Long anchor cable end anchor device
By combining the anchoring components, grouting components, and isolation components of the long anchor cable end anchoring device, the problem of full-length anchoring support caused by the large hole diameter of long anchor cables in hard rock mines was solved. This enabled end anchoring support of grouting long anchor cables, reduced the risk of steel strand breakage, improved construction efficiency, and reduced support costs.
Patent Information
- Application Number
- CN202423126419.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-18
AI Technical Summary
In the long anchor cable support of the walls and roof of underground roadways and chambers in hard rock mines, due to the limitations of rock drilling equipment, the inner diameter of the long anchor cable holes is relatively large, which means that only full-length anchor support with cement grouting can be used. Grouting at the ends of the long anchor cables cannot be achieved, resulting in steel strand breakage and failure of the surrounding rock, and the inability to achieve coordinated deformation between the support structure and the surrounding rock.
A long anchor cable end anchoring device is provided, including an anchoring component, a grouting component, and an isolation component. The anchoring component is inserted into the long anchor cable hole, the isolation component is used for temporary fixation, and grout is injected into the long anchor cable hole through the grouting component. The isolation component acts to isolate the grout, so that the end of the anchoring component is anchored in the long anchor cable hole. The elongation of the steel strand is used to achieve pressure relief support and reduce the possibility of steel strand breakage.
This method enables end anchoring support for grouting long anchor cables, reducing the possibility of steel strand breakage, avoiding long anchor cable failure, reducing maintenance and repair costs of roadways under high ground pressure and large deformation rock conditions, improving construction efficiency and reducing support costs.
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Figure CN223510956U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of anchor cable anchoring, in particular to a long anchor cable end anchoring device. BACKGROUND
[0002] Long anchor cable support refers to anchoring steel strand in rock mass, connecting surface loose rock mass and deep stable rock mass together through steel strand, thereby changing the stress state of underground roadway and stope or slope rock mass, improving the mechanical properties of rock mass, effectively controlling the displacement of rock mass, improving the integrity and stability of the above-mentioned unstable rock mass, preventing surrounding rock collapse and ensuring the safety of underground operation. Therefore, long anchor cable support technology is widely used in mine roadway support, tunnel engineering, underground chamber, slope reinforcement and foundation reinforcement engineering.
[0003] In the long anchor cable support of hard rock mine underground roadway and chamber side and roof surrounding rock, due to the restriction of rock hardness and rock drilling equipment, the diameter of long anchor cable hole is usually not less than 55mm, and due to the problem of three diameter matching, only full length anchoring support with cement grouting can be used. Full length anchoring is a typical rigid support, which improves support resistance and resists surrounding rock deformation by increasing the rigidity of support structure. The deformation range of support body is very limited, once the limit bearing capacity of steel strand is exceeded, the steel strand will be broken, so that the long anchor cable support is invalid, the surrounding rock will lose effective support, and further deformation will occur, the plastic zone will continue to increase, and finally the surrounding rock of roadway will collapse, causing great loss. End anchoring of long anchor cable is a supporting mode that can realize yielding support, which provides continuous support for surface rock mass and allows a certain deformation of surrounding rock surface, thereby realizing the coordinated deformation of support structure and surrounding rock, fully releasing the high stress of surrounding rock, and greatly reducing the stress of support structure compared with full length anchoring of long anchor cable rigid support, so that the surrounding rock-support stress system is in a safe state. Therefore, how to realize the end anchoring of grouting long anchor cable is an urgent technical problem to be solved. UTILITY MODEL CONTENT
[0004] In order to solve the technical problem that the inner diameter of long anchor cable hole is large due to the restriction of rock drilling equipment in hard rock mine, only full length anchoring support with cement grouting can be used, and end anchoring support of grouting long anchor cable cannot be realized, the utility model embodiment provides a long anchor cable end anchoring device. The technical scheme is as follows:
[0005] On the one hand, a long anchor cable end anchoring device is provided, which comprises an anchoring assembly, a grouting assembly and a separation assembly.
[0006] The anchoring assembly includes a steel strand, a long anchor cable tray, and an anchor. The first end of the steel strand is used to insert into the long anchor cable hole. The long anchor cable tray and the anchor are sequentially fitted onto the second end of the steel strand, and the long anchor cable tray abuts against the rock surface at the opening of the long anchor cable hole.
[0007] The grouting assembly includes a grouting pipe and an exhaust pipe. The steel strand, the grouting pipe, and the exhaust pipe are bundled together with a fixing strap to form a tube bundle. The grouting pipe is used to fill the long anchor cable hole with grout.
[0008] The isolation assembly includes an airbag, an inflation / deflation pipe, and a slurry-stopping sponge plug. The inflation / deflation pipe is connected to the airbag. The airbag is detachably tied and fixed to the tube bundle. The slurry-stopping sponge plug has an insertion hole in the center. The tube bundle passes through the insertion hole, and the slurry-stopping sponge plug is located on the upper side of the airbag.
[0009] The inflation / deflation pipe is equipped with a pressure gauge and an inflation valve to monitor and control the inflation pressure of the airbag.
[0010] Optionally, the device further includes a fixing member, which is fitted onto the lower end of the outer wall of the anti-slurry sponge plug.
[0011] Optionally, the space between the tubing and the grout-stopping sponge plug is sealed with foam adhesive.
[0012] Optionally, the device further includes a fixing wedge disposed at the port of the long anchor cable hole.
[0013] Optionally, the lengths of the steel strand, the exhaust pipe, and the grouting pipe decrease sequentially.
[0014] Optionally, the tensile strength of the steel strand is not less than 1860 MPa.
[0015] Optionally, the long anchor cable tray is made of cast iron or alloy steel and has an anti-slip texture on its surface.
[0016] Optionally, the grouting pipe is a pressure-resistant and corrosion-resistant plastic pipe or a rubber pipe with steel wire, and the outer diameter of the grouting pipe is not less than 20 mm.
[0017] Optionally, the device further includes a pressure sensor connected to the grouting pipe for real-time monitoring of pressure changes during the grouting process.
[0018] Optionally, the water-cement ratio of the mortar is 0.4-0.8.
[0019] The beneficial effects of the technical solution provided by this utility model embodiment include at least the following:
[0020] The long anchor cable end anchoring device provided in this embodiment includes an anchoring component, a grouting component, and an isolation component. After the anchoring component is inserted into the long anchor cable hole, the isolation component is used to temporarily fix the anchoring component, and grout is injected into the long anchor cable hole through the grouting component. At this time, the isolation component also serves to isolate the grout, thereby allowing the end of the anchoring component to be anchored in the long anchor cable hole. This device achieves end anchoring support for grout-grown long anchor cables, and can utilize the elongation of the steel strand to achieve the purpose of pressure relief support, reducing the possibility of steel strand breakage, avoiding long anchor cable failure, and reducing the maintenance and repair costs of roadways under high ground pressure and large deformation rock mass conditions. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a structural schematic diagram of a long anchor cable end anchor device provided in an embodiment of the present utility model;
[0023] Figure 2 This is a schematic diagram of the main structure of a slurry-stopping sponge plug provided in an embodiment of this utility model;
[0024] Figure 3 This is a top view schematic diagram of a slurry-stopping sponge plug provided in an embodiment of this utility model;
[0025] Figure 4 This is a schematic diagram of the structure of an airbag provided in an embodiment of the present invention;
[0026] Figure 5 This is a schematic diagram of the state of an airbag after it is inflated in a long anchor cable hole, according to an embodiment of this utility model.
[0027] Figure 6 This is a schematic diagram of the structure for binding steel strand, grouting pipe and exhaust pipe according to an embodiment of the present utility model;
[0028] Figure 7 This is a schematic diagram of the binding structure of steel strand, grouting pipe, exhaust pipe and grout-stopping sponge plug provided in an embodiment of this utility model;
[0029] Figure 8 yes Figure 7 Schematic diagram of section A in the middle;
[0030] Figure 9This is a schematic diagram of the structure of an airbag and its inflation / deflation pipe, steel strand, grouting pipe, exhaust pipe and grout-stopping sponge plug provided in this embodiment of the utility model.
[0031] Figure 10 yes Figure 9 Schematic diagram of section B in the middle;
[0032] Figure 11 This is a structural schematic diagram of an airbag fully expanded inside a long anchor cable according to an embodiment of the present invention;
[0033] Figure 12 This is a structural schematic diagram of the long anchor cable state after the recovery of the airbag and grouting pipe provided by an embodiment of this utility model.
[0034] Figure label:
[0035] 100. Anchoring assembly; 110. Steel strand; 120. Long anchor cable tray; 130. Anchorage; 140. Fixing strap;
[0036] 200. Grouting assembly; 210. Grouting pipe; 220. Vent pipe; 230. Mortar; 240. Concrete;
[0037] 300. Isolation component; 310. Airbag; 320. Inflation / expansion pipe; 330. Anti-slip sponge plug; 331. Insertion hole; 332. Fixing component;
[0038] 400. Fixed wedge;
[0039] 510. Long anchor cable hole; 520. Tunnel roof. Detailed Implementation
[0040] The technical solution of this utility model will now be described with reference to the accompanying drawings.
[0041] In the embodiments of this utility model, words such as "exemplarily" and "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design described as "exemplary" in this utility model should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of the word "exemplary" is intended to present the concept in a concrete manner. Furthermore, in the embodiments of this utility model, the meaning expressed by "and / or" can be both, or it can be either one or the other.
[0042] For metal mines, due to limitations in rock hardness and drilling equipment, the diameter of long anchor cable holes is typically no less than ф55mm. If ф15.2mm or ф17.8mm steel strands are installed, due to the issue of matching the three diameters, only full-length anchoring support with cement grouting can be used. The advantage of full-length anchoring support is the high rigidity of the long anchor cable support and timely resistance. However, because the deformation range of the support body is very limited, once the ultimate bearing capacity of the steel strand is exceeded, the steel strand will break, causing the long anchor cable support to fail and the surrounding rock to lose effective support.
[0043] Long anchor cables employing end-anchoring support is a support method that achieves pressure relief support. One-third of the steel strand (bottom of the hole) is tightly bonded to the deep, stable rock mass, while the remaining two-thirds are unbonded. The end of this unbonded section (outside the hole) is fixed to the surface rock mass via an anchor and anchor plate. When the surface rock mass undergoes convergent deformation, the outer end of the steel strand, along with the anchor plate and anchor, moves with the surface rock mass. At this point, the bottom of the hole is fixed, and the unbonded two-thirds of the steel strand from the outer end to the bottom of the hole undergoes elongation deformation. This provides continuous support to the surface rock mass while allowing for some deformation of the surrounding rock surface, thus achieving coordinated deformation between the support structure and the surrounding rock. This fully releases the high stress in the surrounding rock, and the stress on the support structure is significantly reduced compared to rigid support with full-length anchoring, ensuring the overall safety of the rock-support stress system. Therefore, how to achieve end anchoring of grouting long anchor cables is a pressing technical challenge that needs to be addressed.
[0044] This utility model provides a long anchor cable end anchor device. To make the technical problems, technical solutions and advantages of this utility model clearer, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.
[0045] The long anchor cable end anchoring device includes: an anchoring component 100, a grouting component 200, and an isolation component 300. After the anchoring component 100 is inserted into the long anchor cable hole 510, the isolation component 300 is used to temporarily fix the anchoring component 100, and grout is injected into the long anchor cable hole 510 through the grouting component 200. At this time, the isolation component 300 can also isolate the grout 230, so that the end of the anchoring component 100 can be anchored in the long anchor cable hole 510.
[0046] Long anchor cables involve drilling deep holes into the rock strata, then inserting steel strands, wire ropes, or threaded steel bars into the holes. Grouting or other methods are then used to tightly bond the steel strands, wire ropes, or threaded steel bars to the surrounding rock mass, thus providing strong anchoring force. Essentially, long anchor cables create a robust anchoring system within the rock strata, using grouting or similar methods to ensure a stable anchoring force by tightly bonding the steel strands, wire ropes, or threaded steel bars to the surrounding rock mass.
[0047] It should be noted that the device provided in this embodiment adopts an end-anchoring method. End anchoring specifically refers to a short anchoring length of the anchoring material, such as the anchor rod or steel strand, within the rock or concrete structure, typically no more than 1 / 3 or 2 / 3 of the total length of the anchor rod or steel strand. This anchoring method primarily achieves its fixing effect by injecting an anchoring agent into one end of the anchor rod or steel strand, causing it to adhere tightly to the internal structure of the rock or concrete 240.
[0048] In this device, the anchoring assembly 100 includes a steel strand 110, a long anchor cable tray 120, and an anchor 130. The first end of the steel strand 110 is used to insert into the long anchor cable hole 510. The long anchor cable tray 120 and the anchor 130 are sequentially fitted onto the second end of the steel strand 110, and the long anchor cable tray 120 abuts against the rock surface at the opening of the long anchor cable hole 510.
[0049] Specifically, the steel strand 110 possesses high strength and flexibility, enabling it to adapt to complex geological conditions and effectively transmit and disperse stress. The first end of the steel strand 110 is inserted into a pre-drilled long anchor cable hole 510, the hole is plugged, and grout is injected into the hole, thus bonding the steel strand to the bedrock with the grout. The long anchor cable tray 120 is used to connect stable rock masses deep within the tunnel with unstable rock masses on the tunnel surface using the steel strand. Anchors and the anchor tray prevent movement and deformation of the rock mass on the tunnel surface. The tray is tightly abutted against the rock surface at the opening of the long anchor cable hole 510, tightly connecting the surface rock mass to the deep stable rock mass through the steel strand, achieving a firm anchoring of the surface rock mass. The anchor 130 is used to lock the steel strand 110, ensuring that there is no relative displacement between the second end of the steel strand 110 and the tray during operation. Anchor 130 works in conjunction with the tray to lock one end of the steel strand, providing a strong locking force for the entire anchoring assembly 100. During use, the other end is locked to the deep rock mass through grouting. Therefore, if the surface rock mass of the tunnel deforms inwards, it will cause the anchor tray to move inwards simultaneously. The anchor tray is tightly fitted or locked to the steel strand through the anchor, and the other end of the steel strand is fixed to the stable internal shelter. Thus, the steel strand, anchor, and tray can prevent the surface rock mass of the tunnel from deforming inwards.
[0050] The grouting assembly 200 includes a grouting pipe 210 and an venting pipe 220. The steel strand 110, the grouting pipe 210, and the venting pipe 220 are bundled together with a fixing strap 140 to form a tube bundle. This structure facilitates construction operations and ensures smooth grouting and venting. For example, the fixing strap 140 can be a cable tie.
[0051] Grouting pipe 210 is used to fill grout 230 into the long anchor cable hole 510. Grout 230 is injected into the long anchor cable hole 510 through the grouting pipe 210. After solidification inside the hole, the grout 230 forms a high-strength grout body, enhancing the bond between the steel strand 110 and the bedrock, thereby achieving anchoring of the anchored section of the steel strand. Since the hole is a closed space, during the grouting process, as the grout is gradually injected into the hole, the air trapped inside is gradually discharged through the vent pipe 220, ensuring that the grout 230 can fully fill the internal space formed by the grouted section of the steel strand 110 and the long anchor cable hole 510.
[0052] The isolation assembly 300 includes an airbag 310, an inflation / deflation pipe 320, and a slurry-stopping sponge plug 330. The inflation / deflation pipe 320 connects to the airbag 310 and is used to control the inflation and deflation of the airbag 310. The airbag 310 is detachably secured to the tubing bundle. The slurry-stopping sponge plug 330 has a central insertion hole 331 through which the tubing bundle passes, and the slurry-stopping sponge plug 330 is located on top of the airbag 310.
[0053] The aforementioned inflation / deflation pipe 320 is equipped with a pressure gauge and an inflation valve to monitor and control the inflation pressure of the airbag 310. The pressure gauge, installed on the inflation / deflation pipe 320, monitors the gas pressure inside the airbag 310 in real time. Before grouting begins, construction personnel can read the initial pressure value of the airbag using the pressure gauge and adjust the inflation volume as needed. During grouting, the pressure gauge continuously displays the pressure changes inside the airbag, helping construction personnel determine if the airbag is functioning properly. Excessive or insufficient pressure can lead to poor grouting results or damage to the airbag; therefore, the pressure gauge is crucial for ensuring grouting quality and construction safety. The inflation valve, also installed on the inflation / deflation pipe 320, controls the inflation process of the airbag 310. Before grouting, construction personnel can use the inflation valve to inject an appropriate amount of gas into the airbag 310, causing it to expand and fit tightly around the long anchor cable hole. During grouting, if insufficient pressure is detected in the airbag 310, construction personnel can replenish the gas at any time using the inflation valve. Meanwhile, the inflation valve also has a deflation function. After grouting is completed or when the airbag needs to be recovered, the gas in the airbag 310 can be discharged through the inflation valve for subsequent operations.
[0054] After inflation, the air bladder 310 can fit tightly against the inner wall of the long anchor cable hole 510 to support the grout-stopping sponge plug 330. The softness and deformability of the grout-stopping sponge plug 330 can adapt to the unevenness of the inner wall of the hole and further prevent grout 230 from seeping out of the hole from the wall of the long anchor cable hole 510, thus enhancing the isolation effect. At the same time, it can also provide a certain degree of sealing after grouting is completed.
[0055] For most underground mines, long anchor cables are typically installed on the sidewalls, roof, or stope roof of roadways. Due to the high hardness of the rock mass in hard rock mines, it is necessary to drill holes for the anchor cables, resulting in a relatively large diameter for the long anchor cable holes 510. Therefore, in this embodiment, when using long anchor cables for support in roadways, chambers, or stope roofs, the steel strands 110, grouting pipes 210, venting pipes 220, and grouting sponge plugs are first bundled together. Then, the airbag 310 and its inflation / deflation pipe 320 are bundled together with the steel strands 110 and grouting pipes 210, and then placed into the long anchor cable hole 510. The airbag 310 is then inflated, and grout is injected into the cavity above the airbag 310 within the long anchor cable hole 510. After grouting is completed... After the first preset time period, the air in the airbag 310 is discharged, and the airbag 310 and grouting pipe 210 are recovered. After the second preset time period of grouting is completed, the long anchor cable tray 120 and anchor 130 are installed, thereby realizing the end anchor support of the grouting long anchor cable. The elongation of the steel strand 110 can be used to achieve the purpose of pressure relief support, reducing the possibility of steel strand breakage, avoiding long anchor cable failure, and reducing the maintenance and repair costs of the roadway under high ground pressure and large deformation rock mass conditions.
[0056] The long anchor cable end anchoring device provided in this embodiment includes an anchoring component 100, a grouting component 200, and an isolation component 300. After the anchoring component 100 is inserted into the long anchor cable hole 510, the isolation component 300 is used to temporarily fix the anchoring component 100, and grout is injected into the long anchor cable hole 510 through the grouting component 200. At this time, the isolation component 300 can also isolate the grout 230, thereby allowing the end of the anchoring component 100 to be anchored in the long anchor cable hole 510. This device realizes the end anchoring support of the grouting long anchor cable, and can use the elongation of the steel strand 110 to achieve the purpose of pressure relief support, reducing the possibility of steel strand breakage, avoiding long anchor cable failure, and reducing the maintenance and repair costs of roadways under high ground pressure and large deformation rock mass conditions.
[0057] Compared to full-length bonded anchoring, using this device for end anchor support reduces the amount of grout injected per hole and the consumption of raw materials, thus improving construction efficiency. Furthermore, based on the reusable inflatable airbag 310 and grouting pipe 210, the material cost per use is reduced, lowering the support cost.
[0058] In one embodiment of the present invention, the device further includes a fixing member 332, which is fitted onto the lower end of the outer wall of the anti-grouting sponge plug 330.
[0059] The fastener 332 securely mounts the grout-stopping sponge plug 330 onto the outside of the tube bundle. This serves two purposes: firstly, it fixes the tube bundle in place; secondly, because the grout-stopping sponge plug 330 is deformable, it seals the gap between the sponge plug 330 and the tube bundle, preventing grout leakage during grouting. The fastener 332 further enhances the stability and effectiveness of the grout-stopping sponge plug 330, improving the overall sealing and stability of the structure.
[0060] The mortar 230 can be cement grout or mortar, etc. Mortar is a paste made of cement and sand, and this embodiment does not limit it.
[0061] Furthermore, the fastener 332 can be a cable tie, which is easy to operate, inexpensive, and provides good fastening. In use, the cable tie can be easily wrapped around the lower end of the outer wall of the grout-stopping sponge plug 330 and pulled tight. Its built-in teeth secure the cable tie, thus effectively fixing the grout-stopping sponge plug 330. The cable tie has a certain degree of elasticity and adaptability, allowing it to accommodate grout-stopping sponge plugs 330 of different diameters and shapes, increasing its flexibility and versatility.
[0062] In one embodiment of this invention, a sealing foam is used to fill the space between the tube bundle and the grout-stopping sponge plug 330. The foam, also known as expanding foam or polyurethane foam sealant, has excellent sealing, adhesion, and filling properties. It forms a continuous, seamless sealing layer between the tube bundle and the grout-stopping sponge plug 330, effectively preventing the penetration of grout 230 and ensuring the sealing and integrity of the tube bundle assembly.
[0063] In one embodiment of this utility model, the device further includes a fixing wedge 400, which is disposed at the port of the long anchor cable hole 510. The main function of the fixing wedge 400 is to securely fix the position of the tube bundle within the long anchor cable hole 510, preventing the steel strand from slipping out of the hole due to its own weight and causing injury or loosening after the steel strand is installed in the hole until the grouting is completed and solidified.
[0064] Furthermore, the fixing wedge 400 can be a wooden wedge.
[0065] In one embodiment of this utility model, the lengths of the steel strand 110, the vent pipe 220, and the grouting pipe 210 decrease sequentially. Based on this structure, when the device is installed in the downward-facing long anchor cable hole 510, the positions of the ends of the steel strand 110, the vent pipe 220, and the grouting pipe 210 decrease sequentially.
[0066] Based on the above structure, grout 230 is injected into the long anchor cable hole 510 through the grouting pipe 210 using a grouting machine. After the grout 230 enters the internal space above the grout-stopping sponge plug 330, excess gas is discharged through the exhaust pipe 220. Once the grout 230 flows out of the exhaust pipe 220, it indicates that the long anchor cable hole 510 is full, and grouting can be stopped.
[0067] The long anchor cable end anchoring device provided in this embodiment includes an anchoring component 100, a grouting component 200, and an isolation component 300. After the anchoring component 100 is inserted into the long anchor cable hole 510, the isolation component 300 is used to temporarily fix the anchoring component 100, and grout is injected into the long anchor cable hole 510 through the grouting component 200. At this time, the isolation component 300 can also isolate the grout 230, thereby allowing the end of the anchoring component 100 to be anchored in the long anchor cable hole 510. This device realizes the end anchoring support of the grouting long anchor cable, and can use the elongation of the steel strand 110 to achieve the purpose of pressure relief support, reducing the possibility of steel strand breakage, avoiding long anchor cable failure, and reducing the maintenance and repair costs of roadways under high ground pressure and large deformation rock mass conditions.
[0068] Compared to full-length bonded anchoring, using this device for end anchor support reduces the amount of grout injected per hole and the consumption of raw materials, thus improving construction efficiency. Furthermore, based on the reusable inflatable airbag 310 and grouting pipe 210, the material cost per use is reduced, lowering the support cost.
[0069] The following description uses an example of a long anchor cable hole 510 with a diameter of ф60mm and a hole depth of 6m, commonly used in underground mines, to illustrate the long anchor cable end anchor device provided by this utility model. The steel strand 110 used can be ф15.2mm, ф17.8mm, or other specifications. Each hole can use a single or double strand; the following description only assumes a single ф15.2mm steel strand 110 is installed in one hole. If a specific mine uses different steel strand 110 or different long anchor cable hole depths 510, these can be achieved through minor adjustments.
[0070] Specifically, the anchoring component 100 includes a steel strand 110, a long anchor cable tray 120, and an anchor 130. It is the main force-bearing and force-transmitting device, applying a force to constrain the convergence deformation of the surrounding rock at the roadway surface through the anchor 130 and the long anchor cable tray 120. This constraining force is then transmitted through the steel strand 110 to the stable rock strata deep within the surrounding rock, achieving interlocking between the deep rock mass and the surface rock mass of the roadway or stope. The steel strand 110 can be a single strand with a diameter of 15.2mm and a length of 6.3m. The long anchor cable tray 120 can have dimensions of 200mm x 200mm x 20mm (length x width x thickness), made of Q235 steel, with a 18mm hole drilled in the center. The anchor 130 is a KM15-1860 type and is installed using a front-mounted jack.
[0071] The grouting assembly 200 consists of a grouting pipe 210 and an vent pipe 220. Its main function is to firmly fix the steel strand 110 into the long anchor cable hole 510 through cement grouting. The grouting pipe 210 is connected to a grouting pump, which injects the prepared grout 230 with a water-cement ratio of approximately 0.5 into the long anchor cable hole 510 through the grouting pipe 210. The vent pipe 220 allows air trapped in the upper part of the long anchor cable hole 510 to escape as the grout gradually rises from bottom to top, ensuring the hole is filled with grout 230. When the grouting operator sees grout flowing out of the vent pipe 220, it indicates that the long anchor cable hole 510 is full, and grouting can be stopped immediately. The grouting pipe 210 is the channel through which the grout reaches the long anchor cable hole 510 from the grouting pump. The grouting pipe 210 has an outer diameter of ф20mm and a wall thickness of 2mm. It is made of materials such as PE (Polyethylene, a thermoplastic resin polymerized from ethylene) and can withstand a pressure of 0.2-0.4MPa. The exhaust pipe 220 has an outer diameter of ф10mm and a wall thickness of 1-1.5mm. It is made of materials such as PE.
[0072] The isolation assembly 300 consists of a grout-stopping sponge plug 330, an air bladder 310, and an inflation / deflation pipe 320. Its main purpose is to achieve end anchoring of long anchor cables. The grout-stopping sponge plug 330 is cylindrical with a diameter of ф75mm and a height of 80mm. The center of this cylinder has a flat-hole-type insertion hole 331 (see...). Figures 2 to 3 As shown in the figure, it is used to pass through the steel strand 110, the exhaust pipe 220 and the grouting pipe 210.
[0073] The diameter of the grout-stopping sponge plug 330 is 15mm larger than that of the long anchor cable hole 510. Utilizing its superior deformability and elasticity, it can not only be tied to the steel strand 110, the vent pipe 220, and the grouting pipe 210, but also be smoothly inserted into the designed position in the hole along with these tube bundles. At the same time, its own deformability can also achieve a relative seal between the grout-stopping sponge plug 330 and the hole wall, as well as the steel strand 110, the grouting pipe 210, and the vent pipe 220, preventing grout 230 from flowing out of the hole from the gaps between the above-mentioned components. In addition, in order to further prevent grout 230 leakage that may occur between the above-mentioned components, it is necessary to reinforce the gaps between the above-mentioned components with foam adhesive after binding the grout-stopping sponge plug 330, the steel strand 110, the grouting pipe 210, and the vent pipe 220 together before inserting them into the hole, to ensure that nothing goes wrong.
[0074] In this embodiment, considering the low strength of the grout-stopping sponge plug 330, an airbag 310 is designed and installed to further prevent the grout 230 from flowing out of the hole. This airbag not only provides good bottom support for the grout-stopping sponge plug 330, but also serves as a second barrier to prevent grout leakage, and is an important component for achieving end anchoring. The airbag 310 is made of synthetic rubber and fiber cloth, or materials such as TPU (Thermoplastic polyurethanes), PVC (Polyvinyl Chloride), etc. In its uninflated state, the airbag 310 is a flat bag shape, with a height of 80mm and a length of 280mm. The airbag 310 is connected to an inflation / deflation pipe 320 with dimensions of ф8mm × 7m (structure as shown). Figure 4 As shown, the airbag 310 can be bent and folded when it is not inflated, and can be used to wrap the steel strand 110, the exhaust pipe 220 and the grouting pipe 210.
[0075] After the airbag 310 is fully inflated within the opening, its actual state relative to the other components is as follows: Figure 5 As shown. In this embodiment, the inflation / deflation pipe 320 is made of PVC material, is 6.5m long, has an outer diameter of ф10mm, and a wall thickness of 2mm.
[0076] The beneficial effects of implementing this long anchor cable end anchor device include:
[0077] (1) The long anchor cable end anchoring device enables the end anchoring support of long anchor cables bonded by grouting in hard rock mines. Due to the limitations of drilling equipment in hard rock mines, it is not possible to drill long anchor cable holes 510 that meet the three-diameter matching requirements and can be bonded with resin anchoring agent to achieve end anchoring support. Usually, long anchor cables are bonded with mortar 230. For long anchor cables in the sidewalls and roofs of the stope or roadway, only full-length bonded anchoring can be used. Under high stress conditions, the deformation and failure of the rock mass will cause stress concentration in a certain area of the long anchor cable (usually near the roadway surface), which can easily lead to the breakage of the steel strand 110 and the failure of the long anchor cable support, making it impossible to achieve pressure relief support. The advantage of the end long anchor cable support bonded by resin anchoring agent in coal mines cannot be used for long anchor cable support in hard rock mines. The long anchor cable end anchoring device allows grouting and bonding to be applied only to the end of the long anchor cable near the bottom of the hole. The advantage of long anchor cable end bonding support is that it can allow partial deformation of the rock mass by utilizing the extension characteristics of the steel strand 110, while at the same time providing continuous support resistance to the surrounding rock on the roadway surface based on the super tensile strength of the steel strand 110, thus achieving pressure relief support. This support method can significantly extend the service life of the engineering structure and reduce the frequency and cost of maintenance and repair of the roadway.
[0078] (2) The long anchor cable end anchor device reduces the grout consumption of single hole grouting 230, reducing the original single hole grouting volume from 100% to more than 33%, further reducing the grouting cost;
[0079] (3) The long anchor cable end anchor device can reuse the inflatable airbag 310 and the grouting pipe 210, which reduces the material cost per use, lowers the support cost, and saves resources;
[0080] (4) The installation process of the airbag 310 is relatively simple, and the airbag 310 can be quickly inflated based on the high-pressure air source used for drilling in the well and reach the predetermined shape and size, resulting in high construction efficiency. At the same time, there is no need to seal the long anchor cable hole 510, which shortens the 24-hour curing cycle required after sealing with mortar 230 in the traditional method, and shortens the overall construction cycle of long anchor cable support.
[0081] In one embodiment of this utility model, the tensile strength of the steel strand 110 is not less than 1860MPa to meet the high strength requirements for deep rock mass anchoring.
[0082] In one embodiment of this utility model, the long anchor cable tray 120 is made of cast iron or alloy steel and has anti-slip texture on its surface to enhance friction with the rock surface at the orifice and ensure anchoring stability.
[0083] In one embodiment of this utility model, the grouting pipe 210 is a pressure-resistant and corrosion-resistant plastic pipe or a rubber pipe with steel wire. The rubber pipe with steel wire has high pressure resistance, and the grouting pipe 210 has a certain degree of flexibility, making it easy to pull out of the hole after construction. The outer diameter of the grouting pipe 210 is not less than 20mm, providing high grouting efficiency to ensure that grout can be smoothly injected into the long anchor cable hole; for example, it can be 20mm.
[0084] In one embodiment of this utility model, the device further includes a pressure sensor connected to the grouting pipe 210, which is used to monitor the pressure change of the air bladder in real time during the grouting process to ensure the grouting quality and safety.
[0085] In one embodiment of this utility model, the water-cement ratio of mortar 230 is 0.4-0.8, and the mortar has good fluidity, setting time and strength properties, which can improve the grouting effect and ensure that the strength after anchoring meets the design requirements.
[0086] The following describes how to use the above device:
[0087] 1301. Tie the steel strand 110, grouting pipe 210, and exhaust pipe 220 together to form a tube bundle.
[0088] In this step, the steel strand 110, grouting pipe 210, and vent pipe 220 are tied together with cable ties to facilitate insertion into the long anchor cable hole 510.
[0089] 1302. Insert the tube bundle into the insertion hole 331 in the center of the grout-stopping sponge plug 330.
[0090] The softness and absorbency of the grout-stopping sponge plug 330 further prevent the grout 230 from penetrating, enhancing the isolation effect.
[0091] Furthermore, the method includes using a fastener 332 to bind the lower end of the outer wall of the grout-stopping sponge plug 330, thereby securing the grout-stopping sponge plug 330 to the pipe bundle. The fastener 332 securely fits the grout-stopping sponge plug 330 onto the pipe bundle, providing both fixation and, due to its deformability, sealing the gap between the grout-stopping sponge plug 330 and the pipe bundle, preventing grout leakage during pouring. The use of this fastener 332 further enhances the stability and effectiveness of the grout-stopping sponge plug 330, improving the overall sealing and stability of the structure.
[0092] Furthermore, the fastener 332 can be a cable tie, which is easy to operate, inexpensive, and provides good fastening. In use, the cable tie can be easily wrapped around the lower end of the outer wall of the grout-stopping sponge plug 330 and pulled tight. Its built-in teeth secure the cable tie, thus effectively fixing the grout-stopping sponge plug 330. The cable tie has a certain degree of elasticity and adaptability, allowing it to accommodate grout-stopping sponge plugs 330 of different diameters and shapes, increasing its flexibility and versatility.
[0093] Furthermore, it also includes: sealing the gap between the tube bundle and the grout-stopping sponge plug 330 with foam adhesive.
[0094] Foam sealant, also known as expanding foam or polyurethane foam sealant, has excellent sealing, adhesion, and filling properties. It can form a continuous, seamless sealing layer between the tube bundle and the grout-stopping sponge plug 330, effectively preventing the penetration of grout 230 and ensuring the sealing and integrity of the tube bundle assembly.
[0095] 1303. The airbag 310 and the inflation / deflation pipe 320 are detachably tied to the tube bundle and inserted into the preset position in the long anchor cable hole 510.
[0096] This step is used to prepare for subsequent grouting. For example, plastic tape can be used to detachably bind the airbag 310 and the inflation / deflation pipe 320 and the tube bundle, which can both bind them and make them easy to be ruptured by the airbag 310.
[0097] Furthermore, it also includes: using a fixing wedge 400 to fix the end of the long anchor cable hole 510. The main function of the fixing wedge 400 is to firmly fix the position of the tube bundle in the long anchor cable hole 510, and to prevent the steel strand from slipping out of the hole due to its own weight and causing injury or loosening after the steel strand is installed in the hole until the grouting is completed and solidified.
[0098] 1304. Inflate the airbag 310 through the inflation / deflation pipe 320. When the inflation pressure reaches the preset pressure, the airbag 310 inflates to support the anti-slurry sponge plug 330.
[0099] Inflation is performed on the airbag 310 through the inflation / deflation pipe 320. When the inflation pressure reaches the preset pressure, the airbag 310 inflates, tearing the plastic tape connecting the airbag 310, steel strand 110, grouting pipe 210, and vent pipe 220 to the tube bundle, allowing for full inflation. The airbag 310 fully fills the space between the tube bundle and the inner wall of the long anchor cable hole 510, supporting the grout-stopping sponge plug 330 and preventing the grout 230 from flowing out during future grouting. It also prevents the tube bundle from slipping out of the hole due to the friction between the airbag 310 and the aforementioned tube bundles, as well as between the airbag 310 and the hole wall. The preset inflation pressure for the airbag 310 can be set as needed, for example, to 0.1-0.2 MPa.
[0100] 1305. Grouting is carried out into the long anchor cable hole 510 through the grouting pipe 210. Grouting is stopped after the grout 230 flows out of the exhaust pipe 220.
[0101] Further, this step includes injecting mortar 230 with a water-cement ratio of 0.4-0.8 into the long anchor cable hole 510 through the grouting pipe 210. Specifically, the grouting pipe 210 of the grouting machine is tightly connected to the grouting pipe 210 of the long anchor cable, and then the grouting machine is used to inject mortar 230 with a water-cement ratio of about 0.5 into the long anchor cable hole 510. After mortar 230 is seen flowing out of the vent pipe 220, it indicates that the long anchor cable hole 510 is full, and grouting is stopped immediately.
[0102] 1306. After the first preset time has elapsed since the grouting is completed, the gas inside the airbag 310 is discharged, and the airbag 310 and the grouting pipe 210 are recovered.
[0103] After the first preset time period following the completion of grouting, the valve of the inflation / deflation pipe 320 is opened, allowing the gas inside the airbag 310 to leak out. Then, the inflation / deflation pipe 320 of the airbag 310 and the grouting pipe 210 are simultaneously dragged to retrieve the airbag 310, its inflation / deflation pipe 320, and the grouting pipe 210. The grouting pipe 210 is then cleared as quickly as possible for reuse. The first preset time period can be set as needed, for example, it can be 3-5 hours after the completion of grouting.
[0104] 1307. After the second preset time has elapsed since the grouting is completed, install the long anchor cable tray 120 and the anchor 130.
[0105] Specifically, a front-mounted jack can be used to install the long anchor cable tray 120 and anchor 130. After the second preset time period following the completion of grouting, the front-mounted jack is used to install the long anchor cable tray 120 and anchor 130, completing the installation of the long anchor cable. The second preset time period can be set as needed, for example, it can be 48 hours after the completion of grouting.
[0106] In this embodiment, taking the example of chiseling a long anchor cable hole 510 with a specification of ф60mm×6m in the tunnel roof 520, it is planned to install a steel strand 110 with a specification of ф15.24mm×6.3m, with a reserved length of 300mm outside the hole. The steel strand 110 is bonded with mortar 230 for 2m near the bottom of the hole, while the remaining 4m of the steel strand 110 inside the hole remains free and unbonded. The specific installation steps are as follows:
[0107] (1) After the long anchor cable hole 510 is completed, use high pressure water and high pressure air to clean the rock powder and other debris in the hole;
[0108] (2) Tie the steel strand 110, grouting pipe 210, and vent pipe 220 together with cable ties, with a spacing of about 1m between each tying point. Leave a 100mm gap between the end of the vent pipe 220 and the end of the steel strand 110, and leave a 2m gap between the end of the grouting pipe 210 and the end of the steel strand 110. Figure 6 As shown.
[0109] (3) Insert the bundle formed by the above-mentioned tied steel strand 110, grouting pipe 210 and vent pipe 220 into the insertion hole 331 in the center of the grout-stopping sponge plug 330, and then use cable ties to tie the lower end of the sponge plug to the above-mentioned bundle, the specific position as shown in the figure. Figures 7 to 8 As shown, this facilitates insertion into the long anchor cable hole 510. Simultaneously, to ensure a tight seal between the grouting pipe 210, steel strand 110, vent pipe 220, and the insertion hole 331 of the grout-stopping sponge plug 330, after binding the grout-stopping sponge plug 330, foam adhesive is further used to seal the gaps between the steel strand 110, grouting pipe 210, vent pipe 220, and grout-stopping sponge plug 330, ensuring no leakage of grout 230.
[0110] (4) Then, bind the airbag 310 and the inflation / deflation pipe 320 together with the above-mentioned tubing using plastic tape. The advantage of the plastic tape is that it can be stretched open after the airbag 310 is inflated. Figures 9 to 10 As shown, this facilitates the smooth insertion of the aforementioned components into the hole;
[0111] (5) Carefully insert each of the above-mentioned cable bundles into the predetermined position in the φ60mm×6m long anchor cable hole 510, and then fix the hole opening with the fixing wedge 400 to prevent the above-mentioned cable bundles from slipping out of the hole. Then, inflate the airbag 310 through the inflation and deflation pipe 320. When the inflation pressure reaches 0.1-0.2MPa, the airbag 310 inflates, which will crack the plastic tape connecting the airbag 310, steel strand 110, grouting pipe 210, and venting pipe 220 to fully inflate and complete the support of the grout-stopping sponge plug 330 (e.g. Figure 11 and Figure 5 As shown in the diagram, this can prevent the grout 230 from flowing out during future grouting. It can also prevent the tube bundles from slipping out of the hole based on the friction between the airbag 310 and the above-mentioned tube bundles, as well as the friction between the airbag 310 and the hole wall. After the airbag 310 is fully inflated, the opening of the inflation and deflation pipe 320 is tightened to prevent gas leakage.
[0112] (6) Connect the grouting pipe 210 of the grouting machine to the grouting pipe 210 of the long anchor cable tightly. Then, use the grouting machine to inject grout 230 with a water-cement ratio of about 0.5 into the long anchor cable hole 510. After grout 230 is seen flowing out of the vent pipe 220, it indicates that the long anchor cable hole 510 is full, and grouting should be stopped immediately. The state after grouting is as follows: Figure 1 As shown;
[0113] (7) Between 3-5 hours after grouting is completed, the grout 230 has initially set but has not yet reached a certain strength. At this time, open the valve of the inflation / exhaust pipe 320, and the gas in the airbag 310 will leak out. Then, simultaneously drag the inflation / exhaust pipe 320 of the airbag 310 and the grouting pipe 210 to recover the airbag 310 and its inflation / exhaust pipe 320 and grouting pipe 210 (e.g., Figure 12 (As shown), clear the grouting pipe 210 as soon as possible and save it for reuse next time;
[0114] (8) After grouting is completed for 48 hours, use jacks to install anchor 130 and long anchor cable tray 120 to complete the installation of long anchor cable.
[0115] It should be understood that the term "and / or" in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. A and B can be singular or plural. Additionally, the character " / " in this article generally indicates an "or" relationship between the preceding and following related objects, but it can also represent an "and / or" relationship. Please refer to the context for a more accurate understanding.
[0116] In this invention, "at least one" means one or more, and "more than one" means two or more. "At least one of the following" or similar expressions refer to any combination of these items, including any combination of single or multiple items. For example, at least one of a, b, or c can represent: a, b, c, ab, ac, bc, or abc, where a, b, and c can be single or multiple.
[0117] It should be understood that in the various embodiments of this utility model, the sequence number of each process does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this utility model.
[0118] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A long anchor cable end anchor device, characterized in that, The device includes: an anchoring assembly, a grouting assembly, and an isolation assembly; The anchoring assembly includes a steel strand, a long anchor cable tray, and an anchor. The first end of the steel strand is used to insert into the long anchor cable hole. The long anchor cable tray and the anchor are sequentially fitted onto the second end of the steel strand, and the long anchor cable tray abuts against the rock surface at the opening of the long anchor cable hole. The grouting assembly includes a grouting pipe and an exhaust pipe. The steel strand, the grouting pipe, and the exhaust pipe are bundled together with a fixing strap to form a tube bundle. The grouting pipe is used to fill the long anchor cable hole with grout. The isolation assembly includes an airbag, an inflation / deflation pipe, and a slurry-stopping sponge plug. The inflation / deflation pipe is connected to the airbag. The airbag is detachably tied and fixed to the tube bundle. The slurry-stopping sponge plug has an insertion hole in the center. The tube bundle passes through the insertion hole, and the slurry-stopping sponge plug is located on the upper side of the airbag. The inflation / deflation pipe is equipped with a pressure gauge and an inflation valve to monitor and control the inflation pressure of the airbag.
2. The long anchor cable end anchor device according to claim 1, characterized in that, The device further includes a fixing member, which is fitted onto the lower end of the outer wall of the anti-slurry sponge plug.
3. The long anchor cable end anchor device according to claim 1, characterized in that, The space between the tubing and the grout-stopping sponge plug is sealed with foam adhesive.
4. The long anchor cable end anchor device according to claim 1, characterized in that, The device further includes a fixing wedge disposed at the port of the long anchor cable hole.
5. The long anchor cable end anchor device according to claim 1, characterized in that: The lengths of the steel strand, the exhaust pipe, and the grouting pipe decrease sequentially.
6. The long anchor cable end anchor device according to claim 1, characterized in that, The tensile strength of the steel strand is not less than 1860 MPa.
7. The long anchor cable end anchor device according to claim 1, characterized in that, The long anchor cable tray is made of cast iron or alloy steel and has an anti-slip texture on its surface.
8. The long anchor cable end anchor device according to claim 1, characterized in that, The grouting pipe is a pressure-resistant and corrosion-resistant plastic pipe or a rubber pipe with steel wire, and the outer diameter of the grouting pipe is not less than 20mm.
9. The long anchor cable end anchor device according to claim 1, characterized in that, The device also includes a pressure sensor connected to the grouting pipe for real-time monitoring of pressure changes during the grouting process.
10. The long anchor cable end anchor device according to claim 1, characterized in that, The water-cement ratio of the mortar is 0.4-0.8.