical lockrand metal roof, the inner side face of the plate type positioning mold is attached to the outer side face of the middle ridge or the outer side face of the side ridge, and the base is fixed to the plate type positioning mold; the precision control assembly is a cableway sliding rail, the cableway sliding rail and a cutting blade at the end of the cutter have the cross section consistent with the middle ridge or the side ridge, the cableway sliding rail is fixed to the base, and a preset cutting port is formed in the cableway sliding rail. The power device is fixed to one end of the base and is in driving connection with the cutter on the base. According to the edge closing cutting method, the quality level of waterproof edge closing is effectively improved, the leakage risk coefficient is remarkably reduced, and a more reliable waterproof guarantee is provided for a building roof.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal maintenance system roof external edge closing, and specifically to a standing seam metal roof intelligent opener system and an edge closing cutting method, which is particularly suitable for some small-scale construction projects or roof construction scenes in specific complex environments, and exhibits good adaptability and practicality. Background Art

[0002] In the traditional practice of metal roof external edge finishing technology, the commonly used operation mode is based on manual experience and hand tools. Specifically, construction workers usually use ordinary cutting tools to manually cut metal sheets to shape the desired edge shape. The product form is often limited to simple straight lines or basic arc styles, and the connection between the edge parts is mainly achieved by manual welding or riveting. From a technical point of view, this traditional method is only to meet the basic edge sealing needs to prevent rainwater leakage. However, from the perspective of technical means, it is highly dependent on the personal skills and experience of construction workers, and has obvious shortcomings in precise positioning and automated control, which leads to many problems in the actual construction effect.

[0003] Firstly, it is difficult to ensure cutting accuracy, and the incisions often vary in width and angle, which greatly reduces the waterproof performance and significantly increases the risk of leakage.

[0004] Secondly, due to the instability of manual operation, the aesthetics of the edges is poor, and the lines lack regularity and smoothness, which seriously affects the overall appearance of the building.

[0005] Furthermore, this traditional construction method is extremely inefficient and requires a lot of manpower and time, which is far from meeting the urgent needs of modern large-scale construction projects for high-quality and efficient construction of metal roofs. The present invention is aimed at these existing key problems and effectively solves them through innovative technology research and development. Summary of the invention

[0006] In view of a series of prominent problems existing in the existing metal roof external edge finishing technology, such as poor accuracy, insufficient aesthetics and low construction efficiency, the present invention provides a vertical locking metal roof intelligent opener system and edge cutting method, which realizes high-precision waterproof edge cutting operation by introducing cutting-edge design concepts and advanced technical means, greatly enhances the stability and reliability of waterproof performance, and effectively reduces the risk of leakage; at the same time, it focuses on improving the aesthetics of the edge, so that the outer edge of the metal roof presents a neat, smooth and exquisite visual effect, significantly improving the overall aesthetic quality of the building; in addition, by optimizing the construction process and technical configuration, the construction efficiency is greatly improved, and the investment in manpower and time costs is significantly reduced, so as to fully meet the modern construction engineering The stringent requirements of metal roof construction in terms of quality, efficiency and aesthetics, provide more excellent and efficient solutions for building waterproofing and exterior decoration, and effectively promote metal roof construction technology to move towards intelligence, refinement and efficiency, and lead the new trend of industry technology development.

[0007] The present invention adopts the following technical solution:

[0008] On the one hand, the present invention provides an intelligent opener system for a vertical lock-edge metal roof, the system comprising an integrated positioning component, a precision control component, a cutter and a power device, the positioning component comprising a plate positioning mold and a base, the cross-section of the plate positioning mold is the same as the cross-section of the middle ridge or the cross-section of the side ridge on the vertical lock-edge metal roof, and the inner side surface of the plate positioning mold is in contact with the outer side surface of the middle ridge or the outer side surface of the side ridge, and the base is fixed on the plate positioning mold; the precision control component is a cableway slide, the cableway slide and the cutting blade at the end of the cutter have a cross-section consistent with the middle ridge or the side ridge, the cableway slide is fixed on the base, and a preset cutting port for placing the edge trimming plate is formed thereon; the power device is fixed to one end of the base and is connected to the cutter placed on the base, and is used to drive the cutter to move forward and backward along the cableway slide.

[0009] Furthermore, the plate type positioning mold includes a central ridge plate type positioning mold and a side ridge plate type positioning mold, the cableway slide includes a central ridge cableway slide and a side ridge cableway slide, the cross-section of the side ridge plate type positioning mold is consistent with the cross-section of the side ridge cableway slide, and the two are centrally arranged; the cross-section of the central ridge plate type positioning mold is consistent with the cross-section of the central ridge cableway slide, and the two are centrally arranged; the cutter includes a central ridge cutter and a side ridge cutter, the cutting blade at the end of the central ridge cutter extends into the central ridge cableway slide and is slidably connected to the inner side surface of the central ridge cableway slide, and the cutting blade at the end of the side ridge cutter extends into the side ridge cableway slide and is slidably connected to the inner side surface of the side ridge cableway slide.

[0010] Furthermore, the length of the central ridge plate type positioning mold and the length of the side ridge plate type positioning mold are respectively greater than the length of the base arranged thereon, and the height of the base on the central ridge plate type positioning mold is consistent with the height of the base on the side ridge plate type positioning mold.

[0011] Furthermore, the central ridge cableway slide rail and the side ridge cableway slide rail are also provided with buckle covers with the same structure as them, and the buckle covers are installed on the outer side surfaces of the corresponding cableway slide rails, and the inner side surfaces of the buckle covers are in contact with the outer side surfaces of the corresponding cableway slide rails.

[0012] Preferably, the preset cutting port has a vertical edge on one side close to the cutter and an inclined edge on the other side, forming a gradual opening structure with a narrow lower opening and a wide upper opening.

[0013] Furthermore, the power device includes a bracket, a pressure rod, a rotating shaft, an adapter and a pin connecting piece, the bracket is fixed on the base, both ends of the rotating shaft are installed in the rotating holes on the bracket, one end of the pressure rod is vertically fixed to the middle of the rotating shaft, one end of the adapter is vertically fixed to the middle of the rotating shaft, and the other end is hinged to one end of the pin connecting piece, and the other end of the pin connecting piece is hinged to the end of the cutter.

[0014] On the other hand, a method for cutting the edge of the edge plate using the standing seam metal roof intelligent opening device system is provided, comprising the following steps:

[0015] Step 1, installing an opener system with a middle ridge cross section on each middle ridge on the metal roof panel, installing an opener system with a side ridge cross section on each side ridge on the metal roof panel, and setting the bottom surfaces of the preset cutting ports of each opener system on the same straight line;

[0016] Step 2, transport the edge trimming board to the standing seam metal roof, and place it at each preset cutting port, so that the lower edge of the edge trimming board is close to the bottom surface of each preset cutting port;

[0017] Step 3, operating the power device corresponding to each opening device system to drive the cutter to move and cut the edge cutting edge of the edge trimming board;

[0018] Step 4: Remove the cut trim panels and secure them to the standing seam metal roof panels.

[0019] Compared with the traditional metal roofing external edge finishing technology, the present invention has significant technical advantages and outstanding application effects. The following is a detailed comparative analysis from multiple aspects:

[0020] A. In terms of cutting accuracy: the present invention relies on the close synergy effect of the intelligent cutter and the positioning component, and the cutting accuracy can be precisely controlled within the millimeter level. Compared with the traditional manual cutting method, the accuracy is improved by several times or even dozens of times. This is because the precision control component monitors various parameters in the cutting process in real time, and through precise regulation, ensures that the tool always cuts along the predetermined path of the cableway slide rail; and the precise positioning function of the positioning component provides a stable and accurate starting point and direction reference for cutting, effectively avoiding deviations caused by human factors. This high-precision cutting effect effectively improves the quality level of waterproof edge finishing, significantly reduces the risk factor of leakage, and provides a more reliable waterproof protection for the building roof, so that the building can effectively resist rain erosion during long-term use and extend the service life of the building.

[0021] B. The present invention adopts a precise cutting process to make the edge lines neat, smooth, exquisite and beautiful, greatly improving the overall appearance and quality of the building. Since the present invention can achieve high-precision cutting, the lines of the edge parts are straighter and smoother, and the connection between the parts is tighter and more natural, avoiding the problems of roughness and irregularity caused by traditional manual cutting. This beautiful edge effect not only improves the aesthetic value of the building, but also enhances the overall texture and grade of the building, adding a unique charm to the building, making it stand out among many buildings, and satisfying people's pursuit of architectural beauty.

[0022] C. The intelligent cutter system of the present invention can realize an efficient automated continuous cutting operation mode, and the construction speed can be increased by 5 to 10 times compared with the traditional method. This is mainly due to the efficient collaboration between the various units of the system and the optimized scheduling capabilities of the precision control components. During the cutting process, the cutter can quickly and stably cut along the predetermined line without the need to frequently adjust the tool position and angle as with traditional manual operations; at the same time, the power device manually driven by the lever principle can ensure the continuity and efficiency of the cutting process, reduce pauses and waiting time during the cutting process, and greatly shorten the construction cycle. It effectively reduces labor intensity, improves construction efficiency, and provides strong support for the rapid advancement of construction projects, allowing construction projects to be put into use faster, saving time and labor costs.

[0023] D. The cutting accuracy of the system of the present invention is significantly improved, the material waste caused by cutting errors can be effectively curbed, and the material utilization rate is greatly improved. In the traditional manual cutting process, due to the difficulty in ensuring accuracy, problems such as inaccurate cutting size and uneven incision often occur, resulting in some metal materials being unusable and wasted; the high-precision cutting of the present invention can minimize this waste, improve material utilization, reduce construction costs, meet the requirements of environmental protection concepts and help to reasonably control costs, and make positive contributions to the sustainable development of the construction industry. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the specific embodiments of the present invention, the drawings required for use in the specific embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0025] Figure 1 It is the vertical locking metal roof intelligent opening device I (installed on the edge ridge) provided by the present invention;

[0026] Figure 2 It is the vertical locking metal roof intelligent opening device II (installed on the ridge) provided by the present invention;

[0027] Figure 3 yes Figure 1 Schematic diagram of the power unit in;

[0028] Figure 4a It is a three-dimensional diagram of the side ridge cableway slide rail provided by the present invention;

[0029] Figure 4b It is a stereoscopic diagram of the mid-ridge cableway slide rail provided by the present invention;

[0030] Figure 5a yes Figure 4a Plan view shown;

[0031] Figure 5b yes Figure 4b Plan view shown;

[0032] Figure 6a is a stereoscopic diagram of a ridge cutter provided by the present invention;

[0033] Figure 6b is a stereoscopic diagram of the midline cutter provided by the present invention;

[0034] Figure 7a The buckle cover provided by the present invention is used in conjunction with the slide rail of the mid-ridge cableway;

[0035] Figure 7bThe buckle cover provided by the present invention is used in conjunction with the side ridge cableway slide rail;

[0036] Figure 8 yes Figure 7a The schematic diagram of the buckle cover plane is shown;

[0037] Fig. 9 This is a view of the opener system provided by the present invention installed on a vertical lock-edge metal roof;

[0038] Fig.10 It is a schematic diagram of the edge trimming and cutting steps of the edge trimming board provided by the present invention.

[0039] The following are marked in the figure:

[0040] 1- Positioning components

[0041] 11- Plate positioning mold

[0042] 11a-Middle ridge plate positioning mold, 11b-Side ridge plate positioning mold

[0043] 12- Base

[0044] 2-Cableway Slide

[0045] 2a-Middle ridge cableway rail, 2b-Side ridge cableway rail

[0046] 3-Cutter

[0047] 3a-Middle ridge cutter, 3b-Side ridge cutter

[0048] 4- Power Plant

[0049] 41- bracket, 42- pressure rod, 43- rotating shaft, 44- adapter, 45- pin connecting piece

[0050] 5-Snap cover

[0051] 6-Standing Seam Metal Roof

[0052] 61-middle ridge, 62-side ridge

[0053] 7-Edge board

[0054] a--Preset cutting port. DETAILED DESCRIPTION

[0055] The technical solution of the present invention will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0056] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0057] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0058] like Figure 1 and Figure 2 As shown, the present invention provides an intelligent opening device system for a standing seam metal roof, comprising an integrated positioning component 1, a precision control component, a cutter 3 and a power device 4, wherein the positioning component 1 comprises a plate positioning mold 11 and a base 12, wherein the cross section of the plate positioning mold 11 is the same as the cross section of the middle ridge 61 or the cross section of the side ridge 62 on the standing seam metal roof 6, and the inner side surface of the plate positioning mold 11 is in contact with the outer side surface of the middle ridge 61 or the outer side surface of the side ridge 62, and the base 12 is fixed on the plate positioning mold 11, as shown in FIG. Fig. 9 As shown in the figure, the vertical lock seam metal roof is equipped with Figure 1 The intelligent mouth-opening device system shown in the figure is in accordance with the side ridge and the Figure 2 The intelligent opening device system shown is fitted with the middle ridge; the precision control component is a cableway slide 2, and the cutting blades at the ends of the cableway slide 2 and the cutter 3 have a cross-section consistent with the middle ridge 61 or the side ridge 62. The cableway slide 2 is fixed on the base 12, and a preset cutting port a for placing the edge plate 7 is formed thereon. The cutter uses an alloy cutting tool with high hardness and high precision. The blade of the tool has undergone a special heat treatment process and precision grinding, and has excellent wear resistance and sharpness, and can easily cope with the cutting challenges of various metal roofing materials. The power device 4 is fixed to one end of the base 12 and is connected to the cutter 3 placed on the base 12, and is used to drive the cutter 3 to move forward and backward along the cableway slide 2.

[0059] The present invention sets two sets of intelligent opening device systems for the side ridge and the middle ridge respectively, and the plate type positioning mold 11 includes Figure 2 The ridge plate type positioning mold 11a shown and Figure 1 The ridge plate type positioning mold 11b shown, the cableway slide rail 2 includes Figure 4b The ridge ropeway rail 2a and Figure 4a The side ridge cableway slide rail 2b, the middle ridge cableway slide 2a and the side ridge cableway slide 2b are respectively provided with a preset cutting port a, such as Figure 5a and Figure 5b As shown. Figure 1 and Figure 2 As shown, the cross section of the side ridge plate type positioning mold 11b is consistent with the cross section of the side ridge cableway slide rail 2b, and the two are arranged in the center; the cross section of the middle ridge plate type positioning mold 11a is consistent with the cross section of the middle ridge cableway slide rail 2a, and the two are arranged in the center. Figure 6a and Figure 6b As shown, the cutter 3 includes a middle ridge cutter 3a and a side ridge cutter 3b. The cutting blade at the end of the middle ridge cutter 3a extends into the middle ridge cableway slide rail 2a and is slidably connected to the inner side surface of the middle ridge cableway slide rail 2a. The cutting blade at the end of the side ridge cutter 3b extends into the side ridge cableway slide rail 2b and is slidably connected to the inner side surface of the side ridge cableway slide rail 2b. Figure 6a The shape of the cutting blade at the end of the ridge cutter is similar to Figure 4a The cross-sectional shape of the side ridge cableway rail 2b is consistent. Figure 6b The shape of the cutting blade at the end of the ridge cutter is similar to Figure 4b The cross-sectional shape of the middle ridge cableway slide rail 2a remains consistent.

[0060] Since the ridge plate type positioning mold and the side ridge plate type positioning mold are both in contact with the corresponding ridge and side ridge, they play a positioning role when cutting the edge board. The ridge plate type positioning mold and the side ridge plate type positioning mold can also be positioned with the corresponding ridge side and side ridge side through the top screw to avoid displacement problems during cutting. Of course, as a further preferred embodiment of the present invention, the length of the ridge plate type positioning mold 11a and the length of the side ridge plate type positioning mold 11b are respectively greater than the length of the base 12 set thereon, for example, the length of the plate type positioning mold is set to 500mm, and the length of the base is set to 200mm. The longer the plate type positioning mold is, the stronger the anti-displacement ability is. At the same time, the height of the base 2 on the ridge plate type positioning mold 11a is consistent with the height of the base 2 on the side ridge plate type positioning mold 11b.

[0061] As a further preferred embodiment of the present invention, Figure 1 , Figure 2 , Figure 7a , Figure 7b and Figure 8As shown, the cableway slide rail 2 is also provided with a buckle cover 5 having the same structure as the cableway slide rail 2. The buckle cover 5 is mounted on the outer side of the cableway slide rail 2, and the inner side of the buckle cover 5 fits the outer side of the cableway slide rail 2. The preset cutting port a provided on the buckle cover 5 is exactly the same as the preset cutting port a on the cableway slide rail 2. The preset cutting port a has a vertical edge on one side close to the cutter 3, and an inclined edge on the other side, forming a gradual opening structure with a narrow lower opening and a wide upper opening. Before cutting, the edge trimming plate is placed along the inclined edge, and the edge trimming plate after cutting forms an inclined and smooth incision. After installation, the edge trimming plate 7 forms a water guiding angle along the slope, which is more convenient for collecting rainwater.

[0062] like Figure 3 As shown, the power device 4 includes a bracket 41, a pressure rod 42, a rotating shaft 43, an adapter 44 and a pin connector 45. The bracket 41 is fixed on the base 12, and the two ends of the rotating shaft 43 are installed in the rotating holes on the bracket 41. One end of the pressure rod 42 is vertically fixed to the middle of the rotating shaft 43, and one end of the adapter 44 is vertically fixed to the middle of the rotating shaft 43. The other end is hinged to one end of the pin connector 45, and the other end of the pin connector 45 is hinged to the end of the cutter 3. By manually pressing the pressure rod 42, the rotating shaft can drive the adapter 44 to rotate, and the pin connector 45 will push the cutter 3 to move along the cableway slide rail 2, and then the tool at the end of the cutter 3 directly acts on the edge trimming plate, cutting the edge trimming plate into the same incision shape as the cross section of the side ridge or the middle ridge. Of course, the cutter can also be driven to move back and forth by electric means, and the manual power device can be replaced with an electric drive mode, which can also achieve the purpose of cutting, which will not be repeated here.

[0063] like Fig. 9 and Fig.10 As shown, the present invention also provides a method for cutting edge panels using a standing seam metal roof intelligent opening device system, comprising the following steps:

[0064] [S01] An opener system with a ridge cross section is installed on each ridge on the metal roof panel, and an opener system with a side ridge cross section is installed on each side ridge on the metal roof panel, and the bottom surfaces of the preset cutting ports of each opener system are set on the same straight line.

[0065] The operator first places the positioning component accurately at the starting position of the metal roof edge trim plate. With the close physical contact and high adaptability between the positioning component and the roof structure, the plate positioning mold is ensured to fit the ridge or side ridge of the roof completely, thereby accurately determining the starting point of the cutting and the preset cutting line direction, laying a solid foundation for subsequent cutting operations and ensuring the accuracy and stability of the entire cutting process. In this process, the operator needs to carefully check the fit of the positioning component with the roof to ensure that there is no gap or looseness to ensure the accuracy of positioning.

[0066] [S02] Transport the trimming board to the standing seam metal roof and place it at each preset cutting port so that the lower edge of the trimming board is in close contact with the bottom surface of each preset cutting port.

[0067] [S03] Operate the power device corresponding to each opening device system to drive the cutter to move forward and cut the edge of the edge plate, such as Fig.10 shown.

[0068] The operator manually operates the power unit, and converts manpower into the power required by the cutting tool through a specific transmission mechanism (such as a carefully designed pressure rod, adapter and other mechanical structures). In this process, the transmission mechanism of the power unit is optimized and can efficiently transfer the force applied by the operator to the tool. At the same time, the buffer device and the stabilizing structure ensure the stable output and continuous supply of power to meet the power requirements for cutting metal roofs. For example, the length and diameter of the pressure rod are ergonomically designed, so that the operator can easily apply force during operation and can feel the cutting status of the cutter tool, so as to better control the cutting process. When the operator starts the power unit, the alloy tool on the cutter starts to move forward quickly and steadily by manually driving it, and enters the cutting preparation state. At this time, the operator needs to check again whether the tool is normal to ensure the safe start of the cutting operation.

[0069]

S04

[0070] The operator holds the pressure rod and uses the lever principle to push the cutter, so that it moves smoothly along the cableway slide of the precision control component and starts to accurately cut the edge and edge of the metal roof. During the cutting process, the precision control component plays a vital role in guidance and control. Its high-precision cableway slide provides accurate guidance for the movement of the cutter, ensuring that the tool moves steadily along the predetermined cutting line and effectively avoids any deviation. At the same time, the positioning component continues to maintain a close fit with the roof, providing stable support and accurate positioning reference for the cutting operation, monitoring the position and shape changes of the roof in real time, and feeding this information back to the precision control component. According to the actual cutting situation, the operator manually adjusts the power input and cutting speed with rich experience and keen touch, such as complex working conditions such as changes in metal thickness and uneven materials. For example, when cutting thicker metal parts, the operator increases the power input and slows down the cutting speed appropriately to ensure that the tool can penetrate the metal smoothly and the cut is smooth; when cutting thinner or softer areas, the force is reduced accordingly to speed up the cutting process to prevent excessive cutting or damage to the roofing material. During the whole process, the various components work closely together and in coordination. The stable support of the positioning components, the precise guidance of the precision control components, and the efficient cutting action of the power device and the cutter work together to complete the high-precision manual cutting task of the metal roof edge trimming and achieve precise processing of the roof edge to meet the strict requirements of waterproofing, aesthetics, structural stability, etc. This manual drive cutter method gives full play to the skills and experience advantages of the operator, combined with the collaborative working mechanism of the various components, and can flexibly and accurately complete the cutting of the metal roof edge trimming without the need for external electricity or complex power sources. It is particularly suitable for some small construction projects or roof construction scenes in specific complex environments, showing good adaptability and practicality.

[0071] Anything not described in the present invention is applicable to the prior art.

[0072] Obviously, the above embodiments are merely examples for the purpose of clear explanation, and are not intended to limit the implementation methods. For those skilled in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here. However, the obvious changes or modifications derived therefrom are still within the scope of protection of the present invention.

Claims

1. A standing seam metal roof intelligent opening device system, characterized in that: The system comprises an integrated positioning component (1), a precision control component, a cutter (3) and a power device (4), wherein the positioning component (1) comprises a plate positioning mold (11) and a base (12), wherein the cross section of the plate positioning mold (11) is the same as the cross section of the middle ridge (61) or the cross section of the side ridge (62) on the vertical lock-edge metal roof (6), and the inner side surface of the plate positioning mold (11) is in contact with the outer side surface of the middle ridge (61) or the outer side surface of the side ridge (62), and the base (12) is fixed on the plate positioning mold (11); The precision control component is a cableway slide rail (2), the cableway slide rail (2) and the cutting blades at the ends of the cutter (3) have cross-sections that are consistent with the middle ridge (61) or the side ridge (62), the cableway slide rail (2) is fixed on the base (12), and a preset cutting port (a) for placing the edge trimming plate (7) is formed thereon; the power device (4) is fixed to one end of the base (12) and is connected to the cutter (3) placed on the base (12), and is used to drive the cutter (3) to move forward and backward along the cableway slide rail (2).

2. The standing seam metal roof intelligent opening device system according to claim 1, characterized in that: The plate type positioning mold (11) comprises a central ridge plate type positioning mold (11a) and a side ridge plate type positioning mold (11b); the cableway slide rail (2) comprises a central ridge cableway slide rail (2a) and a side ridge cableway slide rail (2b); the cross section of the side ridge plate type positioning mold (11b) is consistent with the cross section of the side ridge cableway slide rail (2b), and the two are arranged in a central position; the cross section of the central ridge plate type positioning mold (11a) is consistent with the cross section of the central ridge cableway slide rail (2a). The cutter (3) comprises a central ridge cutter (3a) and a side ridge cutter (3b); the cutting blade at the end of the central ridge cutter (3a) extends into the central ridge cableway rail (2a) and is slidably connected to the inner side surface of the central ridge cableway rail (2a); the cutting blade at the end of the side ridge cutter (3b) extends into the side ridge cableway rail (2b) and is slidably connected to the inner side surface of the side ridge cableway rail (2b).

3. The standing seam metal roof intelligent opening device system according to claim 2, characterized in that: The length of the central ridge plate type positioning mold (11a) and the length of the side ridge plate type positioning mold (11b) are respectively greater than the length of the base (12) arranged thereon, and the height of the base (2) on the central ridge plate type positioning mold (11a) is consistent with the height of the base (2) on the side ridge plate type positioning mold (11b).

4. The standing seam metal roof intelligent opening device system according to claim 2, characterized in that: The central ridge cableway slide rail (2a) and the side ridge cableway slide rail (2b) are also provided with a buckle cover (5) having the same structure as the central ridge cableway slide rail (2a). The buckle cover (5) is mounted on the outer side surface of the corresponding cableway slide rail (2), and the inner side surface of the buckle cover (5) is in contact with the outer side surface of the corresponding cableway slide rail (2).

5. The standing seam metal roof intelligent opening device system according to claim 4, characterized in that: The preset cutting port (a) has a vertical edge on one side close to the cutter (3) and an inclined edge on the other side, forming a gradual opening structure with a narrow lower opening and a wide upper opening.

6. The intelligent opening device system for standing seam metal roof according to claims 1-5, characterized in that: The power device (4) comprises a bracket (41), a pressure rod (42), a rotating shaft (43), an adapter (44) and a pin connecting member (45), wherein the bracket (41) is fixed on the base (12), and both ends of the rotating shaft (43) are installed in the rotating holes on the bracket (41), one end of the pressure rod (42) is vertically fixed to the middle of the rotating shaft (43), one end of the adapter (44) is vertically fixed to the middle of the rotating shaft (43), and the other end of the adapter (44) is hinged to one end of the pin connecting member (45), and the other end of the pin connecting member (45) is hinged to the end of the cutter (3).

7. A method for cutting edge panels using a standing seam metal roof intelligent opening device system, characterized in that: The steps include: Step 1, installing an opener system with a middle ridge cross section on each middle ridge on the metal roof panel, installing an opener system with a side ridge cross section on each side ridge on the metal roof panel, and setting the bottom surfaces of the preset cutting ports of each opener system on the same straight line; Step 2, transport the edge trimming board to the standing seam metal roof, and place it at each preset cutting port, so that the lower edge of the edge trimming board is close to the bottom surface of each preset cutting port; Step 3, operating the power device corresponding to each opening device system to drive the cutter to move forward and cut the edge cutting edge of the edge trimming board; Step 4: Remove the cut trim panels and secure them to the standing seam metal roof panels.