Fence module and fence device

By designing a fence module with tenon and tongue and groove, the problem of cumbersome connection operation of traditional fence devices is solved, and a more convenient fence structure setting is achieved on the construction site.

CN222909656UActive Publication Date: 2025-05-27CHINA RAILWAY 19TH BUREAU GRP FIFTH ENG CO LTD +1
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Patent Information

Application Number
CN202421471752.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-05-27
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

Traditional fence devices are complicated to operate when multiple baffles are connected to each other, which affects convenience.

Method used

A barrier module is designed, with the baffle having a tenon along one side edge along the length direction and a tenon groove on the other side edge. The notch of the tenon groove is facing away from the tenon groove, and the groove walls on both sides are equipped with installation openings, allowing the tenon to pass through the notch or installation opening to be inserted into the tenon groove.

Benefits of technology

Through the plugging of the tenon and the tongue and groove, the connection operation between the baffles is simplified and the convenience of setting up the fence structure surrounding the construction site is improved.

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Abstract

The utility model relates to the technical field of construction auxiliary devices, and provides a fence module and a fence device. Wherein the fence module comprises a baffle plate; a tenon is arranged on the edge of one side of the baffle in the length direction of the baffle in a protruding mode, a mortise is formed in the edge of the other side of the baffle, and a groove opening of the mortise is formed back to the tenon in the length direction of the baffle. Mounting openings are formed in the groove walls of the two sides, in the width direction of the baffles, of the mortise, and the tenon on one baffle can penetrate through any one of the groove opening of the mortise in the other baffle and the mounting opening, so that the tenon on one baffle can be matched with the mortise in the other baffle in an inserted connection mode. The tenons are connected with the mortises in an inserted mode through the notches and the installation openings, so that the adjacent baffles are connected to form the fence structure, namely, the fence structure surrounding a construction site can be formed by connecting the multiple fence modules in an inserted mode through the tenons and the mortises, the operation of connecting the multiple baffles is simplified, and the construction efficiency is improved. And the convenience of arranging the enclosure structure surrounding the construction site is improved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of construction auxiliary devices, and in particular to a containment module and a containment device. Background Art

[0002] The main function of the building construction enclosure device is to effectively isolate the construction site, prevent non-construction personnel from entering, and reduce safety accidents caused by mistakenly entering the construction area. At the same time, the enclosure device can also block splashes, falling rocks, etc. generated by construction to protect the safety of surrounding residents and pedestrians. Through the shielding of the enclosure device, the noise, dust and other pollutants generated by the construction are confined to the construction area, reducing the impact on the surrounding environment. Traditional enclosure devices usually include multiple baffles, which are interconnected to form an enclosure structure surrounding the construction site. However, when multiple baffles are connected to each other, it is usually necessary to use a connecting piece to connect two adjacent baffles, which makes the operation of connecting multiple baffles to each other cumbersome, affecting the convenience of setting up an enclosure structure surrounding the construction site at the construction site. Utility Model Content

[0003] In order to solve the above technical problems or at least partially solve the above technical problems, the present disclosure provides an enclosure module and an enclosure device.

[0004] The present disclosure provides an enclosure module, comprising a baffle;

[0005] The baffle plate has a tenon protruding from one side edge along the length direction of the baffle plate, and a tenon groove is provided on the other side edge, and the notch of the tenon groove is arranged along the length direction of the baffle plate away from the tenon;

[0006] The mortise and tenon are provided with installation openings on both side walls along the width direction of the baffle, and the tenon on one baffle can pass through any one of the notch and the installation opening of the mortise and tenon on the other baffle, so that the tenon on one baffle can be plugged into and matched with the mortise and tenon of the other baffle.

[0007] Optionally, the tenon is elastic, and a dimension of the tenon in the height direction of the baffle is larger than a dimension of the tenon groove in the height direction of the baffle, so that the tenon of one baffle abuts against the groove walls on both sides of the height direction of the baffle with the tenon groove on another baffle along both sides of the height direction of the baffle.

[0008] Optionally, the baffle is provided with a plurality of tenons on one side edge in the length direction of the baffle, and a plurality of tenons are provided on the other side edge, the plurality of tenons are arranged at intervals along the height direction of the baffle, the plurality of tenons are arranged at intervals along the height direction of the baffle, and the plurality of tenons and the plurality of tenons are arranged relatively to each other in a one-to-one correspondence in the length direction of the baffle.

[0009] Optionally, a plurality of tenons are arranged at equal intervals along the height direction of the baffle; a plurality of protrusions are provided on one side edge of the baffle away from the tenons, and the plurality of protrusions are arranged at equal intervals along the height direction of the baffle, and the space between each two adjacent protrusions forms the tenon groove, so that two adjacent protrusions form openings for the tenons to be inserted in both the height direction and the width direction of the baffle.

[0010] Optionally, the mounting opening extends along the length direction of the baffle to the notch of the mortise and tenon, so that the mounting opening is connected to the notch of the mortise and tenon.

[0011] Optionally, a dimension of the tenon along the width direction of the baffle is equal to a dimension of the tenon groove along the length direction of the baffle.

[0012] Optionally, the enclosure device further comprises a fixing rod, the tenon is provided with a mounting hole, the mounting hole penetrates the tenon along the height direction of the baffle, the groove walls on both sides of the tenon groove along the height direction of the baffle are provided with assembly through holes, the assembly through holes penetrate the groove walls of the tenon groove;

[0013] When the tenon is in the tenon groove, the fixing rod is inserted into the mounting hole and the assembly through hole.

[0014] Optionally, a dimension of the tenon along the length direction of the baffle is equal to a dimension of the tenon groove along the length direction of the baffle.

[0015] Optionally, a dimension of the tenon along the length direction of the baffle is equal to a dimension of the tenon groove along the width direction of the baffle.

[0016] The present disclosure also provides an enclosure device, comprising a plurality of enclosure modules as described in any one of the above items;

[0017] The plurality of baffles are arranged in sequence, and the tenon of one of every two adjacent baffles is plug-fitted with the tenon groove of the other baffle.

[0018] Compared with the prior art, the technical solution provided by the present invention has the following advantages:

[0019] The present disclosure provides an enclosure module and an enclosure device, wherein the enclosure module includes a baffle; a tenon is protruding from one side edge of the baffle along the length direction of the baffle, and a tenon groove is provided on the other side edge, and the notch of the tenon groove is arranged in the length direction of the baffle away from the tenon; installation openings are arranged on both sides of the groove wall of the tenon groove along the width direction of the baffle, and the tenon on one baffle can pass through any one of the notch and the installation opening of the tenon groove on the other baffle, so that the tenon on one baffle can be plugged and matched with the tenon groove of the other baffle. The tenon is plugged with the tenon groove through the notch, so that adjacent baffles are in the same plane to form an enclosure extending in one direction, and the tenon is plugged with the tenon groove through the installation opening to make the adjacent baffles perpendicular to each other, so that the extension direction of the enclosure is turned, that is, multiple enclosure modules can form an enclosure structure surrounding a construction site by plugging and connecting the tenon and the tenon groove, which simplifies the operation of connecting multiple baffles to each other and improves the convenience of setting an enclosure structure surrounding a construction site. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.

[0021] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0022] Figure 1 This is a schematic diagram of the structure of the baffle according to an embodiment of the present disclosure;

[0023] Figure 2 This is one of the structural schematic diagrams of the two baffles connected to each other according to the embodiment of the present disclosure;

[0024] Figure 3 This is the second structural schematic diagram of the two baffles connected to each other according to the embodiment of the present disclosure.

[0025] Among them, 1. baffle; 11. tenon; 12. bump; 13. mortise and tenon groove; 14. mounting hole; 15. assembly through hole; 2. fixing rod. DETAILED DESCRIPTION

[0026] In order to more clearly understand the above-mentioned objectives, features and advantages of the present disclosure, the scheme of the present disclosure will be further described below. It should be noted that the embodiments of the present disclosure and the features in the embodiments can be combined with each other without conflict.

[0027] In the following description, many specific details are set forth to facilitate a full understanding of the present disclosure, but the present disclosure may also be implemented in other ways different from those described herein; it is obvious that the embodiments in the specification are only part of the embodiments of the present disclosure, rather than all of the embodiments.

[0028] Reference Figures 1 to 3 As shown, an embodiment of the present disclosure provides an enclosure module, including a baffle 1; a tenon 11 is protrudingly provided on one side edge of the baffle 1 along the length direction of the baffle 1, and a tenon groove 13 is provided on the other side edge, and the notch of the tenon groove 13 is arranged away from the tenon 11 along the length direction of the baffle 1; installation openings are provided on both side groove walls of the tenon groove 13 along the width direction of the baffle 1, and the tenon 11 on one baffle 1 can pass through any one of the notch and the installation opening of the tenon groove 13 on another baffle 1, so that the tenon 11 on one baffle 1 can be plugged and matched with the tenon groove 13 of the other baffle 1.

[0029] Specifically, the baffle 1 can be selected to be a rectangular plate structure. When the baffle 1 is actually used, refer to Figure 1 As shown, the baffle 1 is vertically arranged on the ground, the vertical direction of the baffle 1 is the height direction c of the baffle 1 , and the length direction a of the baffle 1 and the width direction b of the baffle 1 are perpendicular to the height direction c of the baffle 1 .

[0030] The above-mentioned baffle 1 has a block structure protruding from one side edge along the length direction a as a tenon 11, and the other side edge is recessed along the length direction a to form a tenon groove 13. The tenon groove 13 has through holes on both side walls in the width direction b of the baffle 1 as installation openings, or the side surface of the tenon groove 13 on the groove wall in the width direction b of the baffle 1, which is away from the bottom of the tenon groove 13, is recessed toward the bottom of the tenon groove 13, so that the height of the groove wall of the tenon groove 13 in the width direction b of the baffle 1 is smaller than the height of the groove walls on both sides of the tenon groove 13 in the height direction c of the baffle 1, thereby forming an installation opening on the side of the groove wall of the tenon groove 13 in the width direction b of the baffle 1, which is away from the bottom of the tenon groove 13.

[0031] The sizes of the notch and the installation opening of the above-mentioned mortise 13 match the sizes of the tenon 11, that is, the sizes of the notch and the installation opening of the mortise 13 are greater than or equal to the sizes of the tenon 11, so that the tenon 11 can be inserted into the mortise 13 through the notch of the mortise 13, or the tenon 11 can be inserted into the mortise 13 through the installation opening of the mortise 13.

[0032] The distance between the groove walls on both sides of the above-mentioned mortise and tenon 13 in the height direction c of the baffle 1 can be selected to be equal to the size of the tenon 11 in the height direction c of the baffle 1, so that after the tenon 11 is inserted into the mortise and tenon 13, the two side surfaces of the tenon 11 in the height direction c of the baffle 1 and the surfaces of the groove walls on both sides of the tenon and tenon 13 in the height direction c of the baffle 1 fit each other, and the tenon 11 and the mortise and tenon 13 are kept in an inserted state through friction, so that the edges of the two baffles 1 are connected to each other.

[0033] Of course, it is also possible to choose a distance between the opposite side groove walls of the tenon groove 13 in the height direction c of the baffle plate 1 that is smaller than the size of the tenon 11 in the height direction c of the baffle plate 1. The tenon 11 is elastic. After the tenon 11 is inserted into the tenon 11 through elastic deformation, the two side surfaces of the tenon 11 in the height direction c of the baffle plate 1 abut against the surfaces of the two side groove walls of the tenon groove 13 in the height direction c of the baffle plate 1. The friction force between the tenon 11 and the groove walls of the tenon groove 13 in the height direction c of the baffle plate 1 keeps the tenon 11 in a plug-in connection state with the tenon groove 13.

[0034] When the tenon 11 of one baffle 1 is plugged into the tenon groove 13 of another baffle 1 through the notch of the tenon groove 13, the two baffles 1 are in the same plane, for example Figure 2 As shown, the interconnected baffles 1 can form a shield for the construction site in one direction; when the tenon 11 of one baffle 1 passes through the installation opening of the tenon groove 13 of another baffle 1 and is plugged into the tenon groove 13, the two baffles 1 are perpendicular to each other, for example Figure 3 As shown, at this time, the two baffles 1 can shield the corners of the construction site, and can change the overall direction of multiple baffles 1 when connected to each other to adapt to construction sites with different shapes, and make the multiple baffles 1 connected to each other through multiple turns to be connected end to end to surround the entire construction site.

[0035] The above-mentioned mortise and tenon 13 can be selected as a groove formed by a depression on a side surface of the baffle 1 away from the tenon 11 along the length direction a. Of course, two protrusions 12 can also be selected to be set on the side of the baffle 1 away from the tenon 11 along the length direction a. The two protrusions 12 are arranged at intervals along the height direction c of the baffle 1, and the space between the two protrusions 12 forms the mortise and tenon 13. The tenon 11 is inserted between the two protrusions 12, and the space between the two protrusions 12 forms the mortise and tenon 13. The gap formed by each adjacent two protrusions 12 and the edge of the baffle 1 in the width direction of the baffle 1 is an installation opening; the tenon 11 can be inserted between the two protrusions 12 along the length direction a of the baffle 1, and the tenon 11 can also be inserted between the two protrusions 12 along the width direction b of the baffle 1.

[0036] When the enclosure module provided by the embodiment of the present disclosure is used specifically, multiple baffles 1 are vertically set on the ground. The multiple baffles 1 are first arranged in sequence along one direction on one edge of the construction site. The tenon 11 of one baffle 1 of two adjacent baffles 1 is plugged into the tenon 13 through the notch of the other baffle 1 to complete the operation of connecting the two baffles 1 to each other in the same plane. The multiple baffles 1 are connected to each other in the same plane in sequence to form a planar enclosure.

[0037] When the plane fence needs to be turned to cover the remaining edges of the construction site, the tenon 11 of a baffle 1 is plugged into the tenon groove 13 through the installation opening of a baffle 1 at the edge of the plane fence, so that another baffle 1 is vertically connected to the baffle 1 at the edge of the plane fence, and multiple baffles 1 are connected in the same plane behind the baffle 1 perpendicular to the plane fence to change the extension direction of the plane fence.

[0038] Repeat the above operation to connect multiple baffles 1 to form multiple planar enclosures surrounding the construction site and connected to each other, so that multiple enclosure modules can be connected to each other to form a shielding structure surrounding the construction site on the outside of the construction site.

[0039] The enclosure module provided by the embodiment of the present disclosure includes a baffle 1; a tenon 11 is protrudingly provided on one side edge of the baffle 1 along the length direction of the baffle 1, and a tenon groove 13 is provided on the other side edge, and the notch of the tenon groove 13 is arranged away from the tenon 11 along the length direction of the baffle 1; installation openings are provided on the two side groove walls of the tenon groove 13 along the width direction of the baffle 1, and the tenon 11 on one baffle 1 can pass through any one of the notch and the installation opening of the tenon groove 13 on the other baffle 1, so that the tenon 11 on one baffle 1 can be plugged and matched with the tenon groove 13 of the other baffle 1. The tenon 11 is plugged into the tenon groove 13 through the notch, so that the adjacent baffles 1 are in the same plane to form an enclosure extending in one direction. The tenon 11 can be plugged into the tenon groove 13 through the installation opening to make the adjacent baffles 1 perpendicular to each other, thereby turning the extension direction of the enclosure, that is, multiple enclosure modules can be connected by plugging the tenon 11 and the tenon groove 13 to form an enclosure structure surrounding the construction site, which simplifies the operation of connecting multiple baffles to each other and improves the convenience of setting up the enclosure structure surrounding the construction site.

[0040] Reference Figure 2 and Figure 3As shown, in some embodiments, the tenon 11 is elastic, and the size of the tenon 11 in the height direction of the baffle 1 is larger than the size of the tenon groove 13 in the height direction of the baffle 1, so that the tenon 11 of one baffle 1 along the two sides of the height direction of the baffle 1 abuts against the two sides of the groove wall of the tenon groove 13 on the other baffle 1 in the height direction of the baffle 1. In this way, the tenon 11 can be inserted into the tenon groove 13 after elastic deformation, and the elasticity of the tenon 11 itself makes the two sides of the tenon 11 along the height direction of the baffle 1 and the two sides of the tenon groove 13 along the height direction of the baffle 1 fit closely, increasing the friction between the tenon 11 and the tenon groove 13, and improving the stability of the tenon 11 in the tenon groove 13.

[0041] Specifically, the tenon 11 and the baffle 1 can be made of plastic, and the tenon 11 can be connected to the baffle 1 by ultrasonic welding. Of course, the tenon 11 and the baffle 1 can also be an integrated structure; of course, the tenon 11 can also be a rubber head. As long as the tenon 11 can be elastically deformed and inserted into the tenon groove 13, the two side surfaces of the tenon 11 in the height direction of the baffle 1 abut against the two side groove walls of the tenon 13 in the height direction of the baffle 1, and the friction between the tenon 11 and the groove walls of the tenon 13 keeps the relative position of the tenon 11 and the tenon groove 13 stable. The tenon 11 is elastic, so when the tenon 11 is inserted into the tenon groove 13, the tenon 11 is compressed in the height direction of the baffle 1. When the tenon 11 is in the tenon groove 13, the elasticity of the tenon 11 itself makes the two sides of the tenon 11 along the height direction of the baffle 1 and the two sides of the tenon groove 13 along the height direction of the baffle 1 fit tightly, increasing the friction between the tenon 11 and the tenon groove 13 and improving the stability of the tenon 11 in the tenon groove 13.

[0042] Reference Figures 1 to 3 As shown, in some embodiments, the baffle 1 is provided with a plurality of tenons 11 on one side edge in the length direction of the baffle 1, and a plurality of tenons 13 are provided on the other side edge, the plurality of tenons 11 are arranged at intervals along the height direction of the baffle 1, the plurality of tenons 13 are arranged at intervals along the height direction of the baffle 1, and the plurality of tenons 11 and the plurality of tenons 13 are arranged in a one-to-one correspondence relative to each other in the length direction of the baffle 1. With such an arrangement, when two baffles 1 are connected, the plurality of tenons 11 on one baffle 1 and the plurality of tenons 13 on the other baffle 1 are plug-connected in a one-to-one correspondence, thereby improving the stability of the two baffles 1 when they are connected to each other.

[0043] Specifically, five tenons 11 can be provided on one edge of the baffle 1, and five tenons 13 can be provided on the other edge. The five tenons 11 and the five tenons 13 are relatively arranged in a one-to-one correspondence in the length direction of the baffle 1. When the two baffles 1 are vertically arranged and at the same height, the side of one baffle 1 with the tenon 11 moves toward the side of the other baffle 1 with the tenon 13, so that the five tenons 11 of one baffle 1 can be plugged and connected with the five tenons 13 of the other baffle 1 in a one-to-one correspondence.

[0044] Of course, you can also choose to set another number of tenons 11 on one edge of the baffle 1, and another number of tenons 13 on the other edge, and the number of tenons 11 and tenons 13 are consistent, so that when the two baffles 1 are vertically arranged and at the same height, the side of one baffle 1 with the tenon 11 moves toward the side of the other baffle 1 with the tenon 13, so that the multiple tenons 11 on one baffle 1 can be plug-connected with the multiple tenons 13 on the other baffle 1 in a one-to-one corresponding manner, so that the two baffles 1 are connected to each other to form a part of the enclosure.

[0045] Reference Figures 1 to 3 As shown, in some embodiments, a plurality of tenons 11 are arranged at equal intervals along the height direction of the baffle 1; a plurality of protrusions 12 are arranged at one side edge of the baffle 1 away from the tenons 11, and the plurality of protrusions 12 are arranged at equal intervals along the height direction of the baffle 1, and a tenon groove 13 is formed in the space between each two adjacent protrusions 12, so that the two adjacent protrusions 12 form an opening for the tenon 11 to be inserted in both the height direction and the width direction of the baffle 1. In this way, most of the protrusions 12 can serve as the groove wall shared by two adjacent tenons 13, and the structure of the protrusions 12 is simple and the setting cost is low. By reasonably arranging the plurality of protrusions 12, a plurality of tenons 13 corresponding to the plurality of tenons 11 can be formed on the edge of the baffle 1, thereby improving the convenience of setting the plurality of tenons 13 on the edge of the baffle 1.

[0046] Specifically, the tenon 11 can be selected to be a rectangular block structure, the protrusion 12 can be selected to be a rectangular block structure, and multiple protrusions 12 can be spaced apart along the height direction of the baffle 1, so that the space between two adjacent protrusions 12 is a tenon groove 13, so that the tenon 11 can be moved along the length direction of the baffle 1 and inserted between the two protrusions 12, and the tenon 11 can also be moved along the width direction of the baffle 1 and inserted between the two protrusions 12; that is, the opening formed by two adjacent protrusions 12 along the length direction of the baffle 1 on the side facing away from the baffle 1 is a notch of the tenon groove 13, and the opening formed by two adjacent protrusions 12 along the width side of the baffle 1 is an installation opening of the tenon groove 13.

[0047] The number of the above-mentioned protrusions 12 is one more than the number of the tenons 11, so that the multiple protrusions 12 can form a number of tenons 13 equal to the number of the multiple tenons 11; the position of the protrusion 12 and the two tenons 11 can be relatively set in the length direction of the baffle 1, so that the multiple tenons 13 formed by the multiple protrusions 12 and the multiple tenons 11 are relatively set in a one-to-one correspondence in the length direction of the baffle 1.

[0048] Reference Figure 1 , Figure 2 and Figure 3As shown, in some embodiments, the installation opening extends along the length direction of the baffle 1 to the notch of the tenon groove 13, so that the installation opening is connected with the notch of the tenon groove 13. Such a configuration facilitates the tenon 11 to be inserted into the tenon groove 13 through the notch or the installation opening, and the tenon 11 and the tenon groove 13 remain in a plugged state. When a user pushes a baffle 1, the tenon 11 overcomes the friction with the tenon groove 13 and rotates in the tenon groove 13, so that the two baffles 1 can be switched between being perpendicular to each other and being in the same plane, so that multiple baffles 1 can surround the construction site.

[0049] Specifically, the installation opening is connected with the notch of the tenon 13, and the groove walls on both sides of the tenon 13 in the width direction of the baffle 1 can be selected to be recessed on the side facing away from the baffle 1 in the length direction of the baffle 1, so that the groove walls on both sides of the tenon 13 in the width direction of the baffle 1 and the groove walls on both sides of the tenon 13 in the length direction of the baffle 1 form a gap together, and the gap is the installation opening, so that the installation opening is connected with the tenon 13; of course, two protrusions 12 can also be selected to be arranged on the edge of the baffle 1 along the height direction of the baffle 1, the space between the two protrusions 12 is the tenon 13, the opening formed by the two protrusions 12 in the length direction of the baffle 1 is the notch, and the opening formed by the two protrusions 12 in the width direction of the baffle 1 is the installation opening, so that the installation opening and the notch are connected with each other.

[0050] After the tenon 11 is inserted into the tenon groove 13, the user pushes a baffle 1 so that the tenon 11 can overcome the friction with the tenon groove 13 and rotate in the tenon groove 13, so that the two baffles 1 can switch between being perpendicular to each other and being in the same plane while the tenon 11 and the tenon groove 13 remain plugged in.

[0051] Reference Figure 1 , Figure 2 and Figure 3 As shown, in some embodiments, the dimension of the tenon 11 along the width direction of the baffle 1 is equal to the dimension of the tenon groove 13 along the length direction of the baffle 1. In this way, after the tenon 11 is inserted into the tenon groove 13 through an installation opening along the width direction of the baffle 1, the side of the tenon 11 away from the bottom of the tenon groove 13 is flush with the notch of the tenon groove 13, thereby improving the aesthetics of the two connected baffles 1.

[0052] Specifically, the dimension of the tenon 11 along the width direction of the baffle 1 is equal to the dimension of the tenon groove 13 along the length direction of the baffle 1. After the tenon 11 is inserted into the tenon groove 13 through an installation opening along the width direction of the baffle 1, the side of the tenon 11 away from the bottom of the tenon groove 13 is flush with the notch of the tenon groove 13.

[0053] Reference Figure 1 , Figure 2 and Figure 3As shown, in some embodiments, the enclosure device further comprises a fixing rod 2, a mounting hole 14 is provided on the tenon 11, the mounting hole 14 penetrates the tenon 11 along the height direction of the baffle 1, and an assembly through hole 15 is provided on the groove walls on both sides of the tenon groove 13 along the height direction of the baffle 1, and the assembly through hole 15 penetrates the groove wall of the tenon groove 13; when the tenon 11 is in the tenon groove 13, the fixing rod 2 is penetrated in the mounting hole 14 and the assembly through hole 15. In this way, the fixing rod 2 is penetrated in the mounting hole 14 and the assembly through hole 15, so that the fixing rod 2 plays a limiting role on the tenon 11, restricting the tenon 11 from coming out of the tenon groove 13, and improving the stability of the connection between the two baffles 1; and when the user pushes one baffle 1 to move, the two baffles 1 can rotate relative to each other with the fixing rod 2 as the rotation axis, thereby improving the stability of the connection between the two baffles 1 when the angle between the two connected baffles 1 is changed.

[0054] Specifically, the mounting hole 14 can be selected to penetrate the tenon 11 along the height direction of the baffle 1, and the assembly through hole 15 can be selected to penetrate the groove wall of the tenon groove 13 along the height direction of the baffle 1, so that after the tenon 11 is inserted into the tenon groove 13, the mounting hole 14 and the assembly through hole 15 are coaxial, and the fixing rod 2 is inserted into the mounting hole 14 and the assembly through hole 15 along the height direction of the baffle 1, thereby limiting the tenon 11 from escaping from the tenon groove 13.

[0055] When the number of the above-mentioned tenons 11 is multiple, the mounting holes 14 on the multiple tenons 11 are coaxially arranged, and when the number of the tenons 13 is multiple, the assembly through holes 15 on the multiple tenons 13 are coaxially arranged, so that when the multiple tenons 11 are correspondingly plugged into the multiple tenons 13, the multiple mounting holes 14 are coaxial with the multiple assembly through holes 15, so that the fixing rod 2 can be simultaneously penetrated into the multiple mounting holes 14 and the multiple assembly through holes 15 to limit the multiple tenons 11 from escaping from the multiple tenons 13.

[0056] Reference Figure 1 , Figure 2 and Figure 3 As shown, in some embodiments, the size of the tenon 11 along the length direction of the baffle 1 is equal to the size of the tenon groove 13 along the length direction of the baffle 1. In this way, after the tenon 11 is inserted into the notch of the tenon groove 13 along the length direction of the baffle 1, the edges of the two baffles 1 can fit each other, reducing the gap between the two connected baffles 1, and improving the shielding effect of the construction site after the multiple baffles 1 are connected.

[0057] Specifically, the size of the tenon 11 along the length direction of the baffle 1 is equal to the size of the tenon groove 13 along the length direction of the baffle 1, so that when the tenon 11 is inserted into the notch of the tenon groove 13 along the length direction of the baffle 1, the edges of the two baffles 1 close to each other can fit together, reducing the gap between the two baffles 1 connected to each other.

[0058] Reference Figure 1 , Figure 2 and Figure 3 As shown, in some embodiments, the size of the tenon 11 along the length direction of the baffle 1 is equal to the size of the tenon groove 13 along the width direction of the baffle 1. In this way, after the tenon 11 is inserted into the tenon groove 13 through one installation opening along the width direction of the baffle 1, the end surface of the tenon 11 in the length direction of the baffle 1 is flush with the other installation opening, thereby improving the aesthetics of the two baffles 1 after being connected.

[0059] Specifically, the dimension of the tenon 11 along the length direction of the baffle 1 is equal to the dimension of the tenon groove 13 along the width direction of the baffle 1, so that after the tenon 11 is inserted into the tenon groove 13 through the installation opening along the width direction of the baffle 1, the end face of the tenon 11 in the poison transfer direction of the baffle 1 is flush with the other installation opening.

[0060] The disclosed embodiment also provides an enclosure device, comprising a plurality of the above-mentioned enclosure modules; a plurality of baffles 1 are arranged in sequence, and the tenon 11 of one baffle 1 of each two adjacent baffles 1 is plugged into and matched with the tenon groove 13 of the other baffle 1.

[0061] By plugging and fitting the tenons 11 and the tenons 13 of the multiple baffles 1, the multiple baffles 1 are arranged in sequence and connected to each other, so that the multiple baffles 1 are connected to each other to form a fence structure capable of shielding the construction site, and the setting direction of the fence structure formed by the multiple baffles 1 is controlled by plugging the tenons 11 with the tenons 13 through the notches and the installation openings, so that the fence structure formed by the multiple baffles 1 can include the construction site, and the multiple baffles 1 that can surround the construction site can be conveniently set by connecting multiple enclosure modules, so as to quickly and conveniently shield the construction site.

[0062] When the enclosure module and the enclosure device provided by the embodiments of the present disclosure are used specifically, a plurality of baffles 1 are vertically set on the ground, and the plurality of baffles 1 are first arranged in sequence along a direction on one side edge of the construction site, and the plurality of tenons 11 of one baffle 1 of two adjacent baffles 1 are passed through the notches of the plurality of tenons 13 of the other baffle 1 in a one-to-one manner, so that the plurality of tenons 11 of one baffle 1 of the two adjacent baffles 1 are plugged and connected with the plurality of tenons 13 in a one-to-one manner, and the fixing rod 2 is passed through the plurality of mounting holes 14 and the plurality of assembly through holes 15, so as to complete the operation of connecting the two baffles 1 to each other in a manner of being in the same plane, and the plurality of baffles 1 are connected to each other in a manner of being in the same plane in sequence to form a planar enclosure.

[0063] When the plane fence needs to be turned to cover the remaining edges of the construction site, multiple tenons 11 on a baffle 1 pass through the installation opening on one side of multiple tenons 13 on a baffle 1 at the edge of the plane fence, so that the multiple tenons 11 on a baffle 1 are plugged and connected with the multiple tenons 13 of a baffle 1 on the edge of the plane fence in a one-to-one corresponding manner, so that another baffle 1 is vertically connected to one baffle 1 on the edge of the plane fence, and multiple baffles 1 are connected in sequence in the same plane behind the baffle 1 perpendicular to the plane fence to change the extension direction of the plane fence.

[0064] Repeat the above operation to set up a plane enclosure formed by connecting multiple baffles 1 to each other around the construction site, so that a plurality of enclosure modules can be connected to each other to set up an enclosure structure surrounding the construction site outside the construction site.

[0065] It should be noted that, in this article, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.

[0066] The above description is only a specific embodiment of the present disclosure, so that those skilled in the art can understand or implement the present disclosure. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure will not be limited to the embodiments described herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A enclosure module, characterized in that: comprising a baffle (1); The baffle (1) is provided with a tenon (11) protruding from one side edge along the length direction of the baffle (1), and a tenon groove (13) is provided on the other side edge, and the notch of the tenon groove (13) is arranged away from the tenon (11) along the length direction of the baffle (1); The tenon groove (13) is provided with installation openings on both side groove walls along the width direction of the baffle (1), and the tenon (11) on one baffle (1) can pass through any one of the notch and the installation opening of the tenon groove (13) on the other baffle (1), so that the tenon (11) on one baffle (1) can be plugged and matched with the tenon groove (13) of the other baffle (1).

2. The enclosure module according to claim 1, characterized in that: The tenon (11) is elastic, and the dimension of the tenon (11) in the height direction of the baffle (1) is larger than the dimension of the tenon groove (13) in the height direction of the baffle (1), so that the tenon (11) of one baffle (1) along both sides of the height direction of the baffle (1) abuts against the groove walls of the tenon groove (13) on the other baffle (1) in the height direction of the baffle (1).

3. The enclosure module according to claim 1, characterized in that: The baffle (1) is provided with a plurality of tenons (11) on one side edge in the length direction of the baffle (1), and a plurality of tenons (13) are provided on the other side edge, the plurality of tenons (11) are arranged at intervals along the height direction of the baffle (1), the plurality of tenons (13) are arranged at intervals along the height direction of the baffle (1), and the plurality of tenons (11) and the plurality of tenons (13) are arranged relatively in a one-to-one correspondence in the length direction of the baffle (1).

4. The enclosure module according to claim 3, characterized in that: The plurality of tenons (11) are arranged at equal intervals along the height direction of the baffle (1); a plurality of protrusions (12) are provided on a side edge of the baffle (1) away from the tenons (11); the plurality of protrusions (12) are arranged at equal intervals along the height direction of the baffle (1), and the space between each two adjacent protrusions (12) forms the tenon groove (13), so that the two adjacent protrusions (12) form an opening for the tenon (11) to be inserted in both the height direction and the width direction of the baffle (1).

5. The enclosure module according to claim 1, characterized in that: The installation opening extends along the length direction of the baffle (1) to the notch of the tenon groove (13), so that the installation opening is connected to the notch of the tenon groove (13).

6. The enclosure module according to claim 5, characterized in that: The dimension of the tenon (11) along the width direction of the baffle (1) is equal to the dimension of the tenon groove (13) along the length direction of the baffle (1).

7. The enclosure module according to claim 1, characterized in that: The enclosure module further comprises a fixing rod (2), the tenon (11) being provided with a mounting hole (14), the mounting hole (14) penetrating the tenon (11) along the height direction of the baffle (1), the tenon groove (13) being provided with assembly through holes (15) on the groove walls on both sides along the height direction of the baffle (1), the assembly through holes (15) penetrating the groove walls of the tenon groove (13); When the tenon (11) is in the tenon groove (13), the fixing rod (2) is inserted into the mounting hole (14) and the assembly through hole (15).

8. The enclosure module according to claim 1, characterized in that: The dimension of the tenon (11) along the length direction of the baffle (1) is equal to the dimension of the tenon groove (13) along the length direction of the baffle (1).

9. The enclosure module according to claim 5, characterized in that: The dimension of the tenon (11) along the length direction of the baffle (1) is equal to the dimension of the tenon groove (13) along the width direction of the baffle (1).

10. A barrier device, characterized in that: comprising a plurality of enclosure modules according to any one of claims 1 to 9; The plurality of baffles (1) are arranged in sequence, and the tenon (11) of one of the two adjacent baffles (1) is plugged into and matched with the tenon groove (13) of the other baffle (1).