Reinforcing combined suite for enhancing wind uncovering resistance of roof
By designing a reinforced combination kit, using bolt and clip connections to enhance the connection strength between the roof panels and the fixing base, and constraining the roof panels through a beam structure, the problem of metal roof panels being easily overturned in high wind pressure areas is solved, and the wind-resistant performance of the roof system is improved and its functions are expanded.
Patent Information
- Application Number
- CN202422984633.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Metal roof panels are easily overturned in areas with high wind pressure. Existing technologies make it difficult to effectively enhance the roof's wind-proof performance, which threatens the safety and stability of the building.
A reinforcement assembly kit is designed to enhance the wind-proof performance of the roof. Through the organic combination of upper structure I, lower structure II, lower structure III and crossbeam structure IV, a multi-level, multi-component synergistic reinforcement system is formed. Bolt connection and clamping methods are used to enhance the connection strength between the roof panel and the fixing seat, and the crossbeam structure is used to constrain the roof panel in the vertical direction.
Significantly improve the wind-resistant ability of the roof system, ensure the stability and safety of the building under adverse weather conditions, while not compromising the structural integrity of the metal roof panels, and achieve diversified expansion of the roof system functions.
Smart Images

Figure CN223446515U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building roof windproof technical field, especially it is a kind of reinforced combination kit of enhanced roof windproof performance. BACKGROUND
[0002] In the field of modern building steel structure, metal enclosure system becomes the mainstream outer decoration form of many steel structure buildings due to its light weight, aesthetic and variable shape characteristics. It not only gives the building unique charm in appearance, but also has many excellent characteristics such as durability, plasticity, strength and other excellent characteristics, which can effectively meet the design and use requirements of building diversification.
[0003] However, in the process of practical application for many years, a serious problem has been exposed. In coastal areas or areas with high wind pressure, metal roof panels face the risk of being blown over. Research has found that in the same building, the four corners of the building and the ridge form a high wind pressure area due to the special geographical location and building structure characteristics. The wind pressure here is significantly greater than other parts, causing the roof panel to be easily blown over. This phenomenon not only poses a direct threat to the integrity and safety of the building, but also may cause a series of secondary disasters, such as internal structure damage, equipment failure and impact on normal indoor use functions caused by rainwater leakage.
[0004] And the metal roof panel usually adopts thin plate material, and the plate block buckling force is limited by the strength of the material itself, and it is difficult to rely solely on its own structure to resist high wind pressure. Therefore, there is an urgent need for a solution that can effectively enhance the windproof performance of the roof. Based on this, designing a reinforcing combination kit specially used to enhance the windproof performance of the roof has extremely important practical significance. It can significantly improve the wind resistance of the roof system, ensure the stability and safety of the building under adverse weather conditions, reduce economic losses and safety hazards caused by wind disasters, and promote the further healthy development and wide application of metal enclosure system in the field of building steel structure. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a reinforcing combination kit for enhancing the windproof performance of the roof, which forms a reinforcing system with multiple levels and multiple components through the organic combination of I upper structure, II lower structure, III lower structure and IV beam structure. The various structures are connected and cooperated with each other, which can effectively integrate the parts of the roof system, enhance the stability and wind resistance of the whole, and effectively resist the risk of roof panel being blown over in high wind pressure environment.
[0006] In order to achieve the above object, the utility model is through the following technical scheme to realize: a reinforced combination kit for reinforcing roof windproof performance, including Ⅰ upper structure, Ⅱ lower structure, Ⅲ lower structure and Ⅳ beam structure, the Ⅱ lower structure and the Ⅲ lower structure are connected with the Ⅰ upper structure and are integrated, the Ⅱ lower structure and the Ⅲ lower structure are inserted into the hollow part of the Ⅳ beam structure and are integrated, the Ⅰ upper structure includes Ⅰ first tapping hole and Ⅰ second tapping hole, the Ⅱ lower structure includes Ⅱ third straight edge, the Ⅲ lower structure includes Ⅲ third straight edge, the cooperation of the connecting piece and the Ⅰ first tapping hole tightly locks the Ⅰ upper structure on the roof panel, so that the upper end of the roof panel is tightly fixed on the fixed seat, the Ⅰ second tapping hole cooperates with the connecting piece and connects the Ⅰ upper structure with the Ⅱ lower structure and the Ⅲ lower structure respectively, after the Ⅱ third straight edge and the Ⅲ third straight edge are inserted into the hollow part of the Ⅳ beam structure and are integrated, the Ⅳ beam structure presses the web of the roof panel.
[0007] Further as the improvement of the utility model technical scheme, the Ⅰ upper structure further includes Ⅰ first arc-shaped edge, Ⅰ first vertical edge, Ⅰ first oblique straight edge, Ⅰ second vertical edge, Ⅰ second oblique straight edge, Ⅰ third vertical edge and Ⅰ first straight edge arranged symmetrically left and right, the Ⅰ first arc-shaped edge and the Ⅰ first vertical edge form the arc-shaped cavity containing the top of the fixed seat, the Ⅰ first oblique straight edge, Ⅰ second vertical edge and the Ⅰ second oblique straight edge jointly form the Ⅰ upper clamping groove, the Ⅰ second oblique straight edge, Ⅰ third vertical edge and the Ⅰ first straight edge jointly form the Ⅰ upper clamping convex.
[0008] Further as the improvement of the utility model technical scheme, the Ⅱ lower structure further includes Ⅱ first arc-shaped edge, Ⅱ first vertical edge, Ⅱ first oblique straight edge, Ⅱ second vertical edge, Ⅱ first straight edge, Ⅱ second straight edge and Ⅱ fourth straight edge, the Ⅱ first arc-shaped edge, Ⅱ first vertical edge, Ⅱ first oblique straight edge jointly form the Ⅱ lower clamping convex, the Ⅱ first oblique straight edge, Ⅱ second vertical edge and the Ⅱ first straight edge jointly form the Ⅱ lower clamping groove, the Ⅱ lower clamping convex is clamped on the Ⅰ upper clamping groove on one side of the Ⅰ upper structure, and the Ⅰ upper clamping convex on one side of the Ⅰ upper structure is clamped on the Ⅱ lower clamping groove.
[0009] Further as improvement of the utility model technical scheme, the III lower part structure further includes a III first arc-shaped edge, a III first vertical edge, a III first oblique straight edge, a III second vertical edge, a III first flat edge, a III second flat edge and a III fourth flat edge; the III first arc-shaped edge, the III first vertical edge and the III first oblique straight edge jointly form a III lower part clamping convex; the III first oblique straight edge, the III second vertical edge and the III first flat edge jointly form a III lower part clamping groove; the III lower part clamping convex is clamped on the I upper part clamping groove on the other side of the I upper part structure; the I upper part clamping convex on the other side of the I upper part structure is clamped on the III lower part clamping groove.
[0010] Further as improvement of the utility model technical scheme, the IV crossbeam structure includes a IV first flat edge, a IV second flat edge, a IV first vertical edge, a IV first boss, a IV second boss, a IV third flat edge, a IV fourth flat edge and a IV first convex corner.
[0011] Further as improvement of the utility model technical scheme, the II lower part structure is provided with a II lower part tapping hole; the III lower part structure is provided with a III lower part tapping hole.
[0012] Further as improvement of the utility model technical scheme, the top of the I upper part structure is fixed with a conversion piece through the cooperation of the connecting piece and the I first tapping hole.
[0013] Further as improvement of the utility model technical scheme, the connecting piece is a bolt.
[0014] The utility model has the following beneficial effects:
[0015] Enhance the ability of anti-wind
[0016] The II lower part structure and the III lower part structure are connected together with the I upper part structure through bolts, and the roof panel rib and the fixing base are tightly locked, the connecting strength between the roof panel and the fixing base is greatly improved, the overturning effect of wind force on the roof panel is effectively resisted, and the anti-wind ability of the roof system in the high wind pressure environment is significantly improved.
[0017] The II lower part structure and the III lower part structure are inserted into the IV crossbeam structure hollow part and connected together, the IV crossbeam structure can press the roof panel web, constrain the roof panel from the vertical direction, prevent the roof panel from deforming due to the action of wind force, thereby avoiding that the locking part is pulled apart due to deformation, further consolidating the anti-wind performance of the roof system, and guaranteeing the stability and safety of the roof system under severe weather conditions.
[0018] Structural integrity protection
[0019] The reinforcing combined kit does not damage the structural integrity of the metal roof panel during installation and use, avoids damage to the metal roof panel due to installation of the windproof device, thereby ensuring the performance and service life of the metal roof panel itself, reducing subsequent problems such as water leakage and corrosion caused by structural damage, and reducing building maintenance costs and risks.
[0020] Function expansion
[0021] By arranging the conversion piece on the top of the I upper structure, other accessory equipment or structures such as lighting equipment and ventilation devices can be flexibly connected according to actual needs, on the basis of enhancing the wind lifting performance of the roof, the diversification expansion of the roof system function is realized, the comprehensive utilization value and adaptability of the building roof are improved, and different building functions and design requirements are met. BRIEF DESCRIPTION OF DRAWINGS
[0022] Other features, objects and advantages of the present application will become more apparent after reading the detailed description of non-limiting embodiments with reference to the following drawings:
[0023] Figure 1 is a three-dimensional structural schematic view of the I upper structure of the present application;
[0024] Figure 2 is a three-dimensional structural schematic view of the II lower structure of the present application;
[0025] Figure 3 is a three-dimensional structural schematic view of the III lower structure of the present application;
[0026] Figure 4 is a three-dimensional structural schematic view of the IV beam structure of the present application;
[0027] Figure 5 is a plane structural schematic view of the I upper structure of the present application;
[0028] Figure 6 is a plane structural schematic view of the II lower structure of the present application;
[0029] Figure 7 is a plane structural schematic view of the III lower structure of the present application;
[0030] Figure 8 is a plane structural schematic view of the IV beam structure of the present application;
[0031] Figure 9 is one of the reinforcing combined kit and roof panel assembly structure schematic views of the present application;
[0032] Figure 10The utility model discloses a kind of reinforced combination kits and roof panel assembly structure schematic diagram of roof windproof performance of reinforcing of two.
[0033] In the drawing: 100-I upper structure;200-II lower structure;300-III lower structure;400-IV beam structure;500-connector;600-roof panel;700-converter;101-I first tapping hole;102-I second tapping hole;103-I first vertical edge;104-I first oblique straight edge;105-I second vertical edge;106-I second oblique straight edge;107-I third vertical edge;108-I first flat edge;109-I upper clamping groove;110-I upper clamping convex;111-I first arc-shaped edge;201-II third flat edge;202-II first arc-shaped edge;203-II first vertical edge;204-II first oblique straight edge;205-II second vertical edge;206-II first flat edge;207-II second flat edge;208-II fourth flat edge;209-II lower clamping convex;210-II lower clamping groove;211-II lower tapping hole;301-III third flat edge;302-III first arc-shaped edge;303-III first vertical edge;304-III first oblique straight edge;305-III second vertical edge;306-III first flat edge;307-III second flat edge;308-III fourth flat edge;309-III lower clamping convex;310-III lower clamping groove;311-III lower tapping hole;401-IV first flat edge;402-IV second flat edge;403-IV first vertical edge;404-IV first boss;405-IV second boss;406-IV third flat edge;407-IV fourth flat edge;408-IV first convex angle. DETAILED DESCRIPTION
[0034] The utility model will be combined with the drawing and specific embodiment to be explained in detail, hereinafter with the utility model of illustrative embodiment and explanation is used to explain the utility model, but not as the limitation of the utility model.
[0035] It should be noted that all directional indications (such as up, down, left, right, front, back, upper end, lower end, top, bottom, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawing). If the specific posture changes, the directional indications will also change accordingly.
[0036] In the utility model, unless another definite provision and limitation, the term "connect" should do the broad sense understanding, for example, "connect" can be fixed connection, also can be detachable connection, or be integrated;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through the intermediate medium, can be two elements inside the communication or two element's mutual action relation, unless another definite limitation.For the ordinary skill in the art, can understand the specific meaning of the above-mentioned term in the utility model according to specific circumstances.
[0037] In addition, in the utility model, the description such as "first", "second" is only used for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features; in addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skill in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0038] The utility model will be further described in detail below in combination with the drawings.
[0039] Please refer to Figures 1 to 10The utility model provides a technical scheme: a reinforcing combined kit for reinforcing roof windproof performance, comprising I upper structure 100, II lower structure 200, III lower structure 300 and IV beam structure 400, the II lower structure 200 and the III lower structure 300 are connected with the I upper structure 100 as a whole through connecting piece 500, the II lower structure 200 and the III lower structure 300 are connected as a whole by being inserted into the hollow part of the IV beam structure 400, the I upper structure 100 comprises I first tapping hole 101 and I second tapping hole 102, the II lower structure 200 comprises II third straight edge 201, the III lower structure 300 comprises III third straight edge 301, the I upper structure 100 is locked on the roof panel 600 by the cooperation of the connecting piece 500 and the I first tapping hole 101, so that the roof panel 600 upper end is tightly fixed on the fixed seat, the I second tapping hole 102 is connected with the II lower structure 200 and the III lower structure 300 respectively by cooperating with the connecting piece 500, after the II third straight edge 201 and the III third straight edge 301 are connected as a whole by being inserted into the hollow part of the IV beam structure 400 respectively, the IV beam structure 400 presses the web of the roof panel 600, it is to be explained that, after the II third straight edge 201 and the III third straight edge 301 are connected as a whole by being inserted into the hollow part of the IV beam structure 400 respectively, the IV beam structure can press the web of the roof panel 600, this design increases the constraint of the roof panel 600 in the vertical direction, prevents the roof panel 600 from being lifted up or deformed under the action of wind force, effectively disperses and bears wind load, provides additional wind resistance for roof.
[0040] Specifically, in the embodiment, the I upper structure 100 further comprises I first arc-shaped edges 111, I first vertical edges 103, I first oblique straight edges 104, I second vertical edges 105, I second oblique straight edges 106, I third vertical edges 107 and I first flat edges 108 which are symmetrically arranged; the I first arc-shaped edges 111 and the I first vertical edges 103 form an arc-shaped cavity accommodating the top of the fixing seat; the I first oblique straight edges 104, the I second vertical edges 105 and the I second oblique straight edges 106 jointly form an I upper clamping groove 109; the I second oblique straight edges 106, the I third vertical edges 107 and the I first flat edges 108 jointly form an I upper clamping convex 110. It should be noted that the overall structure of the utility model synergistically enhances the wind lifting performance: through the organic combination of the I upper structure 100, the II lower structure 200, the III lower structure 300 and the IV beam structure 400, a multi-level, multi-component synergistic reinforcement system is formed. The various structures are connected and cooperated with each other, which can effectively integrate the various parts of the roof system, enhance the stability and wind lifting resistance of the whole, and effectively resist the risk of the roof panel 600 being overturned under high wind pressure. The I upper structure 100 is tightly locked with the roof panel 600 through the cooperation of the connecting piece 500 and the I first tapping hole 101, and the upper end of the roof panel 600 is tightly attached to the fixing seat. This close connection mode ensures that the roof panel 600 will not easily displace or separate under strong wind, greatly improves the reliability of the connection between the roof panel 600 and the fixing seat, and enhances the initial wind stability of the roof system.
[0041] Specifically, in the embodiment, the II lower structure 200 further comprises II first arc-shaped edges 202, II first vertical edges 203, II first oblique straight edges 204, II second vertical edges 205, II first flat edges 206, II second flat edges 207 and II fourth flat edges 208; the II first arc-shaped edges 202, the II first vertical edges 203 and the II first oblique straight edges 204 jointly form a II lower clamping convex 209; the II first oblique straight edges 204, the II second vertical edges 205 and the II first flat edges 206 jointly form a II lower clamping groove 210; the II lower clamping convex 209 is clamped on the I upper clamping groove 109 on one side of the I upper structure 100; the I upper clamping convex 110 on one side of the I upper structure 100 is clamped on the II lower clamping groove 210.
[0042] Specifically, in the embodiment, the III lower structure 300 further comprises a III first arc-shaped edge 302, a III first vertical edge 303, a III first oblique straight edge 304, a III second vertical edge 305, a III first flat edge 306, a III second flat edge 307 and a III fourth flat edge 308; the III first arc-shaped edge 302, the III first vertical edge 303 and the III first oblique straight edge 304 jointly form a III lower clamping convex 309; the III first oblique straight edge 304, the III second vertical edge 305 and the III first flat edge 306 jointly form a III lower clamping groove 310; the III lower clamping convex 309 is clamped on the I upper clamping groove 109 on the other side of the I upper structure 100; the I upper clamping convex 110 on the other side of the I upper structure 100 is clamped on the III lower clamping groove 310.
[0043] Specifically, in the embodiment, the IV beam structure 400 comprises a IV first flat edge 401, a IV second flat edge 402, a IV first vertical edge 403, a IV first boss 404, a IV second boss 405, a IV third flat edge 406, a IV fourth flat edge 407 and a IV first convex corner 408, which can enhance the structural strength.
[0044] Specifically, in the embodiment, the II lower structure 200 is provided with a II lower tapping hole 211; and the III lower structure 300 is provided with a III lower tapping hole 311.
[0045] Specifically, in the embodiment, the top of the I upper structure 100 is fixed with a conversion piece 700 through cooperation of the connecting piece 500 and the I first tapping hole 101. It should be noted that the conversion piece 700 of the utility model has the functions of expanding and adapting: the top of the I upper structure 100 is fixed with the conversion piece 700 through cooperation of the connecting piece 500 and the I first tapping hole 101, and the conversion piece 700 can be connected with other auxiliary equipment or structures according to actual needs, thereby expanding the functions of the reinforcing combined kit and the adaptability of application scenarios, for example, additional components such as a keel and a lightning rod can be installed on the conversion piece 700, or for example, lighting equipment and ventilation devices can be installed, while the overall wind resistance of the roof system is not affected, thereby realizing the organic combination of multifunctionality and wind resistance.
[0046] Specifically, in the embodiment, the connecting piece 500 is a bolt. It should be noted that the bolt has the advantages of high standardization degree, reliable connection, convenient installation and disassembly, etc. During the installation process of the roof system, the assembly and adjustment of each component can be conveniently carried out, so as to ensure the precision and tightness of the connection. In the subsequent maintenance and repair, the related components can also be quickly disassembled and replaced, thereby reducing the maintenance cost and time cost, and being beneficial to the long-term stable operation of the roof system. The bolt locks the I upper structure 100 on the roof panel 600 through the I first tapping hole 101, so that the upper end of the roof panel 600 is tightly attached to the fixed seat. The bolt connects the I upper structure 100 with the II lower structure 200 and the III lower structure 300 through the I second tapping hole 102. By adjusting the tightness of the bolt, a certain pressure is given to the side of the roof panel 600, so that the roof panel 600 is more tightly attached to the fixed seat, and the wind lifting resistance of the roof system is improved. The II lower structure 200 and the III lower structure 300 are connected together by being inserted into the hollow part of the IV beam structure 400. The IV beam structure 400 presses the web of the roof panel 600, so as to prevent the roof panel 600 from deforming and being pulled apart from the locking part, thereby improving the wind lifting resistance of the roof system.
[0047] In the actual installation process of the utility model, first, the I upper structure is placed at the corresponding position of the roof panel, so that the arc-shaped cavity formed by the I first arc-shaped edge and the I first vertical edge accurately accommodates the top of the fixed seat, and the positioning accuracy is ensured. Then, the I upper structure is tightly locked on the roof panel by using the cooperation of the bolt and the I first tapping hole. During this process, the installation position is carefully adjusted to ensure that the upper end of the roof panel can be tightly attached to the fixed seat, so that there is no gap or looseness between the two, thereby laying a solid foundation for subsequent connection.
[0048] Subsequently, the II lower structure and the III lower structure are respectively connected and installed with the I upper structure. Specifically, the II lower clamping convex of the II lower structure is accurately clamped into the I upper clamping groove on one side of the I upper structure, and the I upper clamping convex on the side of the I upper structure is correspondingly clamped into the II lower clamping groove. In the same way, the III lower clamping convex of the III lower structure is clamped to the I upper clamping groove on the other side of the I upper structure, and the I upper clamping convex on the other side of the I upper structure is clamped to the III lower clamping groove. After clamping is completed, the II lower structure and the III lower structure are further tightly connected with the I structure by using the cooperation of the bolt and the I second tapping hole, so as to ensure that the connection between each component is tight and gapless, form a stable overall structure frame, and effectively enhance the connection strength between the roof panel ribs and the fixed seat to resist the pulling action of the wind force.
[0049] Finally, the II third flat edge and the III third flat edge of the II lower structure and the III lower structure are respectively inserted into the hollow part of the IV beam structure, and during the insertion process, the insertion depth and position accuracy need to be ensured, so that the IV beam structure can be placed smoothly and tightly press the roof panel web. Through the close contact of the structure characteristics such as the edges and the bosses and the convex corners of the IV beam structure with the roof panel web, an effective constraint force is applied to the roof panel from the vertical direction, preventing the roof panel from deforming under the action of wind, thereby avoiding the locking part being pulled open due to deformation, further improving the wind lifting resistance of the entire roof system, and ensuring the stability and safety of the roof under various severe weather conditions.
[0050] When the conversion piece needs to be installed, according to the specific type, size and installation requirements of the conversion piece, the appropriate bolt is selected, and the conversion piece is stably fixed on the top of the I upper structure through accurate cooperation with the I first tapping hole. During the fixing process, the installation angle and position accuracy of the conversion piece need to be strictly controlled, so that the subsequent connection of lighting equipment, ventilation devices and other auxiliary equipment or structures can be smoothly carried out, the function expansion effect of the conversion piece can be fully played out, the diversification extension of the roof system function can be realized, different building functions and design requirements can be met, and the comprehensive utilization value and environmental adaptability of the building roof can be improved.
[0051] The utility model has the following beneficial effects:
[0052] Enhanced wind lifting resistance
[0053] The II lower structure and the III lower structure are connected together with the I upper structure 100 through bolts, and the roof panel 600 rib is tightly locked with the fixing seat. This connection mode greatly improves the connection strength between the roof panel 600 and the fixing seat, effectively resists the overturning effect of wind on the roof panel 600, and significantly improves the wind lifting resistance of the roof system in a high wind pressure environment.
[0054] The II lower structure and the III lower structure are inserted into the hollow part of the IV beam structure and connected together, and the IV beam structure can press the roof panel 600 web from the vertical direction to constrain the roof panel 600, prevent the roof panel 600 from deforming due to wind action, and avoid the locking part being pulled open due to deformation, thereby further improving the wind lifting resistance of the roof system and ensuring the stability and safety of the roof system under severe weather conditions.
[0055] Structural integrity protection
[0056] The reinforced combined kit does not damage the structural integrity of the metal roof panel 600 in the installation and use process, avoids damage to the metal roof panel 600 due to installation of the windproof device, thereby ensuring the performance and service life of the metal roof panel 600, reducing subsequent problems such as water leakage and corrosion caused by structural damage, and reducing building maintenance costs and risks.
[0057] Function expansion
[0058] By setting the conversion piece on the top of the I upper structure 100, other auxiliary equipment or structures such as lighting equipment and ventilation devices can be flexibly connected according to actual needs, on the basis of enhancing the windproof performance of the roof, the diversification expansion of the roof system function is realized, the comprehensive utilization value and adaptability of the building roof are improved, and different building functions and design requirements are met.
[0059] The above describes the technical solutions provided by the embodiments of the utility model in detail, and the principles and implementation manners of the embodiments of the utility model are described by applying specific examples; the above description of the embodiments is only applicable to helping understand the principles of the embodiments of the utility model; meanwhile, for those skilled in the art, the embodiments of the utility model will have changes in specific implementation manners and application ranges; in conclusion, the content of the specification should not be understood as a limitation of the utility model.
Claims
1. A reinforced assembly kit for enhancing the windbreak resistance of a roof, characterized by: It includes an upper structure I, a lower structure II, a lower structure III and a crossbeam structure IV; the lower structure II and the lower structure III are both connected to the upper structure I as a whole through connecting pieces; the lower structure II and the lower structure III are plugged into the hollow part of the crossbeam structure IV and connected as a whole; the upper structure I includes a first tapped hole I and a second tapped hole I; the lower structure II includes a third straight edge II; the lower structure III includes a third straight edge III; the matching of the connecting piece with the first tapped hole I locks the upper structure I to the roof panel, so that the upper end of the roof panel is close to the fixing seat; the second tapped hole I cooperates with the connecting piece to connect the upper structure I with the lower structure II and the lower structure III respectively; after the third straight edge II and the third straight edge III are respectively plugged into the hollow part of the crossbeam structure IV and connected as a whole, the crossbeam structure IV presses the web of the roof panel.
2. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 1, characterized in that: The upper structure I also includes the first arc-shaped edge I, the first vertical edge I, the first oblique straight edge I, the second vertical edge I, the second oblique straight edge I, the third vertical edge I and the first straight edge I, which are symmetrically arranged on the left and right; the first arc-shaped edge I and the first vertical edge I form an arc-shaped cavity for accommodating the top of the fixed seat; the first oblique straight edge I, the second vertical edge I and the second oblique straight edge I jointly form the upper clamping groove I; the second oblique straight edge I, the third vertical edge I and the first straight edge I jointly form the upper clamping bulge I.
3. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 2, characterized in that: The lower structure II also includes the first arc-shaped side of II, the first vertical side of II, the first oblique straight side of II, the second vertical side of II, the first straight side of II, the second straight side of II and the fourth straight side of II; the first arc-shaped side of II, the first vertical side of II, the first oblique straight side of II together form the lower clamping protrusion of II; the first oblique straight side of II, the second vertical side of II and the first straight side of II together form the lower clamping groove of II; the lower clamping protrusion of II is clamped to the upper clamping groove of I on one side of the upper structure I; the upper clamping protrusion of I on one side of the upper structure I is clamped to the lower clamping groove of II.
4. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 3, characterized in that: The III lower structure also includes a first arc-shaped edge of III, a first vertical edge of III, a first oblique straight edge of III, a second vertical edge of III, a first straight edge of III, a second straight edge of III and a fourth straight edge of III; the first arc-shaped edge of III, the first vertical edge of III and the first oblique straight edge of III together form a lower clamping protrusion of III; the first oblique straight edge of III, the second vertical edge of III and the first straight edge of III together form a lower clamping groove of III; the lower clamping protrusion of III is clamped to the upper clamping groove of I on the other side of the I upper structure; the upper clamping protrusion of I on the other side of the I upper structure is clamped to the lower clamping groove of III.
5. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 1, characterized in that: The IV crossbeam structure includes a IV first straight side, a IV second straight side, a IV first vertical side, a IV first convex platform, a IV second convex platform, a IV third straight side, a IV fourth straight side and a IV first convex angle.
6. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 1, characterized in that: The II lower structure is provided with a II lower tapping hole; the III lower structure is provided with a III lower tapping hole.
7. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 1, characterized in that: A conversion piece is fixed on the top of the I upper structure through the cooperation between the connecting piece and the first tapped hole of I.
8. The reinforced assembly kit for enhancing the windbreak resistance of a roof according to claim 1, characterized in that: The connecting piece is a bolt.