CN214577114U - Anchor cable structure capable of being repaired after earthquake - Google Patents

Anchor cable structure capable of being repaired after earthquake Download PDF

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Publication number
CN214577114U
CN214577114U CN202120491899.7U CN202120491899U CN214577114U CN 214577114 U CN214577114 U CN 214577114U CN 202120491899 U CN202120491899 U CN 202120491899U CN 214577114 U CN214577114 U CN 214577114U
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anchor
hot melt
steel strand
strip
anchor cable
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CN202120491899.7U
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吴学震
郑含芳
蒋宇静
王刚
李博
刘日成
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Fuzhou University
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Fuzhou University
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Abstract

The utility model relates to a repairable anchor rope structure after earthquake, its characterized in that: wherein anchor rope structure that can repair after the earthquake, its characterized in that: including establishing the anchor eye on the rock mass and establishing the anchor body in the anchor eye, the anchor body includes an at least steel strand wires, connects at the anchor head of steel strand wires inner, establishes the strip hot melt strip on steel strand wires length direction and establishes the inflation bag in strip hot melt strip, steel strand wires and hot melt strip periphery are equipped with the electric heat line of heating melting hot melt strip, it has the anchoring agent to fill between steel strand wires, hot melt strip and electric heat line and the anchor eye. The utility model discloses be favorable to realizing the restoration of earthquake back anchor rope.

Description

Anchor cable structure capable of being repaired after earthquake
The technical field is as follows:
the utility model relates to an underground works antidetonation field, especially a repairable anchor rope structure after earthquake.
Background art:
the anchor cable can give full play to the self-bearing potential of rock mass, adjust and improve the self-strength and self-stability of rock and soil, reduce the dead weight of a supporting structure, save engineering materials, ensure the safety and stability of construction, obtain ideal supporting effect, have obvious economic and social benefits, and can be widely applied to the fields of geotechnical engineering and other underground engineering.
China is between two zones with the largest earthquake concentration in the world, is a country with more earthquakes in the world and is one of the most serious countries suffering from earthquake disasters; when an earthquake occurs, the fractured rock mass may generate shearing dislocation at the fracture position, so that the anchoring agent of the traditional anchor cable is cracked and damaged, and the anchoring force is further reduced. Meanwhile, the groundwater contacts the anchor cable through the crushing area to form obvious corrosion, the stability and the structural strength of the anchoring structure are reduced, and serious consequences can be caused.
The anticorrosion technology of the prestressed anchor cable goes through the development processes of single cement (mortar) anticorrosion, single-layer corrugated sleeve bamboo anticorrosion, double-layer corrugated sleeve anticorrosion, metal covering technology, organic material coating technology and the like. For important anchor cables, all parts from the inner anchor section to the anchor head in the whole length are required to achieve double corrosion prevention, and the insulation resistance value of the anchor cable is required to be detected after the anchor cable is installed so as to determine the reliability of the corrosion prevention performance of the anchor cable, but the construction process is complicated and cannot be well applied in engineering practice.
The invention content is as follows:
the utility model discloses make the improvement to the problem that above-mentioned prior art exists, provide a repairable anchor rope structure behind the earthquake, be favorable to realizing the restoration of earthquake back anchor rope.
The utility model discloses repairable anchor rope structure behind earthquake, its characterized in that: including establishing the anchor eye on the rock mass and establishing the anchor body in the anchor eye, the anchor body includes an at least steel strand wires, connects at the anchor head of steel strand wires inner, establishes the strip hot melt strip on steel strand wires length direction and establishes the inflation bag in strip hot melt strip, steel strand wires and hot melt strip periphery are equipped with the electric heat line of heating melting hot melt strip, it has the anchoring agent to fill between steel strand wires, hot melt strip and electric heat line and the anchor eye.
Furthermore, an anchorage device is arranged at the opening part of the anchor hole at the outer end part of the steel strand, and the tray is pressed against the anchorage device and the opening part of the anchor hole.
Furthermore, 6 steel strands are uniformly distributed in the circumferential array.
Furthermore, the electric heating wire is a resistance wire.
Further, the inflatable bladder comprises a sealed outer membrane layer and a heating inflatable gasification material filled in the outer membrane layer.
Further, the heating expandable gasification material comprises a substance which is heated by iodine and sulfur and sublimated from solid into gas, a substance which is heated by alcohol, Freon and hydrocarbon and gasified from liquid into gas, or a substance which can generate chemical reaction to generate gas by heating sodium bicarbonate, calcium carbonate and potassium permanganate.
Furthermore, a pressure sensor is further arranged in the hot melt strip, the pressure sensor transmits a test signal through a lead, and whether a crack exists in the anchoring structure is judged according to the reading of the pressure sensor and the expansion characteristic of the heating expandable gasification material.
Furthermore, a moisture sensor is arranged beside the hot melt strip, and when the anchoring body around the anchor cable cracks and moisture contacts the anchor cable, the moisture sensor transmits a signal; after receiving the signal, the anchoring body is heated by the electric heating wire for repairing.
Further, each of the 6 steel strands was replaced with a heat-fusible strip and an expansion bladder.
Furthermore, the tray is a cylindrical tray body, perforations corresponding to the steel strands in number are formed in the tray body, anchorage devices are connected to the outer ends, penetrating through the perforations, of the steel strands, and the tray is abutted to the end face of the opening of the anchor hole through the anchorage devices and the prestressed steel strands.
The utility model discloses application method of repairable anchor rope structure after earthquake, a serial communication port, including following step:
(1) drilling an anchor hole in a rock mass to be supported, wherein the diameter of the anchor hole is larger than that of the steel strand, the hot-melt strip and the electric heating wire complex;
(2) anchoring the steel strand, the hot-melt strip and the electric heating wire complex in the anchor hole by an anchoring agent, and forming an anchoring body after the anchoring agent is solidified;
(3) tensioning the steel strand, and fixing the outer end part of the steel strand through an anchorage device to finish the primary installation of the steel strand, namely the anchor cable;
(4) after the anchoring agent is cracked at the position of the rock body crack caused by an earthquake, the electric heating wire is electrified, so that the hot melting strip is melted by heat, and the melted material can repair the anchoring body.
Further, the method for judging whether the anchor cable structure is damaged comprises the following steps: when the electric heating is carried out, the expansion bag expands; if the reading of the pressure sensor continuously rises along with the rise of the temperature, the repairing material can be judged not to seep out, and the anchoring structure is not broken; if the pressure sensor reading does not continue to increase with increasing temperature, it can be judged that the repair material may seep out and a crack exists in the anchoring structure.
The utility model discloses an action principle is:
when earthquake happens and the rock mass is dislocated at the crack position to cause the anchor agent to be cracked and damaged, the hot melt strip is melted by electrifying and heating, and the hot melt strip permeates and fills the crushed place in the anchor body; on the one hand, the broken anchoring body is bonded again to restore the anchoring force; on the other hand, underground water and air are prevented from contacting the anchor cable (namely the steel strand), so that the steel strand is prevented from generating local corrosion; based on the two points, the novel anchor cable has the characteristic of being repairable after an earthquake.
Description of the drawings:
FIG. 1 is a schematic longitudinal cross-sectional view of a preferred embodiment of a repairable anchor line after an earthquake;
fig. 2 is a schematic sectional view a-a of fig. 1.
FIG. 3 is a schematic longitudinal cross-sectional view of another preferred embodiment of a repairable anchor line after an earthquake;
FIG. 4 is a schematic diagram of a resistive heating longitudinal section of a repairable anchor line after an earthquake;
FIG. 5 is a schematic illustration of the construction of the alternate embodiment of FIG. 2;
FIG. 6 is a schematic view of the configuration of a hot melt strip and a partial section of an expansion bladder;
fig. 7 is a schematic view of the construction of the alternate embodiment of fig. 4.
The specific implementation mode is as follows:
the present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
The utility model discloses repairable anchor rope structure is including establishing anchor eye 6 on the rock mass and establishing anchor body A in the anchor eye after the earthquake, anchor body A includes an at least steel strand wires 1, connects anchor head 2 (can be sharp taper metal head) at steel strand wires 1 the inner, establishes strip hot melt strip 7 on steel strand wires length direction and establishes the expansion bag 8 in strip hot melt strip, steel strand wires 1 and hot melt strip 7 periphery are equipped with the electric heat wire 9 of heating melt hot melt strip, it has anchoring agent 5 (the anchoring agent can be conventional resin type anchoring agent) to fill between steel strand wires 1, hot melt strip 7 and electric heat wire 9 and the anchor eye 6, and electric heat wire 9 includes conductor wire and the resistant high temperature insulation layer of outsourcing.
The hot melt adhesive is adopted as the material of the hot melt strip 7, is solid at normal temperature, is heated and melted to a certain temperature to become liquid with certain viscosity, and is solidified again after heating is stopped, so that the broken anchoring body is bonded, the rock mass crack is blocked, and the steel strand is isolated from underground water and air in the rock mass crack.
The heating mode of the electric heating wire 9 can be resistance heating or electromagnetic heating, the hot melting strip can be a whole strip or a multi-section strip, and the multi-section strip is sequentially and discontinuously arranged on the plurality of steel strands 1 to form the anchor cable bundle.
Furthermore, the mouth of the anchor hole is locked with an anchorage device 3 at the outer end part of the steel strand, the anchorage device 3 and the mouth of the anchor hole 6 are pressed against a tray 4, the tray is a cylindrical tray body and is provided with a number of through holes corresponding to the steel strand 1, the steel strand 1 penetrates through the outer end of the through holes and is anchored with the anchorage device 3, and the tray 4 is pressed against the end face of the mouth of the anchor hole 6 through the anchoring of the anchorage device 3 and the prestressed steel strand 1.
The above-mentioned steel strand wires can be one, when being one, strip hot melt strip 7 is established at the side of this steel strand wires, of course the steel strand wires also can be 6 of circumference array equipartition, when being 6, strip hot melt strip 7 is established at the central part of the 6 steel strand wires of equipartition, strip hot melt strip 7 is central inflation formula hot melt strip, be located the inside expandable gasification material of filling of the expansion bag in the middle of the hot melt strip, can expand or unfold under the gas pressure effect, the hot melt strip melts the back, gasification expansion bag can be crowded into in the anchor body that the periphery is cracked with the molten hot melt strip.
Individual ones of the 6 steel strands as shown in figure 2 may be replaced by hot melt strips 7 and expansion bladders 8 as shown in figure 5.
In order to meet different uses, the heating wire may be heated by electromagnetic induction, when heating is realized by electromagnetic induction, the hot-melting strip 7 is provided with a magnetic conductive material (such as induction heating of a cooker by electromagnetic induction of an induction cooker) which performs electromagnetic induction with the heating wire 9, of course, the simpler heating wire may also be a resistance heating wire, heating can be generated by direct energization, the outer end of the heating wire 9 is connected with a heating control device 10, and the heating control device 10 controls the resistance heating wire or the electromagnetic induction to generate different heats according to the conventional technology, which is not described herein.
For reasonable design, the inflatable bag 8 includes a sealed outer film 801 and a heat-expandable gasification material 802 filled in the outer film, wherein the outer film 801 is, for example, an automobile airbag, and can be made of sheepskin, nylon or TPE material.
The heating expansible gasification material comprises substance which is heated by iodine and sulfur and sublimated from solid into gas, or substance which is heated by alcohol, freon and hydrocarbon and gasified from liquid into gas, or substance which is heated by sodium bicarbonate, calcium carbonate and potassium permanganate and can generate chemical reaction to generate gas.
In order to detect whether cracks exist in the anchor hole, the hot melt strip is further provided with a pressure sensor 11, the pressure sensor transmits a test signal through a lead, and whether cracks exist in the anchor structure is judged according to the reading of the pressure sensor and the expansion characteristic of the heating expandable gasification material, so that guidance is provided for anchor cable repair.
In order to detect whether water leaks in the anchor hole, a moisture sensor 12 is arranged beside the hot melt strip, and when the anchor body around the anchor cable cracks and moisture contacts the anchor cable, the moisture sensor transmits a signal; after receiving the signal, the anchoring body is heated by the electric heating wire for repairing.
The utility model discloses but after the earthquake restoration anchor rope structure's application method, including following step:
(1) drilling an anchor hole in a rock mass to be supported, wherein the diameter of the anchor hole is larger than that of the steel strand, the hot-melt strip and the electric heating wire complex;
(2) anchoring the steel strand, the hot-melt strip and the electric heating wire complex in the anchor hole by an anchoring agent, and forming an anchoring body after the anchoring agent is solidified;
(3) tensioning the steel strand, and fixing the outer end part of the steel strand through an anchorage device to finish the primary installation of the steel strand, namely the anchor cable;
(4) after the anchoring agent is cracked at the position of the rock body crack caused by an earthquake, the electric heating wire is electrified, so that the hot melting strip is melted by heat, and the melted material can repair the anchoring body.
Further, the method for judging whether the anchor cable structure is damaged comprises the following steps: when the electric heating is carried out, the expansion bag expands; if the reading of the pressure sensor continuously rises along with the rise of the temperature, the repairing material can be judged not to seep out, and the anchoring structure is not broken; if the pressure sensor reading does not continue to increase with increasing temperature, it can be judged that the repair material may seep out and a crack exists in the anchoring structure.
The utility model discloses an action principle is:
when earthquake happens and the rock mass is dislocated at the crack position to cause the anchor agent to be cracked and damaged, the hot melt strip is melted by electrifying and heating, and the hot melt strip permeates and fills the crushed place in the anchor body; on the one hand, the broken anchoring body is bonded again to restore the anchoring force; on the other hand, underground water and air are prevented from contacting the anchor cable (namely the steel strand), so that the steel strand is prevented from generating local corrosion; based on the two points, the novel anchor cable has the characteristic of being repairable after an earthquake.
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 preferred embodiments, it should be understood by those skilled in the art that: the invention can be modified or equivalent substituted for some technical features; without departing from the spirit of the present invention, it should be understood that the scope of the claims is intended to cover all such modifications and variations.

Claims (10)

1. An anchor rope structure that can be repaired after earthquake which characterized in that: including establishing the anchor eye on the rock mass and establishing the anchor body in the anchor eye, the anchor body includes an at least steel strand wires, connects at the anchor head of steel strand wires inner, establishes the strip hot melt strip on steel strand wires length direction and establishes the inflation bag in strip hot melt strip, steel strand wires and hot melt strip periphery are equipped with the electric heat line of heating melting hot melt strip, it has the anchoring agent to fill between steel strand wires, hot melt strip and electric heat line and the anchor eye.
2. The post-seismic repairable anchor cable structure of claim 1, wherein: the outer end part of the steel strand is provided with an anchorage device at the mouth part of the anchor hole, and the anchorage device is pressed against the mouth part of the anchor hole to form a tray.
3. The post-seismic repairable anchor cable structure of claim 1, wherein: 6 steel strands are evenly distributed in the circumferential array.
4. The post-seismic repairable anchor cable structure of claim 1, wherein: the electric heating wire is a resistance wire.
5. The post-seismic repairable anchor cable structure of claim 1, wherein: the expansion capsule comprises a sealed outer film layer and a heating expandable gasification material filled in the outer film layer.
6. The post-seismic repairable anchor cable structure of claim 5, wherein: the heating expandable gasification material comprises a substance which is heated by iodine and sulfur and sublimated into gas from solid, or a substance which is heated by alcohol, Freon and hydrocarbon and gasified into gas from liquid, or a substance which can generate gas by chemical reaction when heated by sodium bicarbonate, calcium carbonate and potassium permanganate.
7. The post-seismic repairable anchor cable structure of claim 1, wherein: and a pressure sensor is also arranged in the hot melt strip, the pressure sensor transmits a test signal through a lead, and whether a crack exists in the anchoring structure is judged according to the reading of the pressure sensor and the expansion characteristic of the heating expandable gasification material.
8. The post-seismic repairable anchor cable structure of claim 1, wherein: a moisture sensor is arranged beside the hot melt strip, and when the anchoring body around the anchor cable cracks and moisture contacts the anchor cable, the moisture sensor transmits a signal; after receiving the signal, the anchoring body is heated by the electric heating wire for repairing.
9. The post-seismic repairable anchor cable structure of claim 3, wherein: and individual ones of the 6 steel strands are replaced by hot-melt strips and expansion bladders.
10. The post-seismic repairable anchor cable structure of claim 2, wherein: the tray is a cylindrical tray body, perforations corresponding to the steel strands in number are formed in the tray body, anchorage devices are anchored at the outer ends of the steel strands penetrating through the perforations, and the tray is abutted to the end face of the opening of the anchor hole through the anchorage devices and the prestressed steel strands.
CN202120491899.7U 2021-03-09 2021-03-09 Anchor cable structure capable of being repaired after earthquake Active CN214577114U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120491899.7U CN214577114U (en) 2021-03-09 2021-03-09 Anchor cable structure capable of being repaired after earthquake

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120491899.7U CN214577114U (en) 2021-03-09 2021-03-09 Anchor cable structure capable of being repaired after earthquake

Publications (1)

Publication Number Publication Date
CN214577114U true CN214577114U (en) 2021-11-02

Family

ID=78353328

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120491899.7U Active CN214577114U (en) 2021-03-09 2021-03-09 Anchor cable structure capable of being repaired after earthquake

Country Status (1)

Country Link
CN (1) CN214577114U (en)

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