WO2023005491A1 - 一种第一连接件、连接组件、连接系统及安装方法 - Google Patents

一种第一连接件、连接组件、连接系统及安装方法 Download PDF

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Publication number
WO2023005491A1
WO2023005491A1 PCT/CN2022/099343 CN2022099343W WO2023005491A1 WO 2023005491 A1 WO2023005491 A1 WO 2023005491A1 CN 2022099343 W CN2022099343 W CN 2022099343W WO 2023005491 A1 WO2023005491 A1 WO 2023005491A1
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WIPO (PCT)
Prior art keywords
channel
installation
connector
connection
closed end
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PCT/CN2022/099343
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English (en)
French (fr)
Inventor
林晓群
林晓欢
苏伟生
郭玉武
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广东精诺五金实业有限公司
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Publication of WO2023005491A1 publication Critical patent/WO2023005491A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B5/00Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them
    • F16B5/02Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of fastening members using screw-thread
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B5/00Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them
    • F16B5/10Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of bayonet connections

Definitions

  • the invention relates to a first connecting piece, a connecting assembly, a connecting system and an installation method for connecting a first component and a second component, in particular for connecting furniture components.
  • Invisible connectors are used to complete the invisible connection between the components of some existing finished furniture products (such as cabinets, wardrobes or bookshelves), and the connection is stable and aesthetically pleasing.
  • the existing horizontal push-type invisible connector has the disadvantages of poor connection stability and poor load-carrying capacity between the other two components.
  • the insertion and fixing system of the shelf, the shelf and the side plate are respectively connected with two pins through the first support and the second support to realize the horizontal push sliding connection, but the above-mentioned system needs to process the side of the shelf with a length dimension Larger longitudinal groove, the longitudinal groove will damage the side of the shelf, greatly reducing the load-bearing capacity of the shelf, resulting in easy to be limited by the load in use, at the same time, the shelf is easy to move or shake under force, and the connection stability is relatively low Difference.
  • the longitudinal grooves can result in poor shelf appearance, reducing the aesthetics of the finished furniture.
  • the present invention provides a first connector, which includes a first connector body, and the first connector body has a connected first surface and a second surface, the first surface of the first connector body is provided with a first channel extending transversely and a second channel extending longitudinally, the first end of the second channel extending longitudinally is connected to the first channel A channel is connected, and the second end of the second channel extending longitudinally penetrates the second surface of the first connector body to form a first inlet; in the transverse direction, at least One end is a first closed end;
  • the first channel and the second channel define an installation channel for connecting with a second connecting piece.
  • connection assembly including the above-mentioned first connection piece, and a second connection piece, the second connection piece includes a connection portion, and the connection portion can be connected from the first inlet sliding into and relative to the first closed end, and the connecting portion slides into the first channel.
  • a stopper is further included, the stopper has a third end and a fourth end opposite; the stopper is inserted into the second passage from the first access port, the stopper The third end of the movable member is located at the connection between the first passage and the second passage, and at least partially abuts against the connecting part, so as to limit the sliding of the connecting part in the first passage.
  • the third connecting piece has a fourth surface connected with a fifth surface, and a third channel extending laterally and sliding with the connecting part is opened on the fourth surface , one end of the third channel penetrates through the fifth surface to form the second inlet, and the other end of the third channel is a second closed end;
  • the number of the second connecting parts is two, and the two second connecting parts are respectively connected to the first connecting part and the third connecting part in a one-to-one correspondence.
  • connection system including a first component, a second component, and the above-mentioned connection assembly
  • a first installation groove is opened on the side of the first member, and one side of the first installation groove penetrates through the lower surface of the first member to form a first installation opening;
  • the first connector is installed on the In the first installation groove, the first surface faces the notch of the first installation groove and communicates the first channel and the second channel with the outside world; and the second channel passes through the first channel in turn.
  • the entrance and the first installation port communicate with the outside world;
  • the second connecting piece is installed on the second member, and the connecting portion protrudes from the surface of the second member;
  • the connecting part slides into the second channel from the first installation port and the first access port in turn, and the connecting part slides along the second channel and slides into the first channel middle.
  • connection system including a first component, a second component, and the above-mentioned connection assembly
  • a second installation groove is opened on the side of the first member, one side of the second installation groove penetrates through the front end of the first member to form a second installation opening, and the third connecting piece is installed on the In the second installation groove, the fourth surface faces the notch of the second installation groove and communicates the third passage with the outside; and the third passage passes through the second opening and the second installation in sequence.
  • the mouth communicates with the outside world;
  • a first installation groove is opened on the side of the first member behind the second installation groove, and one side of the first installation groove penetrates through the lower surface of the first member to form a first installation opening
  • the first connecting piece is installed in the first installation groove, the first surface faces the notch of the first installation groove and communicates the first channel and the second channel with the outside world; and
  • the second channel communicates with the outside through the first access port and the first installation port in turn, and at least one closed end of the first connecting piece is located at the rear side of the second channel;
  • the two second connectors are mounted on the second member at intervals along the front and back, and the connecting parts of the two second connectors are protruding from the surface of the second member;
  • the connecting portion of the second connecting piece located at the front end slides into the third passage from the second installation port and the second access opening sequentially, and the connecting portion of the second connecting piece located at the rear end sequentially slides from the The first installation port and the first access port slide into the second channel.
  • the present invention also provides an installation method applied to the connection assembly described above, including the following steps:
  • First mounting grooves are respectively processed on the left and right sides of the first member, and one side of each first mounting groove is processed to the bottom side of the first member to form a first mounting port, and the two first
  • the connectors are respectively installed in the two first installation grooves, and make the first surface face the notch of the first installation groove and make the first channel and the second channel communicate with the outside world, and the second channel passes through the first inlet and the second channel in turn.
  • the installation port communicates with the outside world;
  • the present invention also provides an installation method applied to the connection assembly described above, including the following steps:
  • the front ends of the left and right sides of the first member are respectively processed with second installation grooves, and one side of each second installation groove is processed to the front end surface of the first member to form a second installation port, and the two
  • the third connecting piece is respectively installed in the two second installation grooves, and makes the fourth surface face the notch of the second installation groove and communicates the third passage with the outside; the third passage passes through the second inlet and the second installation in turn.
  • the mouth communicates with the outside world;
  • the left and right sides of the first member are respectively processed with first installation grooves on the rear side of the second installation groove, and one side of each first installation groove is processed to the bottom side of the first member to form a first installation groove.
  • the installation port is to install the two first connectors in the two first installation grooves respectively, and make the first surface face the notch of the first installation groove and communicate the first channel and the second channel with the outside world; the second channel Communicate with the outside world through the first port and the first installation port in turn;
  • the first inlets of the first connectors on the right sides are respectively inserted into the connecting parts of the two second connectors on the rear end of the second member, and the connecting parts of the second connectors on the rear end on the two second members are When moving to the connection between the first channel and the second channel, the first member is driven to move laterally forward, so that the two second connecting pieces at the front ends on the two second members are further slid into the third channel, the two The connecting parts of the two second connecting pieces located at the rear end on the second component slide into the first passages of the two first connecting pieces respectively.
  • connection assembly of the present invention has the beneficial effects of:
  • the present invention enters the second end of the second channel from the first inlet through the second connector part, slides along the second channel to the first end of the second channel, and slides after passing through the connection between the first channel and the second channel.
  • the second connecting piece is partially connected to the first passage, so that the first connecting piece and the second connecting piece are connected to each other, so as to achieve the purpose of connecting the first component and the second component to each other.
  • the first closed end of the first connecting piece of the present invention is closed, so that the structural strength of the first closed end is greater than that of the middle part of the first passage or other positions of the first passage.
  • the load-bearing force of the first member is located at or close to the first closed end, so that the connecting portion has a stronger bearing capacity for the first connecting piece, and the first member can bear a larger load.
  • the load and the connection stability are better, thus solving the technical problem of insufficient or limited bearing capacity of the first member in the prior art after using the flat-push invisible connector.
  • the present invention avoids opening longitudinal grooves with large lengths on the surface of the first member, avoids the problem of the reduction of the bearing capacity of the first member due to the longitudinal grooves, and ensures the aesthetics of the first member at the same time. Fit the user's aesthetics.
  • the user can detach the first component from the second component and readjust the position of the first component on the second component after controlling the detachment of the first connector and the second connector according to the usage requirements, so as to It meets the needs of users and is convenient and quick to disassemble and assemble.
  • Fig. 1 is a schematic diagram of a first structure of a first connector in Embodiment 1 of the present invention
  • Fig. 2 is a second structural schematic diagram of the first connector in Embodiment 1 of the present invention.
  • Fig. 3 is a side view of Fig. 1;
  • FIG. 4 is a schematic diagram of a third structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 5 is a schematic diagram of a fourth structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 6 is a schematic diagram of a fifth structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 7 is a schematic diagram of the sixth structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 8 is a schematic diagram of the seventh structure of the first connector in Embodiment 1 of the present invention.
  • Figure 9 is a top view of Figure 8.
  • Fig. 10 is a schematic diagram of the eighth structure of the first connector according to Embodiment 1 of the present invention.
  • Figure 11 is a top view of Figure 10
  • Fig. 12 is a schematic diagram of the ninth structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 13 is a schematic diagram of the tenth structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 14 is a schematic diagram of the eleventh structure of the first connector in Embodiment 1 of the present invention.
  • Fig. 15 is a schematic diagram of a twelfth structure of the first connector according to Embodiment 1 of the present invention.
  • Fig. 16 is a schematic diagram of the thirteenth structure of the first connector in Embodiment 1 of the present invention.
  • Figure 17 is a top view of Figure 16;
  • Fig. 18 is a schematic diagram of the fourteenth structure of the first connector according to Embodiment 1 of the present invention.
  • Figure 19 is a top view of Figure 18;
  • Figure 20 is a top view of Figure 1;
  • Figure 21 is a sectional view along J-J in Figure 20;
  • Figure 22 is a top view of Figure 1;
  • Fig. 23 is a schematic diagram of the fifteenth structure of the first connector in Embodiment 1 of the present invention.
  • Figure 24 is a top view of Figure 23;
  • Fig. 25 is a schematic diagram of the sixteenth structure of the first connector according to Embodiment 1 of the present invention.
  • Figure 26 is a top view of Figure 25;
  • Fig. 27 is a schematic diagram of the seventeenth structure of the first connector in Embodiment 1 of the present invention.
  • Figure 28 is a top view of Figure 27;
  • Fig. 29 is a schematic diagram of the first structure of the second connector in Embodiment 1 of the present invention.
  • Figure 30 is a side view of Figure 29;
  • Fig. 31 is a second structural schematic diagram of the second connector in Embodiment 1 of the present invention.
  • Fig. 32 is a schematic diagram of the third structure of the second connector in Embodiment 1 of the present invention.
  • Fig. 33 is a schematic diagram of the fourth structure of the second connector in Embodiment 1 of the present invention.
  • Fig. 34 is a schematic diagram of the first structure of the third connector in Embodiment 2 of the present invention.
  • Figure 35 is a top view of Figure 34;
  • Fig. 36 is a second structural schematic diagram of the third connector in Embodiment 2 of the present invention.
  • Fig. 37 is a schematic diagram of the third structure of the third connector according to Embodiment 2 of the present invention.
  • Fig. 38 is a schematic diagram of the fourth structure of the third connector in Embodiment 2 of the present invention.
  • Fig. 39 is a schematic diagram of the fifth structure of the third connector in Embodiment 2 of the present invention.
  • Figure 40 is a top view of Figure 39;
  • Fig. 41 is a schematic diagram of the first structure of the stopper in Embodiment 1 of the present invention.
  • Fig. 42 is a second structural schematic diagram of the stopper in Embodiment 1 of the present invention.
  • Fig. 43 is a schematic diagram of the third structure of the stopper in Embodiment 1 of the present invention.
  • Fig. 44 is a schematic diagram of the installation of the connection assembly, the first component and the second component according to Embodiment 1 of the present invention.
  • Fig. 45 is a schematic diagram of the installation of the second connector and the second component in Embodiment 1 of the present invention.
  • Fig. 46 is a schematic diagram of the connection between the second connector and the second component in Embodiment 1 of the present invention.
  • Fig. 47 is a schematic structural view of the first component of Embodiment 1 of the present invention.
  • Fig. 48 is a schematic diagram of the installation of the first connector and the first member according to Embodiment 1 of the present invention.
  • Fig. 49 is a schematic diagram of the connection between the first connector and the first member according to Embodiment 1 of the present invention.
  • Fig. 50 is another schematic diagram of the installation of the first connector and the first component in Embodiment 1 of the present invention.
  • Fig. 51 is a schematic diagram of the connection of the connection assembly, the first component and the second component according to Embodiment 1 of the present invention.
  • Figure 52 is a side view of Figure 51;
  • Figure 53 is a sectional view along A-A in Figure 52;
  • Figure 54 is a bottom view of Figure 51;
  • Figure 55 is a sectional view along B-B in Figure 54;
  • Figure 56 is a sectional view along C-C in Figure 54;
  • Fig. 57 is a schematic diagram of the installation of the connection assembly, the first component and the second component according to Embodiment 2 of the present invention.
  • Fig. 58 is a schematic structural view of the first component of Embodiment 2 of the present invention.
  • Fig. 59 is a schematic diagram of the installation of the first connecting piece, the third connecting piece and the first member according to Embodiment 2 of the present invention.
  • Fig. 60 is a schematic diagram of the connection between the first connector, the third connector and the first member according to Embodiment 2 of the present invention.
  • Fig. 61 is a schematic diagram of the connection of the connection assembly, the first component and the second component according to Embodiment 2 of the present invention.
  • Figure 62 is a side view of Figure 61;
  • Figure 63 is a sectional view along D-D in Figure 62;
  • Figure 64 is a bottom view of Figure 61;
  • Figure 65 is a sectional view along E-E in Figure 64;
  • Figure 66 is a sectional view along F-F in Figure 64;
  • first and second are used for descriptive purposes only, and cannot be interpreted as indicating or implying relative importance or implicitly specifying the quantity of indicated technical features. Thus, a feature defined as “first” and “second” may explicitly or implicitly include one or more of these features.
  • “plurality” means two or more, unless otherwise specifically defined.
  • a first feature being “on” or “under” a second feature may include direct contact between the first and second features, and may also include the first and second features Not in direct contact but through another characteristic contact between them.
  • “above”, “above” and “above” the first feature on the second feature include that the first feature is directly above and obliquely above the second feature, or simply means that the first feature is horizontally higher than the second feature.
  • “Below”, “beneath” and “under” the first feature to the second feature include that the first feature is directly below and obliquely below the second feature, or simply means that the first feature has a lower level than the second feature.
  • the finished furniture is assembled from a plurality of furniture components with different structures or shapes.
  • the furniture components can be plate-shaped, block-shaped, or column-shaped, and the material can be wood, plastic, or polymer composite materials. Etc., not limited here.
  • Embodiment 1 of the present invention discloses a connecting assembly, which includes a first connecting piece 100 and a second connecting piece 200, for example, by first installing the first connecting piece 100 On the first member 500, the second connector 200 is installed on the second member 600, and then the first connector 100 and the second connector 200 are connected to each other, so that the stability between the first member 500 and the second member 600 can be realized. connection, and the bearing capacity of the first member 500 or the second member 600 is strong; at the same time, the installation or connection of the first connector 100 and the second connector 200 does not need to destroy the surface of the first member 500 or the second member 600, satisfying It satisfies the user's pursuit of the aesthetics of the finished furniture.
  • the second connector 200 is fixed on the surface of the second member 600 in a non-detachable manner, or the second connector 200 and the second member 600 are integrally formed, and the first connector 100 is installed on the first member 500.
  • the first connecting piece 100 and the second connecting piece 200 are connected to each other, so that a stable connection between the first member 500 and the second member 600 can be realized, and the first member 500 or the second member 600 has a strong bearing capacity.
  • this embodiment 1 discloses a first connector 100, including a first connector body, the first connector body has a connected first surface 101 and a second surface 102, the second The first surface 101 of a connector body is provided with a first channel 103 extending transversely and a second channel 104 extending longitudinally, the first end 1045 of the second channel 104 extending longitudinally communicates with the first channel 103, the second The second end 1046 of the channel 104 extends longitudinally through the second surface 102 of the first connector body to form a first inlet 1041; in the transverse direction, at least one end of the first channel 103 is a first closed end 1031; The first channel 103 and the second channel 104 define an installation channel for connecting with the second connecting member 200 .
  • the second connector 200 part After the second connector 200 part enters the second end 1046 of the second channel 104 from the first inlet 1041, slides along the second channel 104 to the first end 1045 of the second channel 104, and passes through the first channel 103 and the second channel 104. After the communication part of the channel 104 slides into the first channel 103, it is partially connected to the first channel 103 through the second connecting piece 200, so that the first connecting piece 100 and the second connecting piece 200 are connected to each other, thereby realizing the first component 500 and the second member 600 are connected to each other.
  • the part of the second connecting member 200 used for connecting in the installation channel is referred to as the connecting part 201 .
  • connection between the first connecting part 100 and the second connecting part 200 can be realized after the connecting part 201 slides to any position in the first channel 103, for example, the connecting part 201 can slide to the first channel
  • the middle part of 103 for example, the connection part 201 can slide to the first closed end 1031 or close to the first closed end 1031 .
  • the structural strength of the first closed end 1031 is greater than that of the middle part of the first passage 103 or other positions of the first passage 103.
  • the connecting part 201 slides to the first closed end 1031 or When approaching the first closed end 1031, the load-bearing force of the first member 500 is located at or close to the first closed end 1031, so that the connecting portion 201 has a stronger bearing capacity for the first connecting member 100, and the first The member 500 can bear a larger load and has better connection stability, thereby solving the technical problem of insufficient or limited bearing capacity of the first member 500 in the prior art after adopting a flat-push invisible connector.
  • Embodiment 1 of the present invention avoids setting up a longitudinal groove with a large length on the surface of the first member 500, avoiding the problem of the reduction of the bearing capacity of the first member 500 due to the longitudinal groove, and ensuring the first The aesthetics of the component 500 conforms to the user's aesthetics.
  • the longitudinal direction of this embodiment 1 is shown by the arrow Y in Figure 1-28
  • the horizontal direction of this embodiment 1 is shown by the arrow X in Figure 1-28
  • the longitudinal direction may be a vertical direction
  • the transverse direction may be a horizontal direction
  • the longitudinal direction and the transverse direction The angle between them is 90°
  • the longitudinal direction can be a vertical direction
  • the transverse direction can be a direction gradually inclined downward along the horizontal plane, and the angle between the longitudinal direction and the transverse direction is less than 90°
  • the longitudinal direction can be a vertical direction Direction
  • the horizontal direction can be a direction gradually inclined upward along the horizontal plane, and the angle between the vertical direction and the horizontal direction is greater than 90°.
  • the transverse direction is a horizontal direction, and the angle between the longitudinal direction and the transverse direction may be greater than or equal to or less than 90°.
  • the horizontal direction is not the horizontal direction
  • the vertical direction is not the vertical direction
  • the angle between the vertical direction and the horizontal direction may be greater than or equal to or less than 90°. Therefore, those skilled in the art can make adaptive adjustments according to actual usage conditions.
  • first surface 101 and the second surface 102 can be flat or curved or curved or stepped.
  • first surface 101 is a stepped surface
  • first channel 103 and the second channel 104 can be respectively located at the In this case, the upper and lower surfaces are still within the protection scope of the present invention.
  • At least one first convex edge 1032 is provided on the inner side of the first channel 103, and the first A protruding edge 1032 is used to abut against the connecting part 201 to restrict the connecting part 201 from being pulled out from the first channel 103 , so that the first connecting part 100 and the second connecting part 200 are connected to each other.
  • the first protruding edge 1032 is strip-shaped, and one strip-shaped first protruding edge 1032 can be continuously provided inside the first channel 103, or a plurality of strip-shaped first protruding edges 1032 can be discontinuously arranged. are sequentially arranged inside the first channel 103 .
  • the first protruding edge 1032 is in the shape of a block or a point, and a plurality of first protruding edges 1032 in the shape of a block or a point are sequentially and intermittently disposed inside the first channel 103 . Further description will be made below according to the position of the first convex edge 1032 in the first channel 103 .
  • the first channel 103 has a first inner side wall extending in the transverse direction 1033 , at least one first convex edge 1032 is disposed on the first inner side wall 1033 , and the first convex edge 1032 extends laterally.
  • the first channel 103 has two opposite first inner sidewalls 1033, at least one first convex edge 1032 may be provided on only one of the first inner sidewalls 1033 (as shown in Figures 4 and 10 ), or two At least one first protruding edge 1032 is respectively provided on each of the first inner side walls 1033 (as shown in FIGS.
  • a plurality of first convex edges 1032 may be provided on the same first inner side wall 1033, and the plurality of first convex edges 1032 are arranged at intervals in the direction perpendicular to the transverse direction, and each first convex edge 1032 may be continuous. It is horizontally disposed on the first inner side wall 1033 .
  • the connecting part 201 slides to the first channel 103, the connecting part 201 is pressed against the first convex edge 1032 to limit the connecting part 201 from being pulled out from the first channel 103.
  • the second connecting part 200 may not be located in the first
  • the closed end 1031 may also be located at or close to the first closed end 1031 , which is not limited here.
  • the first channel 103 also has a first bottom wall 1034 extending along the transverse direction. As shown in FIG. 21 , the distance between the side of the first convex edge 1032 close to the first closed end 1031 and opposite to the first bottom wall 1034 and the first surface 101 is set to be D1, and the first convex edge 1032 is set to be close to The distance between the first channel 103 and the second channel 104 and the side opposite to the first bottom wall 1034 and the first surface 101 is D2, wherein D1>D2.
  • the thickness dimension of the first convex edge 1032 gradually increases, so that D1>D2;
  • the thickness of the first convex edge 1032 first decreases and then increases gradually, and finally makes D1>D2;
  • the thickness of the first convex edge 1032 remains the same first, then increases gradually, and finally the thickness remains the same, and finally D1>D2.
  • the connecting part 201 can easily slide into the first channel 103 during the sliding process from the connection between the first channel 103 and the second channel 104 to the first closed end 1031, and then the connecting part 201 During the sliding process of the first channel 103, it is gradually subjected to the pressing force between the first flange 1032 and the first bottom wall 1034.
  • connection stability between the first connecting piece 100 and the second connecting piece 200 is further improved.
  • At least one first protruding edge 1032 is provided on the first closed end 1031 .
  • the connecting part 201 slides to the first closed end 1031 or close to the first closed end 1031, the connecting part 201 is pressed against the first protruding edge 1032 to restrict the connecting part 201 from being pulled out from the first channel 103, so that the first The connecting piece 100 is connected to the second connecting piece 200 .
  • the first convex edge 1032 may not be provided on the inner side of the first channel 103, and the first convex edge 1032 may pass between the surface of the connecting part 201 and at least one first inner wall side. There is a large frictional force to generate a clamping force, which restricts the connection part 201 from being pulled out from the first channel 103 , so that the first connection part 100 and the second connection part 200 are connected to each other.
  • At least one first limiting protrusion is provided on the first protruding edge 1032 near the first closed end 1031 1032a, the first limiting protrusion 1032a is used to limit the connecting portion 201 of the second connecting member 200 to the first closed end 1031 or close to the first closed end 1031 .
  • the number of the first limiting protrusions 1032a may be one or more, which is not limited here.
  • the first convex edge 1032 can be provided with one or more first limiting protrusions 1032a, and the plurality of first limiting convex edges are arranged on the first on the convex edge 1032 .
  • first protruding edges 1032 are respectively provided on the opposite first inner sidewalls 1033, each first protruding edge 1032 may be provided with one or more first limiting protrusions 1032a.
  • the protruding points 1032a are sequentially disposed on the same first protruding edge 1032 .
  • the first limiting protrusion 1032a may have certain elasticity, for example, soft plastic or silica gel; the limiting protrusion may also be non-elastic, such as hard plastic.
  • the connecting part 201 slides to the first limiting convex point 1032a, the first limiting convex point 1032a undergoes a certain elastic deformation after being abutted by the connecting part 201, and then the connecting part 201 slides over the first limiting convex point 1032a and Located at or close to the first closed end 1031, at this time, after the first limiting protrusion 1032a returns to its original shape, the connecting part 201 is clamped at or close to the first closed end 1031, so as to realize the connection between the first connecting piece 100 and the first closed end 1031.
  • connection between the second connectors 200, the first limit protrusion 1032a is used to prevent the first connector 100 and the second connector 200 from being easily displaced in the first channel 103 when the first connector 100 and the second connector 200 are connected, ensuring that the first The connection between the connecting piece 100 and the second connecting piece 200 is stable, while ensuring that the first component 500 has a relatively large bearing capacity.
  • the end of the connecting part 201 is attached to the first bottom wall 1034, so as to prevent the gap between the connecting part 201 and the first bottom wall 1034 from affecting the stability of the connecting part 201 in the first channel 103, At the same time, the protruding length of the second connecting piece 200 in the first slideway is increased to improve the bearing capacity of the first member 500 .
  • the second channel 104 has a second inner wall 1043 extending longitudinally, and at least one second convex edge 1042 is provided on the second inner wall 1043 .
  • the second channel 104 has two opposite second inner sidewalls 1043, and at least one second convex edge 1042 may be provided on only one of the second inner sidewalls 1043 (as shown in FIGS.
  • At least one second convex edge 1042 may be respectively provided on the two second inner sidewalls 1043 (as shown in FIGS. 1-2 , 6-11 , 13-20 , and 23-26 ).
  • a plurality of second convex edges 1042 may be provided on the same second inner sidewall 1043, and the plurality of second convex edges 1042 are arranged at intervals in the direction perpendicular to the longitudinal direction, and each second convex edge 1042 may be continuous. It is longitudinally disposed on the second inner side wall 1043 .
  • the first lip 1032 is connected to the second lip 1042 .
  • the second channel 104 has a second bottom wall 1044 extending longitudinally, the first The bottom wall 1034 is connected with the second bottom wall 1044, wherein the first bottom wall 1034 and the second bottom wall 1044 can be flat or curved, and the first bottom wall 1034 and the second bottom wall 1044 can be on the same plane or not The same plane, which is not limited here.
  • the connecting part 201 slides in the second channel 104 , the end of the connecting part 201 can be attached to the second bottom wall 1044 .
  • the second channel 104 does not have the second bottom wall 1044 .
  • the connecting part 201 slides to the first channel 103 along the second inner wall 1043 of the second channel 104 .
  • the connecting part 201 abuts against the second convex edge 1042 and slides along the second convex edge 1042 into the first channel 103 .
  • a first positioning step 1035 is provided on the first surface 101 near the first closed end 1031 .
  • the first positioning boss is used to abut against the part of the second connecting part 200 to play a positioning role, so as to prevent the connecting part 201 from colliding with the first closed end 1031. Rigid collision occurs between the closed ends 1031 to cause abrasion, which protects the first connecting part 100 or the second connecting part 200 .
  • the outer surface of the first connector body close to the first closed end 1031 is an arc surface. Since the surface of the first component 500 needs to be provided with a first installation groove 501 for installing the first connector 100, making the outer surface of the first connector body close to the first closed end 1031 an arc surface can reduce the first The width of the installation groove 501 close to the first closed end 1031, so that the bearing capacity of the first member 500 is greater; at the same time, the first member 500 passes through the designed first installation groove 501 and the first closed end 1031 in a circular arc
  • the arc surface matched with the outer surface of the shape can relatively increase the longitudinal load-bearing thickness of the first member 500, so that the first member 500 can bear a greater longitudinal load-bearing capacity.
  • the first end 1045 extending longitudinally of the second channel 104 communicates with the first channel 103 including the following two situations.
  • the first is that the first end 1045 extending longitudinally of the second channel 104 communicates with One end of the first passage 103 extending in the transverse direction is connected, and the second one is that the first end 1045 of the second passage extending in the longitudinal direction communicates with the middle part of the first passage 103 extending in the transverse direction.
  • the following two cases will be further described respectively. illustrate.
  • the installation channel formed by the first channel 103 and the second channel 104 is approximately L-shaped.
  • the outer corner 105 of the connection between the second channel 104 and the first channel 103 can be closed, and the closed The outer corner 105 can improve the overall structural strength of the first connecting member 100 to increase the bearing capacity of the first member 500 .
  • the outer corner 105 of the connection between the second channel 104 and the first channel 103 is closed, the outer corner 105 of the first connector body close to the connection of the first channel 103 and the second channel 104
  • the side surface is an arc surface, which can reduce the width of the first installation groove 501 close to the outer corner 105, so that the first member 500 has a greater bearing capacity; at the same time, the first member 500 passes through the designed first installation groove 501
  • the arc surface adapted to the arc-shaped outer surface of the first outer corner 105 relatively increases the longitudinal bearing thickness of the first member 500 so that the first member 500 can bear greater longitudinal bearing capacity.
  • openings may be provided at the outer corner 105 where the second channel 104 communicates with the first channel 103 , and the number of openings may be one or more, which is not limited here.
  • the first connector 100 when the first member 500 is connected to the second member 600, the first connector 100 can be installed on one side of the first member 500 to push the first member 500 to move longitudinally and laterally relative to the second member 600 , so that the first connecting part 100 on the first member 500 and the connecting part 201 of the second connecting part 200 on the second member 600 are connected to each other.
  • the two first connectors 100 can be respectively installed on the left and right sides of the first member 500, push The first member 500 moves longitudinally and laterally relative to the second member 600, so that the first connectors 100 on the left and right sides of the first member 500 are connected to the connecting parts of the second connectors 200 on the two second members 600 respectively. 201 are interconnected. Since the installation channel formed by the first channel 103 and the second channel 104 is approximately L-shaped, as shown in FIG.
  • the two first connectors 100 need to be installed on the left and right sides of the first member 500 correspondingly during installation, so as to meet the needs of the left and right sides of the first member 500 during the movement of the first member 500.
  • the first connectors 100 are respectively connected to the second connectors 200 on the two second components 600 .
  • a recess is formed on the first surface 101 at a position below the outside of the first channel 103 and on the side of the outside of the second channel 104, so that the first The projection of the connector body on the first surface 101 is approximately L-shaped.
  • the concave portion can reduce the width corresponding to the first channel 103 on the first installation groove 501 of the first member 500 , thereby increasing the bearing capacity of the first member 500 .
  • the two ends of the first channel 103 are respectively A closed end 1031; or, in the transverse direction, one end of the first channel 103 is the first closed end 1031, and the other end has an opening.
  • the installation channel formed by the first channel 103 and the second channel 104 is approximately T-shaped.
  • both ends of the first channel 103 are first closed ends 1031 respectively.
  • first connectors 100 can be respectively installed on the left and right sides of the first member 500, and the first member 500 can be pushed relative to the second member.
  • the two members 600 move longitudinally and laterally, so that the first connectors 100 on the left and right sides of the first member 500 are respectively connected to the connecting parts 201 of the second connectors 200 on the two second members 600 .
  • the installation channel formed by the first channel 103 and the second channel 104 is approximately T-shaped, which can facilitate the user to install the first connecting member 100 without distinguishing the left and right sides of the first member 500, so as to ensure the connection of the second connecting member 200.
  • the connecting part 201 can be slid to one of the first closed ends 1031, the installation is convenient and the operation is quick, and the assembly efficiency is greatly improved. Further, the two first closed ends 1031 are symmetrically arranged with respect to the second channel 104, when the first member 500 is driven to move laterally relative to the two second members 600, the sliding distances on the left and right sides of the first member 500 are the same , avoiding the skewing phenomenon of the first member 500 .
  • a concave portion is formed on the first surface 101 at a position below the outside of the first channel 103 and on the side of the outside of the second channel 104 , so that the first connector body
  • the projection on the first surface 101 is approximately T-shaped.
  • the concave portion can reduce the width corresponding to the first channel 103 on the first installation groove 501 of the first member 500 , thereby increasing the bearing capacity of the first member 500 .
  • the communication between the first end 1045 of the second channel 104 extending longitudinally and the first channel 103 in the first embodiment of the present invention is not limited to the end of the first end 1045 extending longitudinally of the second channel 104 being connected to the first end 1045 of the second channel 104.
  • a channel 103 communicates, and also includes a first end 1045 extending longitudinally of the second channel 104 through the first channel 103 to protrude outside the first channel 103 (as shown in Figures 18-19, 27-28), i.
  • the first end 1045 of the second channel 104 extends longitudinally with the first channel 103 .
  • the first connector body has a third surface 106 facing away from the first surface 101 .
  • the position on the third surface 106 corresponding to the first channel 103 extends outward , to increase the distance between the first surface 101 and the third surface 106, so that the contact area between the first connector body and the inner wall of the first installation groove 501 of the first member 500 is larger, thereby improving the stability of the first member 500 Carrying capacity.
  • a stepped shape is formed between the part of the first connector body provided with the first channel 103 and the part of the first connector body provided with the second channel 104 .
  • the first connector body can be installed in the first installation groove 501 of the first component 500 in a detachable or non-detachable manner.
  • the third surface 106 At least one first mounting column 1061 is provided on it.
  • the first mounting column 1061 can be a cylinder or a square body or a cone or a pyramid; the number of the first mounting column 1061 can be one or more; the first mounting column 1061 can be made of a hard material, such as Rigid plastics and the like can also be made of soft materials, such as soft plastics or silica gel or rubber. Therefore, Embodiment 1 of the present invention does not limit the specific shape, quantity, and material of the first mounting column 1061, which can be adaptively designed according to actual usage conditions. For example, as shown in Figures 1-2, 4-8, 10, 12-14, and 21, the number of the first mounting column 1061 is one; and as shown in Figures 23 and 27, the number of the first mounting column 1061 is two.
  • the bottom wall of the first installation groove 501 on the first component 500 is provided with a first connection hole 5012 for installing the first installation post 1061 .
  • the number of the first connecting holes 5012 is the same as that of the first mounting posts 1061 , and the positions of the first connecting holes 5012 in the first mounting groove 501 correspond to the positions of the first mounting posts 1061 on the first connecting piece 100 .
  • the cross-sectional size of the first connecting hole 5012 is smaller than that of the first mounting post 1061 , so that the first mounting post 1061 is fastened in the first connecting hole 5012 through interference fit or elastic deformation.
  • the first connecting piece 100 When the external force acting on the first connecting piece 100 is greater than the sliding friction force of the first mounting post 1061 in the first connecting hole 5012, the first connecting piece 100 can be pulled out from the first installing groove 501 to realize the first Disassembly of the connector 100 and the first component 500 .
  • the third surface 106 can be attached to the bottom wall of the first installation groove 501 .
  • At least one first barb 1062 is provided on the outer surface of the first mounting post 1061 .
  • the number of the first barb 1062 may be one or more, for example, a plurality of first barbs 1062 are sequentially arranged at intervals along the length direction of the first mounting post 1061 .
  • the outer peripheral area of the first barb 1062 is greater than the cross-sectional area of the first connecting hole 5012, so that when the first mounting post 1061 is inserted into the first connecting hole 5012, the first barb 1062 faces the outer surface of the first mounting post 1061.
  • the first barb 1062 in Embodiment 1 of the present invention can be flexible or rigid.
  • the flexible first barb 1062 can reduce the stress on the first member 500 to ensure that the first member 500 and the first connection hole 5012 structure remains unchanged.
  • the first connector body is detachably installed in the first installation groove 501, as shown in Figures 13-15, at least one second barb 107 is provided on the outer wall of the first connector body.
  • the number of the second barbs 107 can be one or more, for example, a plurality of second barbs 107 are sequentially arranged at intervals on the outer wall of the first connector body.
  • the shape and structure of the second barb 107 are similar to those of the above-mentioned first barb 1062 , so the description is omitted here.
  • this embodiment 1 does not limit the specific position of the second barb 107 on the first connector body, for example, the second barb 107 can surround the outer wall of the first connector body, or it can be the first connector part of the body.
  • the first connector body is detachably installed in the first installation groove 501 , as shown in FIGS. 16-19 and 25-26 , the first connector body is provided with a first installation hole 108 .
  • the first installation hole 108 is a through-hole structure, and threaded fasteners such as pins, screws or bolts can be used to pass through the first installation hole 108 and then connected to the first installation groove 501, and the threaded fastening by removing the pins, screws or bolts, etc.
  • first connector body in the first embodiment can also be installed in the first installation groove 501 by means of gluing or riveting. Therefore, Embodiment 1 of the present invention does not limit the installation manner of the first connecting member 100 in the first installation groove 501 , and those skilled in the art can make an adaptive design according to specific usage conditions.
  • the body of the first connector is made of plastic material, preferably hard plastic, with a strong overall structure and excellent bearing capacity.
  • the body of the first connecting piece adopts an injection molding process to form an integrated structure.
  • the first connector body may be made of metal, glass or other synthetic materials, which is not limited here.
  • the second connecting piece 200 of the first embodiment includes a connecting portion 201 for connecting to the installation channel, for example, the connecting portion 201 is one end of the second connecting piece 200 .
  • the shape and structure of the connecting part 201 are relatively adapted to the first channel 103 and the second channel 104, so that the connecting part 201 can slide in from the first inlet 1041 and slide relative to the first closed end 1031.
  • the connecting part 201 slides into the first channel 103 .
  • the connecting part 201 can slide to the middle of the first channel 103 , and for example, the connecting part 201 can slide to the first closed end 1031 or close to the first closed end 1031 .
  • this embodiment 1 does not limit the specific structure or shape of the second connecting member 200.
  • the second connecting member 200 can be an existing conventional bolt, screw or pin, etc.
  • the connecting part 201 is a bolt, screw or The head of the pin
  • the connecting part 201 can abut against the first inner side wall 1033 of the first channel 103 or abut against the first convex edge 1032 to limit the connecting part 201 from being pulled out from the first channel 103, thereby realizing the first connection
  • the piece 100 is connected with the second connecting piece 200 .
  • the second connecting piece 200 is in the form of a cylinder or a square column, and the connecting part 201 is provided with a locking step 202.
  • the locking step 202 abuts against the first protruding edge 1032 to restrict the connection part 201 from being pulled out from the first channel 103 .
  • the second connector 200 is a structure such as a cylinder or a square column, and the connecting part 201 is one end of the second connecting part 200, and the connecting part 201 can be connected to the first passage 103.
  • An inner wall 1033 is pressed against each other to limit the connection part 201 from being pulled out from the first channel 103 .
  • connection part 201 of 200 is located in the first channel 103 and fits or has a certain gap with the inner side of the first channel 103, and two second members 600 are used to clamp both sides of the first member 500 to limit the first member 500. Move in the left and right directions, so as to realize the connection between the first member 500 and the two second members 600 .
  • the second connecting member 200 is provided with a positioning portion 203 that cooperates with the first positioning step 1035 .
  • the positioning part 203 can be in the shape of a disc surrounding the outer surface of the first connecting part 100, and the cross-sectional area of the positioning part 203 is greater than that of the second connecting part 200; The outer peripheral edge of the positioning portion 203 is located outside the cross-sectional projection of the second connecting member 200 .
  • the positioning portion 203 is used to be in close contact with the surface of the second member 600 to locate the protruding height of the connecting portion 201 on the surface of the second member 600 .
  • the positioning portion 203 is attached to the first surface 101 .
  • the connecting part 201 slides to the first closed section or close to the first closed end 1031, since the positioning part 203 fits on the first surface 101, the tightness between the first connecting part 100 and the second connecting part 200 can be improved, Avoid shaking caused by gaps, improve the connection stability between the first connecting part 100 and the second connecting part 200, and at the same time improve the bearing capacity of the first member 500, and have good aesthetics.
  • a slide groove is formed between the positioning part 203 and the locking step 202 to cooperate with the first protruding edge 1032 or the second protruding edge 1042, wherein the first protruding edge 1032
  • the distance D1 between the side close to the first closed end 1031 and opposite to the first bottom wall 1034 and the first surface 101 is less than or equal to the width of the slide groove.
  • the chute and the first protruding edge 1032 are clamped together so that the connecting part 201 is stabilized at or close to the first closed end 1031, improving the stability of the connection between the first connecting piece 100 and the second connecting piece 200 sex.
  • the second connecting member 200 has a mounting portion 204 opposite to the connecting portion 201 , and the mounting portion 204 is used to connect to the second component 600 .
  • the mounting portion 204 is an external thread structure, and the mounting portion 204 can be connected to the second member 600 through self-tapping or non-self-tapping.
  • the installation part 204 has a polished rod structure, and a slot hole is opened on the second member 600 , and the installation part 204 is fastened in the slot hole by means of interference fit or elastic clamping.
  • the mounting portion 204 is connected to the second member 600 by gluing or self-tapping.
  • the positioning part 203 is attached to the surface of the second member 600, which further improves the tightness between the first connector 100 and the second connector 200, and improves the first connection.
  • the stability of the connection between the member 100 and the second connecting member 200 can be improved, and the bearing capacity of the first member 500 can be improved at the same time, and the appearance is good.
  • the installation part 204 is a polished rod structure
  • the second member 600 is provided with an insertion hole for the installation part 204 to be inserted into, and there is a gap between the installation part 204 and the insertion hole; when both sides of the first member 500 are respectively used to connect the second
  • the two first connectors 100 are respectively arranged on both sides of the first component 500
  • the connecting part 201 of the second connector 200 on the second component 600 is located in the first channel 103, and the connecting part 201
  • the connection with the first connector 100 and the relative constraints between the two second members 600 restrict the movement of the first member 500 in the left and right direction, so as to realize the connection between the first member 500 and the two second members 600 .
  • the second inner wall 1043 of the second channel 104 is provided with a second convex edge 1042 extending longitudinally, when the connecting part 201 slides in the second channel 104, the locking step 202 and the first The two protruding edges 1042 are pressed against each other to limit the connection part 201 from being pulled out from the second passage 104 , so as to ensure that the connection part 201 slides into the first passage 103 after the second passage 104 slides.
  • the second connecting member 200 is made of metal, such as iron or steel or an alloy material, which has high structural strength and meets relatively large load-bearing requirements.
  • connection assembly when the connecting part 201 of the second connecting part 200 is connected to the first channel 103, the first connecting part 100 and the second connecting part 200 can be connected to each other, thereby realizing the connection between the first member 500 and the second connecting part 500.
  • the connecting part 201 In order to prevent the connecting part 201 from moving in the first channel 103 when the first connecting part 100 and the second connecting part 200 are in a connected state, in some embodiments, as shown in FIGS.
  • the end 301 is located at the connection between the first passage 103 and the second passage 104 and at least a part of the stopper 300 abuts against the connecting portion 201 to limit the sliding of the connecting portion 201 in the first passage 103 .
  • the first embodiment does not limit the specific structure or shape of the stopper 300 , and the structure or shape of the stopper 300 is adapted to the first inlet 1041 .
  • the stopper 300 is stepped.
  • the stopper 300 may be in the shape of a block or a cylinder.
  • connection between the first member 500 and the second member 600 can be realized through the above connection assembly to form a connection system, as shown in Figures 44-56, the connection system includes the first member 500, The second component 600 , the first connecting piece 100 and the second connecting piece 200 ; wherein, the side of the first component 500 is provided with a first installation groove 501 , and one side of the first installation groove 501 runs through the bottom of the first component 500 surface to form a first installation opening 5011; the first connector 100 is installed in the first installation groove 501, the first surface 101 faces the notch of the first installation groove 501 and communicates the first channel 103 and the second channel 104 with the outside world ; and the second channel 104 communicates with the outside world through the first inlet 1041 and the first installation port 5011 in turn; the second connector 200 is installed on the second member 600, and the connecting part 201 is protruding from the surface of the second member 600; , the connecting part 201 slides into the second passage 104 from the first installation opening
  • the connecting part 201 is located in the first channel 103 to realize the mutual connection of the first connecting part 100 and the second connecting part 200 , so that the first component 500 and the second component 600 are connected. Since the first closed end 1031 is closed, the structural strength of the first closed end 1031 is greater than that of the middle part of the first passage 103 or other positions of the first passage 103. When the connecting part 201 slides to the first closed end 1031 or When approaching the first closed end 1031, the load-bearing force of the first member 500 is located at or close to the first closed end 1031, so that the bearing capacity of the first connecting member 100 to the connecting portion 201 is stronger, and the first The member 500 can withstand greater loads, and the connection stability is better.
  • Embodiment 1 of the present invention avoids the creation of transverse grooves with large length and dimension on the surface of the first member 500, and avoids the problem of the reduction of the bearing capacity of the first member 500 due to the transverse grooves, thereby solving the problem of the prior art
  • the first member 500 after adopting the horizontal push-type invisible connector there is a technical problem of insufficient or limited bearing capacity. This ensures the aesthetics of the first member 500 and conforms to the user's aesthetics.
  • a recess is formed on the first surface 101 at a position below the outside of the first channel 103 and on the side of the outside of the second channel 104, so that the first connector body is on the first surface 101
  • the projection is approximately L-shaped.
  • the recessed portion can avoid opening a longitudinal groove with a large length on the surface of the first member 500, reduce the size of the longitudinal groove and the first installation port 5011, and avoid the first member 500 being loaded due to the longitudinal groove. The problem of reduced capacity, thereby increasing the load-bearing capacity of the first member 500 .
  • the aesthetics of the first component 500 is ensured, and the user's aesthetics is conformed to.
  • a step is formed between the part of the first connector body provided with the first channel 103 and the part of the first connector body provided with the second channel 104 , so as to avoid Longitudinal grooves with a large depth are provided to reduce the size of the longitudinal grooves and the first installation opening 5011, avoiding the problem of the reduction of the bearing capacity of the first member 500 due to the longitudinal grooves, thereby increasing the bearing capacity of the first member 500. Carrying capacity. At the same time, the aesthetics of the first component 500 is ensured, and the user's aesthetics is conformed to.
  • connection system also includes a stopper 300, the stopper 300 is inserted into the second passage 104 from the first inlet 1041, and the third end 301 of the stopper 300 is located between the first passage 103 and the second passage. 104 and make at least a part of the stopper 300 abut against the connecting part 201 to limit the sliding of the connecting part 201 in the first channel 103, thereby ensuring that the first member 500 and the second member 600 are in the connected state to prevent the connecting part from 201 moves in the first channel 103 to improve the connection stability between the first member 500 and the second member 600 .
  • the fourth end 302 of the stopper 300 is provided with a cover enclosure 303 .
  • the cover enclosure 303 can be used to cover the first installation opening 5011 , in order to improve the aesthetics of the second member 600 and conform to the user's aesthetics.
  • the covering enclosure 303 may be in the shape of a square plate or an arc plate or other shapes, which are not limited here.
  • the color or texture of the covering enclosure 303 matches the second member 600 .
  • the second surface 102 is located on the same plane as the lower surface of the first member 500 , or the second surface 102 is located in the first installation groove 501 .
  • the first surface 101 is located on the same plane as the side of the first component 500 , or the first surface 101 is located in the first installation groove 501 .
  • the installation method of the first member 500 and the second member 600 using the above connection assembly is specifically as follows:
  • a first installation groove 501 is processed on one side of the first member 500, and one side of the first installation groove 501 is processed to the bottom side of the first member 500 to form a first installation opening 5011, and the first connecting piece 100 is installed in the first installation groove 501, and the first surface 101 faces the notch of the first installation groove 501, and the first passage 103 and the second passage 104 communicate with the outside world, and the second passage 104 passes through the first opening in turn 1041 and the first installation port 5011 communicate with the outside world;
  • the first connecting member 100 is provided with the first mounting post 1061
  • the first mounting groove 501 is opened with a first connecting hole 5012 that is mated with the first mounting post 1061 .
  • at least one second barb 107 is provided on the outer wall of the first connecting member 100 , and is installed in the first installation groove 501 by means of clamping.
  • the first member 500 For example, drive the first member 500 to move laterally so that the connecting portion 201 of the second connecting member 200 moves to the first closed end 1031 or close to the first closed end 1031, because the structural strength of the first closed end 1031 is stronger than that of the first channel 103
  • the middle part of the first channel 103 or other positions of the first channel 103 are large, when the connecting part 201 slides to the first closed end 1031 or close to the first closed end 1031, the force of the first member 500 bearing the load is located at the first closed end 1031 Or close to the first closed end 1031 , so that the connecting portion 201 of the first connecting member 100 has a stronger bearing capacity, the first member 500 can bear a larger load, and the connection stability is better.
  • step S1 and step S2 are performed at the same time, or step S1 and step S2 can be reversed.
  • first component 500 and the two second components 600 are installed successively, or the first component 500 and the two second components 600 are installed simultaneously.
  • the above installation method also includes:
  • the installation method of the first member 500 and the second member 600 using the above-mentioned connection assembly is specifically as follows:
  • First installation grooves 501 are respectively processed on the left and right sides of the first member 500, and one side of each first installation groove 501 is processed to the bottom side of the first member 500 to form a first installation opening 5011, Install the two first connectors 100 in the two first installation grooves 501 respectively, and make the first surface 101 face the notch of the first installation groove 501 and make the first channel 103 and the second channel 104 communicate with the outside world, The second channel 104 communicates with the outside through the first port 1041 and the first installation port 5011 in sequence;
  • the first member 500 For example, drive the first member 500 to move laterally so that the connecting portion 201 of the second connecting member 200 moves to the first closed end 1031 or close to the first closed end 1031, because the structural strength of the first closed end 1031 is stronger than that of the first channel 103
  • the middle part of the first channel 103 or other positions of the first channel 103 are large, when the connecting part 201 slides to the first closed end 1031 or close to the first closed end 1031, the force of the first member 500 bearing the load is located at the first closed end 1031 Or close to the first closed end 1031, so that the bearing capacity of the first connecting member 100 to the connecting portion 201 is stronger, the first member 500 can bear a larger load, and the connection stability is better.
  • step S1 and step S2 are performed at the same time, or step S1 and step S2 can be reversed.
  • the above installation method also includes:
  • At least one first connector 100 is provided on the left and right sides of the first member 500 respectively, and the second member 600 on the left side is provided with at least one first connector 100 on the left side of the first member 500
  • the second connecting piece 200 that is mated and connected, the second member 600 on the right is provided with at least one second connecting member 200 that is mated and connected with the first connecting member 100 on the right side of the first member 500 .
  • the number of the first connectors 100 on the left and right sides of the first member 500 may be the same or different, for example, the left and right sides of the first member 500 are respectively provided with two or three first connectors 100 , the two second components 600 are provided with two or three second connectors 200 respectively; There are two first connectors 100, wherein the second member 600 on the left is provided with two second connectors 200, and the second member 600 on the right is provided with three second connectors 200 respectively.
  • the user can detach the first component 500 from the second component 600 and readjust the first component 500 on the second component 600 after controlling the detachment of the first connector 100 and the second connector 200 according to the usage requirements.
  • the location is to meet the needs of users, and it is convenient and quick to disassemble and assemble.
  • the first component 500 in this embodiment 1 is a laminate
  • the second component 600 is a side plate
  • at least one first component can be installed on both sides of the laminate.
  • the connector 100 is equipped with a plurality of second connectors 200 arranged in the up-and-down direction on the two side plates. According to the above-mentioned installation method, the two sides of the laminate are respectively connected to the two side plates stably. Larger load-bearing capacity, and the disassembly of the laminate is convenient and quick, and then adjust the position of the first member 500 on the second member 600 according to the positions of the multiple second connectors 200 of the side plate to meet the needs of users .
  • the value range of the height D3 of the positioning step of the first connecting member 100 is 0.5-4 mm, a more preferred value range is 0.8-3 mm, and a more specific value is about 1 mm; the distance between the third surface 106 and the top of the positioning step The distance D4 between them is 6-20mm, a more preferred value range is 9-15mm, and a more specific value is about 12mm; the thickness D5 extending outward at the position corresponding to the first channel 103 on the third surface 106
  • the value range of D6 is 2-8mm, the more preferred value range is 3-6mm, and the more specific value is about 4.5mm; the value range of the length dimension D6 of the first mounting column 1061 is 6-40mm, more preferably The range of the value is 8-30mm, and the more specific value is about 25mm; the value
  • a more specific value is about 8mm;
  • the length dimension W2 of the first connector body along the length direction of the second channel 104 is in the range of 3-30mm, more preferably in the range of 6-20mm, A more specific value is about 12.5 mm;
  • the value range of the width dimension L2 of the first connector body along the width direction of the second channel 104 is 3-25 mm, a more preferred value range is 5-18 mm, more specifically The value is about 8mm.
  • the overall length of the second connecting member 200 ranges from 6-30 mm, more preferably from 10-25 mm, and more specifically about 15.5 mm.
  • the value range of the distance between the locking step 202 and the positioning portion 203 is 3-20 mm, a more preferred value range is 5-15 mm, and a more specific value is about 7 mm.
  • the first installation groove 501 can be processed on the side of the first member 500 by using the six-sided drilling technology, which has high processing accuracy and fast processing efficiency, greatly improving
  • the use of the connecting assembly according to Embodiment 1 of the present invention in the furniture industry has been promoted.
  • a first mounting groove 501 and a first connecting hole 5012 are machined on the side of the first component 500 with a tool of 8 mm, and two sides of the first component 500 are processed with four tools of 8 mm at the same time.
  • the first mounting groove 501 and the first connecting hole 5012 have high precision and high efficiency, and facilitate the interconnection of the first member 500 to the second member 600 through the connecting assembly of the first embodiment.
  • processing methods can also be used to process the first installation grooves 501 on the side of the first member 500, for example, a tool is used to gradually mill out a plurality of first installation grooves 501 on the side of the first member 500, etc., which is not limited here. .
  • this embodiment 2 discloses a connection assembly, which adopts the first connection part 100 and the second connection part 200 of the above-mentioned embodiment 1, and also includes a third connection part 400.
  • first connecting member 100 and the second connecting member 200 in the second embodiment please refer to the above-mentioned embodiment 1, and the description is omitted here.
  • the connecting assembly of the second embodiment includes a first connecting piece 100, two second connecting pieces 200 and a third connecting piece 400, and the third connecting piece 400 has a fourth surface 401 and a fifth surface connected to each other.
  • the fourth surface 401 is provided with a third channel 403 that extends laterally and cooperates with the connecting part 201 to slide, one end of the third channel 403 penetrates the fifth surface 402 to form a second inlet 4031, the other end of the third channel 403
  • One end is the second closed end 4035 ; wherein, the two second connectors 200 are respectively connected to the first connector 100 and the third connector 400 in one-to-one correspondence.
  • the connecting part 201 of one of the second connecting parts 200 first slides to any position in the third passage 403, so that the connecting part 201 of the other second connecting part 200 can slide into the second passage through the first opening 1041.
  • the connecting part 201 of the other second connecting part 200 slides to any position in the first channel 103, and through the connection between the two second connecting parts 200 and the first connecting part 100 and the third connecting part 400 respectively,
  • a stable connection between the first member 500 and the second member 600 is realized.
  • the connecting part 201 of one of the second connecting parts 200 can slide to the middle part of the third channel 403, or for example, the connecting part 201 can slide to the second closed end 4035 or close to the second closed end 4035;
  • the connecting part 201 of the piece 200 can slide to the middle of the first channel 103 , or slide to the first closed end 1031 or close to the first closed end 1031 .
  • first closed section and the second closed end 4035 of the second embodiment are closed, when the connecting part 201 of one of the second connecting parts 200 slides to the first closed end 1031 or close to the first closed end 1031, the other When the connecting portion 201 of the second connecting member 200 slides to the second closed end 4035 or close to the second closed end 4035, the force of the first member 500 bearing the load is respectively located at the first closed end 1031 or close to the first closed end 1031, And the second closed end 4035 or close to the second closed end 4035, so that the connecting part 201 of the two second connecting parts 200 has a stronger bearing capacity on the first connecting part 100, and the first member 500 can bear a larger load, The connection stability is better.
  • Embodiment 2 of the present invention avoids setting up transverse grooves with a large length on the surface of the first member 500, and avoids the problem that the bearing capacity of the first member 500 is reduced due to the transverse grooves with a large length, thus It solves the technical problem of insufficient or limited bearing capacity of the first member 500 in the prior art after adopting the flat-push invisible connector. At the same time, the aesthetics of the first component 500 is ensured, and the user's aesthetics is conformed to.
  • the lateral direction of the second embodiment is the same as that of the first embodiment described above.
  • third surface 106 and the fourth surface 401 may be flat or curved or curved.
  • the third connecting member 400 has a third inner wall 4033 , and at least one third convex edge 4032 is provided on the third inner wall 4033 .
  • the third The protruding edge 4032 is used to abut against the locking step 202 of the connecting part 201 to restrict the connecting part 201 from being pulled out from the third channel 403 , so that the second connecting part 200 and the third connecting part 400 are connected to each other.
  • the third convex edge 4032 is strip-shaped, and one strip-shaped third convex edge 4032 can be continuously provided on the inside of the third channel 403, or a plurality of strip-shaped third convex edges 4032 can be discontinuously arranged.
  • the third protruding edge 4032 is in the shape of a block or a point, and a plurality of third protruding edges 4032 in the shape of a block or a point are sequentially and intermittently disposed inside the third channel 403 .
  • At least one third protruding edge 4032 is disposed on the second closed end 4035 .
  • the connecting part 201 slides to the second closed end 4035 or close to the second closed end 4035, the connecting part 201 is pressed against the third protruding edge 4032 to restrict the connecting part 201 from being pulled out from the third channel 403, so that the third The connecting piece 400 is connected to the second connecting piece 200 .
  • a second positioning step 4036 that cooperates with the positioning portion 203 is provided on the third connecting member 400 near the second closed end 4035 .
  • the second positioning boss is used to abut against the positioning part 203 to play a positioning role, avoiding the gap between the connecting part 201 and the second closed end 4035. Abrasion occurs due to rigid collision, protecting the second connecting part 200 or the third connecting part 400 .
  • At least one second limiting protrusion 4032a is provided on the third convex edge 4032 near the second closed end 4035, and the second limiting protrusion 4032a is used for
  • the connecting portion 201 of the second connecting member 200 is limited to the second closed end 4035 or close to the second closed end 4035 .
  • the structure, shape, and working principle of the second limiting bump 4032a in the second embodiment are the same as the first limiting bump 1032a in the first embodiment, so the description is omitted here.
  • the outer surface of the third connecting member 400 close to the second closed end 4035 is an arc surface. Since the surface of the first component 500 needs to be provided with a second installation groove 502 for installing the third connecting piece 400, making the outer surface of the third connecting piece 400 close to the second closed end 4035 an arc surface can reduce the second The width of the installation groove 502 close to the second closed end 4035 makes the bearing capacity of the first member 500 larger.
  • the first member 500 passes through the circular arc surface that is matched with the second mounting groove 502 and the outer surface of the second closed end 4035, so that the longitudinal load-bearing thickness of the first member 500 is relatively increased, so that the first member The 500 bears a greater load-bearing capacity in the longitudinal direction.
  • the third connecting member 400 has a sixth surface 404 facing away from the fourth surface 401 .
  • the third connecting member 400 can be installed in the second installation groove 502 of the first member 500 in a detachable or non-detachable manner.
  • the third connector 400 of this embodiment 2 is installed in the second installation groove 502 in the same way as the first connector 100 is installed in the first installation groove 501.
  • the sixth surface 404 is provided with at least one The second mounting column 4041; another example is that the outer surface of the second mounting column 4041 is provided with at least one third barb 4042; another example is that the outer wall of the third connecting member 400 is provided with at least one fourth barb 405; another example is the third The connecting member 400 is provided with a second mounting hole 406 and the like, please refer to the above-mentioned embodiment 1 for details.
  • connection assembly of the second embodiment also includes the stopper 300 of the first embodiment, the stopper 300 is inserted into the second channel 104 from the first installation port 5011 and the first access port 1041, and the stopper 300
  • the third end 301 is inserted into the connection between the first channel 103 and the second channel 104 and makes at least a part of the stopper 300 abut against the connecting part 201, so as to limit the sliding of the connecting part 201 in the first channel 103, thereby ensuring the second
  • the connecting portion 201 is prevented from moving in the first channel 103 , and the connection stability between the first component 500 and the second component 600 is improved.
  • connection between the first member 500 and the second member 600 can be realized through the above connection assembly to form a connection system, which includes the first member 500, The second member 600, the first connector 100, the second connector 200 and the third connector 400, the number of the second connector 200 is two; wherein, the side of the first member 500 is provided with a second installation groove 502 One side of the second installation groove 502 penetrates through the front end of the first member 500 to form a second installation opening 5021 , the third connector 400 is installed in the second installation groove 502 , and the fourth surface 401 faces the side of the second installation groove 502 notch and make the third channel 403 communicate with the outside; and the third channel 403 communicates with the outside through the second inlet 4031 and the second installation port 5021 in turn; the side of the first member 500 is located at the rear side of the second installation groove 502 A first installation groove 501 is opened, and one side of the first installation groove 501 penetrates through the lower surface of the
  • the connecting part 201 of one of the second connecting parts 200 slides to the first closed end 1031 or close to the first closed end 1031, and the connecting part 201 of the other second connecting part 200 slides to the second closed end 4035 or close to the second closed end. end 4035, the force of the first member 500 bearing the load is located at or close to the first closed end 1031, and at or close to the second closed end 4035, so that the two second connections
  • the connecting part 201 of the member 200 has a stronger bearing capacity to the first connecting member 100, the first member 500 can bear a greater load, and the connection stability is better, thus solving the problem of using a flat-push invisible connecting member in the prior art.
  • the latter first member 500 has a technical problem of insufficient or limited bearing capacity.
  • Embodiment 2 of the present invention avoids the creation of transverse grooves with large lengths on the surface of the first member 500, avoids the problem of the reduction of the bearing capacity of the first member 500 due to the transverse grooves, and ensures the first The aesthetics of the component 500 conforms to the user's aesthetics.
  • connection system also includes a stopper 300, the stopper 300 is inserted into the second passage 104 from the first inlet 1041, and the third end 301 of the stopper 300 is located between the first passage 103 and the second passage. 104 and at least a part of the stopper 300 abuts against the connecting part 201 to limit the sliding of the connecting part 201 in the first passage 103, thereby ensuring that the first member 500 and the second member 600 are in the connected state to prevent the connecting part from 201 moves in the first channel 103 to improve the connection stability between the first member 500 and the second member 600 .
  • the first surface 101 is located on the same plane as the side of the first member 500, or the first surface 101 is located in the first installation groove 501;
  • the fourth surface 401 is located on the same plane as the side of the first component 500 , or the fourth surface 401 is located in the second installation groove 502 .
  • the second surface 102 is located on the same plane as the lower surface of the first member 500 , or the second surface 102 is located in the first installation groove 501 ;
  • the fifth surface 402 is located on the same plane as the front surface of the first member 500
  • the flat, or fifth surface 402 is located within the second mounting groove 502 .
  • the installation method of the first member 500 and the second member 600 using the above-mentioned connection assembly is specifically as follows:
  • the front ends of the left and right sides of the first member 500 are respectively processed with second installation grooves 502, and one side of each second installation groove 502 is processed to the front end surface of the first member 500 to form a second installation opening 5021, install the two third connectors 400 in the two second installation grooves 502 respectively, and make the fourth surface 401 face the notch of the second installation groove 502 and make the third channel 403 communicate with the outside world; the third channel 403 communicates with the outside through the second port 4031 and the second installation port 5021 in turn;
  • the second mounting groove 502 is opened with a second connection hole 5022 that is mated with the second mounting post 4041 .
  • the first installation grooves 501 are respectively processed on the rear side of the second installation groove 502, and one side of each first installation groove 501 is processed to the bottom of the first member 500 side to form the first installation opening 5011, install the two first connectors 100 in the two first installation grooves 501 respectively, and make the first surface 101 face the notch of the first installation groove 501 and make the first channel 103 communicate with the outside world with the second channel 104; the second channel 104 communicates with the outside world through the first port 1041 and the first installation port 5011 in turn;
  • the first connecting member 100 is provided with the first mounting post 1061
  • the first mounting groove 501 is opened with a first connecting hole 5012 that is mated with the first mounting post 1061 .
  • the first member 500 For example, drive the first member 500 to move laterally so that the connecting portion 201 of the second connecting member 200 at the rear end moves to the first closed end 1031 or close to the first closed end 1031, because the structural strength of the first closed end 1031 is higher than that of the first closed end
  • the middle part of a channel 103 or other positions of the first channel 103 are large, and when the connecting part 201 slides to the first closed end 1031 or close to the first closed end 1031, the force of the first member 500 bearing the load is located at the first closed end 1031. end 1031 or close to the first closed end 1031, so that the connecting portion 201 of the first connecting member 100 pair has a stronger bearing capacity, the first member 500 can bear a larger load, and the connection stability is better.
  • step S1, step S2 and step S3 are performed simultaneously; or step S1 and step S2 can be reversed; or step S1 and step S3 can be reversed; or step S2 and step S3 can be reversed.
  • first component 500 and the two second components 600 are installed successively, or the first component 500 and the two second components 600 are installed simultaneously.
  • the first member 500 and the two second members 600 are installed successively.
  • the above installation method also includes:
  • At least one first connector 100 is provided on the left and right sides of the first member 500 respectively, and the second member 600 on the left side is provided with at least one first connector 100 on the left side of the first member 500
  • the second connecting piece 200 that is mated and connected, the second member 600 on the right is provided with at least one second connecting member 200 that is mated and connected with the first connecting member 100 on the right side of the first member 500 .
  • the number of the first connectors 100 on the left and right sides of the first member 500 may be the same or different, for example, the left and right sides of the first member 500 are respectively provided with two or three first connectors 100 , the two second components 600 are provided with two or three second connectors 200 respectively; There are two first connectors 100, wherein the second member 600 on the left is provided with two second connectors 200, and the second member 600 on the right is provided with three second connectors 200 respectively.
  • the user can detach the first component 500 from the second component 600 and readjust the first component 500 on the second component 600 after controlling the detachment of the first connector 100 and the second connector 200 according to the usage requirements.
  • the location is to meet the needs of users, and it is convenient and quick to disassemble and assemble.
  • the first component 500 in this embodiment 2 is a laminate
  • the second component 600 is a side plate
  • at least one first component can be installed on both sides of the laminate.
  • the connector 100 is equipped with a plurality of second connectors 200 arranged in the up-and-down direction on the two side plates. According to the above-mentioned installation method, the two sides of the laminate are respectively connected to the two side plates stably. Larger load-bearing capacity, and the disassembly of the laminate is convenient and quick, and then adjust the position of the first member 500 on the second member 600 according to the positions of the multiple second connectors 200 of the side plate to meet the needs of users .
  • references to the terms “one embodiment,” “some embodiments,” “exemplary embodiments,” “example,” “specific examples,” or “some examples” are intended to mean that the implementation A specific feature, structure, material, or characteristic described by an embodiment or example is included in at least one embodiment or example of the present invention.
  • schematic representations of the above terms do not necessarily refer to the same embodiment or example.
  • the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

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Abstract

本发明公开了一种第一连接件、连接组件、连接系统及安装方法,用于连接第一构件和第二构件,第一连接件包括第一连接件本体,第一连接件本体具有相连接的第一表面及第二表面,第一连接件本体的第一表面上开设有横向延伸的第一通道及纵向延伸的第二通道,第二通道沿纵向延伸的第一端与第一通道相连通,第二通道沿纵向延伸的第二端贯穿于第一连接件本体的第二表面以形成第一通入口;在沿横向方向上,第一通道的至少一端为第一封闭端;第一通道及第二通道限定形成用于与第二连接件连接的安装通道。当连接部滑动至第一封闭端或接近第一封闭端时,连接部对第一连接件的承载力更强,第一构件能够承受更大的载荷。

Description

一种第一连接件、连接组件、连接系统及安装方法 技术领域
本发明涉及一种第一连接件、连接组件、连接系统及安装方法,用于连接第一构件和第二构件,特别用于连接家具构件。
背景技术
景技术
目前,两个家具板件或两个金属构件之间多数采用钉、胶、螺钉或螺母等紧固连接件实现彼此固定连接。随着人们的审美观念不断提高,设计师不断致力于研发简单、坚固、免工具且不可见的紧固连接件,如乐扣、木得易及拉米诺等,通过该类隐性连接件实现两个家具板件或两个金属构件的隐性连接,使成品的表面几乎没有孔位痕迹,自然美观。
现有部分家具成品(例如橱柜、衣柜或书架)的构件之间采用隐形连接件来完成隐形式连接,连接稳定且美观性好。但现有的平推式隐形连接件存在另两个构件之间连接稳定性较差、承载能力较差的缺陷,例如中国专利公告号为CN102196747B公开了一种待从前面插入模块化家具单元中的搁板的插入和固定系统,搁板与侧板是通过第一支撑件及第二支撑件分别与两个销实现平推式滑动连接,但上述系统需要对搁板的侧面加工有长度尺寸较大的纵向沟槽,该纵向沟槽会破坏搁板的侧面,大大降低了搁板的承载能力,导致使用上容易受到负载限制,同时搁板容易受力发生移动或晃动,连接稳定性较差。此外,纵向沟槽会导致搁板的外观性较差,降低家具成品的美感。
发明内容
为了解决上述现有的隐形连接件存在稳定性差且载荷有限的技术问题,本发明提供了一种第一连接件,包括第一连接件本体,所述第 一连接件本体具有相连接的第一表面及第二表面,所述第一连接件本体的第一表面上开设有横向延伸的第一通道及纵向延伸的第二通道,所述第二通道沿纵向延伸的第一端与所述第一通道相连通,所述第二通道沿纵向延伸的第二端贯穿于所述第一连接件本体的第二表面以形成第一通入口;在沿横向方向上,所述第一通道的至少一端为第一封闭端;
所述第一通道及所述第二通道限定形成用于与第二连接件连接的安装通道。
此外,本发明还提供了一种连接组件,包括上面所述的第一连接件、以及第二连接件,所述第二连接件包括连接部,所述连接部能够从所述第一通入口滑入并相对所述第一封闭端滑动,所述连接部滑动至所述第一通道中。
优选地,还包括止动件,所述止动件具有相对的第三端和第四端;所述止动件从所述第一通入口插设于所述第二通道中,所述止动件的第三端位于所述第一通道与所述第二通道的连通处并至少一部分抵顶至所述连接部,以限制所述连接部在所述第一通道中滑动。
进一步地,还包括第三连接件,所述第三连接件具有相连接的第四表面及第五表面,所述第四表面上开设有横向延伸并与所述连接部配合滑动的第三通道,所述第三通道的一端贯穿于所述第五表面以形成所述第二通入口,所述第三通道的另一端为第二封闭端;
所述第二连接件的数量为两个,两个所述第二连接件分别与所述第一连接件及所述第三连接件一一对应连接。
此外,本发明还提供了一种连接系统,包括第一构件、第二构件、以及上面所述的连接组件;
所述第一构件的侧面上开设有第一安装槽,所述第一安装槽的一侧贯穿于所述第一构件的下表面以形成第一安装口;所述第一连接件安装于所述第一安装槽中,所述第一表面朝向所述第一安装槽的槽口并使所述第一通道和所述第二通道与外界连通;且所述第二通道依次 通过第一通入口及所述第一安装口与外界连通;
所述第二连接件安装于所述第二构件上,所述连接部突设于所述第二构件的表面;
其中,所述连接部依次从所述第一安装口及所述第一通入口滑入所述第二通道中,所述连接部沿所述第二通道滑动并滑入至所述第一通道中。
此外,本发明还提供了一种连接系统,包括第一构件、第二构件、以及如上面所述的连接组件,
所述第一构件的侧面上开设有第二安装槽,所述第二安装槽的一侧贯穿于所述第一构件的前端以形成第二安装口,所述第三连接件安装于所述第二安装槽中,所述第四表面朝向所述第二安装槽的槽口并使所述第三通道与外界连通;且所述第三通道依次通过第二通入口及所述第二安装口与外界连通;
所述第一构件的侧面上位于所述第二安装槽的后侧开设有第一安装槽,所述第一安装槽的一侧贯穿于所述第一构件的下表面以形成第一安装口;所述第一连接件安装于所述第一安装槽中,所述第一表面朝向所述第一安装槽的槽口并使所述第一通道和所述第二通道与外界连通;且所述第二通道依次通过第一通入口及所述第一安装口与外界连通,所述第一连接件的至少一个封闭端位于所述第二通道的后侧;
两个所述第二连接件沿前后依次间隔安装于所述第二构件上,两个所述第二连接件的连接部均突设于所述第二构件的表面;
其中,位于前端的第二连接件的连接部依次从所述第二安装口及所述第二通入口滑入所述第三通道中,位于后端的第二连接件的连接部依次从所述第一安装口及所述第一通入口滑入所述第二通道中。
此外,本发明还提供了一种应用于上面所述的连接组件的安装方法,包括以下步骤:
S1、在第一构件的左、右两侧分别加工有第一安装槽,并使各第一安装槽的一侧加工至第一构件的底侧以形成第一安装口,将两个第 一连接件分别安装于两个第一安装槽中,并使第一表面朝向第一安装槽的槽口并使第一通道和第二通道与外界连通,第二通道依次通过第一通入口及第一安装口与外界连通;
S2、将两个第二构件相对间隔放置,分别在两个第二构件相向的表面上分别安装有第二连接件,并使各第二连接件的连接部突设于第二构件的表面;
S3、将第一构件放在两个第二构件之间,并使第一构件的左、右两侧分别与两个第二构件相对应;
S4、驱动第一构件纵向移动,分别使两个第二连接件的连接部分别依次从两个第一安装口及第一通入口滑入两个第一连接件的第二通道中;当第二连接件滑动至第一通道及第二通道的连通处时,驱动第一构件横向移动,以使两个第二连接件的连接部分别滑入两个第一连接件的第一通道。
此外,本发明还提供了一种应用于上面所述的连接组件的安装方法,包括以下步骤:
S1、在第一构件的左、右两侧的前端分别加工有第二安装槽,并使各第二安装槽的一侧加工至第一构件的前端面以形成第二安装口,将两个第三连接件分别安装于两个第二安装槽中,并使第四表面朝向第二安装槽的槽口并使第三通道与外界连通;第三通道依次通过第二通入口及第二安装口与外界连通;
S2、在第一构件的左、右两侧位于第二安装槽的后侧分别加工有第一安装槽,并使各第一安装槽的一侧加工至第一构件的底侧以形成第一安装口,将两个第一连接件分别安装于两个第一安装槽中,并使第一表面朝向第一安装槽的槽口并使第一通道和第二通道与外界连通;第二通道依次通过第一通入口及第一安装口与外界连通;
S3、将两个第二构件相对间隔放置,分别在两个第二构件相向的表面上分别沿前后两侧依次安装有第二连接件,并使各第二连接件的连接部突设于第二构件的表面;
S4、将第一构件放在两个第二构件之间,并使第一构件的的左、右两侧分别与两个第二构件相对应;
S5、将第一构件前端倾斜向下放置,驱动第一构件倾斜向下移动,并使第一构件左、右两侧的第三连接件的第二通入口分别插入的第二构件上前端两个第二连接件的连接部,待两个第二构件上位于前端的第二连接件的连接部分别在第三通道移动一定距离后,驱动第一构件绕其前端转动,使第一构件左、右两侧的第一连接件的第一通入口分别插入位于第二构件上后端的两个第二连接件的连接部,待两个第二构件上位于后端的第二连接件的连接部分别移动到第一通道与第二通道连通处时,驱动第一构件横向向前移动,以使两个第二构件上位于前端的两个第二连接件分别进一步滑入第三通道、两个第二构件上位于后端的两个第二连接件的连接部分别滑入两个第一连接件的第一通道。
本发明的一种连接组件与现有技术相比,其有益效果在于:
本发明通过第二连接件部分从第一通入口进入第二通道第二端后,沿第二通道滑动至第二通道的第一端后,经过第一通道与第二通道的连通处后滑入第一通道后,通过第二连接件部分连接于第一通道中,以使第一连接件与第二连接件相互连接,从而实现第一构件与第二构件相互连接的目的。
本发明的第一连接件的第一封闭端呈封闭状,使得第一封闭端的结构强度比第一通道的中部或第一通道的其他位置都要大,当连接部滑动至第一封闭端或接近第一封闭端时,第一构件承受载荷的作用力位于第一封闭端处或接近第一封闭端,使得连接部对第一连接件的承载力更强,第一构件能够承受更大的载荷,连接稳定性更好,由此解决了现有技术中采用平推式隐形连接件后的第一构件存在承载能力不足或受限的技术问题。同时,本发明避免了在第一构件的表面上开设长度尺寸较大的纵向沟槽,避免了第一构件因纵向沟槽而导致承载能力降低的问题,同时保证了第一构件的美观性,贴合使用者的审美观。
另外,使用者可以根据使用需求通过控制第一连接件与第二连接件的拆分后,将第一构件从第二构件上拆下后重新调整第一构件在第二构件上的位置,以满足使用者的使用需求,拆装方便快捷。
附图说明
图1是本发明实施例1的第一连接件的第一种结构示意图;
图2是本发明实施例1的第一连接件的第二种结构示意图;
图3是图1的侧视图;
图4是本发明实施例1的第一连接件的第三种结构示意图;
图5是本发明实施例1的第一连接件的第四种结构示意图;
图6是本发明实施例1的第一连接件的第五种结构示意图;
图7是本发明实施例1的第一连接件的第六种结构示意图;
图8是本发明实施例1的第一连接件的第七种结构示意图;
图9是图8的俯视图;
图10是本发明实施例1的第一连接件的第八种结构示意图八;
图11是图10俯视图;
图12是本发明实施例1的第一连接件的第九种结构示意图;
图13是本发明实施例1的第一连接件的第十种结构示意图;
图14是本发明实施例1的第一连接件的第十一种结构示意图;
图15是本发明实施例1的第一连接件的第十二种结构示意图;
图16是本发明实施例1的第一连接件的第十三种结构示意图;
图17是图16的俯视图;
图18是本发明实施例1的第一连接件的第十四种结构示意图;
图19是图18的俯视图;
图20是图1的俯视图;
图21是图20中沿J-J的剖视图;
图22是图1的俯视图;
图23是本发明实施例1的第一连接件的第十五种结构示意图;
图24是图23的俯视图;
图25是本发明实施例1的第一连接件的第十六种结构示意图;
图26是图25的俯视图;
图27是本发明实施例1的第一连接件的第十七种结构示意图;
图28是图27的俯视图;
图29是本发明实施例1的第二连接件的第一种结构示意图;
图30是图29的侧视图;
图31是本发明实施例1的第二连接件的第二种结构示意图;
图32是本发明实施例1的第二连接件的第三种结构示意图;
图33是本发明实施例1的第二连接件的第四种结构示意图;
图34是本发明实施例2的第三连接件的第一种结构示意图;
图35是图34的俯视图;
图36是本发明实施例2的第三连接件的第二种结构示意图;
图37是本发明实施例2的第三连接件的第三种结构示意图;
图38是本发明实施例2的第三连接件的第四种结构示意图;
图39是本发明实施例2的第三连接件的第五种结构示意图;
图40是图39的俯视图;
图41是本发明实施例1的止动件的第一种结构示意图;
图42是本发明实施例1的止动件的第二种结构示意图;
图43是本发明实施例1的止动件的第三种结构示意图;
图44是本发明实施例1的连接组件、第一构件及第二构件的安装示意图;
图45是本发明实施例1的第二连接件与第二构件的安装示意图;
图46是本发明实施例1的第二连接件与第二构件的连接示意图;
图47是本发明实施例1的第一构件的结构示意图;
图48是本发明实施例1的第一连接件与第一构件的安装示意图;
图49是本发明实施例1的第一连接件与第一构件的连接示意图;
图50是本发明实施例1的第一连接件与第一构件的另一安装示意 图;
图51是本发明实施例1的连接组件、第一构件及第二构件的连接示意图;
图52是图51的侧视图;
图53是图52中沿A-A的剖视图;
图54是图51的仰视图;
图55是图54中沿B-B的剖视图;
图56是图54中沿C-C的剖视图;
图57是本发明实施例2的连接组件、第一构件及第二构件的安装示意图;
图58是本发明实施例2的第一构件的结构示意图;
图59是本发明实施例2的第一连接件、第三连接件与第一构件的安装示意图;
图60是本发明实施例2的第一连接件、第三连接件与第一构件的连接示意图;
图61是本发明实施例2的连接组件、第一构件及第二构件的连接示意图;
图62是图61的侧视图;
图63是图62中沿D-D的剖视图;
图64是图61的仰视图;
图65是图64中沿E-E的剖视图;
图66是图64中沿F-F的剖视图;
图中,
100、第一连接件;101、第一表面;102、第二表面;
103、第一通道;1031、第一封闭端;1032、第一凸沿;1032a、第一限位凸点;1033、第一内侧壁;1034、第一底壁;1035、第一定位台阶;
104、第二通道;1041、第一通入口;1042、第二凸沿;1043、第 二内侧壁;1044、第二底壁;1045、第一端;1046、第二端;
105、外转角;
106、第三表面;1061、第一安装柱;1062、第一倒钩;
107、第二倒钩;
108、第一安装孔;
200、第二连接件;201、连接部;202、锁紧台阶;203、定位部;204、安装部;
300、止动件;301、第三端;302、第四端;303、围挡;
400、第三连接件;401、第四表面;402、第五表面;
403、第三通道;4031、第二通入口;4032、第三凸沿;4032a、第二限位凸点;4033、第三内侧壁;4035、第二封闭端;4036、第二定位台阶;
404、第六表面;4041、第二安装柱;4042、第三倒钩;
405、第四倒钩;
406、第二安装孔;
500、第一构件;501、第一安装槽;5011、第一安装口;5012、第一连接孔;502、第二安装槽;5021、第二安装口;5022、第二连接孔;
600、第二构件;
X、横向;Y、纵向。
具体实施方式
下面结合附图和实施例,对本发明的具体实施方式作进一步详细描述。以下实施例用于说明本发明,但不用来限制本发明的范围。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了 便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本发明中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
在本发明中,除非另有明确的规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
在本发明中,家具成品由多个结构或形状不同的家具构件相互组装而成,家具构件可以呈板状体或块状体或柱状体等,材质可以为木质、塑料、或者高分子合成材料等,此处不作限定。
实施例1
如图1-33、44-56所示,本发明实施例1公开了一种连接组件,该连接组件包括第一连接件100及第二连接件200,例如通过先将第一连 接件100安装于第一构件500上、第二连接件200安装于第二构件600上,然后通过第一连接件100与第二连接件200相互连接,可实现第一构件500与第二构件600之间稳定连接,且第一构件500或第二构件600的承载能力强;同时第一连接件100及第二连接件200的安装或连接均不需要破坏第一构件500或第二构件600的表面,满足了使用者对家具成品的美观性追求。又例如第二连接件200采用不可拆卸方式固定于第二构件600的表面、或者第二连接件200与第二构件600为一体成型件,第一连接件100安装于第一构件500上,通过第一连接件100与第二连接件200相互连接,可实现第一构件500与第二构件600之间稳定连接,且第一构件500或第二构件600的承载能力强。
下面针对本实施例1的第一连接件100的具体结构作进一步说明。
如图1-28所示,本实施例1的公开了一种第一连接件100,包括第一连接件本体,第一连接件本体具有相连接的第一表面101及第二表面102,第一连接件本体的第一表面101上开设有横向延伸的第一通道103及纵向延伸的第二通道104,第二通道104沿纵向延伸的第一端1045与第一通道103相连通,第二通道104沿纵向延伸的第二端1046贯穿于第一连接件本体的第二表面102以形成第一通入口1041;在沿横向方向上,第一通道103的至少一端为第一封闭端1031;第一通道103及第二通道104限定形成用于与第二连接件200连接的安装通道。
当第二连接件200部分从第一通入口1041进入第二通道104第二端1046后,沿第二通道104滑动至第二通道104的第一端1045后,经过第一通道103与第二通道104的连通处后滑入第一通道103后,通过第二连接件200部分连接于第一通道103中,以使第一连接件100与第二连接件200相互连接,从而实现第一构件500与第二构件600相互连接的目的。为了方便描述,本实施例1将用于连接在安装通道中的第二连接件200部分设为连接部201。
在本发明实施例1中,连接部201滑动至第一通道103中任意位置后即可实现第一连接件100与第二连接件200之间的连接,例如连接部201 可以滑动至第一通道103的中部,又例如连接部201可以滑动至第一封闭端1031或接近第一封闭端1031。
由于第一封闭端1031呈封闭状,使得第一封闭端1031的结构强度比第一通道103的中部或第一通道103的其他位置都要大,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一构件500承受载荷的作用力位于第一封闭端1031处或接近第一封闭端1031,使得连接部201对第一连接件100的承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好,由此解决了现有技术中采用平推式隐形连接件后的第一构件500存在承载能力不足或受限的技术问题。同时,本发明实施例1避免了在第一构件500的表面上开设长度尺寸较大的纵向沟槽,避免了第一构件500因纵向沟槽而导致承载能力降低的问题,同时保证了第一构件500的美观性,贴合使用者的审美观。
需要说明的是,本实施例1的纵向如图1-28的箭头Y所示,本实施例1的横向如图1-28的箭头X所示,其目的是示例性说明第一通道103及第二通道104在第一连接件100上的延伸方向,并非用于限定第一通道103及第二通道104的具体位置,例如,纵向可以为竖直方向,横向可以为水平方向,纵向与横向之间的夹角为90°;又例如,纵向可以为竖直方向,横向可以为沿水平面逐渐倾斜向下的方向,纵向与横向之间夹角小于90°;再例如,纵向可以为竖直方向,横向可以为沿水平面逐渐倾斜向上的方向,纵向与横向之间夹角大于90°。又例如,在一些实施方式中,横向为水平方向,纵向与横向之间夹角可以为大于或等于或小于90°。又例如,横向不是水平方向、纵向不是竖直方向,纵向与横向之间夹角可以为大于或等于或小于90°。因此,本领域技术人员可根据实际使用情况适应性调整。
进一步地,第一表面101及第二表面102可以为平面或弧面或曲面或阶梯面等,例如第一表面101为阶梯面时,第一通道103和第二通道104可以分别位于阶梯面的上、下两个面,该情况下仍处于本发明的保护范围之内。
在本实施例1的一些实施方式中,如图1-2、4-11、13-20、23-28所示,第一通道103的内侧上设有至少一个第一凸沿1032,该第一凸沿1032用于与连接部201相抵紧以限制连接部201从第一通道103中拔出,以使第一连接件100与第二连接件200相互连接。例如,第一凸沿1032呈条状,可以一个呈条状的第一凸沿1032连续性地设于第一通道103的内侧,还可以多个呈条状的第一凸沿1032间断性地依次设于第一通道103的内侧。又例如,第一凸沿1032呈块状或点状,多个呈块状或点状的第一凸沿1032依次间断性地设于第一通道103的内侧。下面根据第一凸沿1032位于第一通道103的位置作进一步说明。
作为一种第一凸沿1032位于第一通道103的位置说明,如图1-2、4-11、13-20、23-28所示,第一通道103具有沿横向延伸的第一内侧壁1033,第一内侧壁1033上设有至少一个第一凸沿1032,且第一凸沿1032横向延伸。其中,第一通道103具有两个相对的第一内侧壁1033,可以只其中一个第一内侧壁1033上设有至少一个第一凸沿1032(如图4、10所示),也可以在两个第一内侧壁1033上分别设有至少一个第一凸沿1032(如图1-2、5-9、11、13-20、23-28所示)。例如,位于同一个第一内侧壁1033上可以设有多个第一凸沿1032,且多个第一凸沿1032垂直于横向的方向上依次间隔排布,且各第一凸沿1032可以连续性地横向设于第一内侧壁1033上。当连接部201滑动至第一通道103时,连接部201与第一凸沿1032相抵紧以限制连接部201从第一通道103中拔出,此时第二连接件200部分可以不位于第一封闭端1031处,也可以位于第一封闭端1031处或接近第一封闭端1031,此处不作限定。
进一步地,第一通道103还具有沿横向延伸的第一底壁1034。如图21所示,设定第一凸沿1032上靠近第一封闭端1031并与第一底壁1034相对的一侧与第一表面101的距离为D1,设定第一凸沿1032上靠近第一通道103与第二通道104的连通处并与第一底壁1034相对的一侧与第一表面101的距离为D2,其中,D1>D2。例如,在第一通道103与第二通道104的连通处往第一封闭端1031的方向上,第一凸沿1032的厚度尺寸逐 渐增大,以使D1>D2;又例如,在第一通道103与第二通道104的连通处往第一封闭端1031的方向上,第一凸沿1032的厚度尺寸先减小后逐渐增大,最后使D1>D2;又例如,在第一通道103与第二通道104的连通处往第一封闭端1031的方向上,第一凸沿1032的厚度尺寸先保持相同,再逐渐增大,最后厚度再保持相同,最后使D1>D2。如此通过D1>D2,连接部201在从第一通道103与第二通道104的连通处往第一封闭端1031的滑动过程中,连接部201能够轻松滑入第一通道103,随后连接部201在第一通道103滑动过程中逐渐受到第一凸沿1032与第一底壁1034之间的压紧力,当连接部201滑动至第一封闭端1031或者接近第一封闭端1031时,连接部201受到第一凸沿1032与第一底壁1034之间较大的压紧力,以使连接部201在第一通道103中受到较大的摩擦力,从而使连接部201稳定地紧固于第一通道103中,进一步提高第一连接件100与第二连接件200的连接稳定性。
作为另一种第一凸沿1032位于第一通道103的位置说明,第一封闭端1031上设有至少一个第一凸沿1032。当连接部201滑动至第一封闭端1031处或接近第一封闭端1031时,连接部201与第一凸沿1032相抵紧以限制连接部201从第一通道103中拔出,以使第一连接件100与第二连接件200相互连接。
在本实施例1的另一些实施方式中,如图12所示,第一通道103的内侧上可以不设有第一凸沿1032,通过连接部201的表面与至少一个第一内壁侧之间存在较大摩擦力以产生一个夹紧力,限制连接部201从第一通道103中拔出,以使第一连接件100与第二连接件200相互连接。
进一步地,在一些实施方式中,如图1-2、4-11、13-20所示,第一凸沿1032上靠近第一封闭端1031的位置处设有至少一个第一限位凸点1032a,第一限位凸点1032a用于将第二连接件200的连接部201限制于第一封闭端1031或接近第一封闭端1031处。其中,第一限位凸点1032a的数量可以为一个或多个,此处不作限定。例如,只有一个内侧壁上设有第一凸沿1032时,该第一凸沿1032可以设有一个或多个第一 限位凸点1032a,多个第一限位凸沿依次设于第一凸沿1032上。又例如,当相对两个第一内侧壁1033上分别设有第一凸沿1032时,各第一凸沿1032可以设有一个或多个第一限位凸点1032a,多个第一限位凸点1032a依次设于同一个第一凸沿1032上。第一限位凸点1032a可以具有一定的弹性,例如采用软质塑料或硅胶等;限位凸点也可以不具有弹性,例如硬质塑料等。当连接部201滑动到第一限位凸点1032a时,第一限位凸点1032a受到连接部201的抵顶后发生一定的弹性形变,随后连接部201滑过第一限位凸点1032a并位于或接近第一封闭端1031,此时第一限位凸点1032a恢复原状后将连接部201卡设于第一封闭端1031或接近第一封闭端1031处,以实现第一连接件100与第二连接件200之间连接,第一限位凸点1032a用于避免第一连接件100与第二连接件200在连接状态下连接部201容易在第一通道103中发生位移,确保第一连接件100与第二连接件200的连接稳定,同时确保了第一构件500具有较大的承载能力。
在一些实施方式中,连接部201的端部贴合于第一底壁1034,避免连接部201与第一底壁1034之间存在缝隙而影响连接部201在第一通道103中的稳定性,同时增大第二连接件200在第一滑道中的伸入长度以提高第一构件500的承载能力。
在本实施例1的一些实施方式中,如图1-2所示,第二通道104具有沿纵向延伸的第二内侧壁1043,第二内侧壁1043上设有至少一个第二凸沿1042。其中,第二通道104具有两个相对的第二内侧壁1043,可以只在其中一个第二内侧壁1043上设有至少一个第二凸沿1042(如图4-5、10所示),也可以在两个第二内侧壁1043上分别设有至少一个第二凸沿1042(如图1-2、6-11、13-20、23-26所示)。例如,位于同一个第二内侧壁1043上可以设有多个第二凸沿1042,且多个第二凸沿1042垂直于纵向的方向上依次间隔排布,且各第二凸沿1042可以连续性地纵向设于第二内侧壁1043上。当连接部201在第二通道104滑动过程中时,连接部201与第二凸沿1042相抵紧以限制连接部201从第二通道104中 拔出,以确保连接部201在第二通道104滑动后并随后滑入第一通道103中。
在一些实施方式中,第一凸沿1032与第二凸沿1042相连接。
进一步地,在一些实施方式中,如图1-2、6-7、10-11、13-20、23-28所示,第二通道104具有沿纵向延伸的第二底壁1044,第一底壁1034与第二底壁1044相连接,其中,第一底壁1034和第二底壁1044可以为平面或弧面,且第一底壁1034与第二底壁1044可以在同一平面或不在同一平面,此处不作限定。例如,连接部201在第二通道104滑动的过程中,连接部201的端部可以贴合于第二底壁1044。
在另外一些实施方式中,如图8-9所示,第二通道104不具有第二底壁1044。连接部201沿第二通道104的第二内侧壁1043滑动至第一通道103。或,连接部201在第二通道104滑动过程中,连接部201抵接至第二凸沿1042并沿第二凸沿1042滑动进入第一通道103。
在本实施例1的一些实施方式中,如图1-2、4-28所示,第一表面101上靠近第一封闭端1031的位置处设有第一定位台阶1035。当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一定位凸台用于抵接至第二连接件200的部分以起到定位作用,避免连接部201与第一封闭端1031之间发生刚性碰撞而发生磨损,保护第一连接件100或第二连接件200。
在本实施例1的一些实施方式中,如图1-2、4-28所示,第一连接件本体上靠近第一封闭端1031的外侧面为圆弧面。由于第一构件500的表面需要开设有用于安装第一连接件100的第一安装槽501,如此使第一连接件本体上靠近第一封闭端1031的外侧面为圆弧面能够减小第一安装槽501上靠近第一封闭端1031的宽度,从而使第一构件500的承载能力更大;同时使第一构件500通过设计出的第一安装槽501与第一封闭端1031的呈圆弧状的外侧面相适配的圆弧面,以使相对增加第一构件500的纵向承载厚度,使得第一构件500能够承受更大的纵向承载能力。
在本发明实施例1中,第二通道104沿纵向延伸的第一端1045与第一通道103相连通包括以下两种情况,第一种为第二通道104沿纵向延伸的第一端1045与第一通道103沿横向延伸的一端相连通,第二种为第二道通沿纵向延伸的第一端1045与第一通道103沿横向延伸的中部相连通,下面分别针对这两种情况做进一步说明。
如图1-2、4-22所示,当第二通道104沿纵向延伸的第一端1045与第一通道103沿横向延伸的一端相连通时,第一通道103沿横向延伸的另一端为第一封闭端1031。此时第一通道103与第二通道104形成的安装通道近似L字形。其中,在一些实施方式中,如图1-2、4、8-17、20、22所示,第二通道104与第一通道103的连通处的外转角105可以呈封闭状,封闭状的外转角105能够提高第一连接件100的整体结构强度以提高第一构件500的承载能力。进一步地,当第二通道104与第一通道103的连通处的外转角105呈封闭状时,第一连接件本体上靠近第一通道103及第二通道104的连通处的外转角105的外侧面为圆弧面,如此能够减小第一安装槽501上靠近外转角105的宽度,从而使第一构件500的承载能力更大;同时使第一构件500通过设计出的第一安装槽501与第外转角105的呈圆弧状的外侧面相适配的圆弧面,以使相对增加第一构件500的纵向承载厚度,使得第一构件500能够承受更大的纵向承载能力。在其他实施方式中,如图5-7所示,第二通道104与第一通道103的连通处的外转角105可以设有开口,开口的数量可以为一个或多个,此处不作限定。
在一些实施方式中,当第一构件500连接第二构件600时,可以将第一连接件100安装于第一构件500的一侧,推动第一构件500相对第二构件600沿纵向及横向移动,使第一构件500上的第一连接件100与第二构件600上的第二连接件200的连接部201相互连接。
在一些实施方式中,当第一构件500的左、右两侧分别连接有第二构件600时,可以将两个第一连接件100分别安装于第一构件500的左、右两侧,推动第一构件500相对第二构件600沿纵向及横向移动,使第 一构件500左、右两侧上的第一连接件100分别与两个第二构件600上的第二连接件200的连接部201相互连接。由于当第一通道103与第二通道104形成的安装通道近似L字形时,因此如图1-2所示,位于第一构件500的左、右两侧的第一连接件100需要有对称式的两款,安装时需要将两个第一连接件100相对应安装在第一构件500的左、右两侧,以满足第一构件500在移动过程中第一构件500的左、右两侧的第一连接件100分别与两个第二构件600上的第二连接件200连接。
进一步地,如图1-2、4-22所示,第一表面101上位于第一通道103的外部下方并位于第二通道104的外部侧方的位置处形成有凹陷部,以使第一连接件本体在第一表面101上的投影呈近似L字形。凹陷部能够减小第一构件500的第一安装槽501上与第一通道103相对应的宽度,从而增大第一构件500的承载能力。
如图23-28所示,当第二道通沿纵向延伸的第一端1045与第一通道103沿横向延伸的中部相连通,在沿横向方向上,第一通道103的两端分别为第一封闭端1031;或,在沿横向方向上,第一通道103的其中一端为第一封闭端1031,另一端带有开口。此时第一通道103与第二通道104形成的安装通道呈近似T字形。优选地,在沿横向方向上,第一通道103的两端分别为第一封闭端1031。当第一构件500的左、右两侧分别连接有第二构件600时,可以将两个第一连接件100分别安装于第一构件500的左、右两侧,推动第一构件500相对第二构件600沿纵向及横向移动,使第一构件500左、右两侧的第一连接件100分别与两个第二构件600上的第二连接件200的连接部201相互连接。第一通道103与第二通道104形成的安装通道呈近似T字形能够方便使用者在安装第一连接件100时无需区分第一构件500的左、右两侧,以确保第二连接件200的连接部201能够滑动至其中一个第一封闭端1031,安装便捷且操作迅速,大大提高了装配效率。进一步地,两个第一封闭端1031关于第二通道104轴对称设置,当驱动第一构件500相对两个第二构件600横向移动时,第一构件500的左、右两侧的滑动距离相同,避免了第一构件500 出现歪斜现象。
进一步地,如图23-28所示,第一表面101上位于第一通道103的外部下方并位于第二通道104的外部侧方的位置处形成有凹陷部,以使第一连接件本体在第一表面101上的投影呈近似T字形。凹陷部能够减小第一构件500的第一安装槽501上与第一通道103相对应的宽度,从而增大第一构件500的承载能力。
需要说明的是,上述本发明实施例1中的第二通道104沿纵向延伸的第一端1045与第一通道103相连通并不限于第二通道104纵向延伸的第一端1045端部与第一通道103连通,还包括第二通道104纵向延伸的第一端1045端部穿过第一通道103以突出于第一通道103外(如图18-19、27-28所示),即第二通道104纵向延伸的第一端1045部分与第一通道103。
第一连接件本体具有背对第一表面101的第三表面106。在一些实施方式中,如图1-2、4-8、10、12-16、18、23、25、27所示,第三表面106上与第一通道103相对应的位置处向外延伸,以增大第一表面101到第三表面106之间的距离,从而使第一连接件本体与第一构件500的第一安装槽501内侧壁接触面积更大,从而提高第一构件500的承载能力。在一些实施方式中,第一连接件本体设有第一通道103的部分与第一连接件本体设有第二通道104的部分之间形成台阶状。
在本发明实施例1中,第一连接件本体可以通过可拆卸方式或不可拆卸方式安装于第一构件500的第一安装槽501中。
作为一种第一连接件本体采用可拆卸方式安装于第一安装槽501的方案,如图1-2、4-8、10、12-14、21、23、27所示,第三表面106上设有至少一个第一安装柱1061。其中,第一安装柱1061可以呈圆柱体或方主体或圆锥体或棱锥体等;第一安装柱1061的数量可以为一个或多个;第一安装柱1061可以是硬质材料制成,例如硬质塑料等,也是可以软质材料制成,例如软质塑料或硅胶或橡胶等。因此,本发明实施例1并不限定第一安装柱1061的具体形状、数量以及材质,具体可 根据实际使用情况适应性设计。例如图1-2、4-8、10、12-14、21所示,第一安装柱1061的数量为一个;又例如图23、27所示,第一安装柱1061的数量为两个。
相应地,如图47所示,第一构件500上的第一安装槽501的底壁开设有用于安装第一安装柱1061的第一连接孔5012。第一连接孔5012的数量与第一安装柱1061的相同,第一连接孔5012在第一安装槽501的位置与第一安装柱1061在第一连接件100上的位置相对应。其中,第一连接孔5012的横截面尺寸小于第一安装柱1061的横截面尺寸,以使第一安装柱1061通过过盈配合或弹性形变压紧的方式紧固于第一连接孔5012中。当作用于第一连接件100的外力大于第一安装柱1061在第一连接孔5012的滑动摩擦力时,即可将第一连接件100从第一安装槽501中拔出,以实现第一连接件100与第一构件500的拆分。例如,当第一连接件100安装于第一安装槽501后,第三表面106可以贴合于第一安装槽501的底壁。
进一步地,如图1-2、4-8、10、12、14、21、23、27所示,第一安装柱1061的外表面设有至少一个第一倒钩1062。第一倒钩1062的数量可以为一个或多个,例如多个第一倒钩1062沿第一安装柱1061的长度方向依次间隔设置。第一倒钩1062的外周面积大于第一连接孔5012的横截面面积,以使第一安装柱1061在插入第一连接孔5012时,第一倒钩1062发生朝向第一安装柱1061的外表面向内弯曲,静止后第一倒钩1062对第一连接孔5012的内侧壁形成一个较大的形变张力,增大第一安装柱1061与第一连接孔5012之间的滑动摩擦力,以使第一安装柱1061难以从第一连接孔5012中移出。其中,本发明实施例1的第一倒钩1062可以具有柔性或刚性,例如具有柔性的第一倒钩1062能够减小第一构件500受到应力,以保证第一构件500及第一连接孔5012的结构不变。
作为另一种第一连接件本体采用可拆卸方式安装于第一安装槽501的方案,如图13-15所示,第一连接件本体的外侧壁上设有至少一 个第二倒钩107。第二倒钩107的数量可以为一个或多个,例如多个第二倒钩107依次间隔设于第一连接件本体的外侧壁上。第二倒钩107的形状及结构与上述第一倒钩1062的形状及结构相似,故此处省略描述。当第一连接件100插入第一安装槽501时,第二倒钩107发生朝向第一连接件本体的外侧壁向内弯曲,静止后第二倒钩107对第一安装槽501的内侧壁形成一个较大的形变张力,增大第一连接件100与第一安装槽501之间的滑动摩擦力,以使第一连接件100难以从第一安装槽501中移出。进一步地,本实施例1并不限定第二倒钩107在第一连接件本体上的具体位置,例如第二倒钩107可以环绕于第一连接件本体的外侧壁,也可以是第一连接件本体的一部分。
作为另一种第一连接件本体采用可拆卸方式安装于第一安装槽501的方案,如图16-19、25-26所示,第一连接件本体开设有第一安装孔108。第一安装孔108为通孔结构,可以采用销钉或螺钉或螺栓等螺纹紧固件穿过第一安装孔108后连接于第一安装槽501中,通过拆卸销钉或螺钉或螺栓等螺纹紧固件以实现第一连接件100与第一构件500的拆分。
此外,本实施例1的第一连接件本体还可以采用胶粘或铆接等方式安装于第一安装槽501中。因此,本发明实施例1并不限制第一连接件100在第一安装槽501中的安装方式,本领域技术人员可根据具体使用情况适应性设计。
在本实施例1的一些实施方式中,第一连接件本体为塑料材质,优选为硬质塑料,整体结构强度大,具有优秀的承载能力。例如第一连接件本体采用注塑成型工艺成型一体化结构。在其他实施方式中,第一连接件本体可以为金属或玻璃或其它合成材料材质,此处不做限定。
下面针对本实施例1的第二连接件200的具体结构作进一步说明。
如图29-33所示,本实施例1的第二连接件200包括用于连接在安装通道的连接部201,例如连接部201为第二连接件200的一端端部。其中,连接部201的形状结构分别与第一通道103及第二通道104相对适配,以 使连接部201能够从第一通入口1041滑入并相对第一封闭端1031滑动,当第一连接件100与第二连接件200处于连接状态时,连接部201滑动至第一通道103中。例如连接部201可以滑动至第一通道103的中部,又例如连接部201可以滑动至第一封闭端1031或接近第一封闭端1031。
需要说明的是,本实施例1并不限制第二连接件200的具体结构或形状,例如第二连接件200可以为现有常规的螺栓或螺钉或销钉等,连接部201为螺栓或螺钉或销钉的头部,连接部201可以与第一通道103的第一内侧壁1033相抵紧或与第一凸沿1032相抵接以限制连接部201从第一通道103中拔出,从而实现第一连接件100与第二连接件200相连接。又如图29-30所示,第二连接件200为呈圆柱体或方柱体等结构,连接部201设有锁紧台阶202,当第一通道103的内侧上设有第一凸沿1032时,锁紧台阶202与第一凸沿1032相抵紧以限制连接部201从第一通道103中拔出。再如图31-33所示,第二连接件200为呈圆柱体或方柱体等结构,连接部201为第二连接件200的一端端部,连接部201可以与第一通道103的第一内侧壁1033相抵紧以限制连接部201从第一通道103中拔出。再例如,当第一构件500的两侧分别用于连接第二构件600时,将两个第一连接件100分别设于第一构件500的两侧,第二构件600上的第二连接件200的连接部201位于第一通道103中且与第一通道103的内侧之间贴合或存在一定间隙,利用两个第二构件600夹紧第一构件500的两侧以限制第一构件500在左右方向移动,从而实现第一构件500与两个第二构件600之间连接。
在一些实施方式中,如图29-32所示,第二连接件200设有与第一定位台阶1035配合定位的定位部203。例如定位部203可以呈包围于第一连接件100的外表面的圆盘状,定位部203横截面面积大于第二连接件200的横截面面积;又例如定位部203可以呈条状体或块状体,定位部203的外周边缘位于第二连接件200的横截面投影外。当连接部201滑动至第一封闭段或接近第一封闭端1031时,第一定位凸台用于抵接至定位部203以起到定位作用,避免连接部201与第一封闭端1031之间发 生刚性碰撞而发生磨损,保护第一连接件100或第二连接件200。另外,定位部203用于贴紧第二构件600的表面,以定位连接部201在第二构件600表面上的突出高度。
进一步地,定位部203贴合于第一表面101。当连接部201滑动至第一封闭段或接近第一封闭端1031时,由于定位部203贴合于第一表面101使能够提高第一连接件100与第二连接件200之间的紧密性,避免因缝隙引起晃动,提高第一连接件100与第二连接件200之间的连接稳定性,同时提高第一构件500的承载能力,美观性好。当连接部201上设有锁紧台阶202时,定位部203与锁紧台阶202之间形成有与第一凸沿1032或第二凸沿1042配合滑动的滑槽,其中,第一凸沿1032上靠近第一封闭端1031并与第一底壁1034相对的一侧与第一表面101的距离D1小于或等于滑槽的宽度,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,滑槽与第一凸沿1032配合卡紧以使连接部201稳定在第一封闭端1031或接近第一封闭端1031,提高第一连接件100与第二连接件200的连接稳定性。
在一些实施方式中,第二连接件200具有与连接部201相对置的安装部204,安装部204用于连接在第二构件600上。例如图29-31所示,安装部204为外螺纹结构,安装部204可以通过自攻式或非自攻式;连接于第二构件600上。又例如图32-313所示,安装部204呈光杆结构,第二构件600上开设有槽孔,安装部204通过过盈配合或弹性卡紧的方式紧固于槽孔中。再或者安装部204通过胶粘或自攻方式连接于第二构件600上。当第二连接件200安装于第二构件600时,定位部203贴合于第二构件600的表面,进一步提高第一连接件100与第二连接件200之间的紧密性,提高第一连接件100与第二连接件200之间的连接稳定性,同时提高第一构件500的承载能力,美观性好。再例如,安装部204呈光杆结构,第二构件600开设有供安装部204插入的插孔,且安装部204与插孔之间存在缝隙;当第一构件500的两侧分别用于连接第二构件600时,将两个第一连接件100分别设于第一构件500的两侧,第二构件 600上的第二连接件200的连接部201位于第一通道103中,通过连接部201与第一连接件100之间连接以及两个第二构件600之间的相对约束以限制第一构件500在左右方向移动,从而实现第一构件500与两个第二构件600之间连接。
在一些实施方式中,当第二通道104的第二内侧壁1043上设有沿纵向延伸的第二凸沿1042,当连接部201在第二通道104的滑动过程中,锁紧台阶202与第二凸沿1042相抵紧以限制连接部201从第二通道104中拔出,以确保连接部201在第二通道104滑动后并随后滑入第一通道103中。
在本实施例1的一些实施方式中,第二连接件200为金属材质,例如铁质或钢质或合金材质,结构强度大,满足较大的承载要求。
基于上述连接组件的结构,当第二连接件200的连接部201连接于第一通道103时,可以使第一连接件100与第二连接件200相互连接,从而实现第一构件500与第二构件600相互连接的目的。为了防止在第一连接件100与第二连接件200处于连接状态时连接部201会在第一通道103中移动,在一些实施方式中,如图41-43所示,本实施例1的连接组件还包括止动件300,止动件300具有相对的第三端301和第四端302;止动件300从第一通入口1041插设于第二通道104中,止动件300的第三端301位于第一通道103与第二通道104的连通处并且止动件300至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动。
其中,本实施例1并不限定止动件300的具体结构或形状,止动件300的结构或形状与第一通入口1041相适配。例如图41-43所示,当第二通道104的第二内侧壁1043上设有沿纵向延伸的第二凸沿1042,止动件300呈台阶状。又例如当第二通道104的第二内侧壁1043上没有第二凸沿1042,止动件300可以呈方块状或柱体状等。
基于上述连接组件的结构,可以通过上述连接组件来实现第一构件500与第二构件600之间的连接,以形成一个连接系统,如图44-56所示,连接系统包括第一构件500、第二构件600、第一连接件100及第二 连接件200;其中,第一构件500的侧面上开设有第一安装槽501,第一安装槽501的一侧贯穿于第一构件500的下表面以形成第一安装口5011;第一连接件100安装于第一安装槽501中,第一表面101朝向第一安装槽501的槽口并使第一通道103和第二通道104与外界连通;且第二通道104依次通过第一通入口1041及第一安装口5011与外界连通;第二连接件200安装于第二构件600上,连接部201突设于第二构件600的表面;其中,连接部201依次从第一安装口5011及第一通入口1041滑入第二通道104中,连接部201沿第二通道104滑动并滑入至第一通道103中。通过连接部201位于第一通道103以实现第一连接件100与第二连接件200相互连接,从而使第一构件500与第二构件600连接。由于第一封闭端1031呈封闭状,使得第一封闭端1031的结构强度比第一通道103的中部或第一通道103的其他位置都要大,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一构件500承受载荷的作用力位于第一封闭端1031处或接近第一封闭端1031,使得第一连接件100对连接部201的承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好。本发明实施例1避免了在第一构件500的表面上开设长度尺寸较大的横向沟槽,避免了第一构件500因横向沟槽而导致承载能力降低的问题,由此解决了现有技术中采用平推式隐形连接件后的第一构件500存在承载能力不足或受限的技术问题。保证了第一构件500的美观性,贴合使用者的审美观。
在一些实施方式中,第一表面101上位于第一通道103的外部下方并位于第二通道104的外部侧方的位置处开设有凹陷部,以使第一连接件本体在第一表面101上的投影呈近似L字形。凹陷部能避免了在第一构件500的表面上开设长度尺寸较大的纵向沟槽,减小纵向沟槽及第一安装口5011的尺寸,避免了第一构件500因纵向沟槽而导致承载能力降低的问题,从而增大第一构件500的承载能力。同时保证了第一构件500的美观性,贴合使用者的审美观。
在一些实施方式中,第一连接件本体设有第一通道103的部分与第 一连接件本体设有第二通道104的部分之间形成台阶状,以避免了在第一构件500的表面上开设深度尺寸较大的纵向沟槽,减小纵向沟槽及第一安装口5011的尺寸,避免了第一构件500因纵向沟槽而导致承载能力降低的问题,从而增大第一构件500的承载能力。同时保证了第一构件500的美观性,贴合使用者的审美观。
进一步地,上述连接系统还包括止动件300,止动件300从第一通入口1041插设于第二通道104中,止动件300的第三端301位于第一通道103与第二通道104的连通处并使止动件300至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动,从而确保第一构件500与第二构件600在连接状态时防止连接部201在第一通道103中移动,提高第一构件500与第二构件600之间的连接稳定性。
在一些实施方式中,如图41-43所示,止动件300的第四端302设有遮盖围挡303。该遮盖围挡303可以用于遮盖第一安装口5011,目的是提高第二构件600的美观性,贴合使用者的审美观。其中,遮盖围挡303可以呈方形板状或弧形板状或其它形状,此处不作限定。此外,遮盖围挡303的颜色或纹路与第二构件600相适配。
进一步为了确保第一构件500与第二构件600隐形式连接,第二表面102与第一构件500的下表面位于同一平面,或者第二表面102位于第一安装槽501内。第一表面101与第一构件500的侧面位于同一平面,或者第一表面101位于第一安装槽501内。
在一些实施方式中,如图44-56所示,基于上述连接组件的结构,采用上述连接组件实现第一构件500与第二构件600的安装方式具体如下:
S1、在第一构件500的一侧加工有第一安装槽501,并使第一安装槽501的一侧加工至第一构件500的底侧以形成第一安装口5011,将第一连接件100安装于第一安装槽501中,并使第一表面101朝向第一安装槽501的槽口并使第一通道103和第二通道104与外界连通,第二通道104依次通过第一通入口1041及第一安装口5011与外界连通;
例如,当第一连接件100设有第一安装柱1061时,第一安装槽501中开设有与第一安装柱1061配合连接的第一连接孔5012。又例如,第一连接件100的外侧壁上设有至少一个第二倒钩107,通过卡固的方式安装与第一安装槽501中。
S2、将第二构件600相向的表面上安装有第二连接件200,并使第二连接件200的连接部201突设于第二构件600的表面;
S3、将第一构件500和第二构件600相向,并使第一构件500加工有第一安装槽501的一侧与两个第二构件600安装有第二连接件200的一侧相对应;
S4、驱动第一构件500纵向移动,分别使第二连接件200的连接部201分别依次从两个第一安装口5011及第一通入口1041滑入第一连接件100的第二通道104中;当第二连接件200滑动至第一通道103及第二通道104的连通处时,驱动第一构件500横向移动,以使第二连接件200的连接部201分别滑入第一连接件100的第一通道103。例如,驱动第一构件500横向移动以使第二连接件200的连接部201移动至第一封闭端1031或接近述第一封闭端1031,由于第一封闭端1031的结构强度比第一通道103的中部或第一通道103的其他位置都要大,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一构件500承受载荷的作用力位于第一封闭端1031处或接近第一封闭端1031,使得第一连接件100对的连接部201承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好。
其中,上述步骤S1和步骤S2同时进行,或步骤S1与步骤S2可对调。
其中,第一构件500和两个第二构件600先后安装,或第一构件500和两个第二构件600同时安装。
进一步地,上述安装方法还包括:
S5、将止动件300从第一安装口5011及第一通入口1041插入第二通道104,并使止动件300的第三端301插到第一通道103与第二通道104的连通处并使止动件300的至少一部分抵顶至连接部201,以限制连接部 201在第一通道103中滑动。
在一些实施方式中,基于上述连接组件的结构,采用上述连接组件实现第一构件500与第二构件600的安装方式具体如下:
S1、在第一构件500的左、右两侧分别加工有第一安装槽501,并使各第一安装槽501的一侧加工至第一构件500的底侧以形成第一安装口5011,将两个第一连接件100分别安装于两个第一安装槽501中,并使第一表面101朝向第一安装槽501的槽口并使第一通道103和第二通道104与外界连通,第二通道104依次通过第一通入口1041及第一安装口5011与外界连通;
S2、将两个第二构件600相对间隔放置,分别在两个第二构件600相向的表面上分别安装有第二连接件200,并使各第二连接件200的连接部201突设于第二构件600的表面;
S3、将第一构件500放在两个第二构件600之间,并使第一构件500的的左、右两侧分别与两个第二构件600相对应;
S4、驱动第一构件500纵向移动,分别使两个第二连接件200的连接部201分别依次从两个第一安装口5011及第一通入口1041滑入两个第一连接件100的第二通道104中;当第二连接件200滑动至第一通道103及第二通道104的连通处时,驱动第一构件500横向移动,以使两个第二连接件200的连接部201分别滑入两个第一连接件100的第一通道103。例如,驱动第一构件500横向移动以使第二连接件200的连接部201移动至第一封闭端1031或接近述第一封闭端1031,由于第一封闭端1031的结构强度比第一通道103的中部或第一通道103的其他位置都要大,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一构件500承受载荷的作用力位于第一封闭端1031处或接近第一封闭端1031,使得第一连接件100对连接部201的承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好。
其中,上述步骤S1和步骤S2同时进行,或步骤S1与步骤S2可对调。
进一步地,上述安装方法还包括:
S5、将止动件300从第一安装口5011及第一通入口1041插入第二通道104,并使止动件300的第三端301插到第一通道103与第二通道104的连通处并使止动件300的至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动。
另外,第一构件500的左、右两侧分别设有至少一个第一连接件100,位于左侧的第二构件600设有至少一个与位于第一构件500左侧上的第一连接件100配合连接的第二连接件200,位于右侧的第二构件600设有至少一个与位于第一构件500右侧上的第一连接件100配合连接的第二连接件200。其中,第一构件500的左、右两侧的第一连接件100的数量可以相同或不相同,例如第一构件500的左、右两侧分别设有两个或三个第一连接件100,两个第二构件600分别相应设有两个或三个第二连接件200;又例如第一构件500的左侧设有两个第一连接件100、第一构件500的右侧设有三个第一连接件100,其中位于左侧的第二构件600相应设有两个第二连接件200、位于右侧的第二构件600相应设有三个第二连接件200。
进一步地,本领域技术人员可根据上述安装方法相应推断出第一构件500与第二构件600之间的拆分方法,故此处省略描述。使用者可以根据使用需求通过控制第一连接件100与第二连接件200的拆分后,将第一构件500从第二构件600上拆下后重新调整第一构件500在第二构件600上的位置,以满足使用者的使用需求,拆装方便快捷。
作为本实施例1的连接组件的一种具体应用方式,本实施例1的第一构件500为层板、第二构件600为侧板,可以在层板的两侧分别安装有至少一个第一连接件100,在两个侧板上分别安装有多个沿上下方向排布的第二连接件200,根据上述安装方法以实现层板的两侧分别与两个侧板之间稳定连接,具有较大的承载能力,且层板的拆卸方便快捷,然后根据侧板的多个第二连接件200的位置来调整第一构件500在第二构件600上的位置,以满足使用者的使用需求。
当第一构件500为层板、第二构件600为侧板时,根据现有层板及 侧板的一般结构及尺寸规格,为了使层板具有更大的承载能力,如图21所示,第一连接件100的定位台阶的高度D3的取值范围为0.5-4mm,更优选的取值范围为0.8-3mm,更具体的取值为大概1mm;第三表面106到定位台阶的顶部之间的距离D4为6-20mm,更优选的取值范围为9-15mm,更具体的取值为大概12mm;第三表面106上与第一通道103相对应的位置处向外延伸的厚度D5的取值范围为2-8mm,更优选的取值范围为3-6mm,更具体的取值为大概4.5mm;第一安装柱1061的长度尺寸D6的取值范围为6-40mm,更优选的取值范围为8-30mm,更具体的取值为大概25mm;第一连接件本体沿第一通道103的长度方向上的长度尺寸L1的取值范围为9-50mm,更优选的取值范围为12-30mm,更具体的取值为大概16mm;第一连接件本体沿第一通道103的宽度方向上的宽度尺寸W1的取值范围为3-25mm,更优选的取值范围为5-18mm,更具体的取值为大概8mm;第一连接件本体沿第二通道104的长度方向上的长度尺寸W2的取值范围为3-30mm,更优选的取值范围为6-20mm,更具体的取值为大概12.5mm;第一连接件本体沿第二通道104的宽度方向上的宽度尺寸L2的取值范围为3-25mm,更优选的取值范围为5-18mm,更具体的取值为大概8mm。
另外,如图30所示,第二连接件200的整体长度尺寸的取值范围为6-30mm,更优选的取值范围为10-25mm,更具体的取值为大概15.5mm。锁紧台阶202到定位部203之间的距离的取值范围为3-20mm,更优选的取值范围为5-15mm,更具体的取值为大概7mm。
随着木工机械中的六面钻技术不断成熟和在市面上普及使用,可以采用六面钻技术对第一构件500的侧面加工有第一安装槽501,加工精度高且加工效率快,极大地推进了本发明实施例1的连接组件在家具行业上的使用。例如采用一个8mm的刀具对第一构件500的侧面加工有一个第一安装槽501及第一连接孔5012,又例如同时采用四个8mm的刀具分别对第一构件500的两侧分别加工有两个第一安装槽501及第一连接孔5012,精度高且效率快,便于第一构件500通过本实施例1的连接 组件对第二构件600完成相互连接。
另外,还可以采用其他加工方式在第一构件500的侧面加工有第一安装槽501,例如采用一个刀具在第一构件500的侧面逐步铣出多个第一安装槽501等,此处不作限定。
实施例2
如图34-40、57-66所示,本实施例2公开了一种连接组件,其采用包括上述实施例1的第一连接件100及第二连接件200,此外还包括第三连接件400。其中,本实施例2的第一连接件100及第二连接件200的具体结构请参考上述实施例1,此处省略描述。
具体地,本实施例2的连接组件包括一个第一连接件100、两个第二连接件200以及一个第三连接件400,第三连接件400具有相连接的第四表面401及第五表面402,第四表面401上开设有横向延伸并与连接部201配合滑动的第三通道403,第三通道403的一端贯穿于第五表面402以形成第二通入口4031,第三通道403的另一端为第二封闭端4035;其中,两个第二连接件200分别与第一连接件100及第三连接件400一一对应连接。具体地,其中一个第二连接件200的连接部201先滑动至第三通道403中任意位置,以使另一个第二连接件200的连接部201能通过第一通入口1041滑入第二通中,后另一个第二连接件200的连接部201滑动至第一通道103中任意位置,通过两个第二连接件200分别与第一连接件100和第三连接件400之间的连接,从而实现第一构件500与第二构件600之间稳定连接。例如其中一个第二连接件200的连接部201可以滑动至第三通道403的中部,或者又例如连接部201可以滑动至第二封闭端4035或接近第二封闭端4035;例如另一个第二连接件200的连接部201可以滑动至第一通道103的中部,或者滑动至第一封闭端1031或接近第一封闭端1031。由于本实施例2的第一封闭段及第二封闭端4035均呈封闭状,当其中一个第二连接件200的连接部201滑动至第一封闭端1031或接近第一封闭端1031、另一个第二连接件200的连接部201滑动至第二封闭端4035或接近第二封闭端4035时,第一构件500承受载荷的 作用力分别位于第一封闭端1031处或接近第一封闭端1031、以及第二封闭端4035处或接近第二封闭端4035,使得两个第二连接件200的连接部201对第一连接件100的承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好。本发明实施例2避免了在第一构件500的表面上开设长度尺寸较大的横向沟槽,避免了第一构件500因长度尺寸较大的横向沟槽而导致承载能力降低的问题,由此解决了现有技术中采用平推式隐形连接件后的第一构件500存在承载能力不足或受限的技术问题。同时保证了第一构件500的美观性,贴合使用者的审美观。
需要说明的是,本实施例2的横向与上述实施例1的横向方向相同。
进一步地,第三表面106及第四表面401可以为平面或弧面或曲面等。
在本实施例2的一些实施方式中,如图34-40所示,第三连接件400具有第三内侧壁4033,第三内侧壁4033上设有至少一个第三凸沿4032,该第三凸沿4032用于与连接部201的锁紧台阶202相抵紧以限制连接部201从第三通道403中拔出,以使第二连接件200与第三连接件400相互连接。例如,第三凸沿4032呈条状,可以一个呈条状的第三凸沿4032连续性地设于第三通道403的内侧,还可以多个呈条状的第三凸沿4032间断性地依次设于第三通道403的内侧。又例如,第三凸沿4032呈块状或点状,多个呈块状或点状的第三凸沿4032依次间断性地设于第三通道403的内侧。
第二封闭端4035上设有至少一个第三凸沿4032。当连接部201滑动至第二封闭端4035处或接近第二封闭端4035时,连接部201与第三凸沿4032相抵紧以限制连接部201从第三通道403中拔出,以使第三连接件400与第二连接件200相互连接。
在本实施例2的一些实施方式中,如图34-40所示,第三连接件400上靠近第二封闭端4035位置处设有与定位部203配合定位的第二定位台阶4036。当连接部201滑动至第二封闭段或接近第二封闭端4035时,第二定位凸台用于抵接至定位部203以起到定位作用,避免连接部201 与第二封闭端4035之间发生刚性碰撞而发生磨损,保护第二连接件200或第三连接件400。
在一些实施方式中,如图34-40所示,第三凸沿4032上靠近第二封闭端4035的位置处设有至少一个第二限位凸点4032a,第二限位凸点4032a用于将第二连接件200的连接部201限制于第二封闭端4035或接近第二封闭端4035处。其中本实施例2的第二限位凸点4032a的结构、形状、以及工作原理与上述实施例1的第一限位凸点1032a相同,故此处省略描述。
在一些实施方式中,如图34-40所示,第三连接件400上靠近第二封闭端4035的外侧面为圆弧面。由于第一构件500的表面需要开设有用于安装第三连接件400的第二安装槽502,如此使第三连接件400上靠近第二封闭端4035的外侧面为圆弧面能够减小第二安装槽502上靠近第二封闭端4035的宽度,从而使第一构件500的承载能力更大。同时使第一构件500通过设计出第二安装槽502和第二封闭端4035的外侧面圆弧面相适配的圆弧面,以使相对增加第一构件500的纵向承载厚度,使第一构件500所承受的纵向下的承载能力更大。
进一步地,如图34、36-38所示,第三连接件400具有背对第四表面401的第六表面404。在本发明实施例2中,第三连接件400可以通过可拆卸方式或不可拆卸方式安装于第一构件500的第二安装槽502中。其中本实施例2的第三连接件400安装于第二安装槽502的安装方式与上述第一连接件100安装于第一安装槽501的安装方式相同,例如第六表面404上设有至少一个第二安装柱4041;又例如第二安装柱4041的外表面设有至少一个第三倒钩4042;又例如第三连接件400的外侧壁设有至少一个第四倒钩405;又例如第三连接件400开设有第二安装孔406等,具体请参考上述实施例1。
此外,本实施例2的连接组件还包括上述实施例1的止动件300,止动件300从第一安装口5011及第一通入口1041插入第二通道104,并使止动件300的第三端301插到第一通道103与第二通道104的连通处并使 止动件300的至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动,从而确保第一构件500与第二构件600在连接状态时防止连接部201在第一通道103中移动,提高第一构件500与第二构件600之间的连接稳定性。
基于上述连接组件的结构,如图57-66所示,可以通过上述连接组件来实现第一构件500与第二构件600之间的连接,以形成一个连接系统,连接系统包括第一构件500、第二构件600、第一连接件100、第二连接件200及第三连接件400,第二连接件200的数量为两个;其中,第一构件500的侧面上开设有第二安装槽502,第二安装槽502的一侧贯穿于第一构件500的前端以形成第二安装口5021,第三连接件400安装于第二安装槽502中,第四表面401朝向第二安装槽502的槽口并使第三通道403与外界连通;且第三通道403依次通过第二通入口4031及第二安装口5021与外界连通;第一构件500的侧面上位于第二安装槽502的后侧开设有第一安装槽501,第一安装槽501的一侧贯穿于第一构件500的下表面以形成第一安装口5011;第一连接件100安装于第一安装槽501中,第一表面101朝向第一安装槽501的槽口并使第一通道103和第二通道104与外界连通;且第二通道104依次通过第一通入口1041及第一安装口5011与外界连通,第一连接件100的至少一个封闭端位于第二通道104的后侧;两个第二连接件200沿前后依次间隔安装于第二构件600上,两个第二连接件200的连接部201均突设于第二构件600的表面;其中,位于前端的第二连接件200的连接部201依次从第二安装口5021及第二通入口4031滑入第三通道403中,位于后端的第二连接件200的连接部201依次从第一安装口5011及第一通入口1041滑入第二通道104中。
通过其中一个第二连接件200的连接部201滑动至第一封闭端1031或接近第一封闭端1031、另一个第二连接件200的连接部201滑动至第二封闭端4035或接近第二封闭端4035时,第一构件500承受载荷的作用力分别位于第一封闭端1031处或接近第一封闭端1031、以及第二封闭端4035处或接近第二封闭端4035,使得两个第二连接件200的连接部 201对第一连接件100的承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好,由此解决了现有技术中采用平推式隐形连接件后的第一构件500存在承载能力不足或受限的技术问题。同时,本发明实施例2避免了在第一构件500的表面上开设长度尺寸较大的横向沟槽,避免了第一构件500因横向沟槽而导致承载能力降低的问题,同时保证了第一构件500的美观性,贴合使用者的审美观。
进一步地,上述连接系统还包括止动件300,止动件300从第一通入口1041插设于第二通道104中,止动件300的第三端301位于第一通道103与第二通道104的连通处并且止动件300的至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动,从而确保第一构件500与第二构件600在连接状态时防止连接部201在第一通道103中移动,提高第一构件500与第二构件600之间的连接稳定性。
进一步为了确保第一构件500与第二构件600隐形式连接,在一些实施方式中,第一表面101与第一构件500的侧面位于同一平面,或者第一表面101位于第一安装槽501内;第四表面401与第一构件500的侧面位于同一平面,或者第四表面401位于第二安装槽502内。在另一些实施方式中,第二表面102与第一构件500的下表面位于同一平面,或者第二表面102位于第一安装槽501内;第五表面402与第一构件500的前端面位于同一平面,或者第五表面402位于第二安装槽502内。
在一些实施方式中,如图57-66所示,基于上述连接组件的结构,采用上述连接组件实现第一构件500与第二构件600的安装方式具体如下:
S1、在第一构件500的左、右两侧的前端分别加工有第二安装槽502,并使各第二安装槽502的一侧加工至第一构件500的前端面以形成第二安装口5021,将两个第三连接件400分别安装于两个第二安装槽502中,并使第四表面401朝向第二安装槽502的槽口并使第三通道403与外界连通;第三通道403依次通过第二通入口4031及第二安装口5021与外界连通;
例如,当第三连接件400设有第二安装柱4041时,第二安装槽502中开设有与第二安装柱4041配合连接的第二连接孔5022。
S2、在第一构件500的左、右两侧位于第二安装槽502的后侧分别加工有第一安装槽501,并使各第一安装槽501的一侧加工至第一构件500的底侧以形成第一安装口5011,将两个第一连接件100分别安装于两个第一安装槽501中,并使第一表面101朝向第一安装槽501的槽口并使第一通道103和第二通道104与外界连通;第二通道104依次通过第一通入口1041及第一安装口5011与外界连通;
例如,当第一连接件100设有第一安装柱1061时,第一安装槽501中开设有与第一安装柱1061配合连接的第一连接孔5012。
S3、将两个第二构件600相对间隔放置,分别在两个第二构件600相向的表面上分别沿前后两侧依次安装有第二连接件200,并使各第二连接件200的连接部201突设于第二构件600的表面;
S4、将第一构件500放在两个第二构件600之间,并使第一构件500的的左、右两侧分别与两个第二构件600相对应;
S5、将第一构件500前端倾斜向下放置,驱动第一构件500倾斜向下移动,并使第一构件500左、右两侧的第三连接件400的第二通入口4031分别插入的第二构件600上前端两个第二连接件200的连接部201,待两个第二构件600上位于前端的第二连接件200的连接部201分别在第三通道403移动一定距离后,驱动第一构件500绕其前端转动,使第一构件500左、右两侧的第一连接件100的第一通入口1041分别插入位于第二构件600上后端的两个第二连接件200的连接部201,待两个第二构件600上位于后端的第二连接件200的连接部201分别移动到第一通道103与第二通道104连通处时,驱动第一构件500横向向前移动,以使两个第二构件600上位于前端的两个第二连接件200分别进一步滑入第三通道403、两个第二构件600上位于后端的两个第二连接件200的连接部201分别滑入两个第一连接件100的第一通道103。例如,驱动第一构件500横向移动以使位于后端的第二连接件200的连接部201移动至第 一封闭端1031或接近述第一封闭端1031,由于第一封闭端1031的结构强度比第一通道103的中部或第一通道103的其他位置都要大,当连接部201滑动至第一封闭端1031或接近第一封闭端1031时,第一构件500承受载荷的作用力位于第一封闭端1031处或接近第一封闭端1031,使得第一连接件100对的连接部201承载力更强,第一构件500能够承受更大的载荷,连接稳定性更好。
其中,上述步骤S1、步骤S2及步骤S3同时进行;或步骤S1与步骤S2可对调;或步骤S1与步骤S3可对调;或步骤S2与步骤S3可对调。
其中,第一构件500和两个第二构件600先后安装,或第一构件500和两个第二构件600同时安装。
在一些实施方式中,第一构件500和两个第二构件600先后安装。
进一步地,上述安装方法还包括:
S5、将止动件300从第一安装口5011及第一通入口1041插入第二通道104,并使止动件300的第三端301插到第一通道103与第二通道104的连通处并使止动件300的至少一部分抵顶至连接部201,以限制连接部201在第一通道103中滑动。
另外,第一构件500的左、右两侧分别设有至少一个第一连接件100,位于左侧的第二构件600设有至少一个与位于第一构件500左侧上的第一连接件100配合连接的第二连接件200,位于右侧的第二构件600设有至少一个与位于第一构件500右侧上的第一连接件100配合连接的第二连接件200。其中,第一构件500的左、右两侧的第一连接件100的数量可以相同或不相同,例如第一构件500的左、右两侧分别设有两个或三个第一连接件100,两个第二构件600分别相应设有两个或三个第二连接件200;又例如第一构件500的左侧设有两个第一连接件100、第一构件500的右侧设有三个第一连接件100,其中位于左侧的第二构件600相应设有两个第二连接件200、位于右侧的第二构件600相应设有三个第二连接件200。
进一步地,本领域技术人员可根据上述安装方法相应推断出第一 构件500与第二构件600之间的拆分方法,故此处省略描述。使用者可以根据使用需求通过控制第一连接件100与第二连接件200的拆分后,将第一构件500从第二构件600上拆下后重新调整第一构件500在第二构件600上的位置,以满足使用者的使用需求,拆装方便快捷。
作为本实施例2的连接组件的一种具体应用方式,本实施例2的第一构件500为层板、第二构件600为侧板,可以在层板的两侧分别安装有至少一个第一连接件100,在两个侧板上分别安装有多个沿上下方向排布的第二连接件200,根据上述安装方法以实现层板的两侧分别与两个侧板之间稳定连接,具有较大的承载能力,且层板的拆卸方便快捷,然后根据侧板的多个第二连接件200的位置来调整第一构件500在第二构件600上的位置,以满足使用者的使用需求。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (60)

  1. 一种第一连接件,其特征在于,包括第一连接件本体,所述第一连接件本体具有相连接的第一表面及第二表面,所述第一连接件本体的第一表面上开设有横向延伸的第一通道及纵向延伸的第二通道,所述第二通道沿纵向延伸的第一端与所述第一通道相连通,所述第二通道沿纵向延伸的第二端贯穿于所述第一连接件本体的第二表面以形成第一通入口;在沿横向方向上,所述第一通道的至少一端为第一封闭端;
    所述第一通道及所述第二通道限定形成用于与第二连接件连接的安装通道。
  2. 如权利要求1所述的第一连接件,其特征在于,所述第一通道的内侧上设有至少一个第一凸沿。
  3. 如权利要求2所述的第一连接件,其特征在于,所述第一通道具有沿横向延伸的第一内侧壁,所述第一内侧壁上设有至少一个所述第一凸沿,且所述第一凸沿横向延伸。
  4. 如权利要求3所述的第一连接件,其特征在于,所述第一通道还具有沿横向延伸的第一底壁;设定所述第一凸沿上靠近所述第一封闭端并与所述第一底壁相对的一侧与所述第一表面的距离为D1,设定所述第一凸沿上靠近所述第一通道与所述第二通道的连通处并与所述第一底壁相对的一侧与所述第一表面的距离为D2,其中,D1>D2。
  5. 如权利要求2所述的第一连接件,其特征在于,所述第一封闭端上设有至少一个所述第一凸沿。
  6. 如权利要求1所述的第一连接件,其特征在于,所述第二通道具有沿纵向延伸的第二内侧壁,所述第二内侧壁上设有至少一个第二凸沿。
  7. 如权利要求1所述的第一连接件,其特征在于,所述第二通道具有沿纵向延伸的第二底壁,所述第一通道具有沿横向延伸的第一底 壁,所述第一底壁与所述第二底壁相连接。
  8. 如权利要求2所述的第一连接件,其特征在于,所述第一凸沿上靠近所述第一封闭端的位置处设有至少一个第一限位凸点,所述第一限位凸点用于将第二连接件限制于所述第一封闭端或接近所述第一封闭端处。
  9. 如权利要求1所述的第一连接件,其特征在于,所述第一表面上靠近所述第一封闭端的位置处设有第一定位台阶。
  10. 如权利要求1所述的第一连接件,其特征在于,所述第一连接件本体上靠近所述第一封闭端的外侧面为圆弧面。
  11. 如权利要求1所述的第一连接件,其特征在于,所述第二通道沿纵向延伸的第一端与所述第一通道沿横向延伸的一端相连通,所述第一通道沿横向延伸的另一端为所述第一封闭端。
  12. 如权利要求11所述的第一连接件,其特征在于,所述第一连接件本体上靠近所述第一通道及所述第二通道的连通处的外转角的外侧面为圆弧面。
  13. 如权利要求1所述的第一连接件,其特征在于,所述第二道通沿纵向延伸的第一端与所述第一通道沿横向延伸的中部相连通;
    在沿横向方向上,所述第一通道的两端分别为所述第一封闭端;或,在沿横向方向上,所述第一通道的其中一端为所述第一封闭端,另一端带有开口。
  14. 如权利要求13所述的第一连接件,其特征在于,所述第一通道的两端关于所述第二通道轴对称设置。
  15. 如权利要求1所述的第一连接件,其特征在于,所述第一表面上位于所述第一通道的外部下方并位于所述第二通道的外部侧方的位置处形成有凹陷部。
  16. 如利要求1所述的第一连接件,其特征在于,所述第二通道纵向延伸的第一端端部穿过所述第一通道以突出于所述第一通道外。
  17. 如利要求1所述的第一连接件,其特征在于,所述第一连接 件本体具有背对所述第一表面的第三表面,所述第三表面上与第一通道相对应的位置处向外延伸,以使所述第一连接件本体上设有第一通道的部分与所述第一连接件本体设有第二通道的部分之间形成台阶状。
  18. 如权利要求1所述的第一连接件,其特征在于,所述第一连接件本体具有背对所述第一表面的第三表面,所述第三表面上设有至少一个第一安装柱。
  19. 如权利要求18所述的第一连接件,其特征在于,所述第一安装柱的外表面设有至少一个第一倒钩。
  20. 如权利要求1所述的第一连接件,其特征在于,所述第一连接件本体的外侧壁上设有至少一个第二倒钩。
  21. 如权利要求1所述的第一连接件,其特征在于,所述第一连接件本体开设有第一安装孔。
  22. 如权利要求1所述的第一连接件,其特征在于,所述第一连接件本体为塑料材质。
  23. 一种连接组件,其特征在于,包括如权利要求1-22任一项所述的第一连接件、以及第二连接件,所述第二连接件包括连接部,所述连接部能够从所述第一通入口滑入并相对所述第一封闭端滑动,所述连接部滑动至所述第一通道中。
  24. 如权利要求23所述的连接组件,其特征在于,所述连接部滑动至所述第一封闭端或接近所述第一封闭端。
  25. 如权利要求23所述的连接组件,其特征在于,所述第二连接件为螺栓或螺钉或销钉。
  26. 如权利要求23所述的连接组件,其特征在于,所述连接部设有锁紧台阶,所述第一通道的内侧上设有至少一个第一凸沿;
    当所述连接部滑动至所述第一通道中时,所述锁紧台阶与所述第一凸沿相抵紧以限制所述连接部从所述第一通道中拔出。
  27. 如权利要求23所述的连接组件,其特征在于,所述第一表面上靠近所述第一封闭端的位置处设有第一定位台阶,所述第二连接件 设有与所述第一定位台阶配合定位的定位部。
  28. 如权利要求27所述的连接组件,其特征在于,所述定位部贴合于所述第一表面。
  29. 如权利要求26所述的连接组件,其特征在于,所述第二通道具有沿纵向延伸的第二内侧壁,所述第二内侧壁上设有至少一个第二凸沿;
    当所述连接部滑动于所述第二通道中时,所述锁紧台阶与所述第二凸沿相抵紧以限制所述连接部从所述第二通道中拔出。
  30. 如权利要求23所述的连接组件,其特征在于,还包括止动件,所述止动件具有相对的第三端和第四端;所述止动件从所述第一通入口插设于所述第二通道中,所述止动件的第三端位于所述第一通道与所述第二通道的连通处并至少一部分抵顶至所述连接部,以限制所述连接部在所述第一通道中滑动。
  31. 如权利要求30所述的连接组件,其特征在于,所述止动件的第四端设有遮盖围挡。
  32. 如权利要求23-31任一项所述的连接组件,其特征在于,还包括第三连接件,所述第三连接件具有相连接的第四表面及第五表面,所述第四表面上开设有横向延伸并与所述连接部配合滑动的第三通道,所述第三通道的一端贯穿于所述第五表面以形成所述第二通入口,所述第三通道的另一端为第二封闭端;
    所述第二连接件的数量为两个,两个所述第二连接件分别与所述第一连接件及所述第三连接件一一对应连接。
  33. 如权利要求32所述的连接组件,其特征在于,所述第三连接件具有第三内侧壁,所述第三内侧壁上设有至少一个第三凸沿,所述连接部设有锁紧台阶;
    当所述连接部滑动于所述第三通道中时,所述锁紧台阶与所述第三凸沿相抵紧以限制所述连接部从所述第三通道中拔出。
  34. 如权利要求32所述的连接组件,其特征在于,所述第三连接 件上靠近所述第二封闭端位置处设有第二定位台阶。
  35. 如权利要求32所述的连接组件,其特征在于,所述第三连接件具有背对所述第四表面的第六表面,所述第六表面上设有至少一个第二安装柱。
  36. 如权利要求35所述的连接组件,其特征在于,所述第二安装柱的外表面设有至少一个第三倒钩。
  37. 如权利要求32所述的连接组件,其特征在于,所述第三连接件的外侧壁设有至少一个第四倒钩。
  38. 如权利要求32所述的连接组件,其特征在于,所述第三连接件开设有第二安装孔。
  39. 如权利要求32所述的连接组件,其特征在于,所述第三连接件上靠近所述第二封闭端的外侧面为圆弧面。
  40. 一种连接系统,其特征在于,包括第一构件、第二构件、以及如权利要求23-29任一项所述的连接组件;
    所述第一构件的侧面上开设有第一安装槽,所述第一安装槽的一侧贯穿于所述第一构件的下表面以形成第一安装口;所述第一连接件安装于所述第一安装槽中,所述第一表面朝向所述第一安装槽的槽口并使所述第一通道和所述第二通道与外界连通;且所述第二通道依次通过第一通入口及所述第一安装口与外界连通;
    所述第二连接件安装于所述第二构件上,所述连接部突设于所述第二构件的表面;
    其中,所述连接部依次从所述第一安装口及所述第一通入口滑入所述第二通道中,所述连接部沿所述第二通道滑动并滑入至所述第一通道中。
  41. 如权利要求40所述的连接系统,其特征在于,还包括止动件,所述止动件具有相对的第三端和第四端;所述止动件从所述第一通入口插设于所述第二通道中,所述止动件的第三端位于所述第一通道与所述第二通道的连通处并至少一部分抵顶至所述连接部,以限制所述 连接部在所述第一通道中滑动。
  42. 如权利要求40所述的连接系统,其特征在于,所述第二表面与所述第一构件的下表面位于同一平面,或者所述第二表面位于所述第一安装槽内。
  43. 如权利要求40所述的连接系统,其特征在于,所述第一表面与所述第一构件的侧面位于同一平面,或者所述第一表面位于所述第一安装槽内。
  44. 如权利要求40所述的连接系统,其特征在于,所述第二连接件具有与所述连接部相对置的安装部,所述安装部用于连接在所述第二构件上;所述第二连接件设有定位部;
    当所述第二连接件安装于所述第二构件时,所述定位部贴合于所述第二构件的表面。
  45. 一种连接系统,其特征在于,包括第一构件、第二构件、以及如权利要求32-39任一项所述的连接组件,
    所述第一构件的侧面上开设有第二安装槽,所述第二安装槽的一侧贯穿于所述第一构件的前端以形成第二安装口,所述第三连接件安装于所述第二安装槽中,所述第四表面朝向所述第二安装槽的槽口并使所述第三通道与外界连通;且所述第三通道依次通过第二通入口及所述第二安装口与外界连通;
    所述第一构件的侧面上位于所述第二安装槽的后侧开设有第一安装槽,所述第一安装槽的一侧贯穿于所述第一构件的下表面以形成第一安装口;所述第一连接件安装于所述第一安装槽中,所述第一表面朝向所述第一安装槽的槽口并使所述第一通道和所述第二通道与外界连通;且所述第二通道依次通过第一通入口及所述第一安装口与外界连通,所述第一连接件的至少一个封闭端位于所述第二通道的后侧;
    两个所述第二连接件沿前后依次间隔安装于所述第二构件上,两个所述第二连接件的连接部均突设于所述第二构件的表面;
    其中,位于前端的第二连接件的连接部依次从所述第二安装口及 所述第二通入口滑入所述第三通道中,位于后端的第二连接件的连接部依次从所述第一安装口及所述第一通入口滑入所述第二通道中。
  46. 如权利要求45所述的连接系统,其特征在于,还包括止动件,所述止动件具有相对的第三端和第四端;所述止动件从所述第一安装口及所述第一通入口插设于所述第二通道中,所述止动件的第三端位于所述第一通道与所述第二通道的连通处并使所述止动件至少一部分抵顶至所述连接部,以限制所述连接部在所述第一通道中滑动。
  47. 如权利要求45所述的连接系统,其特征在于,所述第一表面与所述第一构件的侧面位于同一平面,或者所述第一表面位于所述第一安装槽内;
    所述第四表面与所述第一构件的侧面位于同一平面,或者所述第四表面位于所述第二安装槽内。
  48. 如权利要求45所述的连接系统,其特征在于,所述第二表面与所述第一构件的下表面位于同一平面,或者所述第二表面位于所述第一安装槽内;
    所述第五表面与所述第一构件的前端面位于同一平面,或者所述第五表面位于所述第二安装槽内。
  49. 一种应用于如23-29任一项所述的连接组件的安装方法,其特征在于,包括以下步骤:
    S1、在第一构件的左、右两侧分别加工有第一安装槽,并使各第一安装槽的一侧加工至第一构件的底侧以形成第一安装口,将两个第一连接件分别安装于两个第一安装槽中,并使第一表面朝向第一安装槽的槽口并使第一通道和第二通道与外界连通,第二通道依次通过第一通入口及第一安装口与外界连通;
    S2、将两个第二构件相对间隔放置,分别在两个第二构件相向的表面上分别安装有第二连接件,并使各第二连接件的连接部突设于第二构件的表面;
    S3、将第一构件放在两个第二构件之间,并使第一构件的左、右两 侧分别与两个第二构件相对应;
    S4、驱动第一构件纵向移动,分别使两个第二连接件的连接部分别依次从两个第一安装口及第一通入口滑入两个第一连接件的第二通道中;当第二连接件滑动至第一通道及第二通道的连通处时,驱动第一构件横向移动,以使两个第二连接件的连接部分别滑入两个第一连接件的第一通道。
  50. 如权利要求49所述的安装方法,其特征在于,步骤S1和步骤S2同时进行,或步骤S1与步骤S2可对调。
  51. 如权利要求49所述的安装方法,其特征在于,所述第一构件和两个所述第二构件先后安装,或所述第一构件和两个所述第二构件同时安装。
  52. 如权利要求49所述的安装方法,其特征在于,步骤S4还包括:
    驱动第一构件横向移动以使第二连接件的连接部移动至第一封闭端或接近述第一封闭端。
  53. 如权利要求49所述的安装方法,其特征在于,还包括:
    S5、将止动件从第一安装口及第一通入口插入第二通道,并使止动件的第三端插到第一通道与第二通道的连通处并使止动件的至少一部分抵顶至连接部,以限制连接部在第一通道中滑动;其中,止动件具有相对的第三端和第四端。
  54. 如权利要求49-53任一项所述的安装方法,其特征在于,所述第一构件的左、右两侧分别设有至少一个所述第一连接件,位于左侧的所述第二构件设有至少一个与位于所述第一构件左侧上的第一连接件配合连接的所述第二连接件,位于右侧的所述第二构件设有至少一个与位于所述第一构件右侧上的第一连接件配合连接的所述第二连接件。
  55. 一种应用于如32-39任一项所述的连接组件的安装方法,其特征在于,包括以下步骤:
    S1、在第一构件的左、右两侧的前端分别加工有第二安装槽,并使各第二安装槽的一侧加工至第一构件的前端面以形成第二安装口,将两个第三连接件分别安装于两个第二安装槽中,并使第四表面朝向第二安装槽的槽口并使第三通道与外界连通;第三通道依次通过第二通入口及第二安装口与外界连通;
    S2、在第一构件的左、右两侧位于第二安装槽的后侧分别加工有第一安装槽,并使各第一安装槽的一侧加工至第一构件的底侧以形成第一安装口,将两个第一连接件分别安装于两个第一安装槽中,并使第一表面朝向第一安装槽的槽口并使第一通道和第二通道与外界连通;第二通道依次通过第一通入口及第一安装口与外界连通;
    S3、将两个第二构件相对间隔放置,分别在两个第二构件相向的表面上分别沿前后两侧依次安装有第二连接件,并使各第二连接件的连接部突设于第二构件的表面;
    S4、将第一构件放在两个第二构件之间,并使第一构件的的左、右两侧分别与两个第二构件相对应;
    S5、将第一构件前端倾斜向下放置,驱动第一构件倾斜向下移动,并使第一构件左、右两侧的第三连接件的第二通入口分别插入的第二构件上前端两个第二连接件的连接部,待两个第二构件上位于前端的第二连接件的连接部分别在第三通道移动一定距离后,驱动第一构件绕其前端转动,使第一构件左、右两侧的第一连接件的第一通入口分别插入位于第二构件上后端的两个第二连接件的连接部,待两个第二构件上位于后端的第二连接件的连接部分别移动到第一通道与第二通道连通处时,驱动第一构件横向向前移动,以使两个第二构件上位于前端的两个第二连接件分别进一步滑入第三通道、两个第二构件上位于后端的两个第二连接件的连接部分别滑入两个第一连接件的第一通道。
  56. 如权利要求55所述的安装方法,其特征在于,步骤S1、步骤S2及步骤S3同时进行;或步骤S1与步骤S2可对调;或步骤S1与步 骤S3可对调;或步骤S2与步骤S3可对调。
  57. 如权利要求55所述的安装方法,其特征在于,所述第一构件和两个所述第二构件先后安装,或所述第一构件和两个所述第二构件同时安装。
  58. 如权利要求55所述的安装方法,其特征在于,步骤S5还包括:
    驱动第一构件横向向前移动以使第二连接件的连接部移动至第一封闭端或接近述第一封闭端。
  59. 如权利要求55所述的安装方法,其特征在于,还包括:
    S6、将止动件从第一安装口及第一通入口插入第二通道,并使止动件的第三端插到第一通道与第二通道的连通处并使止动件的至少一部分抵顶至连接部,以限制连接部在第一通道中滑动;其中,止动件具有相对的第三端和第四端。
  60. 如权利要求55-59任一项所述的安装方法,其特征在于,所述第一构件的左、右两侧分别设有至少一个所述第一连接件,位于左侧的所述第二构件设有至少一个与位于所述第一构件左侧上的第一连接件配合连接的所述第二连接件,位于右侧的所述第二构件设有至少一个与位于所述第一构件右侧上的第一连接件配合连接的所述第二连接件。
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