CN215948732U - Building body safety structure - Google Patents

Building body safety structure Download PDF

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Publication number
CN215948732U
CN215948732U CN202122457383.3U CN202122457383U CN215948732U CN 215948732 U CN215948732 U CN 215948732U CN 202122457383 U CN202122457383 U CN 202122457383U CN 215948732 U CN215948732 U CN 215948732U
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China
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groove
mounting groove
safety structure
cambered surface
building body
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CN202122457383.3U
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Chinese (zh)
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颜涛
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Shanghai Famaqiang Construction Engineering Co ltd
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Shanghai Famaqiang Construction Engineering Co ltd
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Abstract

The utility model relates to a building body safety structure, including the stair section, the landing, the handrail, the stair section is equipped with a plurality of stair ladders, the stair ladder is equipped with the horizontal plane, vertical face, be equipped with the transition face between horizontal plane and the vertical face, be equipped with the mounting groove on the transition face, install the elasticity strip in the mounting groove, the surface that the elastic component deviates from the mounting groove diapire is the cambered surface, the stair ladder is equipped with the piece of support, the cambered surface is equipped with the butt groove, the piece of support is equipped with coupling mechanism, the stair ladder is equipped with the embedded groove, coupling mechanism includes the spring, the shifting block, the lateral wall of embedded groove is equipped with the insertion groove, the elastic component includes rubber portion and plastics portion, be equipped with the light-emitting strip in the plastics portion, the cambered surface is equipped with antiseized resin layer. Through the arrangement of the elastic piece, the injury caused by the impact of a person on the step unit after falling is reduced; through the arrangement of the pressing piece, the elastic piece is not easy to be separated from the mounting groove by external force; through setting up the light strip, the personnel of being convenient for go up and down building body in the dark surrounds.

Description

Building body safety structure
Technical Field
The application relates to the technical field of building construction, in particular to a building body safety structure.
Background
Staircases are a building design for connecting large vertical distances, and are used for traffic communication between floors and when the height difference is large.
The stairs are composed of stair sections, stair platforms, handrails and handrails. The stair sections include a plurality of stair steps.
To the correlation technique among the above-mentioned, personnel can be because of shelving the ladder unit or stepping on empty and fall down sometimes when going up and down the building body, because the outer edges and corners of stair step utensil, personnel fall down and hit outer edges and corners and can receive huge injury, comparatively dangerous.
SUMMERY OF THE UTILITY MODEL
In order to reduce the injury that receives after the personnel fell, this application provides a building body safety structure.
The application provides a building body safety structure adopts following technical scheme:
the utility model provides a building body safety structure, includes stair section, landing, handrail, the stair section is equipped with a plurality of ladder units, the ladder unit is equipped with horizontal plane, vertical face, be equipped with the transition face between horizontal plane and the vertical face, be equipped with the mounting groove on the transition face, the length direction of ladder unit is followed to the length direction of mounting groove, install the elastic component in the mounting groove, the shape and the mounting groove looks adaptation of elastic component, the notch of the protruding mounting groove of elastic component.
Through adopting above-mentioned technical scheme, replace the edges and corners through setting up the elastic component, fall down at the personnel behind ladder unit transition face, the elastic component can carry out elastic buffer to the personnel, reduces the injury that the personnel received after falling down.
Preferably, the surface of the elastic part deviating from the bottom wall of the mounting groove is an arc surface, and two sides of the arc surface are respectively connected with the horizontal plane and the vertical plane in a smooth mode.
Through adopting above-mentioned technical scheme, the setting of cambered surface, this safety structure can further reduce the injury that receives after the personnel fall over.
Preferably, the step unit is provided with a pressing piece, the arc surface is provided with a pressing groove, and the surface of the pressing piece facing the step unit is used for pressing against the bottom wall of the pressing groove.
Through adopting above-mentioned technical scheme, the piece can further carry on spacingly to the elastic component by the press, makes the elastic component be difficult for receiving the exogenic action and deviate from the mounting groove.
Preferably, the pressing part is provided with a connecting mechanism for fixedly connecting with the step unit, the step unit is provided with an embedded groove for the pressing part to be embedded in, the connecting mechanism comprises a spring and a shifting block, the shifting block is slidably connected with the pressing part, two ends of the spring are respectively abutted against the shifting block and the pressing part, the elastic direction of the spring is along the sliding direction of the shifting block, and the side wall of the embedded groove is provided with an insertion groove for the end part of the shifting block to be inserted in.
Through adopting above-mentioned technical scheme, personnel can be with after the biasing piece embedding embedded groove, slip shifting block makes shifting block embedding insertion groove, accomplishes the fixed to the biasing piece, makes things convenient for personnel to dismantle the biasing piece simultaneously.
Preferably, the pressing piece is provided with anti-skid grains.
Through adopting above-mentioned technical scheme, the setting of antiskid line can increase the coefficient of friction on pressing part surface, makes the personnel step on the difficult phenomenon of skidding that takes place in back.
Preferably, the elastic component includes rubber portion and plastics portion, the rubber portion is located the mounting groove, plastics portion offsets with the surface that rubber portion deviates from the mounting groove diapire, the cambered surface is located plastics portion.
Through adopting above-mentioned technical scheme, the intensity of plastics portion is better for the cambered surface is difficult for trampling because of personnel and damaging.
Preferably, a light-emitting strip is arranged in the plastic part, and the plastic part is transparent.
Through adopting above-mentioned technical scheme, the luminous strip can instruct personnel under the dark surrounds, makes things convenient for personnel to walk up and down stairs.
Preferably, the cambered surface is provided with an anti-sticking resin layer.
Through adopting above-mentioned technical scheme, antiseized resin layer can prevent that the dust adhesion from keeping the cleanness of cambered surface on the cambered surface.
In summary, the present application includes at least one of the following beneficial technical effects:
through the arrangement of the elastic piece, the injury caused by the impact of a person on the step unit after falling is reduced;
through the arrangement of the pressing piece, the elastic piece is not easy to be separated from the mounting groove by external force;
through setting up the light strip, the personnel of being convenient for go up and down building body in the dark surrounds.
Drawings
Fig. 1 is a perspective view of an embodiment of the present application.
Fig. 2 is a partial exploded view of an embodiment of the present application.
Fig. 3 is an enlarged view of fig. 2 at a.
Description of reference numerals: 1. a stair section; 11. a stair unit; 12. a horizontal plane; 13. a vertical plane; 14. a transition surface; 15. mounting grooves; 16. a groove is embedded; 17. inserting the groove; 2. a landing; 3. a handrail; 4. an elastic member; 41. a rubber part; 42. a plastic part; 43. a cambered surface; 44. a butt joint groove; 45. a light emitting strip; 46. an anti-sticking resin layer; 5. a pressing member; 51. a connecting mechanism; 511. a spring; 512. shifting blocks; 52. an avoidance groove; 53. a chute; 54. and (4) a bump.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses building body safety structure. Referring to fig. 1 and 2, a building body safety structure comprises a stair section 1, a landing 2 and handrails 3, wherein the stair section 1 is fixed with a plurality of step units 11, and the step units 11 are arranged at intervals along the length direction of the stair section 1. Stair platform 2 and stair section 1's tip fixed connection, handrail 3 fixed mounting is on ladder unit 11, and handrail 3 is close to stair section 1 and keeps away from the side of wall body to supply personnel to support, prevent that personnel from falling out from stair section 1.
Ladder unit 11 is equipped with horizontal plane 12, vertical face 13, and horizontal plane 12 supplies the personnel to trample, is equipped with transition face 14 between horizontal plane 12 and the vertical face 13, and transition face 14 is the inclined plane, and the upper and lower both sides limit of transition face 14 is connected with horizontal plane 12, vertical face 13 respectively, is equipped with mounting groove 15 on the transition face 14, and the length direction of mounting groove 15 is along ladder unit 11's length direction.
Referring to fig. 2 and 3, the elastic member 4 is installed in the installation groove 15, the length direction of the elastic member 4 is along the length direction of the step unit 11, the elastic member 4 includes a rubber part 41 and a plastic part 42, the shape of the plastic part 42 is matched with the shape of the installation groove 15, the top of the rubber part 41 protrudes out of the notch of the installation groove 15, the plastic part 42 is located above the rubber part 41, and the bottom surface of the plastic part 42 is abutted against the top surface of the rubber part 41.
Plastics portion 42 is the transparence, and specific plastics portion 42 adopts transparent plastic to make, and fixed mounting has light-emitting strip 45 in plastics portion 42, and light-emitting strip 45 adopts the night light stone strip, and light-emitting strip 45 is fixed in plastics portion 42 through the form of pouring, and light-emitting strip 45's setting for plastics portion 42 can send the light to instruct personnel when light is darker night, makes personnel be difficult for when going upstairs and downstairs, appears stepping on the sky phenomenon. In addition, the cambered surface 43 is provided with an anti-sticking resin layer 46, the anti-sticking resin layer 46 is formed by coating epoxy resin paint, the surface of the anti-sticking resin layer is smooth, dust is not easy to adhere to the anti-sticking resin layer, and the cambered surface 43 can be kept clean for a long time.
The surface that plastics portion 42 deviates from rubber portion 41 sets up to cambered surface 43, and the both sides of cambered surface 43 respectively with horizontal plane 12, vertical face 13 smooth phase, cambered surface 43 is equipped with butt groove 44, and butt groove 44 all is equipped with one in cambered surface 43 width direction's both sides. The step unit 11 is provided with a pressing member 5 and an embedding groove 16 for embedding the pressing member 5, the pressing member 5 is provided with a connecting mechanism 51, the pressing member 5 is fixedly connected with the step unit 11 through the connecting mechanism 51, and the pressing member 5 is used for abutting against the bottom wall of the abutting groove 44 to press and fix the elastic member 4 in the abutting groove 44.
Referring to fig. 2 and 3, the connecting mechanism 51 includes a spring 511 and a shifting block 512, the shifting block 512 is slidably connected to the pressing member 5, a sliding groove 53 for the shifting block 512 to slide is disposed on a surface of the pressing member 5 away from the step unit 11, the sliding direction of the shifting block 512 is disposed along the length direction of the sliding groove 53, four sliding grooves 53 are disposed, two sliding grooves 53 are divided into two groups, two groups of sliding grooves 53 are respectively close to two sides of the pressing member 5 in the width direction, one end of each sliding groove 53 penetrates through a side wall of the pressing member 5 to allow an end of the shifting block 512 to extend out, and an insertion groove 17 for the end of the shifting block 512 to insert into is disposed on a side wall of the insertion groove 16. The notch of the sliding groove 53 is in a necking shape to prevent the shifting block 512 from separating, the shape of the shifting block 512 is matched with that of the sliding groove 53, a convex block 54 is fixed on the shifting block 512, and the convex block 54 protrudes out of the notch of the sliding groove 53. The spring 511 is located in the sliding groove 53, two ends of the spring 511 respectively abut against the end walls of the shifting block 512 and the sliding groove 53, and the elastic force direction of the spring 511 is along the sliding direction of the shifting block 512. The spring 511 is provided to apply a force to the pusher 512 toward the insertion slot 17, and to press the pusher 512 against the insertion slot 17, so that the pusher 512 is not easily separated from the insertion slot 17 by the external force.
The bottom surface of the pressing piece 5 is attached to part of the transition surface 14, the horizontal surface 12 and the vertical surface 13, the pressing piece 5 is plate-shaped, an avoiding groove 52 for avoiding the cambered surface 43 penetrates through the pressing piece 5, and the cambered surface 43 protrudes out of the top surface of the pressing plate. The setting of elastic component 4, after personnel fall to cambered surface 43, elastic component 4 can atress deformation, alleviates the impact force that personnel received to reduce the striking injury that personnel received. In addition, the pressing piece 5 is provided with anti-slip lines which are positioned on the side wall of the pressing piece 5 departing from the horizontal plane 12, and the anti-slip lines can increase the friction coefficient of the pressing piece 5, so that personnel are not easy to slip when pressing the pressing piece 5.
The implementation principle of the building body safety structure of the embodiment of the application is as follows: after personnel fell down, personnel bumped behind cambered surface 43, because cambered surface 43 does not have edges and corners and is less to the injury that the personnel caused, elastic deformation can take place after personnel's striking simultaneously to elastic component 4, reduces the impact force that the striking produced, further reduces the injury that personnel received.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a building body safety structure, includes stair section (1), landing (2), handrail (3), stair section (1) is equipped with a plurality of ladder units (11), its characterized in that: ladder unit (11) is equipped with horizontal plane (12), vertical face (13), be equipped with transition face (14) between horizontal plane (12) and vertical face (13), be equipped with mounting groove (15) on transition face (14), the length direction of length direction along ladder unit (11) of mounting groove (15), install elastic component (4) in mounting groove (15), the shape and mounting groove (15) looks adaptation of elastic component (4), the notch of elastic component (4) protrusion mounting groove (15).
2. A building body safety structure according to claim 1, characterized in that: the surface that elastic component (4) deviates from mounting groove (15) diapire is cambered surface (43), the both sides of cambered surface (43) are connected with horizontal plane (12), vertical face (13) level and smooth respectively.
3. A building body safety structure according to claim 2, characterized in that: the step unit (11) is provided with a pressing piece (5), the cambered surface (43) is provided with a pressing groove (44), and the surface, facing the step unit (11), of the pressing piece (5) is used for being pressed against the bottom wall of the pressing groove (44).
4. A building safety structure according to claim 3, characterized in that: the pressing piece (5) is provided with a connecting mechanism (51) fixedly connected with the step unit (11), the step unit (11) is provided with an embedded groove (16) for the pressing piece (5) to be embedded in, the connecting mechanism (51) comprises a spring (511) and a shifting block (512), the shifting block (512) is in sliding connection with the pressing piece (5), two ends of the spring (511) are respectively abutted against the shifting block (512) and the pressing piece (5), the elastic direction of the spring (511) is along the sliding direction of the shifting block (512), and the side wall of the embedded groove (16) is provided with an insertion groove (17) for the end part of the shifting block (512) to be inserted in.
5. A building safety structure according to claim 3, characterized in that: the pressing piece (5) is provided with anti-skid grains.
6. A building safety structure according to claim 3, characterized in that: elastic component (4) include rubber portion (41) and plastics portion (42), rubber portion (41) are located mounting groove (15), plastics portion (42) offset with the surface that rubber portion (41) deviate from mounting groove (15) diapire, cambered surface (43) are located plastics portion (42).
7. A building body safety structure according to claim 6, characterized in that: the plastic part (42) is internally provided with a light-emitting strip (45), and the plastic part (42) is transparent.
8. A building body safety structure according to claim 2, characterized in that: the cambered surface (43) is provided with an anti-sticking resin layer (46).
CN202122457383.3U 2021-10-13 2021-10-13 Building body safety structure Active CN215948732U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122457383.3U CN215948732U (en) 2021-10-13 2021-10-13 Building body safety structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122457383.3U CN215948732U (en) 2021-10-13 2021-10-13 Building body safety structure

Publications (1)

Publication Number Publication Date
CN215948732U true CN215948732U (en) 2022-03-04

Family

ID=80412194

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122457383.3U Active CN215948732U (en) 2021-10-13 2021-10-13 Building body safety structure

Country Status (1)

Country Link
CN (1) CN215948732U (en)

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