CN214156550U - Office table and partition assembly thereof - Google Patents

Office table and partition assembly thereof Download PDF

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Publication number
CN214156550U
CN214156550U CN202023103876.9U CN202023103876U CN214156550U CN 214156550 U CN214156550 U CN 214156550U CN 202023103876 U CN202023103876 U CN 202023103876U CN 214156550 U CN214156550 U CN 214156550U
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functional
sliding groove
sliding
rod
rods
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CN202023103876.9U
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徐小干
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Hangzhou Xiaogan Technology Co.,Ltd.
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Hangzhou Xiaogan Industrial Design Co ltd
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Abstract

The utility model relates to an office table field especially relates to an office table and cuts off subassembly thereof. A partition assembly comprises a functional beam and a functional piece detachably connected to the functional beam; the functional beam at least comprises two beam rods which are fixedly arranged relatively, the side faces of the two beam rods are respectively connected with the office desk panel, a gap between the two beam rods forms a first sliding groove which is arranged along the length direction of the beam rods, and the first sliding groove is used for installing and fixing the functional piece and allowing the functional piece to adjust the installation position along the first sliding groove. The functional beam in the partition assembly can adjust the gap between the two beam rods (namely the width of the first sliding chute) according to the requirement, is suitable for various functional parts with different thicknesses and sizes, and increases the selection range of users for the functional parts; and the functional parts or the connecting parts are allowed to have higher fault-tolerant rate in the manufacturing process, the production requirement is reduced, and the yield is improved.

Description

Office table and partition assembly thereof
Technical Field
The utility model relates to an office table field especially relates to an office table and cuts off subassembly thereof.
Background
In order to save space, facilitate layout and save cost, office tables shared by two or more persons are generally adopted at present. In these desks, a beam is typically secured between the two desktops and a partition is directly secured to the beam to completely block the desktop from the crossbeam. The utility model discloses a desk baffle mounting structure that traditional structure can refer to and a publication number is recorded in the chinese utility model patent of "CN 210809779U", belongs to baffle installation technical field, and it has solved current baffle can not remove, dismantle comparatively trouble problem. This baffle mounting structure includes baffle, supporting leg and crossbeam, through setting up mobilizable spout on the crossbeam for the supporting leg can slide in the spout, sets up recess and shrouding simultaneously at crossbeam both ends face, directly takes off the shrouding during the supporting leg installation, and it can to slide in the recess, simple installation, and this baffle mounting structure has that the baffle is portable and the baffle installation, dismantles convenient advantage. The supporting legs are needed in the scheme, and the scheme is troublesome.
The structure adopted at present can refer to a functional beam described in Chinese utility model patent text with the publication number of CN208480793U, which comprises a beam and at least two supporting tubes positioned below the beam; the bottom of crossbeam be equipped with the mounting groove that the stay tube matches, the one side of keeping away from the mounting groove of crossbeam is equipped with the cross slot that link up the crossbeam along length direction. It is corresponding with it, the utility model discloses an office table with function roof beam is including the table body that is equipped with the desktop to and be fixed in the separation structure at desktop middle part, the separation structure includes aforementioned function roof beam and separation piece, separation piece is equipped with the end of inserting that stretches into that matches with the cross slot. The utility model discloses a function roof beam and have desk of function roof beam have increased the variety of the separation structure of desk, simple structure, and the equipment is convenient. The barrier piece lower extreme in this scheme directly inlays the dress in the transverse groove of function roof beam, and the installation is simpler.
However, in the above scheme, the size of the transverse groove of the functional beam is fixed, the size of the functional element installed in the functional beam is limited, and the installation size cannot be adjusted according to actual requirements, so that the selection range of the user for the functional element is greatly limited. Furthermore, the functional beam defined in the above scheme is only provided with a transverse groove for installing the partition, so that the desk provided with the functional beam has a single function.
Disclosure of Invention
In order to solve the above problems, an object of the present invention is to provide a partition assembly, in which a functional beam can adjust a gap (i.e. a width of a first sliding groove) between two beam rods as required, so that the partition assembly is not only suitable for functional parts with different thicknesses and sizes, but also increases a selection range of users for the functional parts; and the functional parts or the connecting parts are allowed to have higher fault-tolerant rate in the manufacturing process, the production requirement is reduced, and the yield is improved.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a partition assembly comprises a functional beam and a functional piece detachably connected to the functional beam; the functional beam at least comprises two beam rods which are fixedly arranged relatively, the side faces of the two beam rods are respectively connected with the office desk panel, a gap between the two beam rods forms a first sliding groove which is arranged along the length direction of the beam rods, and the first sliding groove is used for installing and fixing the functional piece and allowing the functional piece to adjust the installation position along the first sliding groove.
The utility model adopts the technical scheme, which relates to a partition component, wherein a functional beam in the partition component is arranged between two office desk panels to play a supporting role; the user can install on the function beam according to the required function piece.
Be different from prior art's function roof beam, this function roof beam has adopted the mode of two beam pole combinations, and the side of two beam poles is used for connecting fixed office table board respectively, and the clearance between two beam poles constitutes the first spout that sets up along beam pole length direction, and first spout is used for installing the function piece, thereby the function piece also removes its concrete position of adjustment relatively first spout to can adjust according to service environment. Two beam rods in the scheme are generally fixed relatively through a certain structure, so that the width of the first sliding groove can not be changed due to the micro-motion of the office table; in the installation process, the gap between the two beam rods (namely the width of the first sliding groove) can be adjusted according to needs, so that the device is suitable for various functional parts with different thicknesses and sizes, and the selection range of users for the functional parts is enlarged; and the functional parts or the connecting parts are allowed to have higher fault-tolerant rate in the manufacturing process, the production requirement is reduced, and the yield is improved.
Preferably, the functional beam further comprises a bottom plate and two end plates, the lower end parts of the two beam rods are respectively connected to two edges of the bottom plate and form a mounting cavity, and the two end plates are respectively connected to the end parts of the bottom plate and/or the beam rods and cover the cavity openings at the end parts of the mounting cavity. Among this technical scheme, the function roof beam still includes bottom plate and two end plates except two roof beam poles, has constituteed the installation cavity between the three, and wherein bottom plate can play the effect of connecting two fixed roof beam poles at least, and the end plate can play the effect of decorating at least.
Preferably, the socket assembly is installed in the installation cavity, the end plate is provided with a wiring hole, the bottom plate and/or the side surface of the beam rod and/or the top surface of the beam rod are provided with through holes, and the socket panel of the socket assembly penetrates through the through holes to be exposed out of the installation cavity. On the basis that the functional beam described in the above scheme forms a mounting cavity through the bottom plate, the beam rod and the end plate, the scheme further defines that the socket assembly is mounted in the mounting cavity. As is well known, various electric appliances such as computers, printers and the like need to be used in office, and the scheme can well meet the power consumption requirement. More importantly, the socket assembly is hidden in the mounting cavity of the functional beam, so that the wiring is prevented from being exposed, and the functions of safety and attractiveness are achieved.
In practical use, the arrangement position of the jack panel of the socket assembly can be selected according to the requirements and the widths of the bottom plate, the top surface of the beam rod and the side surface.
Preferably, the beam rod is a section bar, and the end plate is provided with an insertion part matched with the cross section of the beam rod; the inserting part of the end plate extends into the end part of the beam rod and is inserted and fixed with the beam rod; the lower end surface of the beam rod is provided with a third sliding chute along the length direction of the beam rod, and two side walls of the third sliding chute are provided with thread teeth; the screw rod penetrates through the bottom plate and is meshed and screwed on the thread teeth on the side wall of the third chute at any position.
In the technical scheme, the beam rod is limited to be a profile piece, the profile is made of a material with a certain section shape, and the beam rod can be cut by adopting the profile piece according to the length of a tabletop which is installed in a matched mode according to actual needs, so that a functional beam with the matched length is installed; and cut at any length, thereby the end plate can be inserted on the end part of the beam rod because the section shape is fixed.
On the basis, a third sliding chute is arranged on the beam rod, and thread teeth are arranged on the third sliding chute and used for connecting a screw rod; therefore, the bottom plate and the beam rod can be fixedly connected at any cutting length of the beam rod.
Preferably, the functional beam further comprises a plurality of connecting pieces, and the connecting pieces are provided with brackets corresponding to the first sliding grooves; when the two end parts of the connecting piece are respectively connected to the two beam rods, the bracket is positioned right below the first sliding groove. In the technical scheme, a connecting piece is arranged to connect two beam rods besides the beam rods connected by the bottom plate; on one hand, the connecting strength is enhanced, and on the other hand, a bracket is arranged on the connecting piece and can be used for supporting the functional piece.
Preferably, the upper end surface of the beam rod is provided with a plurality of second sliding grooves extending along the length direction of the beam rod, and the second sliding grooves are used for installing and fixing the functional part and allowing the functional part to adjust the installation position along the second sliding grooves. In the technical scheme, besides the first sliding groove formed between the two beam rods, a plurality of second sliding grooves are formed in the upper end face of each beam rod. In the case where the first slide groove and the second slide groove are provided, the user can select more functions to be mounted.
On the basis, thread teeth are arranged on two side walls of the first sliding chute and/or the second sliding chute; the thread teeth press the functional part to fix the functional part, or the screw penetrates through the functional part to be meshed and screwed on the thread teeth on the side wall of any position of the first sliding chute and/or the second sliding chute. The two side walls of the first sliding groove and/or the second sliding groove are provided with the thread teeth, so that the clamping device can be used for clamping functional parts and is more stable compared with plane clamping; on the other hand, the screw mounting function part can also be connected.
Preferably, the first chute and/or the second chute are connected with functional parts, and the functional parts comprise partition boards for partitioning spaces, and/or storage racks for storing articles, and/or operation boards for drawing and editing, and/or panels for fixing articles in adsorption, nailing and pasting manners; when the first sliding groove is connected with the operating board or the panel, the partition board and the operating board or the panel form a containing space. When the multifunctional storage rack is used, functional parts can be installed on the first sliding groove or the second sliding groove or on the first sliding groove and the second sliding groove, and the functional parts can be one of the partition board, the storage rack, the operation panel and the panel and can also be other articles with similar functions.
Preferably, a plurality of connecting sliding grooves extending along the length direction of the beam rod are arranged on the side surface of the beam rod, and the connecting sliding grooves are arranged in parallel and are positioned at different heights; the connecting sliding groove can be connected with the office table panel through the connecting assembly, and the connecting assembly can slide along the connecting sliding groove to adjust the installation position. In the technical scheme, the connecting assembly can adopt the existing three-in-one connecting piece, and the office table panel can be connected and fixed with the connecting sliding chute through the connecting assembly; in the scheme, a plurality of connecting chutes are arranged, and one connecting chute can be selected to be connected with the office table panel, so that the height of the office table panel is adjusted.
A desk comprising a partition assembly as described above.
Drawings
Fig. 1 is a schematic view of a partition assembly mounting structure according to embodiment 1.
Fig. 2 is an exploded view of the structure of the functional beam.
Fig. 3 is a schematic view of the connection of the bottom plate and the beam rod.
Fig. 4 is a structural sectional view of the functional beam.
Fig. 5 is a first structural diagram of the connecting piece.
Fig. 6 is a second schematic structural diagram of the connecting member.
Fig. 7 is a schematic view of a desk according to embodiment 2.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, unless otherwise specified, "a plurality" means two or more unless explicitly defined otherwise.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In the present disclosure, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may comprise direct contact between the first and second features, or may comprise contact between the first and second features not directly. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
Example 1:
as shown in fig. 1 to 6, the present embodiment relates to a partition assembly, which includes a functional beam 1 and a functional member 2 detachably connected to the functional beam 1. The technical scheme relates to a partition component, wherein a functional beam 1 in the partition component is used for being arranged between two office table panels 3 and plays a role in supporting. The user can mount the function member 2 on the function beam 1 as desired. The functional beam 1 comprises a bottom plate 11, two end plates 12, at least two beams 13 and a plurality of connecting members 14, which are only described in the embodiment with the two beams 13 shown in the drawings, and those skilled in the art can adopt three or more beams 13 on the basis. In the scheme, two beam rods 13 are connected through a bottom plate 11 and a plurality of connecting pieces 14 to realize the relative fixed arrangement of the two.
The side surfaces of the two beam rods 13 are respectively connected with the office table panel 3 in any mode; in this embodiment, the following structure is adopted: a plurality of connecting sliding grooves 131 extending along the length direction of the beam rod 13 are formed in the side surface of the beam rod, and the connecting sliding grooves 131 are arranged in parallel and are located at different heights. The connecting sliding groove 131 can be connected to the desk top 3 through a connecting assembly, and the connecting assembly can slide along the connecting sliding groove 131 to adjust the installation position. The connecting assembly in the technical scheme can adopt the existing three-in-one connecting piece, and the office table top panel 3 and the connecting sliding groove 131 can be fixedly connected through the connecting assembly. In this embodiment, a plurality of connecting sliding grooves 131 are provided, and one of the connecting sliding grooves 131 can be selected to connect with the desk top panel 3, so as to adjust the height thereof.
The gap between the two beam rods 13 forms a first sliding groove 132 arranged along the length direction of the beam rods 13, and the first sliding groove 132 is used for installing and fixing the functional part 2 and allowing the functional part 2 to adjust the installation position along the first sliding groove 132. Different from the functional beam 1 in the prior art, the functional beam 1 adopts a mode of combining two beam rods 13, the side surfaces of the two beam rods 13 are respectively connected and fixed with the office table top board 3, a gap between the two beam rods 13 forms a first sliding groove 132 arranged along the length direction of the beam rods 13, the first sliding groove 132 is used for installing the functional part 2, and the functional part 2 moves relative to the first sliding groove 132 so as to adjust the specific position thereof, so that the functional part can be adjusted according to the use environment. The two beams 13 in the above solution generally need to be fixed relatively by a certain structure, so that the width of the first sliding slot 132 will not change due to the slight movement of the desk. However, in the installation process, the gap between the two beam rods 13, that is, the width of the first sliding groove 132, can be adjusted as required, so that the multifunctional component 2 is not only suitable for various functional components 2 with different thicknesses and sizes, but also the selection range of users for the functional components 2 is increased. And the functional element 2 or the connecting element 14 is allowed to have larger fault tolerance rate in manufacturing, the production requirement is reduced, and the yield is improved.
In addition, the upper end surface of the beam rod 13 is provided with a plurality of second sliding grooves 133 extending along the length direction of the beam rod, and the second sliding grooves 133 are used for installing and fixing the functional part 2 and allowing the functional part 2 to adjust the installation position along the second sliding grooves 133. In this embodiment, in addition to the first slide groove 132 formed between the two beam rods 13, a plurality of second slide grooves 133 are provided on the upper end surface of the beam rod 13. In the case where the first and second slide grooves 132 and 133 are provided, the user can select more of the functional parts 2 to be mounted. In the above solution, since the second sliding groove 133 is formed on the upper end surface of the beam 13, the second sliding groove 133 needs to be set to a certain depth, generally, a depth of 15mm is adopted; the first sliding groove 132 is formed by a gap between the two beams 13, and there is no depth limitation.
On the basis, two side walls of the first sliding chute 132 and/or the second sliding chute 133 are provided with screw teeth 134. The thread teeth 134 press the functional part 2 to fix the functional part 2, or a screw is engaged and screwed on the thread teeth 134 of the side wall at any position of the first slide groove 132 and/or the second slide groove 133 through the functional part 2. The two side walls of the first sliding groove 132 and/or the second sliding groove 133, which are only possible in this case, are provided with thread teeth 134, which on the one hand can be used to clamp the functional element 2 and are also more stable than a planar clamping. On the other hand, the screw mounting function 2 can also be connected.
The first chute 132 and/or the second chute 133 are connected with a functional part 2, and the functional part 2 comprises a partition 21 for partitioning a space, and/or a storage rack for storing articles, and/or an operation panel 22 for drawing and editing, and/or a panel for fixing articles by adopting adsorption, nailing and pasting. When the first chute 132 is connected to the partition plate 21 and the second chute 133 is connected to the operation panel 22 or the panel, a storage space is formed between the partition plate 21 and the operation panel 22 or the panel. When the multifunctional storage rack is used, the functional part 2 can be only mounted on the first sliding groove 132 or the second sliding groove 133, or both the first sliding groove 132 and the second sliding groove 133, and the functional part 2 can be one of the partition plate 21, the storage rack, the operation plate 22 and the panel, and can also be other objects with similar functions. When the functional element 2 is the partition 21, the operation panel 22 and the panel, the functional element can be fixed in a way that the plate body is clamped by the thread teeth 134; when the functional element 2 is a storage rack [ the rotating disk 23, the lifting rack 24 and the display rack 25 as shown in the figure ], a screw rod can be adopted for fixing.
The connection structure of the functional beam 1 in the scheme is as follows:
the lower end parts of the two beam rods 13 are respectively connected to two edges of the bottom plate 11 and form a mounting cavity 10, and the two end plates 12 are respectively connected to the end parts of the bottom plate 11 and/or the beam rods 13 and cover the cavity opening at the end part of the mounting cavity 10. In this technical scheme, function roof beam 1 still includes bottom plate 11 and two end plates 12 except two roof beam poles 13, has constituteed installation cavity 10 between the three, and bottom plate 11 wherein can play the effect of connecting two fixed roof beam poles 13 at least, and end plate 12 can play the effect of decorating at least. The socket assembly 4 is installed in the installation cavity 10, the end plate 12 is provided with a wiring hole 121, the bottom plate 11 and/or the side surface of the beam rod 13 and/or the top surface of the beam rod 13 is provided with a through hole 135, and the socket panel of the socket assembly 4 penetrates through the through hole 135 to be exposed out of the installation cavity 10. In the functional beam 1 described in the above-mentioned scheme, the base plate 11, the beam 13 and the end plate 12 form a mounting cavity 10, and the scheme here further defines that the socket assembly 4 is mounted in the mounting cavity 10. As is well known, various electric appliances such as computers, printers and the like need to be used in office, and the scheme can well meet the power consumption requirement. More importantly, the installation cavity 10 of the functional beam 1 hides the socket assembly 4 therein, so that the wires are prevented from being exposed, and the functions of safety and attractiveness are achieved.
In actual use, the installation position of the jack panel of the jack module 4 can be selected according to the needs and the widths of the top surface and the side surface of the bottom plate 11 and the beam 13.
The beam rod 13 in the above scheme is a profile member, and the end plate 12 is provided with an insertion part 122 adapted to the cross section of the beam rod 13. The end part of the end plate 12, which extends into the beam 13, is fixed to the beam 13 by plugging. And a third sliding chute 136 is arranged on the lower end surface of the beam rod 13 along the length direction of the beam rod, and thread teeth 134 are arranged on two side walls of the third sliding chute 136. The screw rod penetrates through the bottom plate 11 and is meshed and screwed on the screw thread teeth 134 of the side wall at any position of the third sliding chute 136. The technical scheme limits the beam rod 13 to be a profile piece, the profile is made of materials with certain section shapes, and the beam rod 13 can be cut according to the length of a tabletop which is installed by matching with the profile piece according to actual needs, so that the functional beam 1 with adaptive length is installed. And cut at any length, so that the end plate 12 can be inserted on the end part of the beam rod 13 due to the fixed section shape. On the basis, a third sliding chute 136 is arranged on the beam rod 13, and a thread tooth 134 is arranged on the third sliding chute 136 and is used for connecting a screw rod. Therefore, the bottom plate 11 and the beam rod 13 can be fixedly connected under any cutting length of the beam rod 13.
As shown in fig. 5 and 6, a bracket 141 corresponding to the first sliding groove 132 is provided on the connecting member 14. When the two ends of the connecting member 14 are connected to the two beam rods 13, the bracket 141 is located right below the first sliding groove 132. In the technical scheme, a connecting piece 14 is arranged to connect two beam rods 13 besides the beam rods 13 connected by the bottom plate 11. On the one hand, the strength of the connection is increased, and on the other hand, a bracket 141 is provided on the connecting element 14, which can be used to support the functional element 2. When the partition 21 is inserted into the first sliding groove 132, the bottom of the partition can be supported by the bracket 141 of the connecting element 14, so that the stability of the partition is improved; of course, the bracket 141 may not hold the partition 21, and only needs to ensure that it does not fall off. As shown in fig. 4 and 5, the connecting member 14 is connected to the beam 13 by a screw assembly, a fourth sliding groove 137 is further formed in the bottom surface of the beam 13, and the screw assembly passes through a hole in the end of the connecting member 14 and is connected to the fourth sliding groove 137, so that the connecting purpose of the connecting member 14 and the beam 13 is achieved. As shown in fig. 3 and 6, the two ends of the connecting member are provided with flanges for being snapped into the fourth sliding grooves 137, so as to achieve the purpose of connecting the connecting member 14 with the beam 13.
Finally, considering that the width of the first sliding groove 132 mentioned in the above-mentioned solution can be adjusted as required, the connection position of the bottom plate 11 and the beam 13, and the connection position of the connecting member 14 and the beam 13 in the above-mentioned solution are preferably capable of being adjusted; therefore, under the condition that the connecting device is connected by adopting a screw or a screwing component, strip-shaped holes can be considered to be formed in the bottom plate 11 and the connecting piece 14, so that the connecting device has a certain adjusting function on the basis of connection and fixation.
Example 2:
as shown in fig. 7, the present embodiment relates to a desk including the partition assembly described in embodiment 1.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Although embodiments of the present invention have been shown and described, it is to be understood that the above embodiments are exemplary and should not be construed as limiting the present invention, and that changes, modifications, substitutions and alterations can be made to the above embodiments by those of ordinary skill in the art without departing from the principles and spirit of the present invention.

Claims (10)

1. A partition assembly comprises a functional beam (1) and a functional piece (2) detachably connected to the functional beam (1); the method is characterized in that:
the functional beam (1) at least comprises two beam rods (13) which are fixedly arranged relatively, the side faces of the two beam rods (13) are used for being connected with the office table panel (3) respectively, a gap between the two beam rods (13) forms a first sliding groove (132) which is arranged along the length direction of the beam rods (13), and the first sliding groove (132) is used for installing and fixing the functional piece (2) and allowing the functional piece (2) to be capable of adjusting the installation position along the first sliding groove (132).
2. A partition assembly as recited in claim 1, wherein: the functional beam (1) further comprises a bottom plate (11) and two end plates (12), the lower end portions of the two beam rods (13) are respectively connected to two edges of the bottom plate (11) and form a mounting cavity (10) mutually, and the two end plates (12) are respectively connected and mounted on the end portions of the bottom plate (11) and/or the beam rods (13) and cover the cavity openings of the end portions of the mounting cavity (10).
3. A partition assembly as recited in claim 2, wherein: the mounting structure is characterized in that a socket assembly (4) is mounted in the mounting cavity (10), a wiring hole (121) is formed in the end plate (12), a through hole (135) is formed in the side face of the bottom plate (11) and/or the beam rod (13) and/or the top face of the beam rod (13), and a socket panel of the socket assembly (4) penetrates through the through hole (135) to be exposed out of the mounting cavity (10).
4. A partition assembly as recited in claim 2, wherein: the beam rod (13) is a section bar, and the end plate (12) is provided with an inserting part (122) matched with the section of the beam rod (13); the end part of the insertion part (122) of the end plate (12) extending into the beam rod (13) is inserted and fixed with the beam rod (13); a third sliding chute (136) is formed in the lower end face of the beam rod (13) along the length direction of the beam rod, and thread teeth (134) are arranged on two side walls of the third sliding chute (136); the screw rod penetrates through the bottom plate (11) and is meshed and screwed on the thread teeth (134) of the side wall at any position of the third sliding chute (136).
5. A partition assembly as recited in claim 2, wherein: the functional beam (1) further comprises a plurality of connecting pieces (14), and brackets (141) corresponding to the first sliding grooves (132) are arranged on the connecting pieces (14); when the two ends of the connecting piece (14) are respectively connected to the two beam rods (13), the bracket (141) is positioned right below the first sliding groove (132).
6. A partition assembly as recited in claim 1, wherein: the upper end face of the beam rod (13) is provided with a plurality of second sliding grooves (133) extending along the length direction of the beam rod, and the second sliding grooves (133) are used for installing and fixing the functional part (2) and allowing the functional part (2) to be capable of adjusting the installation position along the second sliding grooves (133).
7. A partition assembly as claimed in claim 6, wherein: two side walls of the first sliding chute (132) and/or the second sliding chute (133) are provided with thread teeth (134); the thread teeth (134) press the functional part (2) to fix the functional part (2), or a screw rod penetrates through the functional part (2) to be meshed and screwed on the thread teeth (134) on the side wall of any position of the first sliding chute (132) and/or the second sliding chute (133).
8. A partition assembly as recited in claim 7, wherein: the first sliding chute (132) and/or the second sliding chute (133) are/is connected with a functional part (2), the functional part (2) comprises a partition plate (21) for separating space, and/or a storage rack for storing articles, and/or an operation panel (22) for drawing and editing, and/or a panel for fixing articles in a suction, nailing and sticking manner; when the first sliding groove (132) is connected with the partition plate (21) and the second sliding groove (133) is connected with the operation plate (22) or the panel, a containing space is formed between the partition plate (21) and the operation plate (22) or the panel.
9. A partition assembly as recited in claim 1, wherein: a plurality of connecting sliding grooves (131) extending along the length direction of the beam rod (13) are formed in the side surface of the beam rod, and the connecting sliding grooves (131) are arranged in parallel and are positioned at different heights; the connecting sliding groove (131) can be connected with the office table top panel (3) through a connecting component, and the connecting component can slide along the connecting sliding groove (131) to adjust the installation position.
10. An office table, characterized in that: comprising a partition assembly according to any of claims 1-9.
CN202023103876.9U 2020-12-21 2020-12-21 Office table and partition assembly thereof Active CN214156550U (en)

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