CONSTRUCTION METHOD FOR RECYCLABLE ANCHOR ROD
20220267979 · 2022-08-25
Assignee
Inventors
- Jinqing JIA (Dalian City, CN)
- Lihua ZHANG (Dalian City, CN)
- Xing GAO (Dalian City, CN)
- Bingxiong TU (Dalian City, CN)
Cpc classification
International classification
E02D5/76
FIXED CONSTRUCTIONS
Abstract
A construction method for a recyclable anchor rod. The recyclable anchor rod includes a reinforcing steel bar body and an unlocking device. The unlocking device includes a housing, a fixed panel, a top limiter, lifting screw limiters, a lifting screw, transmission gears, gear clamping arms, a thread limiter, and a pressure bearing plate. The construction method includes: 1, positioning; 2, drilling; 3, anchoring; 4, performing primary grouting; 5, performing secondary grouting; 6, tensioning and locking; and 7, recycling the reinforcing steel bar body. Shock-absorbing pressure-bearing devices are arranged between the lower end of the housing and the pressure bearing plate. The present disclosure effectively solves the problems that a conventional anchor rod hinders the construction of an adjacent underground structure and pollutes underground environment, and the problems that the existing recyclable anchor rod unlocking device is unstable, does not have earthquake resistance, and cannot realize 100% recovery of rod bodies.
Claims
1. A construction method for a recyclable anchor rod, wherein the recyclable anchor rod comprises a reinforcing steel bar body, an unlocking device, a base plate, and an anchor head; the tail end of the reinforcing steel bar body is an unlocking end; the unlocking end comprises a first conventional section, a first diameter reducing section, a second conventional section, a threaded section, and a second diameter reducing section from bottom to top; the diameter of the second diameter reducing section is less than or equal to the thread inner diameter of the threaded section; the cross section of the top of the second diameter reducing section is in a radial sawtooth shape; the unlocking device includes a housing, a top limiter located at the top end of the housing, and a fixed panel fixedly connected to the housing; annular lifting screw limiters are arranged on the fixed panel; the lifting screw penetrates through the lifting screw limiters; the internal threads of the lifting screw limiters are engaged with the external threads of the lifting screw; the cross section of the bottom of the lifting screw is in a radial sawtooth shape and is matched with the cross section of the top of the second reducing section; transmission gears are symmetrically fixed to the left side and the right side of the fixed panel through a transmission gear shaft; gear clamping arms are fixed to the left end and the right end of the fixed panel through a gear clamping arm shaft; the transmission gears are in engaged connection with the external threads of the lifting screw; gears at the upper ends of the gear clamping arms are in engaged connection with the transmission gears; open-close type pressure bearing semi-circular rings are arranged at the lower ends of the gear clamping arms; the lifting screw limiters fixedly connected to the housing are arranged below the fixed panel; the threaded section penetrates through the lifting screw limiters; the external threads of the threaded section are in engaged connection with the internal threads of the lifting screw limiters; a pressure bearing plate is arranged at the lower end of the housing; the construction method comprises the following steps: step one, determining a mounting position of an anchor rod; step two, performing drilling treatment; step three, combining and mounting the anchor rod: combining the unlocking end and the unlocking device; bonding the two open-close type pressure bearing semi-circular rings into an open-close type pressure bearing ring; making the first diameter reducing section penetrate through the open-close type pressure bearing ring without friction therebetween; tensioning the first diameter reducing section through the gear clamping arms, wherein dual locking of the reinforcing steel bar body is realized by the open-close type pressure bearing ring and the lifting screw limiters; placing the anchor rod; step four, performing primary grouting; step five, performing secondary splitting grouting; step six, tensioning and locking the anchor rod; and step seven, recycling the reinforcing steel bar body after the anchor rod completes supporting and protecting tasks: removing the base plate and anchor rod; rotating the reinforcing steel bar body clockwise; making the reinforcing steel bar body rise; making the first diameter reducing section move upwards in the open-close type pressure bearing ring, wherein the sawteeth of the cross section of the top of the second diameter reducing section are engaged with the sawteeth of the cross section of the bottom of the lifting screw; meanwhile, driving the lifting screw to rise rotatably, wherein the lifting screw rises rotatably to drive the transmission gears to rotate, so as to drive the gear clamping arms to unfold; opening the open-close type pressure bearing ring, relieving the locking of the first diameter reducing section of the reinforcing steel bar body to complete a first unlocking program; then continuing rotating the reinforcing steel bar body clockwise; when the lifting screw touches the top limiter, rotating the reinforcing steel bar body reversely, wherein a second unlocking program is completed when the threaded section of the reinforcing steel bar body is rotated out of the thread limiter, and then the reinforcing steel bar body can be pulled out.
2. The construction method for a recyclable anchor rod according to claim 1, wherein shock-absorbing pressure-bearing devices are arranged between the lower end of the housing and the pressure bearing plate; the housing comprises an inner housing and an outer housing that are nested and connected in a sliding manner; each shock-absorbing pressure-bearing device comprises an outer mold, a moving plate, and a shock absorber; the lower surface of the bottom of the outer mold is fixedly connected to the pressure bearing plate; the top of the outer mold is fixedly connected to the outer housing in a sealed manner; the upper surface of the top of the moving plate is fixedly connected to the lower end of the inner housing; the outer side wall of the moving plate is connected to the inner side wall of the outer mold in a sliding manner; the shock absorber comprises a top sliding block and a sleeve base; the upper surface of the top sliding block is fixedly connected to the lower surface of the top of the moving plate; the lower surface of the bottom of the sleeve base is fixedly connected to the upper surface of the bottom of the outer mold; the top sliding block comprises a top sliding block outer ring body and a top sliding block central body; the top sliding block central body comprises a variable diameter head and a constant diameter shaft; the diameter of the variable diameter head is greater than that of the constant diameter shaft; the outer side wall of the lower part of the top sliding block outer ring body is connected to the inner side wall of the sleeve base in a sliding manner; a limiting clamping seat is located below the top sliding block, and the outer side wall of the limiting clamping seat is connected to the inner side wall of the lower part of the top sliding block outer ring body; a hole is formed in the top of the limiting clamping seat; the variable diameter head is connected to the inner side wall of the limiting clamping seat in a sliding manner through the hole; and the limiting clamping seat limits the reducing head; a support seat is arranged on the upper surface of the bottom of the limiting clamping seat; the lower surface of the bottom of the limiting clamping seat is fixedly connected to the upper surface of the bottom of the sleeve base; a spring surrounds the outer side of the limiting clamping seat; the distance between the spring and the top sliding block outer ring body is greater than the distance between the lower surface of the top of the limiting clamping seat and the top of the variable diameter head; an annular rubber block is arranged on the outer side of the spring; the height of the annular rubber block is less than that of the spring; the height of the spring is less than that of the limiting clamping seat; the annular rubber block is nested inside the sleeve base, and the outer side wall of the annular rubber block is connected to the inner side wall of the sleeve base in a sliding manner; and step three further comprises combining the shock-absorbing pressure-bearing devices.
3. The construction method for a recyclable anchor rod according to claim 2 wherein the shock-absorbing pressure-bearing devices are symmetrically distributed on the periphery of the reinforcing steel bar body.
4. The construction method for a recyclable anchor rod according to claim 2, wherein the support seat is arranged below the variable diameter head.
5. The construction method for a recyclable anchor rod according to claim 1, wherein lifting screw limiters are symmetrically arranged at the upper end and the lower end of the fixed panel.
6. The construction method for a recyclable anchor rod according to claim 1, wherein the recyclable anchor rod further comprises a plastic sleeve; the lubricating treatment is performed between the reinforcing steel bar body and the plastic sleeve; and there is no friction between the reinforcing steel bar body and the plastic sleeve.
7. The construction method for a recyclable anchor rod according to claim 1, wherein two sides of the open-close type pressure bearing semi-circular rings are bonded into an open-close type pressure bearing ring by using adhesive tapes; the adhesive tapes achieve an effect of fixing when the open-close type pressure bearing ring is closed; and when the gear clamping arms are unfolded, the open-close type pressure bearing ring is open, and the adhesive tapes are damaged.
8. The construction method for a recyclable anchor rod according to claim 2, wherein in step three, the shock-absorbing pressure-bearing devices are connected to the pressure bearing plate by welding or bolting.
9. The construction method for a recyclable anchor rod according to claim 2, wherein in step six, when the anchor rod is subjected to an earthquake damage during supporting and protecting, tensioning and locking processes are repeated after an earthquake, so as to recover a working state of the anchor rod before the earthquake.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042] Reference signs in drawings: 1—reinforcing steel bar body; 2—unlocking device; 3—first conventional section; 4—first diameter reducing section; 5—second conventional section; 6—threaded section; 7—second diameter reducing section; 8—housing; 801—inner housing; 802—outer housing; 9—top limiter; 10—fixed panel; 11—lifting screw limiter; 12—lifting screw; 13—transmission gear; 14—transmission gear shaft; 15—gear clamping arm; 16—gear clamping arm shaft; 17—thread limiter; 18—open-close type pressure bearing semi-circular ring; 19—shock-absorbing pressure-bearing device; 1901—outer mold; 1902—moving plate; 20—shock absorber; 2001—top sliding block; 2001a—top sliding block outer ring body; 2001b—top sliding block central body; 2001b1—variable diameter head; 2001b2—constant diameter shaft; 2002—limiting clamping seat; 2003—support seat; 2004—spring; 2005—annular rubber block; 2006—sleeve base; 21—pressure bearing plate; 22—plastic sleeve; and 23—adhesive tape.
DETAILED DESCRIPTION
[0043] It should be understood that orientations or positional relationships indicated by the terms “length”, “width”, “upper”, “lower”, “front”, “rear”, “left”, “right”, “vertical”, “longitudinal”, “horizontal”, “top”, “bottom”, “inside”, “outside”, etc. are the orientations or positional relationships shown based on the accompanying drawings, and are merely for facilitating describing the present disclosure and simplifying the description, rather than indicating or implying that the devices or elements must have particular orientations, and be constructed and operated in particular orientations. Thus, it cannot be construed as a limitation to the present disclosure.
Embodiment 1
[0044]
[0045] The construction method includes the following steps:
[0046] step one, a mounting position of the anchor rod is determined;
[0047] step two, drilling treatment is determined;
[0048] step three, the anchor rod is combined and mounted: the anchor rod is combined and mounted: the unlocking end and the unlocking device 2 are combined; the two open-close type pressure bearing semi-circular rings 18 are bonded into an open-close type pressure bearing ring; the first diameter reducing section 4 penetrates through the open-close type pressure bearing ring without friction therebetween; the first diameter reducing section 4 is tensioned through the gear clamping arms 15; dual locking of the reinforcing steel bar body 1 is realized by the open-close type pressure bearing ring and the thread limiter 17; the anchor rod is placed;
[0049] step four, primary grouting is performed;
[0050] step five, secondary splitting grouting is performed;
[0051] step six, the anchor rod is tensioned and locked; and
[0052] step seven, the reinforcing steel bar body 1 is recycled after the anchor rod completes supporting and protecting tasks: the base plate and anchor rod are removed; the reinforcing steel bar body 1 is rotated upwards clockwise; the reinforcing steel bar body 1 rises; the first diameter reducing section 4 moves upwards in the open-close type pressure bearing ring; the sawteeth of the cross section of the top of the first diameter reducing section 4 are engaged with the sawteeth of the cross section of the bottom of the lifting screw 12; meanwhile, the lifting screw 12 is driven to rise rotatably; the lifting screw 12 rises rotatably to drive the transmission gears 13 to rotate, so as to drive the gear clamping arms 15 to unfold; a plastic bag breaks; the open-close type pressure bearing ring is open; the first diameter reducing section 4 of the reinforcing steel bar body is unlocked to complete a first unlocking program; then the reinforcing steel bar body is continuously rotated clockwise; when the lifting screw 12 touches the top limiter 9, the reinforcing steel bar body 1 is rotated reversely; and a second unlocking program is completed when the threaded section 6 of the reinforcing steel bar body 1 is rotated out of the thread limiter 17, so that the reinforcing steel bar body 1 can be pulled out.
[0053] In step three, the shock-absorbing pressure-bearing devices 19 (the lower surface of the bottom of the outer mold 1901) are fixed to the pressure bearing plate 21 by welding or bolting.
[0054] In step six, when the anchor rod is subjected to an earthquake damage during supporting and protecting, tensioning and locking processes may be repeated after an earthquake, so as to recover a working state of the anchor rod before the earthquake.
[0055] The present disclosure effectively solves the problems that a conventional anchor rod hinders the construction of an adjacent underground structure and pollutes underground environment, and the problems that the existing recyclable anchor rod unlocking device is unstable, does not have earthquake resistance and cannot realize 100% recovery of rod bodies. The present disclosure provides an anchor rod which has the advantages of firm locking, stable unlocking performance, excellent earthquake resistance, capacity of being repaired after the earthquake, environmental friendliness, energy conservation and emission reduction, and has wide application prospect and remarkable economic and social benefits.