CN108477882B - Furniture combined member - Google Patents

Furniture combined member Download PDF

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Publication number
CN108477882B
CN108477882B CN201810181541.7A CN201810181541A CN108477882B CN 108477882 B CN108477882 B CN 108477882B CN 201810181541 A CN201810181541 A CN 201810181541A CN 108477882 B CN108477882 B CN 108477882B
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assembly
column
top side
concave position
cross
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CN108477882A (en
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林铭
林上奥
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Kuzhijia Guangzhou Intelligent Technology Development Co ltd
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Smart Home (guangzhou) Culture Media Co Ltd
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B96/00Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture

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  • Combinations Of Kitchen Furniture (AREA)

Abstract

The invention discloses a furniture combined member which comprises a top side beam unit, a connecting column unit, a crossbeam unit, a secondary colored beam bottom beam unit, a first top side beam cover extending piece, a second top side beam cover extending piece, a top side beam decorative cover width extending piece, a beam column switching end telescopic column, a beam column switching end connecting piece, a thickness telescopic beam connecting end unit and a thickness telescopic beam, wherein the left side and the right side of the first top side beam cover extending piece are connected with the top side beam cover extending piece; the beam column switching end assembly, the top side beam transverse interval connecting assembly, the top side beam longitudinal interval connecting assembly, the top side beam assembly, the cross beam assembly, the color beam bottom beam assembly, the thickness telescopic assembly and the composite functional panel assembly are assembled by the components; the assembly units and the composite functional panel are assembled into different office furniture, customized furniture, hotel furniture and kitchen and bathroom furniture according to requirements.

Description

Furniture combined member
Technical Field
The invention relates to a furniture component, in particular to a combined component capable of changing furniture shapes, and belongs to the technical field of furniture research and development.
Background
The furniture industry is competitive and the subdivision of furniture has long led to different industries, such as custom furniture, office furniture, kitchen furniture, bathroom furniture, hotel furniture, etc. In order to seize respective market segments, furniture enterprises in each furniture segment industry often start from product research and development design, replace old generations with new generations of products, and invest a great deal in research and development of single varieties. Which may include: talent recruitment, project design, mold investment, part or finished product testing or installation, product structure installation training and the like, and if the results fail, the mold investment is wasted, and the design project needs to be renewed and the like.
Most furniture varieties in furniture industries such as customization, office, hotel and the like have the main research and development design aspects of changing innovation, such as intelligentization, health, science and technology feeling, style and the like. But all changes are normalized: the appearance change, the structure change and the style consistency of furniture are the pursuit targets of research and design in furniture subdivision industry. How to solve the problem of changing the appearance and structure of the furniture in a short time without great research and development investment and can immediately bring new products into the market is a pursuit target in the furniture industry.
Disclosure of Invention
The invention aims to provide a furniture combined component capable of changing furniture forms, which can realize different furniture forms by changing a combination mode, reduces research and development investment and has strong adaptability.
In order to achieve the purpose, the technical scheme adopted by the invention is that the furniture combined member comprises a top side beam unit, a connecting column unit, a cross beam bottom beam unit, a first top side beam cover extending piece left, a first top side beam cover extending piece right, a second top side beam cover extending piece, a top side beam decorative cover width extending piece, a beam column switching end telescopic column, a beam column switching end connecting piece, a thickness telescopic beam connecting end unit and a thickness telescopic beam;
the beam column switching end assembly, the top side beam transverse interval connecting assembly, the top side beam longitudinal interval connecting assembly, the top side beam assembly, the cross beam assembly, the color beam bottom beam assembly, the thickness telescopic assembly and the composite functional panel assembly are assembled by the components;
the assembly units and the composite functional panel are assembled into different office furniture, customized furniture, hotel furniture and kitchen and bathroom furniture according to requirements.
Preferably, the cross-sectional structure of the top side beam unit comprises a top fastener, a left concave position, a right concave position and a bottom concave position; the two oppositely arranged top side beam units and the thickness telescopic assembly arranged between the two top side beam units jointly form a top side beam assembly.
Preferably, the cross-sectional structure of the connecting column unit comprises an upper connecting column concave position formed by two transverse buckling columns, a lower connecting column concave position formed by one transverse buckling column, a right connecting column concave position formed by two vertically arranged buckling columns and a left connecting column concave position formed by one buckling column with an upward opening; the opening height of the right concave position of the connecting column is consistent with the opening height of the right concave position of the top side beam unit.
Preferably, the cross-section structure of the beam unit comprises a beam top panel clamping concave position, a beam left concave position and a beam right concave position which are respectively formed by an upper buckling column and a lower buckling column, and a beam bottom panel clamping concave position, and the opening height of the beam right concave position is consistent with that of the right concave position of the top side beam unit;
the two oppositely arranged beam units and the thickness telescopic assembly arranged between the two beam units jointly form a beam assembly.
Preferably, the cross-sectional structure of the secondary colored beam bottom beam unit comprises a secondary colored beam bottom beam top sandwich panel concave position, a secondary colored beam bottom sandwich panel concave position and a secondary colored beam bottom beam right side concave position formed by an upper buckling column and a lower buckling column; the opening height of the concave position on the right side of the bottom beam of the secondary color beam is consistent with the opening height of the concave position on the right side of the top beam unit;
the two oppositely arranged color beam bottom beam units and the thickness telescopic assembly arranged between the two color beam bottom beam units jointly form the color beam bottom beam assembly.
Preferably, the left cross-sectional structure of the first side roof rail cover extension includes a first side roof rail cover recess provided on the left side and a notched drop-down 3/4 cylindrical hole provided on the right side;
the right cross-sectional structure of the first top side beam cover extension piece comprises a first top side beam cover concave position arranged on the left side and a falling 3/4 cylinder arranged on the right side, and the cylinder is just clamped in a cylinder hole;
the cross-sectional structure of the second roof side rail cover extension includes a second roof side rail cover recess provided on the left side and a deep-concave second roof side rail cover recess provided on the right side.
Preferably, the cross-sectional structure of the roof side rail trim cover width extension is a straight line, and the cross-sectional structure comprises a cylindrical hole of 3/4 provided with a notch on the left side and a cylinder of 3/4 provided with a notch on the right side, and the diameters of the cylindrical hole and the cylinder are the same;
the width extension piece of the roof side beam trim cover comprises three width specifications, namely widths of 1A, 2A and 5A respectively, and the width extension pieces are identical in structural shape.
Preferably, the cross-sectional structure of the beam-column switching end telescopic column is a hollow column body with grooves on the periphery, and the upper edge of the column body is provided with a radian; the beam column switching end telescopic column is matched and connected with the two ends of the beam column switching end telescopic column to form a switching end, and the section of the switching end is provided with a bulge matched with the groove;
the cross section structure of the beam-column switching end connecting piece is a connecting piece with a beam-column switching end concave position arranged on one side;
the beam column switching end telescopic column, the beam column switching end connecting piece and the switching end jointly form a beam column switching end assembly.
Preferably, the cross-sectional structure of the connecting end unit of the thickness telescopic beam comprises a boss arranged at the top and flat steps arranged on the left side and the right side, and a plurality of through holes for screws to pass through are formed in the boss;
the cross section structure of the thickness telescopic beam is a straight-line structure and comprises two thickness telescopic beam cylindrical holes with notches, which are arranged on the straight-line structure;
two mirror images are arranged on the thickness telescopic beam connecting end units or the thickness telescopic beams arranged between the two thickness telescopic beam connecting end units jointly form a thickness telescopic assembly.
Preferably, the composite functional panel assembly comprises a texture layer, a functional layer, a base material and a top side beam assembly, and the texture layer, the functional layer, the base material and the top side beam assembly are assembled together as required to form a single-sided composite functional panel or a double-sided composite functional panel.
Preferably, the top side beam transverse connection assembly comprises a top side beam assembly, a connecting column assembly, a straight connecting strip assembly, a thickness telescopic assembly, a connecting column bottom and a connecting column cover; the components are assembled into a horizontal connecting structure among the top side beams of a straight structure, a cross structure, an L-shaped structure and a T-shaped structure according to requirements.
Preferably, the connecting column assembly comprises two oppositely arranged connecting column units and a thickness telescopic assembly arranged between the two connecting column units, the connecting column units and the thickness telescopic assembly are divided into an upper group and a lower group, and the upper group and the lower group are arranged in a mirror image manner;
the I-shaped connecting strip assembly comprises two oppositely arranged I-shaped connecting strips and a thickness telescopic assembly arranged between the two I-shaped connecting strips, and the cross section of the integral structure of the I-shaped connecting strip assembly is I-shaped.
Preferably, the top side beam longitudinal connection assembly comprises a top side beam assembly angle end column, a rotating end angle end connection column, a top side beam assembly rotating end column, an angle pin, an angle fastening nail and a rotating fastening nail.
The invention has the beneficial effects that: the invention can quickly form various furniture varieties with the same style and different styles and various intelligent furniture varieties, such as office furniture, customized furniture, hotel furniture and kitchen furniture, by vertically and horizontally combining the components. The invention realizes the advantages of less investment, low risk and the like in the research and development of furniture products, and simultaneously can manufacture hundreds of products across categories.
Drawings
In order to more clearly illustrate the technical solution of the present invention, the drawings used in the description of the embodiment or the prior art will be briefly described below.
FIG. 1 is a schematic cross-sectional view of a roof side rail unit according to the present invention;
FIG. 2 is a schematic cross-sectional view of the column unit of the present invention;
FIG. 3 is a schematic cross-sectional view of a beam unit according to the present invention;
FIG. 4 is a schematic cross-sectional view of a secondary backing beam unit according to the present invention;
FIG. 5 is a schematic cross-sectional side view of the first side roof rail cover extension of the present invention;
FIG. 6 is a schematic cross-sectional view of the first roof side rail cover extension of the present invention;
FIG. 7 is a modified assembled view of one of the FIGS. 5 and 6;
FIG. 8 is a schematic cross-sectional view of a second side roof rail cover extension of the present invention;
FIG. 9 is a schematic cross-sectional view of a width A of the roof side rail trim cover extension of the present invention;
FIG. 10 is a cross-sectional view of a width extension 2A of the roof side rail escutcheon of the present invention;
FIG. 11 is a cross-sectional view of a width extension of 5A for the roof side rail escutcheon of the present invention;
FIG. 12 is a schematic view of the assembled structure of FIGS. 5, 6 and 9;
FIG. 13 is a schematic cross-sectional view of the telescopic column of the beam-column switching terminal of the present invention;
FIG. 14 is a schematic cross-sectional view of a beam-column transition head connector of the present invention;
fig. 15 is a schematic cross-sectional view illustrating a connecting end unit of a thickness telescopic beam according to the present invention;
FIG. 16 is a cross-sectional view of a thickness beam according to the present invention;
FIG. 17 is an exploded view of a beam-column adapter end assembly according to the present invention;
FIG. 18 is a schematic view of one of the assembly configurations of FIG. 17;
FIG. 19 is a schematic view of the cross-member joint assembly of the roof side rail;
FIG. 20 is an exploded view of FIG. 19;
FIG. 21 is a schematic cross-sectional view of a linear connecting strip assembly of the present invention;
FIG. 22 is a schematic cross-sectional view of a connection column assembly of the present invention;
FIG. 23 is a cross-sectional view of the cross connecting structure of the roof side rail assembly of the present invention;
FIG. 24 is a cross-sectional view of a transverse in-line connection for the roof side rail assembly of the present invention;
FIG. 25 is a cross-sectional view of the transverse T-shaped connecting structure of the top side beam assembly of the present invention;
FIG. 26 is a cross-sectional view of the transverse L-shaped connecting structure of the top side rail assembly of the present invention;
FIG. 27 is an exploded view of the top side rail longitudinal to side joint assembly of the present invention;
FIG. 28 is a schematic view of one of the assembled structures of the longitudinal interconnecting assembly of the roof side rail of the present invention;
FIG. 29 is a cross-sectional structural view of the roof side rail assembly of the present invention;
FIG. 30 is a cross-sectional view of one of the assembly structures of the roof side rail assembly of the present invention;
FIG. 31 is a cross-sectional structural view of the beam assembly of the present invention;
FIG. 32 is a cross-sectional structural view of a secondary backing beam assembly of the present invention;
FIG. 33 is a schematic cross-sectional view of the thickness retraction assembly of the present invention;
FIG. 34 is an exploded view of FIG. 33;
FIG. 35 is a cross-sectional view of an assembly structure of FIG. 33 with thickness;
FIG. 36 is a schematic cross-sectional view of a composite functional panel assembly of the present invention;
FIG. 37 is a schematic view of a screen table according to an embodiment of the present invention;
FIG. 38 is an exploded view of the various cross beam assemblies, connecting column assemblies, beam-column adapter end assemblies, etc. of FIG. 37;
FIG. 39 is an exploded view of a two-screen unit according to an embodiment of the present invention;
FIG. 40 is a screen unit of two different thicknesses according to an embodiment of the present invention;
FIG. 41 is a schematic structural view of a second L-directional screen according to an embodiment of the present invention;
FIG. 42 is a schematic structural view of a two-line screen according to an embodiment of the present invention;
FIG. 43 is a schematic structural view of a cross-directional screen according to an embodiment of the present invention;
FIG. 44 is a schematic structural view of a second T-directional screen according to an embodiment of the present invention;
FIG. 45 is an exploded view of a second T-screen desk according to an embodiment of the present invention;
FIG. 46 is an overall assembled effect of FIG. 45;
FIG. 47 is an exploded view of a second L-screen desk according to an embodiment of the present invention;
FIG. 48 is an overall assembled effect view of FIG. 47;
FIG. 49 is an exploded view of a triple space cabinet in accordance with an embodiment of the present invention;
FIG. 50 is an assembled view of FIG. 49;
fig. 51 is an exploded view of a fourth custom wardrobe in accordance with an embodiment of the present invention;
FIG. 52 is an assembled view of FIG. 51;
FIG. 53 is an exploded view of a five-bed embodiment of the present invention;
FIG. 54 is an exploded view of the low bed screen of FIG. 53;
fig. 55 is an exploded view of the bed box assembly of fig. 53;
FIG. 56 is a block diagram of a sixth embodiment of the present invention;
FIG. 57 is an exploded view of a seven-piece bathroom mirror in accordance with an embodiment of the present invention;
FIG. 58 is an assembled view of FIG. 57;
in the figure:
1. a top beam unit, 1-1. a top fastener, 1-2. a left side concave position, 1-3. a right side concave position, and 1-4. a bottom concave position;
2. the connecting column unit comprises 2-1 parts of an upper concave position of the connecting column, 2-2 parts of a lower concave position of the connecting column, 2-3 parts of a right concave position of the connecting column and 2-4 parts of a left concave position of the connecting column;
3. the beam unit comprises a beam unit, 31, 32, 33, 34 and 34, wherein the top of the beam is provided with a concave position for clamping a panel;
4. the secondary color beam bottom beam unit comprises 41. a secondary color beam bottom beam top panel clamping concave position, 42. a secondary color beam bottom panel clamping concave position, and 43. a secondary color beam bottom beam right side concave position;
5. a first top side beam cover extension left, 51. first top side beam cover concave, 52. cylindrical hole; 6. a first top side beam cover extension right, 61-cylinder; 7. a second top side rail cover extension 71, a second top side rail cover recess 72, a second top side rail cover deep recess;
8. a top side beam trim cover width extension piece, 9 beam column switching end telescopic columns, 91 grooves; 10. a beam-column switching end connecting piece, 101, a beam-column switching end is in a concave position; 11. the thickness telescopic beam is connected with the end unit, 111, a boss and 112, a platform step; 12. a thickness telescopic beam 121, a thickness telescopic beam cylindrical hole; 13. the structure comprises a beam column switching end assembly, 14, a top side beam transverse connection assembly, 15, a top side beam longitudinal connection assembly, 151, a top side beam assembly angle end column, 152, a rotating end angle end connection column, 153, a top side beam assembly rotating end column, 154, an angle tip, 155, an angle fastening nail and 156, a rotating fastening nail; 16. a top side beam assembly, 17 a cross beam assembly, 18 a secondary colored beam bottom beam assembly, and 19 a thickness telescopic assembly;
20. the composite functional panel assembly comprises a composite functional panel assembly, 201, a texture layer, 202, a functional layer, 203, a base material, 21, an adapter end and 211, wherein the composite functional panel assembly is provided with a protrusion; 22. a connecting column assembly, 23, a straight connecting strip assembly, 231, a straight connecting strip; 24. connecting the column bottom, 25 connecting the column cover.
Detailed Description
In order to make those skilled in the art better understand the technical solutions in the present application, the technical solutions in the present application will be clearly and completely described below with reference to the embodiments.
As shown in fig. 1-36, the invention discloses a furniture combined member, which comprises a top side beam unit 1, a connecting column unit 2, a beam unit 3, a secondary beam bottom beam unit 4, a first top side beam cover extension piece left 5, a first top side beam cover extension piece right 6, a second top side beam cover extension piece 7, a top side beam decorative cover width extension piece 8, a beam column switching end telescopic column 9, a beam column switching end connecting piece 10, a thickness telescopic beam connecting end unit 11 and a thickness telescopic beam 12;
the beam column switching end assembly 13, the top side beam transverse interval connecting assembly 14, the top side beam longitudinal interval connecting assembly 15, the top side beam assembly 16, the cross beam assembly 17, the color beam bottom beam assembly 18, the thickness telescopic assembly 19 and the composite functional panel assembly 20 are assembled by the components;
the assembly units and the composite functional panel are assembled into different office furniture, customized furniture, hotel furniture and kitchen and bathroom furniture according to requirements. In practical application, individual components such as corner connectors and bottom adjusting screws can be added to meet the structural requirements of different furniture industries and different varieties.
The cross-sectional structure of the top side beam unit 1 comprises a top fastener 1-1, a left concave position 1-2, a right concave position 1-3 and a bottom concave position 1-4; the two oppositely arranged top side beam units 1 are arranged between the two top side beam units 1, and the thickness telescopic assembly 19 jointly forms the top side beam assembly 16.
When the device is actually used, the shape of the section is suitable for the production of the section bar and the lengths of products with different purposes, and the section bar is matched with the thickness telescopic assembly when the device is symmetrically used, so that the thickness is not limited to change. The thickness of the product is changed from plate to block, thereby realizing variety change. The roof side beam assembly can also be used for the side column effect by the transverse action, each roof side beam unit can surround the peripheral end face of the composite function panel to form a panel, when the roof side beam assembly is formed and each roof side beam unit can surround the peripheral end face of the composite function panel, a box-shaped structure is formed, the thickness of the roof side beam assembly is changed synchronously along with the continuous change of the thickness of the telescopic assembly, the thickness of the box-shaped structure is changed synchronously, and the box-shaped structure is changed synchronously to a panel, a frame and a cabinet, so that one of the variety change conditions of furniture products is realized.
The section structure of the connecting column unit 2 comprises an upper connecting column concave position 2-1 consisting of two transverse buckling columns, a lower connecting column concave position 2-2 consisting of one transverse buckling column, a right connecting column concave position 2-3 consisting of two buckling columns arranged up and down and a left connecting column concave position 2-4 consisting of one buckling column with an upward opening; the opening height of the right concave position 2-3 of the connecting column is consistent with the opening height of the right concave position 1-3 of the top side beam unit 1.
The section shape of the connecting column unit 2 is suitable for section bar production, the length of the product is not limited, two connecting column units can form a rectangular upright column according to different purposes, and 4 connecting column units can form a rectangular upright column to match with a thickness telescopic assembly. The length and the width of the upright post formed by the connecting post units can also be changed in a telescopic way, so that different purposes are met, for example, the upright post can be used as a high-isolation inner post or an outer post. When the connecting column forms the outer column, the top of the connecting column is matched with the connecting strip between the side beam assemblies transversely, the plate and the block piece connected with the connecting column can be extended in 1-4 directions, and the appearance of the extending piece is decorated by the connecting column cover without the extending direction, so that one of the variety change conditions of furniture products is realized.
The cross section structure of the beam unit 3 comprises a beam top clamping panel concave position 31, a beam left concave position 32 and a beam right concave position 33 which are respectively composed of an upper buckling column and a lower buckling column, and a beam bottom clamping panel concave position 34, and the opening height of the beam right concave position 33 is consistent with the opening height of the right concave position 1-3 of the top side beam unit 1;
the two oppositely arranged beam units 3 and the thickness telescopic assembly 19 arranged between the two beam units 3 jointly form the beam assembly 17.
The cross section of the beam unit 3 is suitable for section bar production, the length of the product is not limited, and the length requirements of different purposes and product varieties can be met. The beam assembly is also a dividing means in the aspect of product appearance, and divides the composite functional panel into an upper function, a middle function and a lower function or different colors. For different product varieties, the beam assembly also plays a bearing role, for example, the beam assembly is used as a supporting strip of a cabinet-type laminate, or a hardware structural member is hung on a concave part of the outer side surface of the beam unit to extend multi-direction connection, which is one of conditions for realizing variety change of furniture products.
The cross-section structure of the secondary colored beam bottom beam unit 4 comprises a secondary colored beam bottom beam top sandwich panel concave position 41, a secondary colored beam bottom sandwich panel concave position 42 and a secondary colored beam bottom beam right side concave position 43 formed by an upper buckling column and a lower buckling column; the opening height of the concave position 43 at the right side of the bottom beam of the secondary color beam is consistent with the opening height of the concave position 1-3 at the right side of the top side beam unit 1;
the two oppositely arranged color beam bottom beam units 4 and the thickness telescopic assembly 19 arranged between the two color beam bottom beam units 4 jointly form a color beam bottom beam assembly 18.
The secondary color beam bottom beam assembly is also a dividing means in the aspect of product appearance, when the secondary color is adopted, the composite functional panel has different functions or different colors from top to bottom, and for different product varieties, the secondary color beam bottom beam assembly also has the functions of increasing bearing and closing the bottom when being used as a bottom beam, and the secondary color beam bottom beam assembly is one of conditions for realizing variety change of furniture products.
The cross-sectional structure of the first side roof rail cover extension left 5 comprises a first side roof rail cover concave 51 arranged on the left side and a cylindrical hole 52 provided with a notched drop 3/4 arranged on the right side;
the cross-sectional structure of the first side roof rail cover extension right 6 comprises a first side roof rail cover concave position 51 arranged on the left side and a cylinder 61 of a falling 3/4 arranged on the right side, and the cylinder 61 is just clamped in the cylinder hole 51;
the second roof side rail cover extension 7 has a cross-sectional structure including a second roof side rail cover recess 71 provided on the left side and a second roof side rail cover recess 72 provided on the right side in a deep concave shape.
The side beam cover extension piece just provides a foundation for changing the style of the vertical face of the product, and meanwhile, the shape of the cross section is suitable for section bar production, the length of the product is not limited, and the length requirements of different product varieties for different purposes are met; this is one of the conditions for realizing the variety change of furniture products.
The cross-sectional structure of the roof side beam trim cover width extension piece 8 is a straight line, and comprises a cylindrical hole 52 with a notched falling 3/4 arranged on the left side and a cylinder 61 with a falling 3/4 arranged on the right side, wherein the diameters of the cylindrical hole 52 and the cylinder 61 are the same;
the top side beam trim cover width extension 8 comprises three width specifications, namely widths 1A, 2A and 5A respectively, and the structural shapes are the same. It can achieve the following changes: 1A, 2A, 3A (2A +1A), 4A (2A +2A), 5A (2A +2A +1A), 6A (5A +1A), 7A (5A +2A), 8A (5A +1A +2A), 9A (5A +2A +2A) … …
Meanwhile, the shape of the cut-off surface is suitable for section bar production, the length of a product is not limited, the appearance treatment of the decorative cover extension piece can also change the color, the material and the surface texture effect, and when the width of the decorative cover extension piece is changed, three basic specifications are combined and changed like this, so that thousands of effects are achieved.
The cross section structure of the beam column switching end telescopic column 9 is a hollow column body with a groove 91 on the periphery, and the upper edge of the column body is provided with a radian; the beam column switching end telescopic column 9 is provided with a switching end 21 which is in adaptive connection with two ends of the beam column switching end telescopic column, and a bulge 211 matched with the groove 91 is arranged on the section of the switching end 21;
the cross section structure of the beam-column switching end connecting piece 10 is a connecting piece with a beam-column switching end concave position 101 arranged on one side;
the beam-column switching end telescopic column 9, the beam-column switching end connecting piece 10 and the switching end 21 together form a beam-column switching end assembly 13.
The intermediate connection of the switching end 21 of the beam-column switching end assembly 13 in the transverse direction is realized by a switching end telescopic column. The switching end on the right side is provided with a positioning rib in the transverse direction and is plugged into the concave space of the top side beam, and the positioning rib is also designed in the longitudinal direction and is plugged into the concave space of the top side beam, so that the transverse top side beam and the longitudinal top side beam form ninety-degree connection. Wherein, the switching end connecting piece 10 is plugged into the switching end right side in the direction of height one end, and the other end is plugged into the switching end left side, and the connecting screw pierces through the switching end connecting piece and locks with the connecting end 21 that is located the left and right sides respectively, also can be as required adjustment width.
The length of the switching end connecting piece and the length of the switching end telescopic column can be cut as required in order to meet the requirement of width change of a beam column switching end assembly; the beam column switching end assembly ensures that two ends of the top side beam assembly are closed and connected when the two top side beam assemblies form 90-degree connection in a horizontal and vertical mode. If the color texture of the top surface of the switching end telescopic column is adjusted and changed, the appearance of the whole beam-column switching end assembly is changed immediately, so that the switching end telescopic column in the beam-column switching end assembly is also one of the product variety change members.
The cross-sectional structure of the connecting end unit 11 of the thickness telescopic beam comprises a boss 111 arranged at the top and flat steps 112 arranged at the left side and the right side, and a plurality of through holes for screws to pass through are formed in the boss 111;
the cross-sectional structure of the thickness telescopic beam 12 is a straight-line structure, and the thickness telescopic beam comprises two thickness telescopic beam cylindrical holes 121 with notches, which are arranged on the straight-line structure;
the two mirror-image-arranged thickness telescopic beam connecting end units 11 or the thickness telescopic beam 12 arranged between the two thickness telescopic beam connecting end units 11 jointly form a thickness telescopic assembly 19.
The change of the plate, the frame and the cabinet can not be realized without the thickness change, so the thickness telescopic assembly is the basis for realizing the variety change of furniture products.
The composite functional panel assembly 20 comprises a texture layer 201, a functional layer 202, a base material 203 and a top side beam assembly 16, wherein the texture layer 201, the functional layer 202, the base material 203 and the top side beam assembly 16 are assembled together as required to form a single-sided composite functional panel or a double-sided composite functional panel.
The color material of the surface of the texture layer can be adjusted according to different furniture varieties and purposes, and the function of the functional layer can be kept. The functional layer has 1-5 single or composite functions of heat, cold, magnetism, light, electricity and radiation; the base material is matched with an insulating plate material according to the functional requirement; the viscose is selected by compounding a texture layer, a functional layer and a base material; the color and material of the surface of the texture layer of the composite functional panel are changed, the style of the product is changed immediately, the functional layer is changed, and the product is changed with different functions of the same variety immediately. The peripheral edges of the composite functional panels are generally arranged in grooves of the top side beam units in the top side beam assembly, and when the top side beam assembly has thickness and double-sided requirements, the composite functional panels are arranged in the grooves of the top side beam units in the top side beam assembly.
The single-layer composite functional panel and top side beam assembly mounting and matching structure is generally used for furniture side panels, laminates, middle vertical plates, non-load bearing top panels, door panels, decorative panels, single-layer mirrors, wall panels, column protection plates and the like.
The double-layer composite functional panel and the top side beam assembly with the thickness A can be generally used for furniture table panels, thick plates, thick middle vertical plates, thick top panels, door panels, window frames, cabinets, wall cabinets, sheet feet, seat boards, bed side plates, bed screens, screen workstations, television walls, partition walls, high partition walls, bookshelves, goods shelves and the like.
The top side beam transverse interval connecting assembly 14 comprises a top side beam assembly 16, a connecting column assembly 22, a straight connecting strip assembly 23, a thickness telescopic assembly 19, a connecting column bottom 24 and a connecting column cover 25; the components are assembled into a horizontal connecting structure among the top side beams of a straight structure, a cross structure, an L-shaped structure and a T-shaped structure according to requirements. No matter what kind of connection is made, the connecting column assembly and the top side beam assembly are combined by at least two straight connecting strip assemblies, and the fastening integration is ensured during connection.
The connecting column assembly 22 comprises two oppositely arranged connecting column units 2 and a thickness telescopic assembly 19 arranged between the two connecting column units 2, the connecting column units 2 and the thickness telescopic assembly 19 are divided into an upper group and a lower group, and the upper group and the lower group are arranged in a mirror image manner;
the straight connecting strip assembly 23 comprises two oppositely arranged straight connecting strips 231 and a thickness telescopic assembly 19 arranged between the two straight connecting strips 231, and the cross section of the integral structure of the thickness telescopic assembly is in an I shape.
The top side beam longitudinal-to-space connection assembly 15 includes a top side beam assembly angle end post 151, a rotating end angle end connection post 152, a top side beam assembly rotating end post 153, an angle pin 154, an angle fastener 155, and a rotating fastener 156.
The shape of a cut-off surface at one end of the top side beam assembly angle end column 151 is consistent with that of the cut-off surface of the top side beam assembly, and a convex rib is designed to be plugged into the hollow of the top side beam assembly; the other end of the top side beam assembly angle end column 151 is designed with a convex cylinder with two milling symmetrical planes, the milling plane of the convex cylinder is designed with a through hole, the size of the through hole can pass through the angle pin 154, and the thickness size of the symmetrical plane milled by the convex cylinder is consistent with the size of the concave part of the concave clamp at one end of the rotation end angle end connecting column 152. The angle pin 154 is screwed tightly from the screw hole on one side of the concave clamp through the through hole on the convex cylinder to the screw hole on the other side of the concave clamp, and the angle between the concave clamp and the convex cylinder can be adjusted by 0-270 degrees. Wherein, the design of rotation end angle end spliced pole 152 one end has concave clamp, and the design of the other end has protruding cylinder, and protruding cylinder size is unanimous with the concave round hole of top curb girder assembly rotation end 153 one end, can insert and can 360 degrees rotations. Wherein, the top side beam assembly rotates end post 153 one end and cuts the face shape unanimously with top side beam assembly and cuts the face shape to in the top side beam assembly cavity is filled in to the protruding muscle of design, top side beam assembly rotates the other end design of end post and has the cylinder of taking concave round hole, and the size of concave round hole is unanimous with the protruding cylinder of rotation end angle end connection post one end design, can 360 degrees rotations when protruding cylinder inserts concave round hole.
When the vertical angles of the two top side beam assemblies in the longitudinal direction need to be changed, the two top side beam assemblies are connected after the angles of the connecting assemblies in the longitudinal direction are adjusted. When the upper and lower angles of the two top side beam assemblies in the longitudinal direction do not need to change in the longitudinal angle and need to rotate by a certain angle in the same axial direction, the top side beam rotating end columns in the top side beam longitudinal connection assembly are adjusted to rotate by a certain angle, and then connection is carried out.
The technical solution of the present invention will be explained below with reference to several specific examples.
Example one
Application of screen table is provided.
As shown in fig. 37-38, the beam assembly 17, the beam-column adapter assembly 13 and the screen are jointly spliced together to form a screen structure of the desk; then the connecting column assembly 22 is spliced to form a table leg structure, and finally the upper table plate is installed, so that a screen table is spliced. In practical application, different table widths and heights can be selected according to the placing space and the placing position, the length or the height of the corresponding section bar can be adjusted, the operation is very convenient, and if screen tables with different shapes are needed, screen tables with different structures and shapes can be spliced by mainly selecting different table plate shapes.
Example two
Various screens, screen desks and the application of various conventional combined units.
As shown in fig. 39-48, screen units of different thicknesses as shown in fig. 40 can be formed using the beam-column adapter end assembly 13, the top-side beam assembly 16, the cross beam assembly 17, the cross-sill assembly 18, and various screen modules of the present invention. The screen units can be used for forming screens with different structures and different requirements in the L direction, the straight direction, the cross direction and the T direction as shown in figures 41-44.
The screen joint connecting column assembly 22 and the beam unit assembly 17 of the different structures can be used to form a T-shaped screen desk and an L-shaped screen desk as shown in figures 46-48. The application is very wide, and the embodiment only lists a plurality of conventional embodiments and cannot be exhaustive.
Implementation III
The application of a space cabinet.
As shown in fig. 49-50, in the present invention, the beam-column adapter connector assembly 13 is extended according to actual needs to form a connector, the top-side beam assembly 16 is assembled into top plates and side plates with different thicknesses according to actual needs, and the cross beam assembly 17 is assembled into a laminated plate frame with different thicknesses according to actual needs. And then the space cabinets with different heights, widths and different layer spacing numbers are assembled by combining the laminated plate and the back plate.
The above three embodiments are used to illustrate several office furniture products composed of the furniture components of the present invention, and the office furniture composed of the components of the present invention is not limited to the above several forms, but may also include other various forms, such as a negotiation table, an office table, a high partition wall, etc., and the present invention is not limited to the above embodiments, and any furniture composed of the components of the present invention may be modified within the protection scope of the present invention.
Example four
The application of the customized wardrobe.
As shown in fig. 51-52, the side roof beam unit 1, the cross beam unit 3 and the beam column adapter 13 can be combined with a back plate, a door frame, a door panel, a side plate and the like to form a wardrobe. The wardrobe is characterized in that left and right side plates of the wardrobe are formed by the top side beam unit 1 and the side plates, a top plate, a layer plate and a bottom plate of the wardrobe are formed by the cross beam unit 3, the beam column switching end 13 and the layer plate, and the wardrobe is formed by splicing the upper back plate, the door frame and the door plate with the electric control liquid crystal composite plate, so that the wardrobe is very convenient.
EXAMPLE five
As shown in fig. 53-55, the bed of the present invention is composed of a bed box and a bed screen, the bed screen is divided into a high bed screen located at the head of the bed and a low bed screen located at the tail of the bed, the low bed screen and the high bed screen are respectively composed of a top side beam transverse interval connection assembly 14, a connection column bottom 24, a top side beam assembly and the like, which are jointly composed, in combination with a beam assembly 17 and a beam assembly 18, and the height of the soft bag of the high bed screen is higher than that of the soft bag of the low bed screen.
The bed box assembly is composed of a beam assembly 17, a connecting column assembly 22, a bed plate and the like.
The fourth and fifth embodiments are specific applications of the present invention in customized furniture products, and of course, customized furniture formed by the components of the present invention is not limited to the above forms, and may also include other various forms, such as cabinet in a living room, dining table, dining chair, tv wall, bookcase, sofa-type row chair or tea table, etc. the present invention is not limited to the above forms, and any furniture formed by the components of the present invention is within the protection scope of the present invention.
EXAMPLE six
Application of hotel guest room beds.
As shown in fig. 56, a bed commonly used in a hotel is composed of a bed screen frame and a bed box frame which are composed of a top side beam transverse room connecting assembly 14 and a cross beam assembly 17, a bed screen base plate and a bed screen ornament soft package are respectively installed on the bed screen frame to assemble a hotel bed screen, a bed board is installed on the bed box frame to form a bed box, and finally the bed screen and the bed box are installed together.
The sixth embodiment is a specific application of the present invention to hotel furniture products, and the hotel furniture products formed by the components of the present invention are not limited to the above forms, and may also include other various forms, such as a hotel chair, a baggage rack, a hotel bedside cabinet, a sofa-type row chair, a tea table, a corner table, and the like.
EXAMPLE seven
Application of bathroom mirrors is provided.
As shown in fig. 57-58, for the specific application of bathroom mirrors in kitchen and bathroom furniture products, the length of the adapter is adjusted by the beam-column adapter assembly 13 according to the size of the bathroom mirror, so as to form a bathroom mirror frame, and then the mirror glass, the heating assembly, the back plate and the like are respectively assembled from front to back to form a mirror whole, and then the power input seat is assembled to form the intelligent bathroom mirror.
The seventh embodiment is a specific application of the present invention to kitchen and toilet furniture products, but the hotel furniture products which can be composed of the components of the present invention are not limited to the above forms, and may also include other various forms, such as bathroom cabinets, combined cabinets, and the like.
During the assembling process of the furniture, the appearance style can be changed according to the use requirement, for example, the thickness, the length, the angle and the aesthetic aspect of the product can be adaptively changed.
The embodiments described above are only a part of the embodiments of the present invention, and not all of them. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Claims (2)

1. A furniture combined member is characterized by comprising a top side beam unit (1), a connecting column unit (2), a crossbeam unit (3), a secondary colored beam bottom beam unit (4), a first top side beam cover extending piece left (5), a first top side beam cover extending piece right (6), a second top side beam cover extending piece (7), a top side beam decorative cover width extending piece (8), a beam column switching end telescopic column (9), a beam column switching end connecting piece (10), a thickness telescopic beam connecting end unit (11) and a thickness telescopic beam (12);
the beam column switching end assembly (13), the top side beam transverse interval connecting assembly (14), the top side beam longitudinal interval connecting assembly (15), the top side beam assembly (16), the cross beam assembly (17), the color beam bottom beam assembly (18), the thickness telescopic assembly (19) and the composite functional panel assembly (20) are assembled by the components;
assembling the assembly units and the composite functional panel into different office furniture, customized furniture, hotel furniture and kitchen and bathroom furniture according to requirements;
the cross-sectional structure of the top side beam unit (1) comprises a top fastener (1-1), a left concave position (1-2), a right concave position (1-3) and a bottom concave position (1-4); the two oppositely arranged top side beam units (1) and a thickness telescopic assembly (19) arranged between the two top side beam units (1) jointly form a top side beam assembly (16);
the section structure of the connecting column unit (2) comprises an upper connecting column concave position (2-1) formed by two transverse buckling columns, a lower connecting column concave position (2-2) formed by one transverse buckling column, a right connecting column concave position (2-3) formed by two vertically arranged buckling columns and a left connecting column concave position (2-4) formed by one buckling column with an upward opening; the opening height of the right concave position (2-3) of the connecting column is consistent with the opening height of the right concave position (1-3) of the top side beam unit (1);
the cross section structure of the cross beam unit (3) comprises a cross beam top clamping panel concave position (31), a cross beam left concave position (32), a cross beam right concave position (33) and a cross beam bottom clamping panel concave position (34), wherein the cross beam left concave position and the cross beam right concave position are respectively formed by an upper buckling column and a lower buckling column, and the opening height of the cross beam right concave position (33) is consistent with the opening height of a right concave position (1-3) of the top side beam unit (1); the two oppositely arranged beam units (3) and the thickness telescopic assembly (19) arranged between the two beam units (3) jointly form a beam assembly (17);
the cross section structure of the secondary colored beam bottom beam unit (4) comprises a secondary colored beam bottom beam top panel clamping concave position (41), a secondary colored beam bottom panel clamping concave position (42) and a secondary colored beam bottom beam right side concave position (43) formed by an upper buckling column and a lower buckling column; the opening height of the bottom beam right side concave position (43) of the secondary color beam is consistent with the opening height of the right side concave position (1-3) of the top side beam unit (1); the two oppositely arranged color beam bottom beam units (4) and the thickness telescopic assembly (19) arranged between the two color beam bottom beam units (4) jointly form a color beam bottom beam assembly (18);
the cross-sectional structure of the first side roof rail cover extension left (5) comprises a first side roof rail cover concave position (51) arranged on the left side and a cylindrical hole (52) provided with a notched falling 3/4 and arranged on the right side;
the cross-sectional structure of the right side (6) of the first top side beam cover extension piece comprises a first top side beam cover concave position (51) arranged on the left side and a cylinder (61) of a falling 3/4 arranged on the right side, and the cylinder (61) is just clamped in a cylinder hole (51);
the cross-sectional structure of the second roof side rail cover extension (7) comprises a second roof side rail cover concave position (71) arranged on the left side and a second roof side rail cover deep concave position (72) arranged on the right side;
the cross-sectional structure of the roof side beam trim cover width extension piece (8) is in a straight shape, the roof side beam trim cover width extension piece comprises a cylindrical hole (52) with a notched falling 3/4 arranged on the left side and a column (61) with a falling 3/4 arranged on the right side, and the diameters of the cylindrical hole (52) and the column (61) are the same;
the top side beam trim cover width extension piece (8) comprises three width specifications, namely the widths are 1A, 2A and 5A respectively, and the structural shapes are the same;
the cross section structure of the beam column switching end telescopic column (9) is a hollow column body with grooves (91) on the periphery, and the upper edge of the column body is provided with a radian; the beam column switching end telescopic column is characterized in that a switching end (21) is connected with two ends of the beam column switching end telescopic column (9) in a matched mode, and a bulge (211) matched with the groove (91) is arranged on the section of the switching end (21);
the cross section structure of the beam-column switching end connecting piece (10) is a connecting piece with a beam-column switching end concave position (101) arranged on one side;
the beam-column switching end telescopic column (9), the beam-column switching end connecting piece (10) and the switching end (21) jointly form a beam-column switching end assembly (13);
the cross section structure of the thickness telescopic beam connecting end unit (11) comprises a boss (111) arranged at the top and flat steps (112) arranged on the left side and the right side, and a plurality of through holes for screws to pass through are formed in the boss (111);
the cross section structure of the thickness telescopic beam (12) is a straight-line structure and comprises two thickness telescopic beam cylindrical holes (121) with notches, which are arranged on the straight-line structure;
the two thickness telescopic beam connecting end units (11) arranged in a mirror image mode or the thickness telescopic beam (12) arranged between the two thickness telescopic beam connecting end units (11) jointly form a thickness telescopic assembly (19);
the top side beam transverse interval connecting assembly (14) comprises a top side beam assembly (16), a connecting column assembly (22), a straight connecting strip assembly (23), a thickness telescopic assembly (19), a connecting column bottom (24) and a connecting column cover (25); the components are assembled into a top side beam transverse connection structure with a straight structure, a cross structure, an L-shaped structure and a T-shaped structure according to requirements;
the top side beam longitudinal interval connecting assembly (15) comprises a top side beam assembly angle end column (151), a rotating end angle end connecting column (152), a top side beam assembly rotating end column (153), an angle tip (154), an angle fastening nail (155) and a rotating fastening nail (156);
the composite functional panel assembly (20) comprises a texture layer (201), a functional layer (202), a base material (203) and a top side beam assembly (16), wherein the texture layer (201), the functional layer (202), the base material (203) and the top side beam assembly (16) are assembled together according to requirements to form a single-sided composite functional panel or a double-sided composite functional panel.
2. The furniture assembly according to claim 1, characterized in that the connecting column assembly (22) comprises two oppositely arranged connecting column units (2) and a thickness telescopic assembly (19) arranged between the two connecting column units (2), wherein the connecting column units (2) and the thickness telescopic assembly (19) are divided into an upper group and a lower group, and the upper group and the lower group are arranged in a mirror image manner;
the straight connecting strip assembly (23) comprises two oppositely arranged straight connecting strips (231) and a thickness telescopic assembly (19) arranged between the two straight connecting strips (231), and the cross section of the integral structure of the thickness telescopic assembly is in an I shape.
CN201810181541.7A 2018-03-06 2018-03-06 Furniture combined member Active CN108477882B (en)

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CN109805642B (en) * 2019-03-29 2024-04-23 广东法迪奥厨卫科技有限公司 Novel plywood and plywood are fixed device

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