CN214884593U - Connecting structure of shear wall - Google Patents

Connecting structure of shear wall Download PDF

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CN214884593U
CN214884593U CN202120312717.5U CN202120312717U CN214884593U CN 214884593 U CN214884593 U CN 214884593U CN 202120312717 U CN202120312717 U CN 202120312717U CN 214884593 U CN214884593 U CN 214884593U
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shear wall
shear
connecting cylinder
wall
fixing
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王伟
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Jiangsu Zunchen Architectural Design Co ltd
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Jiangsu Zunchen Architectural Design Co ltd
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Abstract

The application relates to a connection structure of shear walls, which relates to the field of assembly technology of building components and comprises a first shear wall and a second shear wall, wherein the first shear wall is adjacent to the second shear wall; the first connecting cylinder extends to the second shear wall and is inserted into the second shear wall, and a fixing piece is connected between the first connecting cylinder and the first connecting column. This application has in first spliced pole inserts the second shear force wall, and in the second spliced pole inserted first shear force wall, the ability reinforcing of the load that first shear force wall and second shear force wall bore, the effect of anti-seismic performance reinforcing.

Description

Connecting structure of shear wall
Technical Field
The application relates to the field of assembly technology of building components, in particular to a connecting structure of a shear wall.
Background
At the present stage, with the great push to house industrialization in China, a plurality of prefabricated house projects are carried out in various places, shear walls are also called as wind-resistant walls, earthquake-resistant walls or structural walls, and are walls which mainly bear horizontal loads and vertical loads caused by wind loads or earthquake actions in prefabricated houses or structures, the shear walls are generally made of reinforced concrete, and a connecting structure needs to be installed between adjacent shear walls.
The existing Chinese patent with reference to publication number CN209227832U discloses a connection structure of a high-strength wood shear wall, which comprises a first shear wall, a second shear wall, screws and studs, wherein a mechanical connection piece is arranged between the first shear wall and the second shear wall, the mechanical connection piece comprises two mounting plates, a groove cylinder and a positioning iron column, the positioning iron column is seamlessly inserted into the groove cylinder, the positioning iron column is provided with four first positioning holes, the groove cylinder is provided with a second positioning hole, the studs seamlessly penetrate through the first positioning holes and the second positioning holes, and the studs are in threaded connection with locking nuts. The implementation process is as follows: three positioning iron columns are respectively inserted into the three groove cylinders, the depth of the positioning iron columns inserted into the groove cylinders is different, the distance between the two shear walls is controlled, the stud penetrates through the first positioning hole and the second positioning hole, and the locking nut is adjusted to tightly fit on the anti-skid stripe on the surface of the groove cylinder, so that the positioning iron columns and the groove cylinders are connected more tightly.
In view of the above-mentioned related technologies, the inventor believes that there is a defect that the contact area between the groove tube and the positioning iron column and the first and second shear walls is small, and the connection strength between the groove tube and the positioning iron column is weakened when being transmitted to the first and second shear walls, and the first and second shear walls cannot be well fixed.
SUMMERY OF THE UTILITY MODEL
In order to solve a groove section of thick bamboo and fix a position the iron prop and can not play fine fixed action to first shear force wall, second shear force wall, this application provides a connection structure of shear force wall.
The application provides a connection structure of shear force wall adopts following technical scheme:
a connection structure of a shear wall comprises a first shear wall and a second shear wall, wherein the first shear wall is adjacent to the second shear wall, a first connection assembly is arranged between the first shear wall and the second shear wall and comprises a first connection cylinder and a first connection column, the first connection cylinder is fixedly connected with the first shear wall, the first connection column is fixedly connected with the second shear wall, and the first connection column is inserted into the first connection cylinder and extends into the first shear wall; the first connecting cylinder extends to the second shear wall and is inserted into the second shear wall, and a fixing piece is connected between the first connecting cylinder and the first connecting column.
Through adopting above-mentioned technical scheme, the setting of first connecting subassembly for after first spliced pole is inserted in first connecting cylinder, first connecting cylinder has also inserted in the second shear force wall, first connecting cylinder has inserted in the first shear force wall, then first connecting cylinder, first connecting cylinder and first shear force wall, the area of contact increase of second shear force wall junction, first connecting cylinder and first connecting cylinder are more firm to being connected between first shear force wall and the second shear force wall, the ability reinforcing of the load that first shear force wall and second shear force wall bore, anti-seismic performance reinforcing.
Optionally, a second connecting assembly is disposed between the first shear wall and the second shear wall, the second connecting assembly includes a second connecting cylinder and a second connecting column, the second connecting cylinder is fixedly connected with the second shear wall, the second connecting column is fixedly connected with the first shear wall, and the second connecting column is inserted into the second connecting cylinder and extends into the second shear wall; the second connecting cylinder extends to the first shear wall and is inserted into the first shear wall, and the fixing mode between the second connecting cylinder and the second connecting column is the same as that between the first connecting cylinder and the first connecting column.
By adopting the technical scheme and the arrangement of the second connecting component, when the second connecting column is inserted into the second connecting cylinder, the second connecting column is also inserted into the first shear wall, the first connecting column is inserted into the second shear wall, and then the second connecting cylinder and the second connecting column are more firm in connection between the second shear wall and the first shear wall, so that the capacity of the load born by the second shear wall and the first shear wall is enhanced, and the anti-seismic performance is enhanced.
Optionally, the first connecting cylinder and the first connecting column are both provided with a connecting hole, and the connecting hole on the first connecting cylinder is communicated with the connecting hole on the first connecting column; the fixing piece is a bolt, and the bolt is inserted into the first connecting cylinder and the first connecting column through the connecting hole and is in threaded connection with the first connecting cylinder and the first connecting column.
Through adopting above-mentioned technical scheme, the setting of connecting hole and bolt for the first connecting cylinder of pegging graft each other is further strengthened with the fastness of being connected of first connecting column on the horizontal direction, then the fastness of being connected between first shear force wall and the second shear force wall is further strengthened.
Optionally, the first connecting assembly and the second connecting assembly are distributed at intervals between the first shear wall and the second shear wall.
Through adopting above-mentioned technical scheme, because first connecting cylinder and second connecting cylinder all are the tube-shape, and first connecting column and second connecting column are the column, then if only there is first coupling assembling or only second coupling assembling, then when first shear force wall is connected with the second shear force wall, the power that bears is inhomogeneous, first coupling assembling and the second coupling assembling of alternate distribution between first shear force wall and the second shear force wall for first shear force wall is when being connected with the second shear force wall, the power that bears is more even, then be connected between first shear force wall and the second shear force wall more stable, can bear bigger external force.
Optionally, a fixing assembly is arranged between the first connecting cylinder and the second shear wall, the fixing assembly includes a fixing groove, a spring, a fixing block and a clamping groove, the fixing groove is formed in the first connecting cylinder, and the spring is located in the fixing groove and fixedly connected with the first connecting cylinder; the fixed block is positioned in the fixed groove, and one end of the fixed block is fixedly connected with the spring; the clamping groove is formed in the second shear wall and communicated with the fixing groove, and one end, far away from the spring, of the fixing block is abutted to the second shear wall.
Through adopting above-mentioned technical scheme, the setting of fixed subassembly for after first connecting cylinder and first connector peg are pegged graft mutually, the fixed block receives the elastic force of spring, inserts in to second shear force wall, then the fixed block can with second shear force wall joint, makes the joint strength increase of first connecting cylinder and second shear force wall horizontal direction, then has further strengthened the firm in connection nature between first connecting cylinder and the second shear force wall.
Optionally, one side of the fixing block, which is close to the second shear wall, is provided with a spike part.
Through adopting above-mentioned technical scheme, the design of spine portion for the staff only needs slightly to press the fixed block when pegging graft first connecting cylinder and first connecting column, then in the fixed block of spine form will insert the second shear force wall, insert back in the second shear force wall, the fixed block of spine form can play the guide effect again, convenient joint inslot that inserts, then first connecting cylinder is convenient with first connecting column grafting, and joint strength is high.
Optionally, the first connecting column and the second connecting column are both cylindrical, and the first connecting cylinder and the second connecting cylinder are cylindrical and mutually matched with the first connecting column and the second connecting column.
Through adopting above-mentioned technical scheme, because any local atress of spherical, the power all can be to dispersing uniformly all around, so spherical all more firm than any shape, and the sphere comprises a plurality of arc surfaces, consequently the design of cylindric first spliced pole, second spliced pole, first connecting cylinder and second connecting cylinder for first spliced pole, second spliced pole, the atress of first connecting cylinder and second connecting cylinder all directions is all stronger, the stability of connecting first shear force wall and second shear force wall is higher.
Optionally, a fixing ring is arranged between the first connecting cylinder and the second shear wall, the fixing ring is sleeved on the first connecting cylinder and is fixedly connected with the first connecting cylinder, and a bolt is connected between the fixing ring and the second shear wall.
Through adopting above-mentioned technical scheme, the setting of retainer plate for the retainer plate of fixed connection on first connecting cylinder passes through bolt and second shear force wall fixed connection, then the border of first connecting cylinder is all fixed on the second shear force wall by the retainer plate, and the joint strength between first connecting cylinder and the second shear force wall is further strengthened through retainer plate and bolt, then the joint strength between first shear force wall and the second shear force wall is strengthened.
In summary, the present application includes at least one of the following beneficial technical effects:
due to the arrangement of the first connecting assembly, the first connecting column is inserted into the second shear wall, the second connecting column is inserted into the first shear wall, the load bearing capacity of the first shear wall and the second shear wall is enhanced, and the anti-seismic performance is enhanced;
the first connecting assemblies and the second connecting assemblies are distributed between the first shear wall and the second shear wall at intervals, so that when the first shear wall and the second shear wall are connected, the borne force is more uniform, and the first shear wall and the second shear wall are connected more tightly;
the arrangement of the fixing ring enables the connection strength between the first connecting cylinder and the second shear wall to be further strengthened through the fixing ring and the bolts, and the connection strength between the first shear wall and the second shear wall is strengthened.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present application;
FIG. 2 is a schematic view intended to show the structure of a first connection assembly;
fig. 3 is a schematic view intended to show the structure of the second connection assembly.
Description of reference numerals: 1. a first shear wall; 2. a second shear wall; 3. a first connection assembly; 31. a first connecting cylinder; 32. a first connecting column; 33. a first annular groove; 34. a first circular groove; 35. connecting holes; 4. a second connection assembly; 41. a second connecting cylinder; 42. a second connecting column; 43. a second annular groove; 44. a second circular groove; 5. a bolt; 6. a fixing assembly; 61. fixing grooves; 62. a spring; 63. a fixed block; 631. a spike portion; 64. a clamping groove; 7. and a fixing ring.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses connection structure of shear force wall. Referring to fig. 1, a connection structure of a shear wall includes a first shear wall 1, a second shear wall 2, a first connection assembly 3 and a second connection assembly 4, the first shear wall 1 is located on one side of the second shear wall 2 in the horizontal direction, the first connection assembly 3 and the second connection assembly 4 are both located between the first shear wall 1 and the second shear wall 2, the first connection assembly 3 and the second connection assembly 4 are distributed in the vertical direction, and the first connection assembly 3 is connected with the first shear wall 1 and the second shear wall 2; the second connecting component 4 is connected with the first shear wall 1 and the second shear wall 2.
When the worker fixes the first shear wall 1 and the second shear wall 2, the first shear wall 1 and the second shear wall 2 are simultaneously fixed by the first connecting assemblies 3 and the second connecting assemblies 4.
Referring to fig. 2, the first connection assembly 3 includes a first connection cylinder 31, a first connection column 32, a first annular groove 33 and a first circular groove 34, the first connection cylinder 31 has a circular longitudinal section, and the first connection cylinder 31 is horizontally disposed on the first shear wall 1 and is fixedly connected to the first shear wall 1; the first connecting column 32 is horizontally arranged on the second shear wall 2 and is fixedly connected with the second shear wall 2; the first annular groove 33 is formed in the second shear wall 2, the inner diameter of the first annular groove 33 is equal to that of the first connecting cylinder 31, and the thickness of the first annular groove 33 is equal to that of the first connecting cylinder 31; the first circular groove 34 is formed in the first shear wall 1, and the diameter of the first circular groove 34 is equal to that of the first connecting column 32; the first connecting cylinder 31 is sleeved on the first connecting column 32, and one end of the first connecting cylinder 31, which is far away from the first shear wall 1, extends to the second shear wall 2 and is inserted into the first annular groove 33; the first connecting column 32 extends to the first shear wall 1 away from the second shear wall 2 and is inserted into the first circular groove 34.
Referring to fig. 2, the first connecting cylinder 31 and the first connecting column 32 are both provided with a plurality of connecting holes 35, the axes of the connecting holes 35 are perpendicular to the axis of the first connecting cylinder 31, the number of the connecting holes 35 on the first connecting cylinder 31 is equal to the number of the connecting holes 35 on the first connecting column 32, and the connecting holes 35 on the first connecting cylinder 31 are communicated with the connecting holes 35 on the first connecting column 32; the fixing piece is a bolt 5, and the bolt 5 is inserted into the connecting hole 35 and is in threaded connection with the first connecting cylinder 31 and the first connecting column 32.
Referring to fig. 3, the second connection assembly 4 includes a second connection cylinder 41, a second connection column 42, a second annular groove 43 and a second circular groove 44, the longitudinal section of the second connection cylinder 41 is circular, and the second connection cylinder 41 is horizontally disposed on the second shear wall 2 and is fixedly connected to the second shear wall 2; the second connecting column 42 is horizontally arranged on the first shear wall 1 and is fixedly connected with the first shear wall 1; the second annular groove 43 is formed in the first shear wall 1, the inner diameter of the second annular groove 43 is equal to that of the second connecting cylinder 41, and the width of the second annular groove 43 is equal to that of the second connecting cylinder 41; the second circular groove 44 is formed in the second shear wall 2, and the diameter of the second circular groove 44 is equal to that of the second connecting column 42; the second connecting cylinder 41 is sleeved on the second connecting column 42, and one end of the second connecting cylinder 41, which is far away from the second shear wall 2, extends to the first shear wall 1 and is inserted into the second annular groove 43; the end of the second connecting column 42 away from the first shear wall 1 extends to the second shear wall 2 and is inserted into the second circular groove 44.
Referring to fig. 2 and 3, the second connecting cylinder 41 and the second connecting post 42 are connected in the same manner as the first connecting cylinder 31 and the first connecting post 32.
When the worker fixes the first shear wall 1 and the second shear wall 2, the first connecting column 32 is inserted into the first connecting cylinder 31 until the first connecting column 32 is inserted into the first circular groove 34 and abuts against the first shear wall 1; at this time, the first connecting cylinder 31 is inserted into the first annular groove 33 and abuts against the second shear wall 2; then, inserting the bolt 5 into the connecting hole 35, and connecting the bolt with the first connecting cylinder 31 and the first connecting column 32 by screw threads, so that the first shear wall 1 and the second shear wall 2 are fixedly connected; the second connecting post 42 is also inserted into the second connecting cylinder 41 in the same manner, and the second connecting cylinder 41 is screwed with the second connecting post 42 using the bolt 5.
Referring to fig. 2, fixing assemblies 6 are arranged between the first connecting cylinder 31 and the second shear wall 2, the fixing assemblies 6 are arranged in four groups, the four groups of fixing assemblies 6 are symmetrically arranged about the axis of the first connecting cylinder 31, each fixing assembly 6 comprises a fixing groove 61, a spring 62, a fixing block 63 and a clamping groove 64, and the fixing groove 61 is vertically formed in the first connecting cylinder 31; the spring 62 is vertically arranged in the fixing groove 61, and one end of the spring is fixedly connected with the first connecting cylinder 31; one end of the fixing block 63 is a spine part, and the bottom of the fixing block 63 is positioned in the fixing groove 61 and fixedly connected with the spring 62; the clamping groove 64 is formed in the side wall of the first annular groove 33 in the upward direction, and one end of the spine portion of the fixing block 63 is inserted into the clamping groove 64 and abutted against the second shear wall 2.
Referring to fig. 2 and 3, a fixing assembly 6 similar to the above is arranged between the first connecting column 32 and the first shear wall 1; a fixing assembly 6 similar to the above is arranged between the second connecting cylinder 41 and the second shear wall 2; the same fixing assembly 6 as described above is provided between the second connecting column 42 and the first shear wall 1.
After the first shear wall 1 and the second shear wall 2 are fixedly connected, the spring 62 gradually stretches due to the elastic acting force, the spring 62 drives part of the fixing block 63 to move out of the fixing groove 61, the top of the fixing block 63 can extend into the clamping groove 64 and abut against the first shear wall 1 and the second shear wall 2, the bottom of the fixing block is still located in the fixing groove 61, the position provided with the fixing block 63 is further clamped in the horizontal direction, and the connection stability of the first shear wall 1 and the second shear wall 2 is enhanced.
Referring to fig. 2, a fixing ring 7 is arranged between the first connecting cylinder 31 and the second shear wall 2, the fixing ring 7 is sleeved at one end, close to the second shear wall 2, of the first connecting cylinder 31, the longitudinal section of the fixing ring 7 is in an L shape, the fixing ring 7 is fixedly connected with the first connecting cylinder 31 and is integrally formed, one side of the fixing ring 7 is abutted to the second shear wall 2, and the fixing ring 7 is penetrated by a plurality of bolts 5 and is in threaded connection with the fixing ring 7 and the second shear wall 2.
Referring to fig. 3, the second connecting tube 41 and the first shear wall 1 are provided with the same fixing ring 7 as described above, and are connected in the same manner.
After the first shear wall 1 and the second shear wall 2 are connected, the fixing ring 7 is just abutted to the first shear wall 1 or the second shear wall 2, and then the bolt 5 is inserted into the fixing ring 7 and is in threaded connection with the fixing ring 7 and the first shear wall 1 or the second shear wall 2.
The implementation principle of the connection structure of the shear wall in the embodiment of the application is as follows: when the worker fixes the first shear wall 1 and the second shear wall 2, the first connecting column 32 is inserted into the first connecting cylinder 31 until the first connecting column 32 abuts against the first shear wall 1; at this time, the first connecting cylinder 31 abuts against the second shear wall 2, and the second connecting column 42 is inserted into the second connecting cylinder 41 in the same manner; then, the bolt 5 is inserted into the coupling hole 35 and is screwed with the first coupling cylinder 31 and the first coupling post 32. After the first shear wall 1 and the second shear wall 2 are connected, the fixing ring 7 is just abutted to the first shear wall 1 or the second shear wall 2, and then the fixing ring 7 is fixed on the first shear wall 1 or the second shear wall 2 by using the bolt 5; the spring 62 is gradually extended to drive the fixing block 63 to gradually move out of the fixing groove 61 and abut against the first shear wall 1 and the second shear wall 2, so that the position where the fixing block 63 is arranged is clamped in the horizontal direction, and the first shear wall 1 and the second shear wall 2 are tightly connected.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a connection structure of shear force wall, includes first shear force wall (1) and second shear force wall (2), and first shear force wall (1) is adjacent with second shear force wall (2), its characterized in that: a first connecting assembly (3) is arranged between the first shear wall (1) and the second shear wall (2), the first connecting assembly (3) comprises a first connecting cylinder (31) and a first connecting column (32), the first connecting cylinder (31) is fixedly connected with the first shear wall (1), the first connecting column (32) is fixedly connected with the second shear wall (2), and the first connecting column (32) is inserted into the first connecting cylinder (31) and extends into the first shear wall (1); the first connecting cylinder (31) extends to the second shear wall (2) and is inserted into the second shear wall (2), and a fixing piece is connected between the first connecting cylinder (31) and the first connecting column (32).
2. A connection structure of a shear wall according to claim 1, wherein: the first connecting cylinder (31) and the first connecting column (32) are both provided with connecting holes (35), and the connecting holes (35) on the first connecting cylinder (31) are communicated with the connecting holes (35) on the first connecting column (32); the fixing piece is a bolt (5), and the bolt (5) is inserted into the first connecting cylinder (31) and the first connecting column (32) through the connecting hole (35) and is in threaded connection with the first connecting cylinder (31) and the first connecting column (32).
3. A connection structure of a shear wall according to claim 1, wherein: a fixing assembly (6) is arranged between the first connecting cylinder (31) and the second shear wall (2), the fixing assembly (6) comprises a fixing groove (61), a spring (62), a fixing block (63) and a clamping groove (64), the fixing groove (61) is formed in the first connecting cylinder (31), and the spring (62) is located in the fixing groove (61) and fixedly connected with the first connecting cylinder (31); the fixing block (63) is positioned in the fixing groove (61), and one end of the fixing block (63) is fixedly connected with the spring (62); the clamping groove (64) is formed in the second shear wall (2), the clamping groove (64) is communicated with the fixing groove (61), and one end, far away from the spring (62), of the fixing block (63) is abutted to the second shear wall (2).
4. A connection structure of a shear wall according to claim 3, wherein: and a spine part is arranged on one side of the fixed block (63) close to the second shear wall (2).
5. A connection structure of a shear wall according to claim 2, wherein: the first connecting column (32) and the second connecting column (42) are both cylindrical, and the first connecting cylinder (31) and the second connecting cylinder (41) are cylindrical and mutually matched with the first connecting column (32) and the second connecting column (42).
6. A connection structure of a shear wall according to claim 1, wherein: a fixing ring (7) is arranged between the first connecting cylinder (31) and the second shear wall (2), the fixing ring (7) is sleeved on the first connecting cylinder (31) and is fixedly connected with the first connecting cylinder (31), and a bolt (5) is connected between the fixing ring (7) and the second shear wall (2).
7. A connection structure of a shear wall according to claim 1, wherein: a second connecting assembly (4) is arranged between the first shear wall (1) and the second shear wall (2), the second connecting assembly (4) comprises a second connecting cylinder (41) and a second connecting column (42), the second connecting cylinder (41) is fixedly connected with the second shear wall (2), the second connecting column (42) is fixedly connected with the first shear wall (1), and the second connecting column (42) is inserted into the second connecting cylinder (41) and extends into the second shear wall (2); the second connecting cylinder (41) extends to the first shear wall (1) and is inserted into the first shear wall (1), and the fixing modes between the second connecting cylinder (41) and the second connecting column (42) are the same as those between the first connecting cylinder (31) and the first connecting column (32).
8. A connection structure of a shear wall according to claim 1, wherein: the first connecting assembly (3) and the second connecting assembly (4) are distributed in the vertical direction between the first shear wall (1) and the second shear wall (2) at intervals.
CN202120312717.5U 2021-02-03 2021-02-03 Connecting structure of shear wall Active CN214884593U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120312717.5U CN214884593U (en) 2021-02-03 2021-02-03 Connecting structure of shear wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120312717.5U CN214884593U (en) 2021-02-03 2021-02-03 Connecting structure of shear wall

Publications (1)

Publication Number Publication Date
CN214884593U true CN214884593U (en) 2021-11-26

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ID=78857389

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120312717.5U Active CN214884593U (en) 2021-02-03 2021-02-03 Connecting structure of shear wall

Country Status (1)

Country Link
CN (1) CN214884593U (en)

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