A steel bar connection construction device

By introducing structures such as position locking parts, swing control parts and rotary tensioning parts into the steel bar connection device, the problem of falling off caused by inadequate steel bar connection is solved, the strength and stability of steel bar connection are improved, and automatic detection and flexible control are achieved.

CN119531550BActive Publication Date: 2025-08-08JIANGSU DINIU TECH CO LTD +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411983071.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-08-08
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

The existing steel bar connection construction device cannot effectively detect the steel bars in place, resulting in inadequate steel bar connections that can easily cause hidden dangers such as falling off. The traditional limiting method is not stable enough, which affects the firmness and safety of steel bar connections.

Method used

The installation sleeve is used to match the in-place locking member and the one-way locking member. The in-place locking member is used to detect the in-place locking member, the straightness of the steel bar is detected by the swing control, and the rotation of the tensioning member limits the spinous tiles. The locking positioning member ensures stability, achieving automatic control and flexible connection.

Benefits of technology

It realizes automatic detection and position during the steel bar plug-in process, avoids hidden dangers of falling off, improves the strength and stability of the steel bar connection, and ensures the flexibility and safety of the connection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119531550B_ABST
    Figure CN119531550B_ABST
Patent Text Reader

Abstract

The present invention discloses a steel bar connection construction device, which relates to the technical field of steel bar connection; it comprises an installation sleeve part, on which two in-place locking parts are installed; the two in-place locking parts are used to detect that the steel bars are in place; the installation sleeve part is installed with two one-way locking parts; the two one-way locking parts are respectively used to limit the cross ribs of the steel bars; by using the installation sleeve part in combination with the in-place locking parts, it is possible to detect the degree of steel bar in place when inserting the steel bars, and avoid the steel bars from not being properly connected, which affects the steel bar connection effect; so as to solve the problem that the current steel bar connection construction device is not convenient for locking the steel bars after detecting the state of the steel bars in place, and the hidden dangers such as the steel bars easily falling off when not being properly inserted are easily caused.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of steel bar connection, in particular to a steel bar connection construction device. Background Art

[0002] The main function of the steel bar connector is to connect two steel bars to form a solid structure. The steel bar connector also has the advantages of being easy to use, safe, reliable, and durable. It does not require the use of welding and other processes, can quickly connect steel bars, and reduce construction difficulty and cost. In construction projects such as bridges, for example, the connection of main bars in steel cages, steel bar connectors have been widely used. There are many types of steel bar connectors, among which connectors that do not require threading and directly limit the transverse ribs are more widely used. The main principle is to use a one-way tile structure to limit the transverse ribs of the steel bar. When the current steel bar connection construction device is manually operated to connect the steel bars, if the steel bar head is bent or the cross-section of the steel bar head is skewed, it is easy to cause the steel bar connector to not be inserted into place, and it is not convenient to lock the steel bar after detecting the position of the steel bar. If the steel bar is not inserted into place, it is easy to cause hidden dangers such as falling off. At the same time, there is a gap between the transverse ribs of the steel bar, and the workers cut the steel bar at different positions. The traditional steel bar connector is not convenient for adapting to tightening the steel bar. The steel bar is prone to shaking after being limited by the tile, affecting the firmness of the steel bar connection. It is also easy to fall off under long-term shaking and other conditions.

[0003] To this end, we propose a steel bar connection construction device. Summary of the Invention

[0004] The purpose of the present invention is to provide a steel bar connection construction device to solve the problems raised in the above background technology that the current steel bar connection construction device is not convenient for locking the steel bar after detecting whether the steel bar is in place, and the steel bar is not inserted into place and is prone to falling off.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a steel bar connection construction device, comprising a mounting sleeve, on which two in-place locking members are mounted; the two in-place locking members are used to detect that the steel bar is in place; the mounting sleeve is mounted with two one-way locking members; the two one-way locking members are respectively used to limit the cross ribs of the steel bar; the in-place locking member is used to limit the one-way locking member; the two in-place locking members are respectively sleeved with a swing control member; the swing control member is used to detect that the cross section of the steel bar is straight; the mounting sleeve Four locking positioning members are installed on the member; the four locking positioning members are used to position two locking members in place; two rotating tensioning members are installed on the mounting sleeve member; the two rotating tensioning members are used to squeeze two one-way locking members respectively; the mounting sleeve member includes: a steel sleeve, a leakage hole and a cone head bolt, the steel sleeve is provided with six rows of leakage holes, and the six rows of leakage holes are used to leak concrete slurry; two cone head bolts are threadedly connected to the steel sleeve; the ends of the two cone head bolts are respectively conical structures; the cone head bolts pass through the steel sleeve.

[0006] Preferably, the one-way locking member includes: a locking connection ring, a sliding limit strip, a connecting spring, a thorn-shaped clip, a V-shaped groove, a limit groove and a V-shaped spring piece, the locking connection ring is slidably sleeved on the steel sleeve; a circle of sliding limit strips is fixedly installed on the locking connection ring, and a circle of sliding limit strips slides on the inner side of the steel sleeve respectively; a connecting spring is sleeved inside the steel sleeve, and the end of the connecting spring is connected to the locking connection ring; six thorn-shaped clips are rotatably installed on the inner side of the locking connection ring, and A row of spine-shaped protrusions are respectively provided on the inner sides of the six spine-shaped tiles; the row of spine-shaped protrusions on the inner sides of the spine-shaped tiles are used to limit the cross ribs of the steel bars; a circle of the spine-shaped tiles are provided with V-shaped grooves on the outer sides; a circle of the spine-shaped tiles are provided with limiting grooves at the front ends; the stop rings are attached to the limiting grooves; a circle of the spine-shaped tiles are respectively fixedly installed with V-shaped spring clips at the ends, and the ends of the V-shaped spring clips are elastically fitted to the inner sides of the steel bar sleeves; the stop rings are used to limit a circle of spine-shaped tiles; the locking connecting ring elastically fits the limiting ring at the end of the cylinder.

[0007] Preferably, the rotary tensioning member further comprises: a threaded limiting ring, the threaded limiting ring being threadedly connected to the inner side of the steel sleeve; the threaded limiting ring being attached to the other end of the connecting spring; and the threaded limiting ring being used to limit the rotation of the connecting ring.

[0008] Preferably, the installation sleeve also includes: a tube end limiting ring and a spacer, and the two ends of the steel sleeve are respectively threadedly connected with a tube end limiting ring; the inner ring of the tube end limiting ring is located on the inner side of the steel sleeve; and a spacer is fixedly installed inside the steel sleeve.

[0009] Preferably, the in-place locking component includes: an in-place locking column, a stop groove, a propulsion slide shaft, an in-place spring, a limit disk and a stop ring, the in-place locking column is slidably installed on the inner side of the steel bar sleeve; the in-place locking column is provided with a stop groove; a circle of propulsion slide shaft is fixedly installed on the in-place locking column; the tail of the in-place locking column is fixedly installed with an in-place spring, and the end of the in-place spring is fixedly installed on the side of the spacer; the in-place spring is located on the inner side of the in-place locking column; the limit disk is fixedly installed inside the steel bar sleeve by bolts, and a circle of propulsion slide shaft is slidably inserted on the limit disk; the stop ring is fixedly installed on a circle of propulsion slide shaft; the stop ring is a cylindrical structure; the in-place locking column is provided with a spherical slot hole.

[0010] Preferably, the rotary tensioning member also includes: a tightening conical block, a circle of tightening conical blocks is fixedly installed on the inner side of the rotary connecting ring, and a circle of the tightening conical blocks is respectively located between a circle of thorn-shaped clamping shoes; the tightening conical block and the V-shaped groove are staggered; the tightening conical block is used to squeeze the thorn-shaped clamping shoes inward.

[0011] Preferably, the swing control member further comprises: a steel bar end ring, the steel bar end ring is fixedly mounted on the plug-in fitting disk, and the inner side of the steel bar end ring is a slope structure; the steel bar end ring is used to sleeve the end of the steel bar.

[0012] Preferably, the swing control component includes: a swing adapter ball head and a plug-in fitting disk, the swing adapter ball head is sleeved in the spherical groove on the locking column in place; the plug-in fitting disk is fixedly installed on the end of the swing adapter ball head; the plug-in fitting disk is used to fit the end of the steel bar.

[0013] Preferably, the rotary tensioning member includes: a rotary connecting ring and a tapered hole, the rotary connecting ring is rotatably installed on the inner side of the steel bar sleeve; a tapered hole is opened on the side of the rotary connecting ring; the edge of the tapered hole is attached to the tapered head bolt; the tapered head bolt is used to squeeze the edge of the tapered hole to drive the rotary connecting ring to rotate.

[0014] Preferably, the locking positioning part includes: a spring bolt, a locking column and a locking spring, the spring bolt is threadedly connected to the steel sleeve; a locking column is slidably inserted into the steel sleeve, and the diameter of the locking column is smaller than the width of the stop groove; the locking column is used to insert into the stop groove; a locking spring is fixedly installed at the bottom of the spring bolt, and the end of the locking spring is connected to the locking column; the locking column elastically fits the locking column in place.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] The present invention adopts an installation sleeve member in conjunction with a locking member in place, which can detect the degree of placement of the steel bars when inserting the steel bars, avoid the steel bars from not being properly connected, and affecting the steel bar connection effect, thereby ensuring the steel bar connection strength of the structure. The use of the locking member in place can utilize its own retractable structure. Only when the steel bar is inserted into place can the limiting one-way locking member be released, and the one-way locking steel bar can be controlled automatically, thereby ensuring the flexibility of the use of the structure, and preventing the steel bar head from being unable to be fully inserted into the installation sleeve member due to bending. The staff only needs to insert a small amount of the steel bar head into the installation sleeve member.

[0017] The swing control part uses a structure that can swing at multiple angles with its own swinging adaptor ball head, which can be used to detect the straightness of the steel bar head, and avoid the steel bar head end being skewed due to factors such as improper operation when cutting. When the steel bar head end is skewed, its complete length for insertion into the steel bar sleeve will be reduced, which cannot meet the needs of a firm connection. This structure can improve the standardization of steel bar end processing, improve the quality of steel bar connections, and avoid improper operation by workers.

[0018] The use of a rotary tensioning piece can be used for radial rotation and limiting the spike-shaped tile clamp, which can avoid the problem of instability in the traditional method of relying on elastic means such as elastic clamps to limit the position of the spike-shaped tile clamp to the steel bar. At the same time, when the rotary tensioning piece rotates radially, a circle of limiting spike-shaped tile clamps can be controlled to move to one side of the spacer, which can be used to pull the steel bar inward to ensure that the spike-shaped protrusion on the inner side of the spike-shaped tile clamp can fit tightly against the cross ribs of the steel bar to avoid clearance shaking.

[0019] The locking positioning piece can be used to control the positioning of the locking column after it is fully retracted, which can ensure the stability of the locking column after retraction. It can automatically limit the position, which is more flexible and convenient, and ensures the efficiency of steel bar connection. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the overall structure of a steel bar connection construction device of the present invention after connecting steel bars;

[0021] Figure 2 This is a cross-sectional view of the internal structure of a steel bar connection construction device of the present invention;

[0022] Figure 3 This is a schematic diagram of the installation position structure of the cone head bolt of the present invention;

[0023] Figure 4 This is a schematic diagram of the sleeve assembly structure of the present invention;

[0024] Figure 5 This is a schematic diagram of the tail structure of the locking member in place according to the present invention;

[0025] Figure 6 This is a schematic diagram of the bottom structure of the locking member in place according to the present invention;

[0026] Figure 7 This is a schematic structural diagram of a one-way locking member of the present invention;

[0027] Figure 8 This is a schematic diagram of the thorn-shaped tile structure of the present invention;

[0028] Figure 9 For the present invention Figure 2 A magnified view of the structure of the middle B region;

[0029] Figure 10 For the present invention Figure 2 A magnified view of the structure of the middle C region;

[0030] Figure 11 This is a schematic structural diagram of a rotary tensioning member according to the present invention;

[0031] Figure 12 For the present invention Figure 3 A magnified view of the structure of region E in the middle.

[0032] In the figure: 1. Mounting sleeve; 101. Rebar sleeve; 1011. Leakage hole; 102. Cone-head bolt; 103. Cylinder end stop ring; 104. Spacer; 2. Position locking member; 201. Position locking column; 2011. Stop groove; 2012. Push slide shaft; 202. Position spring; 203. Stop plate; 204. Stop ring; 3. One-way locking member; 301. Locking connecting ring; 3011. Sliding limit strip; 302. Connecting spring; 303, thorn-shaped tile clip; 3031, V-shaped groove; 3032, limit groove; 304, V-shaped spring; 4, swing control part; 401, swing adapter ball head; 402, plug-in fitting disk; 403, steel bar end ring; 5, locking positioning part; 501, spring bolt; 502, locking column; 503, locking spring; 6, rotating tensioning part; 601, rotating connecting ring; 6011, tapered hole; 602, tightening tapered block; 603, threaded limit ring. DETAILED DESCRIPTION

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] Example 1: Please refer to Figures 1 to 12 As shown:

[0035] The present invention provides a technical solution: a steel bar connection construction device, comprising a mounting sleeve 1, on which two in-place locking members 2 are mounted; the two in-place locking members 2 are used to detect that the steel bar is in place; the mounting sleeve 1 is mounted with two one-way locking members 3; the two one-way locking members 3 are respectively used to limit the cross ribs of the steel bar; the in-place locking members 2 are used to limit the one-way locking members 3; the two in-place locking members 2 are respectively sleeved with swing control members 4; the swing control member 4 is used to detect that the cross section of the steel bar is straight; the mounting sleeve 1 is mounted with four locking positioning members 5; the four locking positioning members 5 is used to position the two locking members 2 in place; two rotating tensioning members 6 are installed on the installation sleeve member 1; the two rotating tensioning members 6 are respectively used to squeeze the two one-way locking members 3; the installation sleeve member 1 includes: a steel sleeve 101, leakage holes 1011 and a tapered head bolt 102, the steel sleeve 101 is provided with six rows of leakage holes 1011, the six rows of leakage holes 1011 are used to leak concrete slurry; two tapered head bolts 102 are threadedly connected to the steel sleeve 101; the ends of the two tapered head bolts 102 are respectively tapered structures; the tapered head bolts 102 pass through the steel sleeve 101.

[0036] Among them, the installation sleeve part 1 also includes: a cylinder end limiting ring 103 and a spacer 104, and the two ends of the steel sleeve 101 are respectively threadedly connected with the cylinder end limiting ring 103; the inner ring of the cylinder end limiting ring 103 is located inside the steel sleeve 101; the spacer 104 is fixedly installed inside the steel sleeve 101; the in-place locking part 2 includes: an in-place locking column 201, a stop groove 2011, a push slide shaft 2012, an in-place spring 202, a limit plate 203 and a stop ring 204, and the in-place locking column 201 is slidably installed on the inner side of the steel sleeve 101; a stop groove 2011 is provided on the in-place locking column 201 ; A circle of pushing slide shaft 2012 is fixedly installed on the in-place locking column 201; a position spring 202 is fixedly installed on the tail of the in-place locking column 201, and the end of the position spring 202 is fixedly installed on the side of the spacer 104; the position spring 202 is located inside the in-place locking column 201; a limit plate 203 is fixedly installed inside the steel sleeve 101 by bolts, and a circle of pushing slide shaft 2012 is slidably inserted on the limit plate 203; the stop ring 204 is fixedly installed on a circle of pushing slide shaft 2012; the stop ring 204 is a cylindrical structure; a spherical slot is provided on the in-place locking column 201; one-way The locking member 3 includes: a locking connection ring 301, a sliding limit strip 3011, a connecting spring 302, a thorn-shaped clip 303, a V-shaped groove 3031, a limit groove 3032 and a V-shaped spring piece 304. The locking connection ring 301 is slidably sleeved on the steel sleeve 101; a circle of sliding limit strips 3011 is fixedly installed on the locking connection ring 301, and a circle of sliding limit strips 3011 slides on the inner side of the steel sleeve 101 respectively; a connecting spring 302 is sleeved inside the steel sleeve 101, and the end of the connecting spring 302 is connected to the locking connection ring 301; the inner side of the locking connection ring 301 rotates Six spike-shaped clips 303 are dynamically installed, and a row of spike-shaped protrusions are respectively provided on the inner side of the six spike-shaped clips 303; the row of spike-shaped protrusions on the inner side of the spike-shaped clips 303 is used to limit the cross ribs of the steel bars; a V-shaped groove 3031 is opened on the outer side of a circle of spike-shaped clips 303; a limiting groove 3032 is respectively provided at the front end of a circle of spike-shaped clips 303; a stop ring 204 is attached to the limiting groove 3032; a V-shaped spring clip 304 is fixedly installed at the end of a circle of spike-shaped clips 303, and the end of the V-shaped spring clip 304 is elastically fitted to the inner side of the steel sleeve 101; the stop ring 204 is used to limit a circle of spike-shaped clips 303;The locking connection ring 301 elastically fits the tube end limit ring 103, and the installation sleeve part 1 is used to cooperate with the locking part 2 in place, so that the degree of the steel bar in place can be detected when the steel bar is inserted, so as to avoid the steel bar not being properly connected and affecting the steel bar connection effect, thereby ensuring the strength of the steel bar connection of this structure. The locking part 2 in place can utilize its own retractable structure, and only when the steel bar is inserted in place can the limiting one-way locking part 3 be released to control the one-way locking steel bar, which can realize automatic control and ensure the flexibility of use of this structure. The sliding locking connection ring 301 is easy to disassemble and can be used to replace it after disassembling the locking connection ring 301. Different types of thorn-shaped clips 303 can be used. The spacing and size of the row of thorn-shaped protrusions on the inner side of the thorn-shaped clip 303 can be preset in multiple specifications, which can be easily adapted to different steel bar connection requirements, such as spiral cross ribs and crescent-shaped cross ribs. After the cylinder end limiting ring 103 is rotated and disassembled, the locking connection ring 301 can be removed. When the steel bar needs to be connected, the steel bar can be directly inserted into the steel bar sleeve 101. During the process, the stop ring 204 will limit the stop groove 3032, and the thorn-shaped clip 303 cannot fit the limit transverse rib until the steel bar head touches and squeezes the locking post 201. The locking post 201 is squeezed and retracted, compressing the locking spring 202. When the locking post 201 retracts, the stop ring 204 is driven to retract together until it no longer blocks the limit groove 3032. At this time, under the pressure of the V-shaped spring piece 304, the thorn-shaped clip 303 can retract inward, and the inner row of thorn-shaped protrusions is inserted between the transverse ribs. The thorn-shaped structure of the thorn-shaped clip 303 is used to limit the transverse rib in one direction to prevent loosening. The six rows of leakage holes 1011 are used to leak concrete slurry, which can facilitate improving the integrity of this structure during subsequent pouring construction.

[0037] Among them, the swing control part 4 includes: a swing adapter ball head 401 and a plug-in fitting disk 402, the swing adapter ball head 401 is sleeved in the spherical groove on the locking column 201 in place; the end of the swing adapter ball head 401 is fixedly installed with a plug-in fitting disk 402; the plug-in fitting disk 402 is used to fit the end of the steel bar; the swing control part 4 also includes: a steel bar end ring 403, a steel bar end ring 403 is fixedly installed on the plug-in fitting disk 402, and the inner side of the steel bar end ring 403 is a slope structure; the steel bar end ring 403 is used to sleeve the end of the steel bar, and the swing control part 4 used uses the structure that its own swing adapter ball head 401 can swing at multiple angles, which can be used to detect the straightness of the steel bar head, so as to avoid the steel bar head end being cut due to factors such as improper operation when cutting. The end of the steel bar head is skewed. When the end of the steel bar head is skewed, the length of the steel bar sleeve 101 that is fully inserted into the end of the steel bar sleeve 101 will be reduced, and the demand for a firm connection cannot be met. This structure can improve the standardization of the steel bar end processing, improve the quality of steel bar connection, and avoid improper operation by workers. When the steel bar head is skewed, the skewed part of the steel bar head end will squeeze the plug-in fitting disk 402. After the plug-in fitting disk 402 is squeezed by the skewed steel bar head, the plug-in fitting disk 402 will be skewed, and one side of the plug-in fitting disk 402 will first touch the limit disk 203. At this time, the steel bar cannot continue to advance, and the locking column 201 in place cannot be completely retracted, realizing the end straightness detection. The skewed steel bar head cannot be connected and used normally, and the end needs to be straightened before connection.

[0038] The locking locator 5 includes: a spring bolt 501, a locking column 502 and a locking spring 503. The spring bolt 501 is threadedly connected to the steel sleeve 101; the locking column 502 is slidably inserted into the steel sleeve 101, and the diameter of the locking column 502 is smaller than the width of the stop groove 2011; the locking column 502 is used to insert into the stop groove 2011; a locking spring 503 is fixedly installed at the bottom of the spring bolt 501, and the end of the locking spring 503 is connected to the locking column 502; the locking column 502 elastically fits the locking column 201 in place, and the locking positioning piece 5 can be used to control the positioning of the locking column 201 in place after it is fully retracted, which can ensure the stability of the locking column 201 in place after retraction, and can automatically limit the position, which is more flexible and convenient, and ensures the efficiency of steel bar connection. When the locking column 201 in place retracts, until the locking column 201 in place is fully retracted and close to the spacer 104, at this time, under the elastic extrusion of the locking spring 503, the locking column 502 can be pushed into the stop groove 2011 for positioning.

[0039] Embodiment 2, on the basis of embodiment 1, the rotary tensioning member 6 comprises: a rotary connecting ring 601 and a tapered hole 6011, the rotary connecting ring 601 is rotatably mounted on the inner side of the steel sleeve 101; a tapered hole 6011 is opened on the side of the rotary connecting ring 601; the edge of the tapered hole 6011 is attached to the tapered head bolt 102; the tapered head bolt 102 is used to squeeze the edge of the tapered hole 6011 to drive the rotary connecting ring 601 to rotate; the rotary tensioning member 6 also comprises: a tightening tapered block 602, a circle of tightening tapered blocks 602 is fixedly mounted on the inner side of the rotary connecting ring 601, and a circle of tightening tapered blocks 602 is respectively located between a circle of thorn-shaped clip tiles 303; the tightening tapered blocks 602 are staggered with the V-grooves 3031 The tightening tapered block 602 is used to squeeze the thorn-shaped clip tile 303 inward; the rotation tensioning member 6 also includes: a threaded limiting ring 603, the threaded limiting ring 603 is threadedly connected to the inner side of the steel sleeve 101; the threaded limiting ring 603 is attached to the other end of the connecting spring 302; the threaded limiting ring 603 is used to limit the rotation of the connecting ring 601, and the rotation tensioning member 6 can be used for radial rotation, limiting the thorn-shaped clip tile 303, which can avoid the problem of insufficient stability of the traditional method of relying on elastic clamps and other means to make the thorn-shaped clip tile 303 fit the steel bar. At the same time, when the rotation tensioning member 6 rotates radially, a circle of limiting thorn-shaped clip tile 303 can be controlled to move to one side of the spacer 104, which can be used to pull the steel bar inward. Ensure that the thorn-shaped protrusions on the inner side of the thorn-shaped clamp 303 can fit tightly against the transverse ribs of the steel bar to avoid clearance swing. Because when the steel bar is actually cut, the distance between the cutting position and the nearest transverse rib is difficult to guarantee, which results in that after the transverse ribs of the steel bar are clamped by the thorn-shaped clamp 303, the steel bar can still have room to swing in the axial direction. This structure can reduce clearance swing, improve connection stability, and avoid loosening. After the thorn-shaped clamp 303 limits the transverse rib, the cone head bolt 102 is rotated to squeeze the edge of the conical hole 6011. At this time, the conical hole 6011 will rotate, driving the inner circle to tighten the conical block 602, squeezing the V-groove 3031, and utilizing the V-shaped structure of the V-groove 3031. When the groove 3031 is squeezed by the tightening conical block 602, the thorn-shaped clamping tile 303 can be compressed and contracted inward, and can fit tightly against the steel bar, no longer relying solely on the elastic squeezing of the V-shaped spring piece 304. At the same time, by tightening the conical block 602 and the staggered setting of the V-shaped groove 3031, the V-shaped groove 3031 will be squeezed to the side of the spacer 104, driving the locking connection ring 301 and the thorn-shaped clamping tile 303 to move to the side of the spacer 104. The thorn-shaped clamping tile 303 will use the inner thorn-shaped protrusion to drive the steel bar to move to the side of the spacer 104, which can reduce the gap between the inner thorn-shaped protrusion of the thorn-shaped clamping tile 303 and the cross rib of the steel bar, so that the steel bar can be stably clamped, ensuring the connection strength during the subsequent pouring of concrete.

[0040] The working principle of this embodiment is as follows: when it is necessary to connect the steel bars, the steel bars can be directly inserted into the steel bar sleeve 101. During the process, the stop ring 204 will limit the stop groove 3032, and the thorn-shaped clip 303 cannot fit the limit cross rib until the steel bar head touches and squeezes the locking column 201. The locking column 201 is squeezed and retracted, compressing the spring 202. When the locking column 201 is retracted, the stop ring 204 is driven to retract together until it does not block the limit groove 3032. At this time, under the pressure of the V-shaped spring piece 304, the thorn-shaped clip 303 can retract, and the inner row of thorn-shaped protrusions are inserted between the cross ribs to facilitate The thorn-shaped structure of the thorn-shaped clip 303 is used to limit the transverse rib in one direction to prevent it from loosening. When the straight steel bar head is inserted into the steel bar sleeve 101, the steel bar head is used to touch the plug-in fitting disk 402, and the steel bar end ring 403 is sleeved on the steel bar head to assist in limiting. The swinging adapter ball head 401 can be pushed to drive the locking column 201 in place to retract, and the thorn-shaped clip 303 can shrink normally to perform one-way limiting. On the contrary, when the steel bar head is skewed, the skewed part of the steel bar head end will squeeze the plug-in fitting disk 402. After the plug-in fitting disk 402 is squeezed by the skewed steel bar head, the plug-in fitting disk 402 will be released. When the locking post 201 is retracted, the locking post 201 is completely retracted and close to the spacer 104, and the locking spring 503 is elastically squeezed to push the locking post 502 into the stop groove 2011 for positioning. When the locking post 502 needs to be removed, the spring bolt 501 can be rotated. After the thorn-shaped clip 303 limits the cross rib, the cone head bolt 102 can be rotated to squeeze the cone head. The edge of the conical hole 6011, at this time the conical hole 6011 will rotate, driving the inner circle to tighten the conical block 602, squeezing the V-shaped groove 3031, and the thorn-shaped clamping tile 303 can be compressed and contracted inward. At the same time, the V-shaped groove 3031 close to the side of the spacer 104 will also be squeezed, driving the locking connection ring 301 and the thorn-shaped clamping tile 303 to move to the side of the spacer 104. The thorn-shaped clamping tile 303 will use the inner thorn-shaped protrusion to drive the steel bar to move to the side of the spacer 104, which can reduce the gap between the inner thorn-shaped protrusion of the thorn-shaped clamping tile 303 and the cross rib of the steel bar, so that the steel bar can be stably clamped.

[0041] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0042] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A steel bar connection construction device, comprising a mounting sleeve member (1), wherein two locking members (2) are mounted on the mounting sleeve member (1); characterized in that: The two in-place locking members (2) are used to detect whether the steel bars are in place; two one-way locking members (3) are installed on the installation sleeve member (1); the two one-way locking members (3) are respectively used to limit the position of the steel bar transverse ribs; the in-place locking member (2) is used to limit the one-way locking member (3); The two in-position locking members (2) are respectively sleeved with swing control members (4); the swing control members (4) are used to detect the straightness of the steel bar cross section; Four locking positioning members (5) are installed on the installation sleeve member (1); the four locking positioning members (5) are used to position the two locking members (2) in place; Two rotating tensioning members (6) are installed on the mounting sleeve member (1); the two rotating tensioning members (6) are respectively used to squeeze the two one-way locking members (3); The mounting sleeve member (1) comprises: a steel sleeve (101), leakage holes (1011) and a tapered head bolt (102); the steel sleeve (101) is provided with six rows of leakage holes (1011), and the six rows of leakage holes (1011) are used for leaking concrete slurry; two tapered head bolts (102) are threadedly connected to the steel sleeve (101); the ends of the two tapered head bolts (102) are respectively tapered structures; the tapered head bolts (102) pass through the steel sleeve (101); The mounting sleeve member (1) further comprises: a sleeve end limiting ring (103) and a spacer (104); both ends of the steel sleeve (101) are respectively threadedly connected with the sleeve end limiting ring (103); the inner ring of the sleeve end limiting ring (103) is located inside the steel sleeve (101); and the spacer (104) is fixedly installed inside the steel sleeve (101); The in-place locking member (2) comprises: an in-place locking column (201), a stop groove (2011), a push slide shaft (2012), an in-place spring (202), a limit plate (203) and a stop ring (204); the in-place locking column (201) is slidably mounted on the inner side of the steel bar sleeve (101); the in-place locking column (201) is provided with a stop groove (2011); a circle of push slide shaft (2012) is fixedly mounted on the in-place locking column (201); the tail of the in-place locking column (201) is fixedly mounted with an in-place spring (202), and the end of the in-place spring (202) is fixedly mounted on the side of the spacer (104); the in-place spring (202) is located on the inner side of the in-place locking column (201); a limit plate (203) is fixedly mounted inside the steel sleeve (101) by bolts, and a circle of propulsion sliding shaft (2012) is slidably inserted on the limit plate (203); the stop ring (204) is fixedly mounted on a circle of propulsion sliding shaft (2012); the stop ring (204) is a cylindrical structure; a spherical slot is provided on the in-place locking column (201).

2. A steel bar connection construction device according to claim 1, characterized in that: The one-way locking member (3) comprises: a locking connection ring (301), a sliding limit strip (3011), a connecting spring (302), a spike-shaped clip (303), a V-shaped groove (3031), a limit groove (3032) and a V-shaped spring (304); the locking connection ring (301) is slidably mounted on the steel sleeve (101); a circle of sliding limit strips (3011) is fixedly mounted on the locking connection ring (301), and a circle of sliding limit strips (3011) slides on the inner side of the steel sleeve (101); a connecting spring (302) is mounted inside the steel sleeve (101), and the end of the connecting spring (302) is connected to the locking connection ring (301); six spike-shaped clips are rotatably mounted on the inner side of the locking connection ring (301). The invention relates to a shoe (303), and the inner sides of the six thorn-shaped shoe tiles (303) are respectively provided with a row of thorn-shaped protrusions; the row of thorn-shaped protrusions on the inner sides of the thorn-shaped shoe tiles (303) are used to limit the transverse ribs of the steel bars; a V-shaped groove (3031) is opened on the outer sides of the thorn-shaped shoe tiles (303); the front ends of the thorn-shaped shoe tiles (303) are respectively provided with limiting grooves (3032); the stop ring (204) is attached to the limiting grooves (3032); the ends of the thorn-shaped shoe tiles (303) are respectively fixedly installed with V-shaped spring pieces (304), and the ends of the V-shaped spring pieces (304) are elastically attached to the inner sides of the steel bar sleeves (101); the stop ring (204) is used to limit the position of the thorn-shaped shoe tiles (303); the locking connection ring (301) is elastically attached to the sleeve end limiting ring (103).

3. A steel bar connection construction device according to claim 1, characterized in that: The swing control member (4) comprises: a swing adapting ball head (401) and a plug-in fitting disc (402); the swing adapting ball head (401) is sleeved in a spherical groove on the in-place locking column (201); the plug-in fitting disc (402) is fixedly mounted on the end of the swing adapting ball head (401); the plug-in fitting disc (402) is used to fit the end of a steel bar.

4. A steel bar connection construction device according to claim 3, characterized in that: The swing control member (4) further comprises: a steel bar end ring (403), the steel bar end ring (403) being fixedly mounted on the plug-in fitting disk (402), and the inner side of the steel bar end ring (403) being a sloped structure; the steel bar end ring (403) is used for sleeve-fitting the end of the steel bar.

5. A steel bar connection construction device according to claim 1, characterized in that: The locking positioning member (5) comprises: a spring bolt (501), a locking clamping column (502) and a locking spring (503), wherein the spring bolt (501) is threadedly connected to the steel sleeve (101); the locking clamping column (502) is slidably inserted into the steel sleeve (101), and the diameter of the locking clamping column (502) is smaller than the width of the stop groove (2011); the locking clamping column (502) is used to be inserted into the stop groove (2011); the locking spring (503) is fixedly installed at the bottom of the spring bolt (501), and the end of the locking spring (503) is connected to the locking clamping column (502); the locking clamping column (502) elastically fits the locking column (201) in place.

6. A steel bar connection construction device according to claim 2, characterized in that: The rotary tensioning member (6) comprises: a rotary connecting ring (601) and a tapered hole (6011); the rotary connecting ring (601) is rotatably mounted on the inner side of the steel bar sleeve (101); the tapered hole (6011) is provided on the side of the rotary connecting ring (601); the edge of the tapered hole (6011) is attached to the tapered head bolt (102); the tapered head bolt (102) is used to squeeze the edge of the tapered hole (6011) to drive the rotary connecting ring (601) to rotate.

7. A steel bar connection construction device according to claim 6, characterized in that: The rotary tensioning member (6) further comprises: a tightening conical block (602); a circle of tightening conical blocks (602) is fixedly mounted on the inner side of the rotary connecting ring (601); a circle of the tightening conical blocks (602) is respectively located between a circle of the thorn-shaped clamping tiles (303); the tightening conical blocks (602) and the V-shaped grooves (3031) are staggered; the tightening conical blocks (602) are used to squeeze the thorn-shaped clamping tiles (303) inward.

8. A steel bar connection construction device according to claim 7, characterized in that: The rotating tensioning member (6) further comprises: a threaded limiting ring (603), the threaded limiting ring (603) being threadedly connected to the inner side of the steel sleeve (101); the threaded limiting ring (603) being attached to the other end of the connecting spring (302); and the threaded limiting ring (603) being used to limit the rotation of the connecting ring (601).

Citation Information

Patent Citations

  • Herringbone reinforcing bar rapid connecting sleeve

    CN108730285A

  • Threaded anchor for poured concrete metal deck floors and wood frame floors

    US6240697B1