CN216111617U - Building material combination - Google Patents

Building material combination Download PDF

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Publication number
CN216111617U
CN216111617U CN202122217266.XU CN202122217266U CN216111617U CN 216111617 U CN216111617 U CN 216111617U CN 202122217266 U CN202122217266 U CN 202122217266U CN 216111617 U CN216111617 U CN 216111617U
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building material
hole
building
main
holes
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CN202122217266.XU
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Chinese (zh)
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宋睿昇
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Individual
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Individual
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Abstract

A building material combination comprises two building materials and a connecting piece, wherein each building material comprises a main through hole and a plurality of auxiliary through holes, the cross section area of each auxiliary through hole is smaller than that of the main through hole, the two building materials are respectively defined as a first building material and a second building material, an inserting hole is concavely arranged on the periphery of the second building material, one end of the connecting piece is forcedly inserted into the main through hole of the first building material, the other end of the connecting piece is forcedly inserted into the inserting hole of the second building material, and the end surface of the first building material is attached to the peripheral surface of the second building material, so that the weight of each building material can be reduced, and nails are not needed to connect the two building materials.

Description

Building material combination
Technical Field
The present invention relates to a building material assembly, and more particularly, to a connecting assembly for connecting a plurality of building materials.
Background
The wood angle is a common supporting structural member for building and decoration, and is also frequently used for manufacturing furniture such as cabinets, compartments, or tables. The existing wood angle is mainly of a solid structure, has heavier weight and is not easy to carry and assemble.
When assembling the existing wood angle, the existing wood angle is mainly jointed with a plurality of existing wood angle through nails or nail needles, however, because the existing wood angle is made of solid synthetic wood formed by assembling solid logs or plant fibers, and the nails and the nail needles are made of metal materials, when the nails or the nail needles are driven into the existing wood angle, the existing wood angle is easy to be stressed to crack, and after the existing wood angle is assembled, the gaps among the nails, the nail needles and the wood angle are easy to be enlarged due to vibration and pulling, so that the nails or the nail needles are loosened.
Furthermore, when the existing angle timbers are connected by using nails or nails, the structure of the existing angle timbers is damaged and is not easy to disassemble, the angle timbers are easy to damage during disassembly, or the nail holes are broken or enlarged, so that the angle timbers are difficult to be repeatedly used.
SUMMERY OF THE UTILITY MODEL
In order to ameliorate the above disadvantages, the present invention provides a building material assembly that reduces the weight of the building material while retaining the structural strength of the building material and eliminating the need for nails to join the two building materials.
In order to achieve the above objects, the present invention provides an embodiment of a building material assembly, which comprises two building materials and a connecting member, wherein:
each building material comprises a main through hole and a plurality of auxiliary through holes, the main through hole and the auxiliary through holes penetrate through two ends of the building material along the length direction of the building material, the auxiliary through holes are positioned between the main through hole and the periphery of the building material, the cross-sectional area of each auxiliary through hole is smaller than that of the main through hole, the two building materials are respectively defined as a first building material and a second building material, and an insertion hole is concavely formed in the periphery of the second building material; and
one end of the connecting piece is tightly inserted into the main through hole of the first building material from one end of the first building material, the other end of the connecting piece is tightly inserted into the inserting hole of the second building material, and the end face of the first building material, which is adjacent to the second building material, is attached to the periphery of the second building material.
Another embodiment of the present invention provides a building material assembly, comprising two building materials and a connecting member, wherein:
each building material comprises a main through hole and a plurality of auxiliary through holes, the main through hole and the auxiliary through holes penetrate through two ends of the building material along the length direction of the building material, the auxiliary through holes are positioned between the main through hole and the periphery of the building material, the cross-sectional area of each auxiliary through hole is smaller than that of the main through hole, and one end face of each building material is an inclined plane; and
the connecting piece is provided with two connecting sections which are respectively and tightly inserted into the main through holes of the two building materials from the inclined surfaces of the two building materials, and the inclined surfaces of the two building materials are mutually attached.
Preferably, in the aforementioned building material assembly, each building material is a plastic wood-like material.
Preferably, in the building material assembly, one end of the first building material is provided with a joggle part, the joggle part protrudes out of the end face of the first building material, which is close to the circumferential surface of the second building material, and the joggle part is polygonal;
the periphery of the second building material is concavely provided with a joggle groove corresponding to the shape, size and position of the joggle part;
the joggle part of the first building material is tightly inserted into the joggle groove of the second building material; and
the connecting piece protrudes out of the end face of the joggle joint part of the first building material and is inserted into the jack of the second building material.
Preferably, in the building material combination, the main through hole of the first building material is located in the center of the joggle part, and the inserting hole of the second building material is located in the center of the joggle groove and extends inwards from the end face of the joggle groove.
Preferably, in the aforementioned building material combination, a cross-sectional shape and a size of the insertion hole of the second building material are the same as a cross-sectional shape and a size of the main through hole of the first building material.
Preferably, in the building material assembly, each building material is a square column.
The utility model provides another building material combination, which comprises two building materials and a connecting piece, wherein:
each building material comprises a main through hole and a plurality of auxiliary through holes, the main through hole and the auxiliary through holes penetrate through two ends of the building material along the length direction of the building material, the auxiliary through holes are positioned between the main through hole and the periphery of the building material, the cross-sectional area of each auxiliary through hole is smaller than that of the main through hole, and one end face of each building material is an inclined plane; and
the connecting piece is provided with two connecting sections which are connected and are respectively inserted into the main through holes of the two building materials from the inclined surfaces of the two building materials in a pressing manner, and the inclined surfaces of the two building materials are mutually attached.
Preferably, in the aforementioned building material assembly, each building material is a plastic wood-like material.
Preferably, in the aforementioned building material assembly, two connecting segments of the connecting member are connected to form a corner, and the two building materials are connected to form a corner.
Preferably, in the building material assembly, the cross-sectional shapes and sizes of the main through holes of the two building materials are the same.
With the above technical features, the embodiments of the building material combination of the present invention have the following effects and gains:
1. each building material has a main through-hole and a plurality of sub-through-holes, so that the weight of the building material can be reduced, and the structural strength of the building material can be maintained.
2. The connecting piece is positioned in the two building materials, so that the structural strength of the connecting area of the two building materials can be increased, the mutual combination firmness is strong, the connecting piece is not easy to break and slip, the structural stress is increased, the service life of the furniture is longer, and the attractiveness of the building material combination is maintained.
3. The connecting piece is used for connecting the two building materials without using nails, so that nail holes can be prevented from being formed on the two building materials, the structural integrity of the two building materials is kept, the two building materials can be easily disassembled, and the disassembled building materials can be reused.
4. The two building materials are connected by the connecting piece, and at least one end of the connecting piece is inserted into the main through hole of at least one building material, so that the additional processing required when the two building materials are connected can be reduced, the processing difficulty is small, the cost is low, and the disassembly and assembly are convenient.
Drawings
Fig. 1 is an exploded perspective view of a first preferred embodiment of the present invention.
FIG. 2 is a top sectional view of the first preferred embodiment of the present invention.
FIG. 3 is a sectional end view of a building material in accordance with a first preferred embodiment of the present invention.
Fig. 4 is an exploded perspective view of a second preferred embodiment of the present invention.
FIG. 5 is a top sectional view of a second preferred embodiment of the present invention.
Fig. 6 is an exploded perspective view of a third preferred embodiment of the present invention.
FIG. 7 is a side sectional view of a third preferred embodiment of the present invention.
Detailed Description
The technical means adopted by the utility model to achieve the predetermined purpose of the utility model are further described below by combining the drawings of the specification and the preferred embodiments of the utility model.
Referring to fig. 1-3, a first preferred embodiment of a building material assembly of the present invention includes two building materials 10, 20 and a connecting member 30.
Each of the building materials 10, 20 is a Plastic wood-like material (e.g., a Plastic wood-like material made of polyvinyl chloride (PVC)), and each of the building materials 10, 20 may be a square column, a cylinder, or a polygonal column.
Each of the building materials 10, 20 is long and includes a main through hole 12, 22 and a plurality of sub through holes 13, 23, the main through hole 12, 22 and the plurality of sub through holes 13, 23 both penetrate through both ends of the building materials 10, 20 along the length direction of the building materials 10, 20, the main through hole 12, 22 penetrates through the center position of the building materials 10, 20, the plurality of sub through holes 13, 23 are located between the main through hole 12, 22 and the outer periphery of the building materials 10, 20 and surround the outer periphery of the main through hole 12, 22 at intervals, and form intervals with the main through hole 12, 22 and the outer periphery of the building materials 10, 20, the plurality of sub through holes 13, 23 are parallel to the main through hole 12, 22, the cross sectional area of each sub through hole 13, 23 is smaller than the cross sectional area of the main through hole 12, 22, the main through hole 12, 22 of each building material 10, 20 can be a round hole, an elliptical hole, a polygonal hole, etc., each sub through hole 13, 20 of each building material, 23 may be circular, elliptical, polygonal, etc.
For convenience of illustration, the two building materials 10 and 20 are respectively defined as a first building material 10 and a second building material 20, an insertion hole 26 is recessed in the periphery of the second building material 20, the insertion hole 26 is a blind hole and is communicated with the main through hole 22, the connecting member 30 can be made of wood material, plastic wood material, or plastic material, one end of the connecting member 30 corresponds to the shape and size of the main through hole 12 of the first building material 10, and is tightly inserted into the main through hole 12 of the first building material 10 from one end face of the first building material 10, the other end of the connecting member 30 corresponds to the shape and size of the insertion hole 26 of the second building material 20, and is tightly inserted into the insertion hole 26 of the second building material 20 from the periphery of the second building material 20, and extends into the main through hole 22 of the second building material 20 through the insertion hole 26 to join the first building material 10 and the second building material 20, the end face of the first building material 10 adjacent to the connecting member 30 is attached to the peripheral face of the second building material 20, preferably, the cross-sectional shape and size of the receptacle 26 in the second building material 20 is the same as the cross-sectional shape and size of the main opening 12 in the first building material 10.
Referring to fig. 4 and 5, a second preferred embodiment of the building material assembly of the present invention comprises two building materials 10A, 20A, and a connecting member 30, wherein the two building materials 10A, 20A are respectively defined as a first building material 10A and a second building material 20A, one end of the first building material 10A is provided with a tenon 15, the tenon 15 is polygonal, the tenon 15 protrudes from an end surface of the first building material 10A adjacent to a peripheral surface of the second building material 20A, a contour dimension of the tenon 15 is larger than a contour dimension of the main through hole 12 of the first building material 10A and smaller than a contour dimension of the end surface of the first building material 10A, the main through hole 12 is located at a center of the tenon 15, a mortise 25 corresponding to a shape, size and position of the tenon 15 is formed in an outer peripheral recess of the second building material 20A, a cross-sectional area of the mortise 25 is larger than a cross-sectional area of the mortise 26, the insertion hole 26 is located at a center of the mortise 25 and extends from the mortise 25 to an inner side of the mortise 25, the tenon joint part 15 of the first building material 10A is tightly inserted into the tenon joint groove 25 of the second building material 20A, one end of the connecting member 30 is inserted into the main through hole 12 of the first building material 10A, the connecting member 30 protrudes from the end face of the tenon joint part 15 and is inserted into the insertion hole 26 of the second building material 20A and extends into the main through hole 22 of the second building material 20A, and the tenon joint part 15 can be further embedded into the tenon joint groove 25, so that the first building material 10A and the second building material 20A are stably connected.
Referring to fig. 6 and 7, a third preferred embodiment of the building material assembly of the present invention includes two building materials 10B, 20B and a connecting member 30B, wherein one end surface of each of the building materials 10B, 20B is an inclined surface 11, 21. The connecting member 30B has two connecting sections 31, 32, the two connecting sections 31, 32 are integrally connected to form a corner, the two connecting sections 31, 32 respectively correspond to the shapes and sizes of the main through holes 12, 22 of the two building materials 10B, 20B, and are respectively inserted into the main through holes 12, 22 of the two building materials 10B, 20B from the inclined planes 11, 21 of the two building materials 10B, 20B, and the inclined planes 11, 21 of the two building materials 10B, 20B are attached to each other, so that the two building materials 10B, 20B are joined to form a corner; preferably, the main through holes 12, 22 of the two building materials 10B, 20B have the same cross-sectional shape and size.
By utilizing the technical characteristics, the building material composition has the following effects and gains:
1. each of the building materials 10, 10A, 10B, 20A, 20B has the main through- hole 12, 22 and the plurality of sub-through- holes 13, 23, and thus the weight of the building materials 10, 10A, 10B, 20A, 20B can be reduced while maintaining the structural strength of the building materials 10, 10A, 10B, 20A, 20B.
2. The connecting members 30, 30B are positioned inside the two building materials 10, 10A, 10B, 20A, 20B, so that the structural strength of the connecting area of the two building materials 10, 10A, 10B, 20A, 20B can be increased, the mutual combination firmness is strong, the connecting area is not easy to break, the connecting area is not easy to slip, the structural stress is increased, the service life of the furniture is longer, and the attractiveness of the building material combination is maintained.
3. The connecting members 30, 30B are used to connect the two building materials 10, 10A, 10B, 20A, 20B without using additional nails, so as to avoid damaging the structures of the two building materials 10, 10A, 10B, 20A, 20B, maintain the integrity of the two building materials 10, 10A, 10B, 20A, 20B, and be easily disassembled, and the disassembled building materials 10, 10A, 10B, 20A, 20B can be reused.
4. The two building materials 10, 10A, 10B, 20A, 20B are connected by the connecting member 30, 30B, and at least one end of the connecting member 30, 30B is inserted into the main through hole 12, 22 of at least one building material 10, 10A, 10B, 20A, 20B, so that additional processing required for connecting the two building materials 10, 10A, 10B, 20A, 20B can be reduced, the processing difficulty is small, the cost is low, and the disassembly and assembly are convenient.
Although the present invention has been described with reference to the preferred embodiments, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the utility model as defined by the appended claims.

Claims (10)

1. A building material combination is characterized in that the combination comprises two building materials and a connecting piece, wherein:
each building material comprises a main through hole and a plurality of auxiliary through holes, the main through hole and the auxiliary through holes penetrate through two ends of the building material along the length direction of the building material, the auxiliary through holes are positioned between the main through hole and the periphery of the building material, the cross-sectional area of each auxiliary through hole is smaller than that of the main through hole, the two building materials are respectively defined as a first building material and a second building material, and an insertion hole is concavely formed in the periphery of the second building material; and
one end of the connecting piece is tightly inserted into the main through hole of the first building material from one end of the first building material, the other end of the connecting piece is tightly inserted into the inserting hole of the second building material, and the end face of the first building material, which is adjacent to the second building material, is attached to the peripheral surface of the second building material.
2. A building material assembly as in claim 1, wherein each building material is a synthetic wood.
3. A building material assembly as in claim 2, wherein:
one end of the first building material is provided with a joggle part which protrudes out of the end face of the first building material close to the circumferential surface of the second building material, and the joggle part is polygonal;
the periphery of the second building material is concavely provided with a joggle groove corresponding to the shape, size and position of the joggle part;
the joggle part of the first building material is tightly inserted into the joggle groove of the second building material; and
the connecting piece protrudes out of the end face of the joggle joint part of the first building material and is inserted into the jack of the second building material.
4. A building material assembly as in claim 3, wherein the primary through-hole of the first building material is centrally located in the mortise opening and the receptacle of the second building material is centrally located in the mortise opening and extends inwardly from the end face of the mortise opening.
5. A building material set according to any of claims 1 to 4, wherein the cross-sectional shape and size of the second building material cavity is the same as the cross-sectional shape and size of the primary through hole of the first building material.
6. A building material assembly as in claim 5, wherein each building material is a square column.
7. A building material combination is characterized in that the combination comprises two building materials and a connecting piece, wherein:
each building material comprises a main through hole and a plurality of auxiliary through holes, the main through hole and the auxiliary through holes penetrate through two ends of the building material along the length direction of the building material, the auxiliary through holes are positioned between the main through hole and the periphery of the building material, the cross-sectional area of each auxiliary through hole is smaller than that of the main through hole, and one end face of each building material is an inclined plane; and
the connecting piece is provided with two connecting sections which are connected and are respectively inserted into the main through holes of the two building materials from the inclined surfaces of the two building materials in a pressing manner, and the inclined surfaces of the two building materials are mutually attached.
8. A building material assembly as in claim 7, wherein each building material is a synthetic wood.
9. A building material assembly as in claim 8, wherein the two connecting sections of the connector meet to form a corner, and the two building materials meet to form a corner.
10. A building material assembly as in claim 8, wherein the primary through-holes of the two building materials have the same cross-sectional shape and size.
CN202122217266.XU 2021-09-14 2021-09-14 Building material combination Expired - Fee Related CN216111617U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122217266.XU CN216111617U (en) 2021-09-14 2021-09-14 Building material combination

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122217266.XU CN216111617U (en) 2021-09-14 2021-09-14 Building material combination

Publications (1)

Publication Number Publication Date
CN216111617U true CN216111617U (en) 2022-03-22

Family

ID=80733364

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122217266.XU Expired - Fee Related CN216111617U (en) 2021-09-14 2021-09-14 Building material combination

Country Status (1)

Country Link
CN (1) CN216111617U (en)

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Granted publication date: 20220322

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