CN205369246U - Supporting construction of fastening formula shape memory alloy stock - Google Patents

Supporting construction of fastening formula shape memory alloy stock Download PDF

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Publication number
CN205369246U
CN205369246U CN201521140631.XU CN201521140631U CN205369246U CN 205369246 U CN205369246 U CN 205369246U CN 201521140631 U CN201521140631 U CN 201521140631U CN 205369246 U CN205369246 U CN 205369246U
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CN
China
Prior art keywords
shape memory
anchor pole
rod
memory alloy
soil
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Expired - Fee Related
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CN201521140631.XU
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Chinese (zh)
Inventor
智友海
史向平
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Xuzhou University of Technology
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Xuzhou University of Technology
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Priority to CN201521140631.XU priority Critical patent/CN205369246U/en
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Publication of CN205369246U publication Critical patent/CN205369246U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides a supporting construction of fastening formula shape memory alloy stock. It includes the body of rod and ground physically the tip of the body of rod has bearing platform structure, and the tip at the body of rod is established to opening form memory alloy component cover to constitute integrative shape memory alloy stock with the two built -up connection through the cushion cap, the ground is internal to be equipped with the prebored hole, and the shape memory alloy stock is inserted and is established in the prebored hole, shape memory alloy stock that shape memory alloy component that hologenesis shape memory replied constitutes, rethread structures, binding, layer board and pedestal locking. The utility model discloses anchor power (withdrawal resistance), durability and the application scope of stock structure can be improved, the mesh of strutting the ground body is reached to construction process is simple, convenient operation, effect safe and reliable.

Description

A kind of supporting construction of fastening-type marmem anchor pole
Technical field
This utility model belongs to Geotechnical Engineering field, especially relates to the supporting construction of a kind of fastening-type marmem anchor pole.
Background technology
Suspension roof support structure is a kind of novel tension member system, by anchor pole by slip Rock And Soil with stablize Rock And Soil tight union and be integrated, it is greatly increased the skid resistance of each aspect of Rock And Soil, set a roof beam in place by domatic upper ledge again simultaneously and each anchor pole is linked into effectively a bigger entirety, define a reinforcement system from outward appearance to inner essence, and then reach to prevent the purpose of overall slope instability, it is a kind of effective anti-skid anchor fixing structure.Therefore, suspension roof support structure be widely used in loose earth or rock side slope, foundation ditch, mine, underground engineering, dam body, navigation channel, reservoir, tunnel and anti-incline, in the engineering such as float Structure, it it is a kind of system that in Geotechnical Engineering, anchorage technology is the most universal, it has also become the important component part of modern building technology.In engineering construction, adopt anchor pole supporting supporting construction, to safeguard stablizing of unstable Rock And Soil, support simplifying, improve the aspect such as execution conditions and accelerating construction progress and can play huge effect.
Important parameter as suspension roof support structure, four difficult points that the key indexs such as its prestressing force applied, withdrawal resistance (bond stress and shearing resistance), freedom length and anchoring depth are always up in field of engineering technology, if the loss of prestress applied is many, the rock-soil layer then anchored is difficult to obtain sufficiently high skid resistance or shearing strength so that support anchoring effect is just had a greatly reduced quality;If the withdrawal resistance of anchor pole is too low, then the safety anchoring Rock And Soil can not get improving;If the freedom length of anchor pole is too short, then its loss of prestress is more many, and axis force of anchor is more unstable, weakens the effect of anchoring;If the anchoring depth of anchor pole is too short, then the withdrawal resistance of its offer is reduced by, and the pulling force that anchor pole bears just reduces, and the probability being pulled out increases so that the supporting safety of Rock And Soil can not get ensureing.
Traditional suspension roof support structure mainly has cylindrical anchor pole, end expanding type anchor pole and continuous ball-type anchor pole, some defects or deficiency is all there is in these structures in anchoring, namely, on the one hand, owing to anchoring requires there is certain anchorage length, thus result in anchor pole loss of prestress at work relatively big, also require that pull bar and its periphery cement mortar have the restriction of certain bond stress simultaneously, otherwise, anchor pole cannot provide enough withdrawal resistances;On the other hand, traditional suspension roof support structure in drilling construction process, being relatively large in diameter of required boring, therefore, comparatively speaking, the soil disturbance around boring is bigger, change the distribution of original stress field, increase the weight stress release of Rock And Soil around, additionally, increase along with bore diameter, the cost of engineering also greatly increases, and in construction, the expense of boring typically constitutes from more than the 30% of totle drilling cost, sometimes even over 50%, if adding grouting expense, the cost of engineering is just higher.From this, these shortcomings directly affect the cost of the bearing capacity of rock-soil layer anchor pole, efficiency of construction and whole support engineering.Therefore, for the construction technology that traditional suspension roof support structure adopts, all cannot concurrently reach that loss of prestress is little, anchoring depth is short, even without anchoring section, the advantages such as little, wide accommodation of holing.
Summary of the invention
In order to overcome the above-mentioned deficiency of prior art, this utility model provides the supporting construction of a kind of fastening-type marmem anchor pole, the anchor force (withdrawal resistance) of anchor structure, durability and the scope of application can be improved, reach the purpose to Rock And Soil supporting, and construction technology is simple, easy to operate, effect is safe and reliable.
This utility model solves its technical problem and the technical scheme is that and include the body of rod and Rock And Soil, in the end of the described body of rod, there is suspended deck structure, opening shape memory alloys component is set in the end of the body of rod, and by cushion cap, the two combination is connected and composed the marmem anchor pole of one, prebored hole it is provided with in Rock And Soil, marmem anchor pole is plugged in prebored hole, is locked by structures, fastener, supporting plate and pedestal.
Compared with prior art, this utility model has the advantage that
1, the boring aperture needed for this utility model is little, reduces the disturbance to Rock And Soil around, improves the withdrawal resistance of anchor pole, and aperture is little can arrange centralizer and carry out the operations such as grouting, reduces the cost of anchor structure.
2, construction technology is simple, easy to operate: only need to be heated heating up to opening shape memory alloys component by rock-soil layer, the purpose of anchor force just can be provided, the size of anchor force and mode can more easily control by having the opening shape memory alloys component of memory effect, anchor force as required is big, then the alloy components designed is larger in size.
3, safe and reliable: owing to the freedom length of anchor pole is longer, close to the size of the body of rod, then its loss of prestress is few, and axis force of anchor is stable, enhances the effect of anchoring in rock and soil, improves the safe and reliable of Rock And Soil;Additionally, the pulling force suffered by the body of rod is more big, opening shape memory alloys scantling is more big, and then the anchor force provided is more big, is fastening-type structure.
4, overall structure durability is high: due to opening shape memory alloys component have bigger restoring force and deformation, good corrosion resistance, good plasticity, higher intensity and fatigue life length and the advantage such as such environmental effects is little so that the durability of anchor structure is higher.
5, applied widely: the anchoring body opening shape memory alloys component that cement mortar or cement mortar form is replaced, expand the range of application of anchor structure significantly, this type of anchor pole is made to be applicable not only to all kinds of weak soil soil property, and it is also applied for all kinds of harder Rock And Soil, especially, rock matter layer it is also applied for;Certainly, in order to improve the withdrawal resistance of anchor structure, it is possible to anchor rod anchored for alloy structural design is become alloy anchor cable structure.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, this utility model is further illustrated.
Fig. 1 is the anchor structure floor map of this utility model alloy anchor pole.
Fig. 2 is the structural representation that marmem anchor pole is placed in Rock And Soil.
Fig. 3 is the floor map of the body of rod in this utility model.
Fig. 4 is the front view of this utility model split shed shape memory alloys component.
Fig. 5 is the top view of this utility model split shed shape memory alloys component.
Fig. 6 is the left view of this utility model split shed shape memory alloys component.
In figure, 1, the alloy components of large-diameter annual, 2, the body of rod, 3, centralizer, 4, structures, 5, Rock And Soil, 6, fastener, 7, supporting plate, 8, pedestal, 9, cushion cap, 10, opening shape memory alloys component.
Detailed description of the invention
For making the purpose of this utility model embodiment, technical scheme and advantage clearly, below in conjunction with the accompanying drawing in this utility model embodiment, technical scheme in this utility model embodiment is clearly and completely described, obviously, described embodiment is a part of embodiment of the present utility model, rather than whole embodiments.Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art obtain under not making creative work premise, broadly fall into protection domain of the present utility model.
Fig. 1 to Fig. 6 illustrates the structural representation of one preferred embodiment of this utility model, the supporting construction of a kind of fastening-type marmem anchor pole in figure, including the body of rod 2 and Rock And Soil 5, in the end of the described body of rod 2, there is cushion cap 9 structure, opening shape memory alloys component 10 is set in the end of the body of rod 2, and by cushion cap 9, the two combination is connected and composed the marmem anchor pole of one, simultaneously cushion cap 9 also can make the body of rod 2 bear the design load of tensile load of regulation, it is provided with prebored hole in Rock And Soil 5, marmem anchor pole is plugged in prebored hole, there is the marmem anchor pole that the Shape Memory Alloy member that shape memory is replied is constituted completely, again through structures 4, fastener 6, supporting plate 7 and pedestal 8 lock.
Wherein, the preparation process of opening shape memory alloys component 10 is: adopt machining operation under alloy mother phase state, memorial alloy blank is shaped into the flower-shaped initial alloy component of loudspeaker, the internal diameter of initial alloy component cylinder is identical with outer 2 footpaths of the body of rod, then it is carried out shape memory process, under the temperature environment more much lower than phase change transition temperature, the alloy components being in martensitic state is carried out machinery and stretches deformation, be finally processed into as opening shape memory alloys component 10.Owing to stress causes martensitic phase transformation, after making to stretch end, opening shape memory alloys component 10 leaves very big residual deformation, now opening shape memory alloys component 10 has been changed as ringent memorial alloy hollow cylinder, and its internal diameter is identical with opening shape memory alloys component 10, opening shape memory alloys component 10 now only has one way shape-memory effect in certain temperature range, and the phase change transition temperature that this process is arranged should slightly lower than the temperature of expansion place Rock And Soil 5.
After marmem anchor pole inserts Rock And Soil 5, rely on the temperature at rock-soil layer place place, after opening shape memory alloys component 10 is gradually increased to phase change transition temperature, alloy material itself will automatically carry out martensite reverse transformation transformation, and there is one-way shape memory recovery effect, namely fork is automatically occurred to stretch within the scope of its Opening length, flower-shaped in loudspeaker, and it is finally converted into the alloy components 1 (as shown in Figure 1) into large-diameter annual, by the time after opening shape memory alloys component 10 occurs shape memory to reply completely, pass through structures, fastener, zigzag alloy anchoring-bolt system is carried out stretch-draw and locking by supporting plate and pedestal, obtain the anchor rod anchored structure of zigzag alloy.
When the body of rod 2 stress of the anchor rod anchored structure of zigzag alloy, pulling force first passes through the body of rod 2 and passes to opening shape memory alloys component 10, then, passed to about in Rock And Soil 5 by opening shape memory alloys component 10 by the bonding frictional strength between rock soil medium again, serve the effect reinforcing Rock And Soil 5 eventually through the anchor rod anchored structure of zigzag alloy.
It is that the opening of described marmem anchor pole is arranged away from the bottom of the body of rod 2 as further improvement of this embodiment design.The anchor force that opening shape memory alloys component 10 bears so just can be made increasing, will more strengthen the effect that Rock And Soil 5 anchors.
Further improving is that, in order to reduce Rock And Soil 5 disturbance around hole, the aperture of the prebored hole of described Rock And Soil 5 is slightly larger than the size of the body of rod 2;The degree of depth of prebored hole and the length of anchor pole are close, and the inclination angle of prebored hole is 10 °~35 °.
In the present embodiment, when the aperture of the prebored hole in Rock And Soil 5 is bigger, it is possible to select the correct position in the prebored hole of described Rock And Soil 5 that centralizer 3 is set.It is used for realizing the location of marmem anchor pole so that it is be placed in the center of prebored hole, it is prevented that the body of rod 2 stirs hole wall when producing excessive amount of deflection and insert prebored hole, and ensures that the body of rod 2 has the cement mortar protective layer of adequate thickness.
From said structure, this utility model is by the basis of traditional anchor rod anchored structure, originally the anchoring body being made up of cement mortar or cement mortar is changed into opening shape memory alloys component 10 replace, itself have the advantage that by means of marmem (such as Nitinol), namely bigger restoring force and deformation, higher corrosion resistance, higher intensity, the characteristics such as good plasticity, additionally there is proportion little, fatigue life length and the advantage such as such environmental effects is little, and then greatly reduce anchor rod anchored structure limitation in the application, so the anchoring body of anchor pole just need not rely on cement mortar or cement mortar to provide anchor force, but achieve the goal simply by opening shape memory alloys component 10.Simultaneously, the control of grouting anchoring body translates into the memory effect to opening shape memory alloys component 10 and processes, and processing of memory effect only need to need Memory Alloy member is carried out certain heat-machining operation according to engineering, so for site operation, its construction technology and equipment is simple, easy to operate, effect is safe and reliable.As can be seen here, the anchor rod anchored structure of memorial alloy not only increases the withdrawal resistance of structure, durability and the scope of application, but also show that its construction technology is simple, reliable, investment and the advantage such as cost expense is low.Therefore, relatively conventional construction technology, the loss of prestress that this utility model has construction is low, resistance to plucking (anchoring) power is high, the advantages such as cost is low, adopt memorial alloy to carry out structure redesign, make the performance of anchor rod anchored structure, the suitability etc. be very significantly improved and improve.
The above this area designing technique personnel are to be understood that main thought of the present utility model, it is described although this utility model is the anchor rod anchored structure of zigzag alloy to simple circle (ring) tee section, but this utility model scope of application is not intended to be limited to this.For example; opening shape memory alloys component 10 can be designed as other form such as flaabellum shape or tooth shape by those skilled in the art completely; the continuous print anchor rod anchored structure of zigzag alloy can be expanded to again; can also be designed into as alloy anchorage cable anchoring structure etc.; it is specifically described in conjunction with the present embodiment accompanying drawing and is only used to clear explanation thinking of the present utility model; this area designing technique personnel are to be understood that its marrow, as long as utilizing the thought that memorial alloy carries out anchor structure design to be protection domain of the present utility model.

Claims (4)

1. the supporting construction of a fastening-type marmem anchor pole, including the body of rod (2) and Rock And Soil (5), it is characterized in that: in the end of the described body of rod (2), there is cushion cap (9) structure, opening shape memory alloys component (10) is set in the end of the body of rod (2), and by cushion cap (9), the two combination is connected and composed the marmem anchor pole of one, Rock And Soil is provided with prebored hole in (5), marmem anchor pole is plugged in prebored hole, there is the marmem anchor pole that the Shape Memory Alloy member that shape memory is replied is constituted completely, again through structures (4), fastener (6), supporting plate (7) and pedestal (8) locking.
2. the supporting construction of a kind of fastening-type marmem anchor pole according to claim 1, is characterized in that: the opening of described marmem anchor pole is arranged away from the bottom of the body of rod (2).
3. the supporting construction of a kind of fastening-type marmem anchor pole according to claim 1 and 2, it is characterized in that: the aperture of the prebored hole of described Rock And Soil (5) is slightly larger than the size of the body of rod (2), the degree of depth of prebored hole and the length of anchor pole are close, and the inclination angle of prebored hole is 10 °~35 °.
4. the supporting construction of a kind of fastening-type marmem anchor pole according to claim 1 and 2, is characterized in that: arrange centralizer (3) in the prebored hole of described Rock And Soil (5).
CN201521140631.XU 2015-12-31 2015-12-31 Supporting construction of fastening formula shape memory alloy stock Expired - Fee Related CN205369246U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521140631.XU CN205369246U (en) 2015-12-31 2015-12-31 Supporting construction of fastening formula shape memory alloy stock

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105464112A (en) * 2015-12-31 2016-04-06 徐州工程学院 Fastening type shape memory alloy anchor rod and anchoring construction process thereof
CN110700869A (en) * 2019-10-15 2020-01-17 华北科技学院 Anchor rod supporting structure
CN114086609A (en) * 2021-10-29 2022-02-25 浙江科技学院 Device and method for preventing upper-section pile from being ejected out in self-balancing test of pile bearing capacity

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105464112A (en) * 2015-12-31 2016-04-06 徐州工程学院 Fastening type shape memory alloy anchor rod and anchoring construction process thereof
CN110700869A (en) * 2019-10-15 2020-01-17 华北科技学院 Anchor rod supporting structure
CN114086609A (en) * 2021-10-29 2022-02-25 浙江科技学院 Device and method for preventing upper-section pile from being ejected out in self-balancing test of pile bearing capacity

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160706

Termination date: 20161231