CN211899081U - Keel partition wall and keel partition wall assembly - Google Patents

Keel partition wall and keel partition wall assembly Download PDF

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Publication number
CN211899081U
CN211899081U CN201922473772.8U CN201922473772U CN211899081U CN 211899081 U CN211899081 U CN 211899081U CN 201922473772 U CN201922473772 U CN 201922473772U CN 211899081 U CN211899081 U CN 211899081U
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China
Prior art keywords
keel
partition wall
fossil fragments
module
assembly
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CN201922473772.8U
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Chinese (zh)
Inventor
丁欣欣
丁泽成
王文广
周东珊
徐晨昊
武鹏
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Zhejiang Yasha Decoration Co Ltd
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Zhejiang Yasha Decoration Co Ltd
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Priority to CN201922473772.8U priority Critical patent/CN211899081U/en
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Abstract

The utility model provides a fossil fragments partition wall and fossil fragments partition wall assembly. Fossil fragments partition wall includes: at least one connector; the adjacent keel partition wall connecting modules are connected into an integral structure through at least one connecting piece to form a keel partition wall frame; the top end closing module is connected with the top end of the keel partition wall frame and is used for fixing the keel partition wall frame and a first preset position; the bottom binding off module, the bottom binding off module with fossil fragments partition wall frame's bottom is connected, and is used for fossil fragments partition wall frame presets the rigidity with the second. Adopt the utility model discloses fossil fragments partition wall and fossil fragments partition wall assembly, the work such as cutting, equipment of material is all accomplished before getting into the installation site, can go on simultaneously with other works of installation site, and the fossil fragments partition wall frame after the equipment transports the installation site and directly installs, has saved the operating time and the work place of installation site.

Description

Keel partition wall and keel partition wall assembly
Technical Field
The utility model relates to a house ornamentation technical field, concretely relates to fossil fragments partition wall and fossil fragments partition wall assembly.
Background
At present, keel partition walls existing in the market are transported in a bulk mode and then built on site, the keel partition walls comprise materials such as vertical keels and transverse keels, the vertical keels and the transverse keels are assembled after being transported to a working site, a certain occupied space is needed in the assembling process, the site construction space is limited, and a large amount of site working time is occupied. In case the size does not match, according to on-the-spot size needs, cut material such as vertical keel, cross keel, cut the back, assemble vertical keel, cross keel after again cutting. Then filling heat-insulating material in the space separated by the vertical keel and the transverse keel, after the filling is finished, sealing the plate on the surface, and finally fixing the frame after the sealing plate with the roof, the ground, the original wall and the like. A large amount of field working time is wasted because the cutting, assembling, filling, sealing and other works are carried out on the working site.
Therefore, a new keel partition and a keel partition assembly are needed.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a fossil fragments partition wall and fossil fragments partition wall assembly aims at carrying out the modularization equipment to the fossil fragments partition wall before getting into the installation scene, at the installation scene direct mount to overcome prior art's defect.
The utility model provides a fossil fragments partition wall includes:
at least one connector;
the adjacent keel partition wall connecting modules are connected into an integral structure through at least one connecting piece to form a keel partition wall frame;
the top end closing module is connected with the top end of the keel partition wall frame and is used for fixing the keel partition wall frame and a first preset position;
the bottom binding off module, the bottom binding off module with fossil fragments partition wall frame's bottom is connected, and is used for fossil fragments partition wall frame presets the rigidity with the second.
Optionally, fossil fragments partition wall still includes at least one side binding off module, at least one side binding off module with fossil fragments partition wall frame's side is connected, and is used for realizing fossil fragments partition wall frame is fixed with the third preset position.
Optionally, each of the keel partition connecting modules comprises:
two vertical keels which are arranged oppositely and at intervals;
at least one cross keel assembly, every the cross keel assembly all sets up two between the vertical keel, and every the relative both ends of cross keel assembly respectively with two vertical keel fixed connection.
Optionally, each keel partition wall connecting module comprises at least one heat-insulating plate, and when the heat-insulating plate is one, the heat-insulating plate is arranged between the two vertical keels and sequentially penetrates through each transverse keel assembly; when the heated board is the polylith, every the heated board all sets up two between the keel, every the horizontal keel subassembly both sides in the heated board at least one runs through the horizontal keel subassembly, so that the polylith the heated board connects gradually.
Optionally, every of fossil fragments partition wall connection module horizontal fossil fragments subassembly all includes the horizontal fossil fragments of two relative settings, two horizontal fossil fragments along rather than being connected the width direction of erecting the fossil fragments distributes in proper order.
The utility model provides a fossil fragments partition wall assembly, fossil fragments partition wall assembly include two at least above-mentioned arbitrary items fossil fragments partition wall and at least one fossil fragments partition wall switching module, every fossil fragments partition wall switching module sets up crossing the setting at two extending directions the corner space department of fossil fragments partition wall, fossil fragments partition wall switching module includes:
switching node module, switching node module sets up in the crossing corner space department that sets up of two extending direction's fossil fragments partition wall, switching node module includes adjacent setting and moves towards two respectively the first end and the second end that fossil fragments partition wall extends, first end with the second end respectively with two fossil fragments partition wall fixed connection.
Optionally, the transit node module includes: two first vertical keels which are arranged oppositely and at intervals; at least one first cross keel subassembly, every first cross keel subassembly all sets up two between the first perpendicular fossil fragments, and every the relative both ends of first cross keel subassembly respectively with two first perpendicular fossil fragments fixed connection.
Optionally, the keel partition further comprises at least one first keel partition connecting module, and the at least one first keel partition connecting module is arranged between two adjacent keel partition connecting modules; the width of the first keel partition wall connecting module is smaller than that of the keel partition wall connecting module.
Optionally, each of the first keel partition connecting modules comprises:
two second vertical keels which are arranged oppositely and at intervals;
each second cross keel assembly is arranged between the two second vertical keels, and the two opposite ends of each second cross keel assembly are fixedly connected with the two second vertical keels respectively;
the width of each second vertical keel is smaller than that of the vertical keel.
Optionally, fossil fragments partition wall assembly still includes the polylith panel, the panel set up in fossil fragments partition wall assembly extending direction is last relative both sides for shelter from the inner structure of fossil fragments partition wall assembly.
Adopt the utility model discloses fossil fragments partition wall and fossil fragments partition wall assembly, the work such as cutting, equipment of material is all accomplished before getting into the installation site, can go on simultaneously with other works of installation site, and fossil fragments partition wall frame and fossil fragments partition wall assembly frame after the equipment transport the installation site and directly install, have saved the operating time and the workplace of installation site.
Drawings
Figure 1 is a schematic view of one embodiment of the keel partition of the invention;
fig. 2 is a sectional view of a keel wall connection module in the keel wall shown in fig. 1 at a position a-a;
fig. 3 is a perspective view of a keel wall connection module in the keel wall shown in fig. 1;
figure 4 is a schematic view of a keel wall connection module in the keel wall of figure 1;
figure 5 is a side view of a keel wall connection module in the keel wall of figure 1;
figure 6 is another side view of a keel wall connection module in the keel wall of figure 1;
figure 7 is a partial perspective view of one embodiment of the keel partition assembly of the invention;
figure 8 is a schematic view of the keel partition assembly shown in figure 7;
figure 9 is a schematic cross-sectional view of one embodiment of the keel partition assembly of the present invention;
fig. 10 is a perspective view of the switching node module of the present invention;
FIG. 11 is a schematic diagram of the transit node module of FIG. 10;
FIG. 12 is a side view of the transit node module of FIG. 10;
figure 13 is a cross-sectional view taken at location B-B of the keel partition assembly shown in figure 8;
figure 14 is a cross-sectional view of the keel partition assembly of figure 8 taken at position C-C;
figure 15 is an enlarged partial view of the keel partition assembly of figure 14 at position D C-C.
Reference numerals:
1: a vertical keel; 2: a cross keel assembly; 3: a thermal insulation board; 4: a transverse keel; 5: a gap; 6: a first vertical keel; 7: a first cross keel; 9: a panel; 10: a second vertical keel; 11: a second cross keel assembly; 12: a second cross keel; 13: a first gap; 14: a first heat-insulating plate; 15: corner connectors; 16: a mute pad.
Detailed Description
The embodiments of the present invention will be further explained with reference to the drawings. In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", 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 of the present invention, and do not indicate or imply that the device or component to which the reference is made must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. Wherein the terms "first position" and "second position" are two different positions.
Fig. 1 is a schematic view of an embodiment of a keel partition according to the present invention, and fig. 2 is a cross-sectional view of a position a-a of a keel partition connecting module in the keel partition shown in fig. 1, as shown in fig. 1 and 2, the keel partition includes: at least one connector; the adjacent keel partition wall connecting modules are connected into an integral structure through at least one connecting piece to form a keel partition wall frame; the top end closing module is connected with the top end of the keel partition wall frame and is used for fixing the keel partition wall frame and a first preset position; the bottom binding off module, the bottom binding off module with fossil fragments partition wall frame's bottom is connected, and is used for fossil fragments partition wall frame presets the rigidity with the second.
According to the installation size on site, select the fossil fragments partition wall linking module of corresponding quantity and size, set gradually a plurality of fossil fragments partition wall linking module, erection joint spare between adjacent fossil fragments partition wall linking module connects a plurality of fossil fragments partition wall linking module for fossil fragments partition wall frame, installs top binding off module and bottom binding off module respectively to fossil fragments partition wall frame's top and bottom, can form the fossil fragments partition wall. The utility model discloses a modularization frame equipment, the work such as cutting, equipment of material is all accomplished before getting into the installation site, can go on simultaneously with other works of installation site, and the fossil fragments partition wall frame after the equipment transports the installation site and directly installs, has saved the operating time and the work place of installation site.
In this embodiment, total three fossil fragments partition wall connection module connects gradually, the quantity of fossil fragments partition wall connection module also can set up according to actual conditions. The number of the connecting pieces between two adjacent keel partition wall connecting modules can be one or more, and when the number is more, the connecting pieces are arranged at intervals along the length direction of the partition wall connecting modules.
The top binding off module can realize the top of fossil fragments partition wall frame and the fixed connection of roof or other first default positions, in this embodiment, the top binding off module can adopt for example in fig. 1 the L type fossil fragments on 1 top of vertical keel, L type fossil fragments are followed the direction of fossil fragments partition wall extends, the right angle end butt of L type fossil fragments in every the same end right angle turn department on 1 top of vertical keel, and with every 1 fixed connection of vertical keel. According to the actual situation, other top end closing modes can be adopted.
The bottom binding off module can realize the position fixed connection is predetermine to fossil fragments partition wall frame's bottom and subaerial or other second, in this embodiment, the bottom binding off module can adopt for example in fig. 1 the U type fossil fragments of 1 bottom of vertical keel, U type fossil fragments are followed the direction of fossil fragments partition wall extends, U type fossil fragments are towards open-ended lateral surface and ground fixed connection, the terminal surface of the relative both sides of U type fossil fragments respectively with every vertical keel 1 passes through rivet fixed connection. According to the actual situation, other bottom end closing modes can be adopted.
Preferably, the keel partition further comprises at least one side closing-in module (not shown), and at least one side closing-in module is connected with the side of the keel partition frame and is used for fixing the keel partition frame and a third preset position. Set up side binding off module has increased the fixed position of fossil fragments partition wall has promoted the stability of structure.
In this embodiment, side binding off module adopts L type fossil fragments side binding off mode (not shown in the figure), L type fossil fragments are followed the length direction of erecting fossil fragments 1 extends, L type fossil fragments back of the body right angle a lateral surface with fossil fragments partition wall fixed connection, L type fossil fragments back of the body right angle opposite side terminal surface and original wall fixed connection, according to actual conditions, also can adopt other side binding off modes.
Fig. 3 is a perspective view of a keel wall connection module in the keel wall shown in fig. 1; figure 4 is a schematic view of a keel wall connection module in the keel wall of figure 1; figure 5 is a side view of a keel wall connection module in the keel wall of figure 1; figure 6 is another side view of a keel wall connection module in the keel wall of figure 1; as shown in fig. 1 to 6, preferably, each of the keel partition connecting modules comprises: two vertical keels 1 which are arranged oppositely and at intervals; at least one cross keel assembly 2, every cross keel assembly 2 all sets up two between the vertical keel 1, and every the relative both ends of cross keel assembly 2 respectively with two vertical keel 1 fixed connection. The transverse keel assembly 2 connects the vertical keels 1 on two sides into an integral structure, and assembly is convenient.
In this embodiment, the keel 1 is a 75U-shaped keel, and a 50U-shaped keel or another type of keel may be used according to the actual situation. The opening of two 75U type keels sets up relatively, two distance between the keel 1 is 600mm, two distance between the keel 1 can set up to other values according to actual conditions.
In this embodiment, every among the fossil fragments partition wall connection module horizontal fossil fragments subassembly 2 all is provided with two, every horizontal fossil fragments subassembly 2's extending direction all perpendicular to rather than being connected the extending direction of vertical keel 1, according to actual conditions, horizontal fossil fragments subassembly 2's quantity also can set up to other values, horizontal fossil fragments subassembly 2 with also can set up to other angle connection relations beyond the perpendicular between the vertical keel 1.
In this embodiment, the distance between adjacent cross keel assemblies 2 is 1000mm, and may be set to other values according to actual conditions.
Preferably, each keel partition wall connecting module comprises at least one heat-insulating plate 3, and when the heat-insulating plate 3 is one, the heat-insulating plate 3 is arranged between the two vertical keels 1 and sequentially penetrates through each transverse keel assembly 2; when the heated board 3 is the polylith, every heated board 3 all sets up two between the keel 1, every 2 both sides of horizontal keel subassembly at least one runs through in the heated board 3 horizontal keel subassembly 2, so that the polylith heated board 3 connects gradually. Set up heated board 3 can reduce the heat of fossil fragments partition wall link module both sides flows, improves the thermal insulation performance in the space of keeping apart.
Generally, an insulation board 3 is installed in each keel partition wall connection module, and when the installation space is limited, the insulation board can be cut according to the installation space. In this embodiment, every fossil fragments partition wall linking module all includes one heated board 3, just heated board 3 runs through two horizontal keel subassembly 2 fills up two space between the keel 1, heated board 3 is 75 two-sided aluminium foil rock wool heated board, heated board 3 fills two between the keel 1, and fix with the sticky tape. Other heat insulation boards with heat insulation performance can be used according to actual conditions.
If when the heated board 3 is the polylith, every heated board 3 all sets up two between the keel 1, every 2 both sides of horizontal keel subassembly at least one runs through in the heated board 3 horizontal keel subassembly 2, so that the polylith heated board 3 connects gradually.
As shown in fig. 2, the cross runner assembly 2 includes two cross runners 4. Preferably, every of fossil fragments partition wall connection module horizontal fossil fragments subassembly 2 all includes two relative setting's horizontal fossil fragments 4, two horizontal fossil fragments 4 along rather than being connected the width direction of erectting fossil fragments 1 distributes in proper order. This kind of setting is favorable to the reinforcing horizontal keel subassembly 2 is right the supporting role of vertical keel 1 promotes overall structure's stability.
In this embodiment, each of the cross keel assemblies 2 uses two 38U-shaped keels with opposite openings, and other types of U-shaped keels or other types of cross keels may be used according to actual situations.
In this embodiment, two cross runners 4 of each cross runner assembly 2 are connected to the inner surfaces of the two opposite sides of the mullion 1, i.e., the 75U-shaped keel in the figure, by means of rivets. According to actual conditions, two cross keel 4 also can the interval set up along other positions on the width direction of keel 1, cross keel 4 with also can adopt other fixed connection modes between the keel 1.
In this embodiment, as shown in fig. 3, a gap 5 is provided between two cross runners 4 of the same cross runner assembly 2, and one insulation board 3 in this embodiment passes through the cross runner assembly 2 through the gap 5 of each cross runner assembly 2.
The at least two keel partition wall connecting modules forming the keel partition wall framework can be the same specification of keel partition wall connecting modules, for example, the keel partition wall connecting modules positioned at two ends have the same model and relatively larger thickness, which is beneficial to improving the connecting strength between the keel partition wall connecting modules and the outside; also can be different specifications fossil fragments partition wall connection module works as fossil fragments partition wall connection module's quantity is a plurality of, and uses different specifications during fossil fragments partition wall connection module, multiple specification can be according to arbitrary law built-up connection between the fossil fragments partition wall connection module. For example, the vertical keels are 75U-shaped keels and 50U-shaped keels, and when the keel partition wall framework is formed, the 75U-shaped keels and the 50U-shaped keels are sequentially distributed at intervals.
Figure 7 is a partial perspective view of one embodiment of the keel partition assembly of the invention, and figure 8 is a schematic view of the keel partition assembly shown in figure 7; figure 9 is a schematic cross-sectional view of one embodiment of the keel partition assembly of the present invention; fig. 10 is a perspective view of the switching node module of the present invention; FIG. 11 is a schematic diagram of the transit node module of FIG. 10; FIG. 12 is a side view of the transit node module of FIG. 10; as shown in fig. 7-12, the utility model also provides a fossil fragments partition wall assembly, fossil fragments partition wall assembly include two at least above-mentioned arbitrary items fossil fragments partition wall and at least one fossil fragments partition wall switching module, every fossil fragments partition wall switching module sets up two crossing settings of extending direction the corner space department of fossil fragments partition wall, fossil fragments partition wall switching module includes:
switching node module, switching node module sets up in the crossing corner space department that sets up of two extending direction's fossil fragments partition wall, switching node module includes adjacent setting and moves towards two respectively the first end and the second end that fossil fragments partition wall extends, first end with the second end respectively with two fossil fragments partition wall fixed connection.
When adopting the fossil fragments partition wall to enclose to close and form certain space, set up in the corner of two adjacent fossil fragments partition walls switching node module can realize the fossil fragments partition wall assembly that arbitrary angle is connected, improves joint strength, reduces the connection degree of difficulty, improves connection stability, conveniently carries out the modularization equipment to any fossil fragments partition wall assembly.
In this embodiment, first end and/or can set up fossil fragments partition wall connection module according to actual conditions on the terminal surface of second end, and pass through fossil fragments partition wall connection module's free end with the fossil fragments partition wall is connected. Set up fossil fragments partition wall connection module can be two in the corner both sides distance between the fossil fragments partition wall is when far away, right switching node module with play the connection effect between the fossil fragments partition wall, increased the connection range of fossil fragments partition wall switching module.
Preferably, the transit node module includes: two first vertical keels which are arranged oppositely and at intervals; at least one first cross keel subassembly, every first cross keel subassembly all sets up two between the first perpendicular fossil fragments, and every the relative both ends of first cross keel subassembly respectively with two first perpendicular fossil fragments fixed connection. According to the arrangement, the first transverse keel assembly can connect the first vertical keels on two sides into an integral structure, and assembly is convenient.
In this embodiment, the first stud 6 is a 75U-shaped stud, and a 50U-shaped stud or another type of stud may be used according to the actual situation. The openings of the two 75U-shaped keels are oppositely arranged, and the distance between the two first vertical keels 6 can be set according to actual conditions.
In this embodiment, two first keel can mutually support or reserve between the two and leave certain clearance, can set for the distance between the two according to the corner space.
In this embodiment, the extension direction of each first cross keel assembly is perpendicular to the extension direction of the first mullion 6 connected thereto.
In this embodiment, the number of the first cross keel assemblies is three, and the first vertical keel 6 is divided into four equal parts in the length direction. The number of the first cross keel assemblies and the distance between the adjacent cross keel assemblies can be set according to actual conditions.
In this embodiment, each first cross keel assembly uses two 38U-shaped keels with opposite openings, and may also use other types of U-shaped keels or other types of cross keels according to actual situations.
In this embodiment, the two second cross runners 12 of each first cross runner assembly are connected to the inner surfaces of the opposite sides of the first mullion 6, i.e., the 75U-shaped runner in the figure, by means of pull rivets. According to practical conditions, the two second cross keels 12 can also be arranged at other positions along the width direction of the first vertical keel 6 at intervals, and other fixed connection modes can also be adopted between the second cross keels 12 and the first vertical keel 6.
In this embodiment, the two first vertical keels are oppositely arranged and enclose to form an installation cavity; the two first transverse keel assemblies are arranged in the installation cavity, each first transverse keel assembly is abutted against the side wall of the same side of the two first vertical keels, a fixing piece is arranged on the side wall of each first vertical keel, and the fixing piece penetrates through the side wall of the first vertical keel and the first transverse keel assembly to be fixed; that is, each first cross keel assembly is fixed with the same side wall of the two first vertical keels through two fixing pieces.
Figure 13 is a cross-sectional view taken at position B-B of the keel partition assembly shown in figure 8, figure 14 is a cross-sectional view taken at position C-C of the keel partition assembly shown in figure 8, and figure 15 is an enlarged view of the keel partition assembly shown in figure 14 taken at position D C-C. As shown in fig. 13 to 15, preferably, the keel partition further comprises: the first keel partition wall connecting module is arranged between two adjacent keel partition wall connecting modules; the width of the first keel partition wall connecting module is smaller than that of the keel partition wall connecting module. Because of first fossil fragments partition wall linking module's width is less than fossil fragments partition wall linking module's width works as behind the surperficial shrouding of fossil fragments partition wall assembly leave the cavity structure between first fossil fragments partition wall linking module and the shrouding, be favorable to promoting the sound insulation effect.
In this embodiment, per two be provided with one between the fossil fragments partition wall connecting module first fossil fragments partition wall connecting module, promptly fossil fragments partition wall connecting module with first fossil fragments partition wall connecting module interval sets up, according to actual conditions, first fossil fragments partition wall connecting module can be provided with one, also can be provided with a plurality ofly, works as when first fossil fragments partition wall connecting module is provided with a plurality ofly, fossil fragments partition wall connecting module with also can arrange according to other laws between the first fossil fragments partition wall connecting module.
In this embodiment, every fossil fragments partition wall coupling module with one of them side of first fossil fragments partition wall coupling module's relative both sides aligns the opposite side of first fossil fragments partition wall coupling module's alignment, and with adjacent the one end that fossil fragments partition wall coupling module connects sets up angle sign indicating number 15, the right angle end butt of angle sign indicating number 15 is adjacent fossil fragments partition wall coupling module with the right angle turn department that first fossil fragments partition wall coupling module constitutes, a side surface of angle sign indicating number 15 with fossil fragments partition wall coupling module is through boring tail screw fixed connection, the opposite side surface of angle sign indicating number 15 with first fossil fragments partition wall coupling module is through boring tail screw fixed connection. It is adjacent fossil fragments partition wall connecting module with other connected mode fixed connection outside the angle sign indicating number also can be adopted between the first fossil fragments partition wall connecting module.
Preferably, each first keel partition wall connecting module comprises two second vertical keels 10 which are oppositely arranged at intervals; each second cross keel assembly 11 is arranged between the two second vertical keels 10, and two opposite ends of each second cross keel assembly 11 are fixedly connected with the two second vertical keels 10 respectively; the width of each second stud 10 is less than the width of the stud 1. The second cross keel assembly 11 can connect the second vertical keels 10 at both sides into an integral structure, and is convenient to assemble.
In this embodiment, the second stud 10 is a 50U-shaped stud, and other types of studs with a width smaller than that of the stud 1, such as a 75U-shaped stud in this embodiment, or other types of studs, may also be used according to the actual situation. The openings of the two 50U-shaped keels are oppositely arranged, the distance between the two second vertical keels 10 is 600mm, and the distance between the two second vertical keels 10 can also be set to other values within the range of 400-600mm according to the actual situation.
In this embodiment, each first fossil fragments partition wall connection module all includes two second cross keel subassembly 11, every the extending direction of second cross keel subassembly 11 all is perpendicular to rather than being connected the extending direction of second vertical keel 10, according to actual conditions, the quantity of second cross keel subassembly 11 can set up to other values, second cross keel subassembly 11 with also can set up to other angle connection relations beyond the perpendicular between the second vertical keel 10.
In this embodiment, the distance between adjacent second cross keel assemblies 11 is 1000mm, and may be set to other values according to actual situations.
Fig. 13 is a sectional view of the keel partition assembly shown in fig. 8, i.e., a sectional view of the first keel partition connecting module, in a position B-B, and each of the second cross keel assemblies 11, as shown in fig. 13, includes two second cross keels 12. In this embodiment, each of the second cross keel assemblies 11 uses two 38U-shaped keels with opposite openings, and may also use other types of U-shaped keels or other types of cross keels according to actual situations. Every two in the second cross keel subassembly 11 the second cross keel 12 all with second vertical keel 10, the internal surface of the relative both sides of 50U type fossil fragments in the picture promptly is connected through self-plugging rivet, according to actual conditions, two the second cross keel 12 also can the interval set up along other positions on the width direction of second vertical keel 10, the second cross keel 12 with also can adopt other fixed connection modes between the second vertical keel 10.
A first gap 13 is arranged between two second cross keels 12 in each second cross keel assembly 11.
Every first fossil fragments partition wall connection module all includes a first insulation board 14, first insulation board 14 is through every two in the second cross keel subassembly 11 between the second cross keel 12 first clearance 13 runs through second cross keel subassembly 11 is filled two between the second vertical keel 10, and fixes with the sticky tape, in this embodiment, first insulation board 14 uses is 50 two-sided aluminium foil rock wool heated boards, also can use other heated boards that have heat preservation performance according to actual conditions.
If first heat preservation board 14 is when the polylith, every first heat preservation board 14 all sets up two between the second perpendicular fossil fragments 10, every 11 both sides of second cross keel subassembly at least one in the first heat preservation board 14 runs through second cross keel subassembly 11, so that the polylith first heat preservation board 14 connects gradually.
In this embodiment, the keel partition connecting module and the first keel partition connecting module are spaced apart from each other, and a silencing pad 16 is disposed on a contact surface between each adjacent one of the vertical keels 1 and the second vertical keel 10. The provision of the silencing pad 16 can avoid rigid connection between metals and increase the sound insulation effect.
Preferably, fossil fragments partition wall assembly still includes polylith panel 9, panel 9 set up in fossil fragments partition wall assembly extend direction is last relative both sides for shelter from the inner structure of fossil fragments partition wall assembly. Set up panel 9 shelters from will the inner structure of fossil fragments partition wall assembly promotes whole aesthetic property.
As shown in fig. 9, in the present embodiment, the keel partition includes a transverse keel partition and a longitudinal keel partition, wherein two opposite sides of the transverse keel partition are respectively abutted with a transverse outer side panel and a transverse inner side panel which are parallel to each other, two opposite sides of the longitudinal keel partition are respectively abutted with a longitudinal outer side panel and a longitudinal inner side panel which are parallel to each other, the transverse outer side panel is disposed to intersect (e.g., perpendicularly intersect) with the longitudinal outer side panel, and the transverse inner side panel is disposed to intersect (e.g., perpendicularly intersect) with the longitudinal inner side panel. The keel partition wall switching module is arranged in a space formed by enclosing the transverse outer side panel, the transverse inner side panel, the longitudinal outer side panel and the longitudinal inner side panel.
In this embodiment, every among the fossil fragments partition wall connection module every the relative both sides on the top of vertical joist 1 all are provided with L type punctiform fossil fragments keel partition wall connection module with one side that the top closing-in module is connected, L type punctiform fossil fragments set up top closing-in module with the position that vertical joist 1 corresponds vertical joist 1 is provided with the opposite side of L type punctiform fossil fragments, L type punctiform fossil fragments set up on the vertical joist 1, every the right angle turning end of L type punctiform fossil fragments dorsad vertical joist 1, every a side of L type punctiform fossil fragments is on a parallel with vertical joist 1 and with vertical joist 1 fixed connection, every another side perpendicular to of L type punctiform fossil fragments vertical joist 1, and the free end is kept away from vertical joist 1. One end of the panel 9 in the length direction is fixedly connected with the side face, parallel to the vertical keel 1, of the L-shaped dotted keel through a drill tail screw, and the other end of the panel 9 in the length direction is fixedly connected with the bottom end closing module through the drill tail screw.
In this embodiment, the panel 9 is a cement fiber wall panel, and a base plate (not shown) is fixedly connected to one side surface of each panel 9 facing the vertical keel 1, the base plate is a screw-locked cement fiber plate, and the base plate and the panel 9 are arranged at the same time, so that the sound insulation effect is further improved.
The manufacturing and use of the keel partition assembly is further described below.
Arranging two vertical keels 1 oppositely, fixedly arranging a plurality of transverse keel assemblies 2 at intervals in the length direction of the vertical keels 1, wherein each transverse keel assembly 2 comprises two transverse keels 4 with opposite openings, a gap 5 for a heat insulation board 3 to pass through is arranged between the two transverse keels 4 to form an integral structure, then filling the heat insulation board 3 in a space formed by the integral structure, and further fixing the heat insulation board 3 on the vertical keels 1 by using an adhesive tape to finish the manufacture of a keel partition wall connecting module;
arranging two second vertical keels 10 oppositely, fixedly arranging a plurality of second cross keel assemblies 11 at intervals in the length direction of the second vertical keels 10, wherein each second cross keel assembly 11 comprises two second cross keels 12 with opposite openings, a first gap 13 for a first heat insulation plate 14 to pass through is arranged between the two second cross keels 12 to form an integral structure, then filling the first heat insulation plate 14 in a space formed by the integral structure, and further fixing the first heat insulation plate 14 on the second vertical keels 10 by using an adhesive tape to complete the manufacture of a first keel partition wall connecting module;
manufacturing a plurality of keel partition wall connecting modules and a plurality of first keel partition wall connecting modules, wherein the keel partition wall connecting modules and the first keel partition wall connecting modules are arranged at intervals, the adjacent keel partition wall connecting modules and the first keel partition wall connecting modules are fixedly connected through the corner connectors 15, and the silencing pads 16 are arranged between the adjacent keel partition wall connecting modules and the first keel partition wall connecting modules, so that the manufacturing of one keel partition wall is completed, and two keel partition walls are manufactured;
arranging two first vertical keels 6 oppositely, and fixedly arranging a plurality of first transverse keel assemblies at intervals in the length direction of the first vertical keels 6, wherein each first transverse keel assembly comprises two first transverse keels 7 with opposite openings, and the first vertical keels 6 and the first transverse keel assemblies form an integrated structure to finish the manufacturing of the switching node module; the two vertical keels 1 are oppositely arranged, a plurality of transverse keel assemblies 2 are fixedly arranged at intervals in the length direction of the vertical keels 1, each transverse keel assembly 2 comprises two transverse keels 4 with opposite openings, a gap 5 for the insulation board 3 to pass through is arranged between the two transverse keels 4 to form an integral structure, then the heat insulation board 3 is filled in the space formed by the integrated structure, the heat insulation board 3 is further fixed on the vertical keel 1 by using an adhesive tape to complete the manufacture of one keel partition wall connecting module, two keel partition wall connecting modules are manufactured, one end of each keel partition wall connecting module is respectively fixedly connected with the two freely extending ends of the switching node modules, a sound insulation pad is arranged between the keel partition wall connecting module and the switching node module, so that the keel partition wall switching module is manufactured;
the opposite ends of the connecting ends of the two keel partition wall connecting modules and the switching node modules in the keel partition wall switching modules are respectively fixedly connected with the two keel partition walls into an integral structure, so that the manufacturing of a keel partition wall assembly frame is completed;
fixedly connecting the keel partition wall assembly frame with the top end closing-in module, fixedly connecting the keel partition wall assembly frame with the bottom end closing-in module, and fixedly connecting the keel partition wall assembly frame with the side edge closing-in module to realize the position fixation of the keel partition wall assembly frame;
and finally, fixing the panels 9 on two opposite sides of the framework of the keel partition wall assembly in the extending direction respectively to finish the manufacture of the keel partition wall assembly.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention.

Claims (10)

1. A keel partition, comprising:
at least one connector;
the adjacent keel partition wall connecting modules are connected into an integral structure through at least one connecting piece to form a keel partition wall frame;
the top end closing module is connected with the top end of the keel partition wall frame and is used for fixing the keel partition wall frame and a first preset position;
the bottom binding off module, the bottom binding off module with fossil fragments partition wall frame's bottom is connected, and is used for fossil fragments partition wall frame presets the rigidity with the second.
2. The keel partition of claim 1, further comprising:
at least one side binding off module, at least one the side binding off module with the side of fossil fragments partition wall frame is connected, and is used for realizing fossil fragments partition wall frame is fixed with the third preset position.
3. A keel partition according to claim 1 or 2, wherein each said keel partition connection module comprises:
two vertical keels which are arranged oppositely and at intervals;
at least one cross keel assembly, every the cross keel assembly all sets up two between the vertical keel, and every the relative both ends of cross keel assembly respectively with two vertical keel fixed connection.
4. The keel partition according to claim 3, wherein each of said keel partition connection modules comprises:
when the number of the heat insulation plates is one, the heat insulation plates are arranged between the two vertical keels and sequentially penetrate through each transverse keel assembly; when the heated board is the polylith, every the heated board all sets up two between the keel, every the horizontal keel subassembly both sides in the heated board at least one runs through the horizontal keel subassembly, so that the polylith the heated board connects gradually.
5. A keel partition according to claim 3, wherein:
every fossil fragments partition wall connection module every horizontal fossil fragments subassembly all includes the horizontal fossil fragments of two relative settings, two horizontal fossil fragments along rather than being connected the width direction of erecting the fossil fragments distributes in proper order.
6. A keel partition assembly, said keel partition assembly comprising at least two keel partitions according to any of claims 1-5 and at least one keel partition adapter module, each of said keel partition adapter modules being disposed at a corner gap of said keel partition disposed at an intersection of two directions of extension, said keel partition adapter module comprising:
switching node module, switching node module sets up in the crossing corner space department that sets up of two extending direction's fossil fragments partition wall, switching node module includes adjacent setting and moves towards two respectively the first end and the second end that fossil fragments partition wall extends, first end with the second end respectively with two fossil fragments partition wall fixed connection.
7. The keel partition assembly of claim 6, wherein said transit node module comprises:
two first vertical keels which are arranged oppositely and at intervals;
at least one first cross keel subassembly, every first cross keel subassembly all sets up two between the first perpendicular fossil fragments, and every the relative both ends of first cross keel subassembly respectively with two first perpendicular fossil fragments fixed connection.
8. A keel partition assembly according to claim 6 or 7, wherein said keel partition further comprises:
the first keel partition wall connecting module is arranged between two adjacent keel partition wall connecting modules;
the width of the first keel partition wall connecting module is smaller than that of the keel partition wall connecting module.
9. A keel wall assembly as recited in claim 8, wherein each of said first keel wall connection modules comprises:
two second vertical keels which are arranged oppositely and at intervals;
each second cross keel assembly is arranged between the two second vertical keels, and the two opposite ends of each second cross keel assembly are fixedly connected with the two second vertical keels respectively;
the width of each second vertical keel is smaller than that of the vertical keel.
10. A keel partition assembly according to claim 6 or 7, further comprising:
the panel set up in relative both sides on the fossil fragments partition wall assembly extending direction are used for sheltering from the inner structure of fossil fragments partition wall assembly.
CN201922473772.8U 2019-12-31 2019-12-31 Keel partition wall and keel partition wall assembly Active CN211899081U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922473772.8U CN211899081U (en) 2019-12-31 2019-12-31 Keel partition wall and keel partition wall assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922473772.8U CN211899081U (en) 2019-12-31 2019-12-31 Keel partition wall and keel partition wall assembly

Publications (1)

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Country Link
CN (1) CN211899081U (en)

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