H-shaped beam structural body capable of being modularly constructed

Through the modular construction of the H-beam structure, combined with the structural panel, panel stacking frame, stair structure and elevator structure, the problems of space utilization and foreign object protection in traditional buildings are solved, and efficient space utilization and safety enhancement are achieved.

CN120443742APending Publication Date: 2025-08-08吴锡圭
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Patent Information

Application Number
CN202410961886.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-07-03
Filing Date
2024-07-18
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

There are complex structures and limited space utilization problems in traditional buildings, especially in vertical space utilization and internal movement efficiency, and there is a lack of effective foreign object protection design.

Method used

The H-beam structure with modular construction is adopted, including the structural panel, panel stacking frame, stair structure and elevator structure. A foreign object blocking part is installed around the stair structure. A shielding system is formed through components such as horizontal guide rails, circulating guide rails and curvature guide rails to prevent foreign objects from leaking.

Benefits of technology

Improves space utilization and structural stability, simplifies installation and maintenance processes, enhances safety and durability, and provides a flexible range of applications.

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Abstract

The invention provides an H-shaped beam structure body capable of modular construction. The H-shaped beam structure body comprises a structure body panel, a panel stacking frame, a stair structure part, an elevator structure part and a foreign matter shielding part.
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Description

Technical Field

[0001] The present invention relates to an H-beam structure that can be constructed in a modular manner, and more particularly, to an H-beam structure that can be constructed in a modular manner and has a structural panel, a panel stacking frame, a staircase structure, an elevator structure, and a foreign matter shielding portion. Background Art

[0002] In traditional architectural and structural design, complex structures and limited accessibility issues often arise.

[0003] In particular, there is room for improvement in vertical space utilization and internal movement efficiency.

[0004] The modular and integrated design of the structure can maximize space utilization and provide convenience for installation and maintenance.

[0005] This helps manage space efficiently and reduce costs.

[0006] H-beams provide strong structural stability and offer modularity and versatility.

[0007] This could provide innovative approaches to architectural and structural design.

[0008] Prior art literature

[0009] Patent Literature

[0010] (Patent Document 1) Korean Registered Patent No. 10-2306156

[0011] (Patent Document 2) Korean Registered Patent No. 10-1915361 Summary of the Invention

[0012] Problems to be solved by the invention

[0013] The present invention is proposed to solve the above-mentioned problem. The purpose of the present invention is to provide an H-beam structure with modular construction having structural panels, panel stacking frames, stair structural parts, and elevator structural parts to visualize the structure.

[0014] In addition, another object of the present invention is to provide a modularly constructed H-beam structure with a foreign matter blocking portion to prevent foreign matter from leaking between stair structural parts.

[0015] The objects of the present invention are not limited to the above-mentioned objects, and other objects not mentioned above can be clearly understood from the following description.

[0016] Means used to solve problems

[0017] To solve the problem, according to an embodiment of the present invention, an H-beam structure that can be modularly constructed can be a structural panel 10 supported from the ground, and the corners of the structural panel 10 can be vertically installed to support the structural panel 10 so as not to detach, while the structural panel 10 is stacked upwardly in multiple layers, a panel stacking frame 20, a staircase 30 connecting the upper and lower spaces of the structural panel 10, and an external lifting layer frame 40 of the stacking layer 20.

[0018] In one embodiment, the modularly constructible H-beam structure may include a foreign matter blocking portion 100 disposed along a periphery of the staircase structure 30 to prevent foreign matter from leaking between the plurality of staircase structure portions 30 .

[0019] In one example, the foreign object blocking part 100 is in the shape of the blocking part horizontal guide rails 110 set on both sides of the step structure part 30, the blocking part circulating guide rails 120 set along one side of the step structure part 30, the blocking part curvature guide rails 130 set to connect the blocking part horizontal guide rails 110 and the blocking part circulating guide rails 120, the blocking part horizontal guide rails 110, the blocking part circulating guide rails 120 and the blocking part rotation rate 140 of the blocking part circulating guide rails 120, and can be connected to the shielding part 160 installed on the rotatable shaft rotation shaft 150, connected to the surrounding part of the shaft rotation shaft 150, and rotated integrally with the shaft rotation shaft 150, according to the blocking part rotation guide rails 140, the blocking part moving the blocking part 140, and the direction of the "blocking part rotation guide rail". The gear adjusting portion 300 is installed at the end of the blocking portion horizontal guide rail 110 and has a function of guiding the rotation of the rotation guide portion 200 , and can include a function of guiding the blocking portion moving gear 140 to rotate and move along the blocking portion horizontal guide rail 110 .

[0020] In one example, the rotation guide portion 200 is built into the interior of the component support shaft, and the rotation shaft support balls 210 are placed at a certain interval along the geometry of the axis rotation axis 150, which is built into the interior of the component support shaft, but has an "O"-shaped main body guide rail 220, a portion of the main body guide rail 220 is geometrically slidable with a rotation ball 230, and the rotation ball of the main body guide portion 230 can accommodate the external rotation axis of the component support shaft. The rotation axis rotation shaft 230 can accommodate the first convex inner side of the day elastically connected to the rotation axis of the rotation shaft 230. The protrusion support spring 250, the second protrusion support spring 260 elastically connected to the two inner sides of the protrusion receiving shell 240, the first protrusion support spring 250 and the second protrusion support spring 260 are elastically supported and engaged with the rotating shaft support ball 210, and may include a ball rotating protrusion 270 for rotating the rotating shaft support ball 210, a shell support gear 280 rotatable on both sides of the protrusion receiving shell 240, and a shell support rail 290 engaged with the shell support gear 280, and the shell support gear 280 can rotate and move.

[0021] In one example, the gear adjustment part 300 is located in the adjustment part shell 310 at the end of the partition horizontal guide rail 110, the adjustment part fixing part 320 on the inner rear section of the adjustment part shell 310, and the adjustment part fixing part 320 is formed in front of the adjustment part, but the air flow channel 340 is located around the adjustment part compression shaft 330 of the through hole, the adjustment part of the internal adjustment part 360 of the adjustment part compression shaft 330, and the adjustment part 350 of the adjustment part spring adjustment part of the adjustment part 360 to generate the elastic elasticity of the adjustment part. It is connected from the rear end of the auxiliary support frame 360 to the rear to form a frame support leg 370 of the bicycle, a compression protrusion 380 protruding inward on the adjustment part support frame 360 to form a compression channel 390, the front protrusion of the adjustment part shell 310 is inserted into the blocking part moving gear 140 and installed on the impact adjustment part protrusion 400, the protrusion support 410 installed at the rear, the adjustment part support shaft 420 installed at the rear of the protrusion support 410, the second adjustment part spring 430 installed around the adjustment part support shaft 420 to generate elastic force, and the end protrusion support 440 installed on the adjustment part support shaft 420 can be installed on the end buffer of the adjustment part protrusion support 440.

[0022] Effects of the Invention

[0023] According to the present invention, there is provided a modularly constructed H-beam structure having a structural panel, a panel stacking frame, a staircase structure, an elevator structure, and a foreign matter shielding portion.

[0024] Improve space efficiency and versatility

[0025] The combination of structural panels, panel stacking frames, staircase structural members, and elevator structural members maximizes space utilization. This improves vertical space utilization in multi-story structures.

[0026] Improved structural safety and durability

[0027] The modular H-beam structure provides strong structural stability. The panel stacking frame firmly supports the structural panels, enhancing the durability of the structure.

[0028] Easy to install and maintain

[0029] The modular design simplifies installation and maintenance, which directly contributes to saving time and costs.

[0030] Broad application prospects

[0031] The structure is suitable for buildings in various fields such as commercial, industrial, and residential. The flexible design provides a wide range of applications.

[0032] The effects produced by the present invention are not limited to the above examples, and the present invention includes more different effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 and Figure 2 It is an implementation drawing drawn according to the present invention.

[0034] Figure 3 and Figure 9 The detailed composition of the foreign matter blocking portion according to the present invention is listed.

[0035] Description of Reference Numerals

[0036] 10: Structure Panel

[0037] 20: Panel stacking frame

[0038] 30: Staircase structure

[0039] 40: Elevator structure

[0040] 100: Foreign matter blocking part

[0041] 110: Horizontal guide rail of shielding part

[0042] 120: Isolation circulation slide

[0043] 130: Shielding curvature guide rail

[0044] 140: Gear shift gear

[0045] 150: Axis rotation axis

[0046] 160: Shielding

[0047] 200: Rotation guide

[0048] 210: Rotating shaft support ball

[0049] 220: Main rail

[0050] 230: Ball Rotation Body

[0051] 240: Rotatable housing

[0052] 250: First protrusion support spring

[0053] 260: Second protrusion support spring

[0054] 270: Spinning ball

[0055] 280: Housing support gear

[0056] 290: Housing support rail

[0057] 300: Gear adjustment unit

[0058] 310: Adjustment housing

[0059] 320: Regulator fixing

[0060] 330: Adjustment unit compression shaft

[0061] 340: Air flow channel

[0062] 350: First adjustment spring

[0063] 360: Adjustment support frame

[0064] 370: frame support legs

[0065] 380: Compression bulge

[0066] 390: Compression channel

[0067] 400: Adjust the auxiliary protrusion

[0068] 410: Raised support

[0069] 420: Adjust the auxiliary support shaft

[0070] 430: Second adjustment part spring

[0071] 440: Buffer components DETAILED DESCRIPTION

[0072] The following describes various embodiments in more detail with reference to the accompanying figures. The embodiments described in this list are subject to numerous variations. Specific embodiments may be depicted in the figures and described in detail in the detailed description. However, the specific embodiments introduced in the accompanying figures are intended solely to facilitate understanding of the various embodiments. Therefore, the technical concept is not limited to the specific embodiments introduced in the accompanying figures and should be understood to encompass all equivalents and alternatives within the scope of the inventive concept and technology.

[0073] Terms including ordinal numbers, such as first, second, etc., may be used to describe various components, but these components are not limited to the terms. The terms are only used to distinguish one component from another.

[0074] In this specification, terms such as "including," "having," and the like should be understood as specifying the presence of a listed feature, number, step, action, component, part, or combination thereof, without excluding the possibility of the presence or addition of one or more other features, numbers, steps, actions, components, parts, or combinations thereof. When a component is referred to as being "connected" or "connected" to another component, it may be directly connected or connected to the other component, but it should be understood that other components may exist in between. On the other hand, when a component is referred to as being "directly connected" or "directly connected" to another component, it should be understood that no other components may exist in between.

[0075] In addition, the "module" or "parent" of a component used in this specification performs at least one function or operation. A "module" or "part" may perform a function or operation using hardware, software, or a combination of hardware and software. In addition, in addition to "modules" or "parents" that must be executed on specific hardware or at least on one processor, multiple "modules" or multiple "parents" may be combined into at least one module. Singular expressions include plural expressions unless the context clearly indicates a different meaning.

[0076] In addition, the power and power transmission and control thereof of the following components and implementation examples including "through control" follow conventional technologies and are omitted to avoid duplication of explanations.

[0077] In addition, regarding the operational embodiments and configurations that are not described in detail but are described schematically, they are omitted in order to focus on describing the purpose of the present invention and the effects thereof, in accordance with the prior art.

[0078] Furthermore, when describing the present invention, if it is considered that a detailed description of a function or configuration may unnecessarily obscure the gist of the present invention, the detailed description thereof will be omitted or omitted.

[0079] Figure 1 and Figure 2 It is an implementation drawing drawn according to the present invention.

[0080] Reference Figure 1 and Figure 2 The modularly constructed H-beam structure may include a structure panel 10 , a panel stacking frame 20 , a staircase structure 30 , an elevator structure 40 and a foreign matter isolation portion 100 .

[0081] [Implementation example]

[0082] The structural panel 10 is directly mounted on the ground for support.

[0083] The panels form the basis of an H-beam structure that can be constructed in modular form, providing structural stability and durability.

[0084] The panel stacking frame 20 is installed vertically from the corner of the structural panel 10 .

[0085] The frame stably supports the structural panel 10 and is designed to allow additional panels to be stacked upwards.

[0086] A stair structure portion 30 is provided to connect the upper and lower spaces of the structural panel 10 .

[0087] The staircase structure portion 30 facilitates inter-floor movement within the H-beam structure that can be constructed in a modular manner.

[0088] An elevator structure 40 is provided on the outer side of the panel stacking frame 20, and a lifting elevator is installed.

[0089] It connects multiple floors of a building and supports the vertical movement of heavy objects or people.

[0090] The staff enters the interior of the structure through the structure panel 10.

[0091] The structural panel 10 serves as the main entrance and exit of the structure.

[0092] Workers use the stair structure 30 to move to another level inside the structure.

[0093] The staircase structure portion 30 can achieve safe and convenient movement between floors.

[0094] When moving heavy equipment or materials, an operator uses a lifting elevator mounted on the elevator structure 40 .

[0095] This greatly improves work efficiency.

[0096] The following are the graphics that detail the creation of assembly relationships and the implementation of example effects based on the configuration.

[0097] Figure 3 and Figure 9 The detailed composition of the foreign matter blocking portion according to the present invention is listed.

[0098] Regarding the foreign matter shielding portion 100 , shielding portion horizontal guide rails 110 are installed on both sides of the circumference of the stair structure portion 30 .

[0099] Partition part circulation guide rails 120 are set at the front and rear ends of the stair structure part 30. The ends of the partition part horizontal guide rails 110 added to both ends of the partition part circulation guide rails 120 are connected into one in a curvature shape through the partition part curvature guide rails 130.

[0100] The shield moving gears 140 are arranged at regular intervals so as to be rotatable along the shapes of the shield horizontal guide rail 110 , the shield curvature guide rail 130 and the shield circulation guide rail 120 .

[0101] As shown in the figure, both ends of the shaft rotating shaft 150 are inserted, and the shaft rotating shaft 150 is placed vertically to connect the center of the isolation portion moving gear 140.

[0102] Partition members 170 are formed to extend outward at regular intervals around the member support shaft 160 .

[0103] At this time, the shielding members 170 may be arranged in a plate shape so that different shielding members 170 overlap with each other to prevent foreign matter from leaking out.

[0104] In the rotating guide rail 200 , the main body guide rail 220 is built into the component support shaft 160 and formed in a shape around the rotating shaft 150 .

[0105] The rotating shaft supporting balls 210 are in contact with the circumference of the rotating shaft 150 and are placed at a certain distance, but are fastened so as not to come out of the interior of the component supporting shaft 160 .

[0106] A rotating body 230 that is slidable along the geometry of the body rail 220 will be connected.

[0107] A rotating housing 240 may be accommodated on the A120 of the ball rotating body 230 .

[0108] A first protrusion supporting spring 250 is inscribed on A130 of the protrusion receiving housing 240 , and a second protrusion supporting spring 260 is inscribed on A140 - 1 and A140 - 2 .

[0109] The ball rotating protrusion 270 is elastically connected together by a first protrusion supporting spring 250 and multiple second protrusion supporting springs 260. The second protrusion supporting springs 260 will be placed on both sides of the ball rotating protrusion 270, and the lower end of the ball rotating protrusion 270 will be connected to the first protrusion supporting spring 250.

[0110] The housing support gears 280 are rotatably connected to both sides of the boss housing 240 .

[0111] A housing support rail 290 is installed on A130 - 1 and A130 - 2 , and the housing support gear 280 can rotate and move along the housing support rail 290 .

[0112] At this time, the ball rotation protrusion 270 protrudes toward the rotation shaft supporting ball 210 and can be in contact with the rotation shaft supporting ball 210 .

[0113] In the gear adjustment part 300 , it can be installed at the end of the isolation part horizontal guide rail 110 to hit the isolation part moving gear 140 and guide it to move along the isolation part horizontal guide rail 110 , the isolation part curvature guide rail 130 and the isolation part circulation guide rail 120 .

[0114] The adjustment portion housing 310 is mounted at the end of the isolation portion horizontal guide rail 110 .

[0115] On the inner rear section of the adjustment portion housing 310 , the rear section of the adjustment portion fixing member 320 is arranged in a horizontal direction.

[0116] The regulating portion compression shaft 330 is integrally formed with the regulating portion fixing member 320 over the entire cross section thereof so as to face the blocking portion moving gear 140 and form an air flow passage 340 in the center.

[0117] The peripheral portion of the adjustment portion compression shaft 330 will contract the first adjustment portion spring 350 .

[0118] On both sides of the interior of the adjustment part shell 310, the adjustment part support frames 360 are installed inwardly to each other, but the rear end of the adjustment part support frame 360 is formed by the frame support leg 370 extending toward the adjustment part fixing member 320, which can support the adjustment part fixing member 320 and the first adjustment part spring 350.

[0119] At this time, an end difference is formed at the connection between the frame support leg 370 and the adjustment part support frame 360, which can prevent the first adjustment part spring 350 from being separated.

[0120] An inward compression protrusion 380 is formed on the inner side of the adjustment portion support frame 360 , forming a compression channel 390 as shown in the figure.

[0121] The buffer member 440 is arranged to cut through the storage tank in a horizontal direction.

[0122] The adjustment portion support shaft 420 is installed on the buffer member 440 in a “1” direction.

[0123] Next, at the front end of the adjustment part support shaft 420, the protrusion support member 410 is installed in the "-" direction, and the front end of the protrusion support member 410 protrudes the adjustment part protrusion 400 in the "1" direction, which can contact the circumference of the blocking part moving gear 140.

[0124] On the other hand, the second regulating portion spring 430 may be fastened at a peripheral portion of the regulating portion support shaft 420 , but may be supported by both sides of the rear end of the protruding support 410 .

[0125] [Implementation example]

[0126] Through control, the adjustment part fixing member 320 moves the adjustment part compression shaft 330 toward the compression channel 390 , and air moves from the air flow channel 340 to the compression channel 390 , forming compressed air.

[0127] Then, as the adjustment part compression shaft 330 moves forward, the elastic force of the first adjustment part spring 350 relieves the impact on the adjustment part compression shaft 330 and the adjustment part fixing member 320 , so that they return to their original positions.

[0128] Then, as the compressed air is temporarily stored in the storage tank, the adjustment unit compression shaft 330 moves forward, the adjustment unit support frame 360 hits the buffer 440 , and the compressed air stored in the storage tank also hits the buffer 440 .

[0129] Then, the hit buffer member 440 advances the regulating portion support shaft 420 , the protrusion support member 410 , and the regulating portion protrusion 400 toward the surrounding portion of the blocking portion moving gear 140 .

[0130] Then, the elastic force of the second adjusting portion spring 430 reduces the impact of the advancing adjusting portion support shaft 420 and restores it to its original position.

[0131] Then, the advancing regulating sub-protrusion 400 strikes the peripheral portion of the intercepting portion moving gear 140 , and the intercepting portion moving gear 140 moves a certain distance along the shape of the intercepting portion horizontal guide rail 110 .

[0132] Then, by the constant distance movement of the partition moving gear 140 , the shaft rotating shaft 150 rotates the member supporting shaft 160 , and the various partitions 170 are folded up and sealed to prevent foreign matter from flowing into the stair structure 30 .

[0133] Next, in order to adjust the rotation of the shaft rotating shaft 150 and the member supporting shaft 160 , the ball rotating body 230 is controlled to slide along the guide rail 220 .

[0134] Then, the ball rotating protrusion 270 is elastically supported by the elastic forces of the first protrusion supporting spring 250 and the second protrusion supporting spring 260 , and the ball 210 is supported by the rotating shaft.

[0135] Next, the housing support gear 280 is moved along the housing support guide rail 290 to adjust the distance so that the rotatable housing 240 moves toward the rotation shaft support ball 210 or moves backward.

[0136] Then, the rotating shaft supporting ball 210 may rotate the shaft rotating shaft 150 to adjust the rotation of the shield portion moving gear 140 and guide the shielding member 170 to be closed or opened.

[0137] The above describes and illustrates the ideal embodiment of the present invention, but the present invention is not limited to the specific embodiment described. Without exceeding the gist of the present invention as claimed in the claims, it can be implemented in many different ways by people with ordinary knowledge within the technical field to which the invention belongs, and these different implementations cannot be understood individually from the technical ideas or prospects of the present invention.

Claims

1. An H-beam structure capable of modular construction, wherein: The H-beam structure capable of modular construction comprises: Ground-supported structural panels; It is vertically installed at the edge of the structural panel to support the structural panel so as not to separate, and is provided with a panel stacking frame to enable the structural panels to be stacked upwards in multiples; A staircase structure connecting the upper and lower spaces of the structural panel; an elevator structure mounted on the outside of the panel stacking frame and equipped for mounting a lifting elevator; and A foreign matter blocking portion is provided along the periphery of the stair structure portion and is provided to prevent foreign matter from leaking between the plurality of stair structure portions. The foreign matter blocking portion includes: Horizontal guide rails of the shielding portion are arranged along the surrounding portions on both sides of the stair structure portion; A shielding portion circulation guide rail provided along a side perimeter of the staircase structure; a shielding part curvature guide rail provided for connecting the shielding part horizontal guide rail and the shielding part circulation guide rail; a shield portion moving gear rotatably movable along the shapes of the shield portion horizontal guide rail, the shield portion circulation guide rail, and the shield portion curvature guide rail; In order to connect the gear shifting gear, a rotating shaft is installed in the direction of "1" and has a rotatable shaft; a shielding member connected around the shaft rotating shaft and rotating integrally with the shaft rotating shaft; A rotation guide portion is built into the interior of the member support shaft and is provided to guide the rotation of the shaft rotation shaft; and The gear adjustment portion is mounted on the end of the shielding portion horizontal guide rail and is provided with a gear adjustment portion for guiding the shielding portion moving gear to rotate and move along the shielding portion horizontal guide rail.

2. The modularly constructible H-beam structure according to claim 1, wherein: The rotation guide portion includes: Rotating shaft supporting balls embedded in the interior of the component supporting shaft and placed at certain intervals along the shape of the shaft rotating shaft so as to engage and rotate with the outer portion of the circumference of the shaft rotating shaft; Built into the support shaft of the component, it has an "O"-shaped main body guide rail; a ball rotating body that can slide geometrically along the body slide rail; A housing with partially open protrusions is installed at intervals on the inner side of the ball rotating body; a first protrusion supporting spring elastically connected to an inner side of the protrusion receiving housing; a second protrusion supporting spring elastically connected to the inner side of the beam of the protrusion receiving housing; The first protrusion support spring and the second protrusion support spring are elastically supported, cooperate with the rotation shaft support ball, and have a rolling ball rotating protrusion for rotating the rotation shaft support ball; rotatable housing supporting gears on either side of the rotatable housing; and The housing support gear is engaged with the housing support gear, and the housing support gear has a housing support rail that is rotatably movable.