CN108952217A - A kind of soil support construction for green building - Google Patents

A kind of soil support construction for green building Download PDF

Info

Publication number
CN108952217A
CN108952217A CN201810856369.0A CN201810856369A CN108952217A CN 108952217 A CN108952217 A CN 108952217A CN 201810856369 A CN201810856369 A CN 201810856369A CN 108952217 A CN108952217 A CN 108952217A
Authority
CN
China
Prior art keywords
plate
block
soil
fixedly connected
support construction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810856369.0A
Other languages
Chinese (zh)
Other versions
CN108952217B (en
Inventor
吴键斌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhongdi Yingang Construction Group Co., Ltd
Original Assignee
Shenzhen City Law Far Hui Zhi Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen City Law Far Hui Zhi Technology Co Ltd filed Critical Shenzhen City Law Far Hui Zhi Technology Co Ltd
Priority to CN201810856369.0A priority Critical patent/CN108952217B/en
Publication of CN108952217A publication Critical patent/CN108952217A/en
Application granted granted Critical
Publication of CN108952217B publication Critical patent/CN108952217B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G25/00Shores or struts; Chocks
    • E04G25/04Shores or struts; Chocks telescopic
    • E04G25/06Shores or struts; Chocks telescopic with parts held together by positive means

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Earth Drilling (AREA)

Abstract

The present invention relates to a kind of soil support constructions for green building, including two transverse slats, two support columns, two water removal bodies and at least two buffer gears, buffer gear includes locating rod and Buffer Unit, Buffer Unit includes bearing plate, driver plate, connecting rod, piston, sleeve, two partial pressure plates, two limit plates and two springs, water removal body includes strainer, sandbag and two compression assemblies, compression assembly includes driving unit, cross bar, expansion bracket, connecting plate, compression plate, two support plates, two sliding blocks and two drive blocks, this is used for the soil support construction of green building, in soil relaxation, by buffer gear buffer function can be played to two transverse slats, reduce the fall of transverse slat, to improve the stability of the soil support construction, the moisture in soil is reduced by water removal body, mitigate soil weight Power, security risk caused by eliminating because of pressure increase, so that the safety of the soil support construction greatly improves.

Description

A kind of soil support construction for green building
Technical field
The present invention relates to green building field, in particular to a kind of soil support construction for green building.
Background technique
Green building refers in the life cycle management of building, economizes on resources to the maximum extent, including energy conservation, save land, be water-saving, Material etc., protection environment and reduction pollution are saved, healthy, comfortable and efficient use space is provided for people, with natural harmony symbiosis Building.Green building technique focus on low consumption, efficiently, economic, environmental protection, integrated and optimization, be man and nature, now and future Between benefits-sharing, be the construction means of sustainable development.
Existing soil support construction can not provide effective twelve Earthly Branches support, reduce existing soil branch after soil relaxation The stability of support structure, moreover, soil is influenced by rainwater, and gravity increases, to the pressure increase of soil support construction, There are some potential safety problemss, so that the safety of existing soil support construction substantially reduces.
Summary of the invention
The technical problem to be solved by the present invention is for overcome the deficiencies in the prior art, providing a kind of for green building Soil support construction.
The technical solution adopted by the present invention to solve the technical problems is: a kind of soil support knot for green building Structure, including two transverse slats, two support columns, two water removal bodies and at least two buffer gears, two transverse slats are horizontally disposed, Two support columns are vertically provided between two transverse slats, and the top and bottom end of the support column are fixed with two transverse slats respectively to be connected It connects, two water removal bodies are arranged between two transverse slats, and each buffer gear is evenly distributed between two transverse slats;
The buffer gear includes locating rod and Buffer Unit, and the locating rod is vertically fixed therein on a transverse slat, The Buffer Unit is arranged on another transverse slat;
The Buffer Unit include bearing plate, driver plate, connecting rod, piston, sleeve, two partial pressure plates, two limit plates and Two springs, two limit plates are vertically arranged, and the top of the limit plate is fixedly connected with transverse slat, and the bearing plate level is set It sets between two limit plates, two partial pressure plates are inclined at the two sides of the lower section of bearing plate respectively, described to divide the remote of plate One end and limit plate from bearing plate is against the partial pressure plate is fixedly connected with bearing plate, and the partial pressure plate and limit plate slide Connection, the driver plate are horizontally fixed on the top of bearing plate, and the connecting rod is vertically fixed on the top of driver plate, the sleeve Vertically arranged, the top of the sleeve is fixedly connected with transverse slat, and the piston is horizontally set in sleeve, the both ends of the piston Respectively with the inner wall of the two sides of sleeve against the top of the connecting rod is fixedly connected with the piston, the inner wall of the two sides of the sleeve On be all provided with there are two the first opening, two first on the ipsilateral inner wall of sleeve openings are interconnected, two springs point It is not vertically provided at the two sides of connecting rod, the driver plate is connected by the bottom of spring and sleeve;
The water removal body includes strainer, sandbag and two compression assemblies, the strainer be vertically provided at two transverse slats it Between, the strainer is fixedly connected with transverse slat, and the sandbag is vertically provided between strainer and support column, the compression assembly and cross Plate corresponds, and the compression assembly is arranged on transverse slat;
The compression assembly includes driving unit, cross bar, expansion bracket, connecting plate, compression plate, two support plates, two cunnings Block and two drive blocks, the driving unit are arranged on transverse slat, and the cross bar is horizontally disposed, and two support plates are vertical solid respectively The both ends of cross bar are scheduled on, the cross bar is fixedly connected by support plate with transverse slat, and two sliding blocks are set on cross bar, the cunning Block is slidably connected with cross bar, and the driving unit drives two sliding blocks close to each other or is located remotely from each other, and the connecting plate level is set It sets, the connecting plate is equipped with strip-shaped hole, and two drive blocks are arranged in strip-shaped hole, and one of drive block and strip-shaped hole are solid Fixed connection, another drive block are fixedly connected with connecting plate, and the compression plate is horizontally fixed on the lower section of connecting plate, described flexible The two sides on the top of frame are hinged with two sliding blocks respectively, and the two sides of the bottom end of the expansion bracket are hinged with two drive blocks respectively.
Preferably, in order to improve the ability that spring bears axial compressive force, the spring is compressed spring.
Preferably, in order to more accurately drive sliding block, the driving unit includes first motor, fixed block, guiding list Member and two driven units, the first motor are horizontally fixed in one of support plate, and the pilot unit is arranged two Between a support plate, the fixed block is connect with pilot unit, and two driven units are separately positioned on the two sides of fixed block, described First motor is connect with one of driven unit, and the driven unit includes screw rod, movable block and link block, the screw rod water Flat setting, the first motor are connect with one of screw rod transmission, and two screw rods are fixedly connected, and the screw thread of two screw rods is reversed On the contrary, the fixed block is set in the junction of two screw rods, the movable block is set on screw rod, the movable block with silk The junction of bar is equipped with the screw thread to match with screw rod, and the link block is fixed on the side of the close sliding block of movable block, described Movable block is fixedly connected with a slide block by link block.
Preferably, in order to improve the stability of movable block, the pilot unit include guide rod, locating piece and two from Motion block, the guide rod is horizontally disposed, and the both ends of the guide rod are fixedly connected with two support plates respectively, the locating piece set If on the guide bar, the locating piece is fixedly connected with guide rod, the locating piece is fixedly connected with fixed block, the Slave Block It is arranged on the guide bar, the Slave Block is slidably connected with guide rod, and the Slave Block is fixedly connected with movable block.
Preferably, in order to improve the stability of screw rod, the screw rod of the separate first motor in two screw rods far from the One end of one motor is equipped with bearing block, the fixed company of the support plate of the bearing block and the separate first motor in two support plates It connects, the bearing sleeve is located on screw rod.
Preferably, two screw rods are an integral molding structure in order to keep the connection between two screw rods stronger.
Preferably, in order to improve the driving precision of first motor, the first motor is servo motor.
Preferably, in order to extend the service life of screw rod, the making material of the screw rod is stainless steel.
Preferably, in order to keep the transmission between sliding block and cross bar more smooth, the sliding block and cross bar clearance fit.
Preferably, in order to improve stability when drive block sliding, the is equipped at the top and bottom of the drive block A part of one groove, the connecting plate is arranged in the first groove, and the connecting plate is slidably connected with the first groove.
The invention has the advantages that this is used for the soil support construction of green building, in soil relaxation, pass through buffering Mechanism can play buffer function to two transverse slats, the fall of transverse slat be reduced, to improve the soil support construction Stability, compared with existing buffer gear, which can further improve buffering effect by the reflux of oil circuit, Simultaneously can be avoided set cylinder pressure it is excessively high caused by detonation phenomenon pass through to improve the practicability of the buffer gear Water removal body reduces the moisture in soil, mitigates soil gravitational, security risk caused by eliminating because of pressure increase, to make The safety of the soil support construction greatly improves, compared with existing water removal body, the water removal body is by the water in soil Divide and be transferred in sandbag, while absorbing moisture by sandbag, the weight of sandbag can be increased, convenient for keeping soil support construction Balance, to improve the practicability of the water removal body.
Detailed description of the invention
Present invention will be further explained below with reference to the attached drawings and examples.
Fig. 1 is the structural schematic diagram of the soil support construction for green building of the invention;
Fig. 2 is the structural schematic diagram of the Buffer Unit of the soil support construction for green building of the invention;
Fig. 3 is the structural schematic diagram of the compression assembly of the soil support construction for green building of the invention;
Fig. 4 is the structural schematic diagram of the driving unit of the soil support construction for green building of the invention;
In figure: 1. transverse slats, 2. support columns, 3. locating rods, 4. bearing plates, 5. driver plates, 6. connecting rods, 7. pistons, 8. sleeves, 9. plate is divided, 10. limit plates, 11. springs, 12. strainers, 13. sandbags, 14. cross bars, 15. expansion brackets, 16. connecting plates, 17. pressures Contracting plate, 18. sliding blocks, 19. drive blocks, 20. first motors, 21. fixed blocks, 22. screw rods, 23. movable blocks, 24. link blocks, 25. Guide rod, 26. locating pieces, 27. Slave Blocks.
Specific embodiment
In conjunction with the accompanying drawings, the present invention is further explained in detail.These attached drawings are simplified schematic diagram, only with Illustration illustrates basic structure of the invention, therefore it only shows the composition relevant to the invention.
As shown in Figure 1, a kind of soil support construction for green building, including two transverse slats, 1, two support column 2, two A water removal body and at least two buffer gears, two transverse slats 1 are horizontally disposed, and two support columns 2 are vertically provided at two Between transverse slat 1, the top and bottom end of the support column 2 are fixedly connected with two transverse slats 1 respectively, and two water removal bodies are arranged at Between two transverse slats 1, each buffer gear is evenly distributed between two transverse slats 1;
In soil relaxation, buffer function can be played to two transverse slats 1 by buffer gear, reduce the decline of transverse slat 1 Amplitude, to improve the stability of the soil support construction, compared with existing buffer gear, which passes through oil circuit Reflux can further improve buffering effect, while can be avoided in sleeve 8 detonation phenomenon caused by hypertonia, from And improve the practicability of the buffer gear, by water removal body reduce soil in moisture, mitigate soil gravitational, eliminate because Security risk caused by pressure increase, so that the safety of the soil support construction greatly improves, with existing water removal Mechanism compares, which while absorbing moisture by sandbag, can increase in the water transport to sandbag in soil The weight of sandbag, convenient for keeping the balance of soil support construction, to improve the practicability of the water removal body.
As shown in Figs. 1-2, the buffer gear includes locating rod 3 and Buffer Unit, and the locating rod 3 is vertically fixed on it In on a transverse slat 1, the Buffer Unit is arranged on another transverse slat 1;
The Buffer Unit includes bearing plate 4, driver plate 5, connecting rod 6, piston 7,8, two, sleeve partial pressure plate 9, two limit Position plate 10 and two springs 11, two limit plates 10 are vertically arranged, and the top of the limit plate 10 is fixedly connected with transverse slat 1, The bearing plate 4 is horizontally set between two limit plates 10, and two partial pressure plates 9 are inclined at the lower section of bearing plate 4 respectively Two sides, one end of separate the bearing plate 4 of the partial pressure plate 9 and limit plate 10 are against the partial pressure plate 9 and the fixation of bearing plate 4 Connection, the partial pressure plate 9 are slidably connected with limit plate 10, and the driver plate 5 is horizontally fixed on the top of bearing plate 4, the company Bar 6 is vertically fixed on the top of driver plate 5, and the sleeve 8 is vertically arranged, and the top of the sleeve 8 is fixedly connected with transverse slat 1, The piston 7 is horizontally set in sleeve 8, and the both ends of the piston 7 are respectively with the inner wall of the two sides of sleeve 8 against the company The top of bar 6 is fixedly connected with piston 7, is all provided on the inner wall of the two sides of the sleeve 8 there are two the first opening, is located at sleeve 8 Ipsilateral inner wall on two first opening be interconnected, two springs 11 are vertically provided at the two sides of connecting rod 6 respectively, described Driver plate 5 is connect by spring 11 with the bottom of sleeve 8;
When soil relaxation, the gap between two transverse slats 1 increases, and causes the transverse slat 1 of top in the effect of ground pressure Under have the tendency that moving downward, at this point, the restoring force of spring 11 makes sleeve 8 and driver plate 5 have the tendency that reverse movement, together When, the oil circuit in sleeve 8 flows under the extruding of piston 7, inhibiting effect is played to piston 7, thus by connecting rod 6 to driver plate 5 play inhibiting effect, divide plate 9 by two and disperse the pressure that a part of locating rod 3 plays bearing plate 4, meanwhile, driver plate 5 pairs of bearing plates 4 play inhibiting effect, to achieve the purpose that buffering.
As shown in figure 3, the water removal body includes strainer 12, sandbag 13 and two compression assemblies, the strainer 12 is vertical It is arranged between two transverse slats 1, the strainer 12 is fixedly connected with transverse slat 1, and the sandbag 13 is vertically provided at strainer 12 and branch Between dagger 2, the compression assembly and transverse slat 1 are corresponded, and the compression assembly is arranged on transverse slat 1;
The compression assembly includes driving unit, cross bar 14, expansion bracket 15, connecting plate 16, compression plate 17, two supports Plate, two sliding blocks 18 and two drive blocks 19, the driving unit are arranged on transverse slat 1, and the cross bar 14 is horizontally disposed, and two Support plate is vertically fixed on the both ends of cross bar 14 respectively, and the cross bar 14 is fixedly connected by support plate with transverse slat 1, two sliding blocks 18 are set on cross bar 14, and the sliding block 18 is slidably connected with cross bar 14, and the driving unit drives two sliding blocks 18 mutual Close or be located remotely from each other, the connecting plate 16 is horizontally disposed, and the connecting plate 16 is equipped with strip-shaped hole, and two drive blocks 19 are all provided with It sets in strip-shaped hole, one of drive block 19 is fixedly connected with strip-shaped hole, another drive block 19 and the fixed company of connecting plate 16 Connect, the compression plate 17 is horizontally fixed on the lower section of connecting plate 16, the two sides on the top of the expansion bracket 15 respectively with two cunnings Block 18 is hinged, and the two sides of the bottom end of the expansion bracket 15 are hinged with two drive blocks 19 respectively;
Driving unit drives two sliding blocks 18 close to each other or is located remotely from each other, and drives expansion bracket 15 by two drive blocks 19 Elongation is shunk, so that the compression plate 17 in two compression assemblies is close to each other or is located remotely from each other, plays compression effectiveness to soil, The compact while spend of soil is improved, the moisture in soil can be squeezed out, by being inhaled after 12 impurity screening of strainer by sandbag 13 It receives, weight is shifted to two sides, it, can be convenient for the holding soil branch while avoiding middle end pressure is excessive transverse slat 1 is caused to deform The balance of support structure.
Preferably, the spring 11 is compressed spring in order to improve the ability that spring 11 bears axial compressive force, bullet is compressed There is certain gap between the circle and circle of spring, spring contraction deforms when by external applied load, deformation energy is stored, so as to improve The ability of the receiving axial compressive force of spring 11.
As shown in figure 4, the driving unit includes first motor 20, fixed block 21, pilot unit and two driven units, The first motor 20 is horizontally fixed in one of support plate, and the pilot unit is arranged between two support plates, institute It states fixed block 21 to connect with pilot unit, two driven units are separately positioned on the two sides of fixed block 21, the first motor 20 It is connect with one of driven unit, the driven unit includes screw rod 22, movable block 23 and link block 24,22 water of screw rod Flat setting, the first motor 20 are sequentially connected with one of screw rod 22, and two screw rods 22 are fixedly connected, two screw rods 22 Screw thread is reversed, and on the contrary, the fixed block 21 is set in the junction of two screw rods 22, the movable block 23 is set on screw rod 22, The movable block 23 is equipped with the screw thread to match with screw rod 22 with the junction of screw rod 22, and the link block 24 is fixed on movement The side of the close sliding block 18 of block 23, the movable block 23 are fixedly connected by link block 24 with sliding block 18, and first motor 20 is driven It moves one of screw rod 22 to rotate, drives another screw rod 22 to rotate in same direction, since the hand of spiral of two screw rods 22 is on the contrary, make It obtains two movable blocks 23 to move backward, drives two sliding blocks 18 close to each other or be located remotely from each other, pass through the rotation for controlling screw rod 22 Angle can be accurately controlled the displacement of movable block 23, so as to more accurately drive sliding block 18.
Preferably, in order to improve the stability of movable block 23, the pilot unit includes guide rod 25,26 and of locating piece Two Slave Blocks 27, the guide rod 25 is horizontally disposed, and the both ends of the guide rod 25 are fixedly connected with two support plates respectively, The locating piece 26 is set on guide rod 25, and the locating piece 26 is fixedly connected with guide rod 25, the locating piece 26 with it is solid Determine block 21 to be fixedly connected, the Slave Block 27 is set on guide rod 25, and the Slave Block 27 is slidably connected with guide rod 25, institute It states Slave Block 27 to be fixedly connected with movable block 23, limitation rotation is played the role of to two Slave Blocks 27 by guide rod 25, is made It obtains Slave Block 27 and position-limiting action is played to movable block 23, so as to improve the stability of movable block 23.
Preferably, in order to improve the stability of screw rod 22, the screw rod 22 of the separate first motor 20 in two screw rods 22 One end of separate first motor 20 be equipped with bearing block, the bearing block and the separate first motor 20 in two support plates Support plate is fixedly connected, and the bearing sleeve is located on screw rod 22, bearing block energy in the case where not influencing the rotation of screw rod 22 It is enough to play the role of limited support to screw rod 22, so as to improve the stability of screw rod 22.
Preferably, two screw rods 22 are an integral molding structure in order to keep the connection between two screw rods 22 stronger.
Preferably, in order to improve the driving precision of first motor 20, the first motor 20 is servo motor, servo electricity Machine can control speed, and position precision is very accurate, can convert voltage signal to torque and revolving speed with drive control object, So as to improve the driving precision of first motor 20.
Preferably, in order to extend the service life of screw rod 22, the making material of the screw rod 22 is stainless steel, stainless steel With good corrosion resistance, it can effectively slow down the rate that is corroded of screw rod 22, so as to extend the use of screw rod 22 Service life.
Preferably, in order to keep the transmission between sliding block 18 and cross bar 14 more smooth, the sliding block 18 and 14 gap of cross bar Cooperation, can reduce the frictional force between sliding block 18 and cross bar 14, so as to make the transmission between sliding block 18 and cross bar 14 more It is smooth.
Preferably, the top and bottom of the drive block 19 are all provided in order to improve stability when drive block 19 slides There is the first groove, a part of the connecting plate 16 is arranged in the first groove, and the connecting plate 16 and the sliding of the first groove connect It connects, position-limiting action can be played to drive block 19 by the interaction force between the first groove and connecting plate 16, so as to Improve stability when drive block 19 slides.
In soil relaxation, buffer function is played to locating rod 3 by Buffer Unit, so as to rise to two transverse slats 1 To buffer function, the fall of transverse slat 1 is reduced, so that the stability of the soil support construction is improved, with existing buffering Mechanism compares, which can further improve buffering effect by the reflux of oil circuit, while can be avoided in sleeve 8 Detonation phenomenon caused by hypertonia is compressed soil by compression assembly, is mentioned to improve the practicability of the buffer gear The compact degree of high soil reduces the moisture in soil, mitigates soil gravitational, and safety is hidden caused by eliminating because of pressure increase Suffer from, so that the safety of the soil support construction greatly improves, compared with existing water removal body, which will be native In water transport to sandbag in earth, while absorbing moisture by sandbag, the weight of sandbag can be increased, convenient for keeping soil The balance of support construction, to improve the practicability of the water removal body.
Compared with prior art, the soil support construction for being used for green building passes through buffer gear in soil relaxation Two transverse slats 1 can be played with buffer function, the fall of transverse slat 1 is reduced, to improve the steady of the soil support construction Qualitative, compared with existing buffer gear, which can further improve buffering effect by the reflux of oil circuit, together When can be avoided in sleeve 8 detonation phenomenon caused by hypertonia, so that the practicability of the buffer gear is improved, by removing Moisture in water dispenser structure reduction soil, mitigation soil gravitational, security risk caused by eliminating because of pressure increase, so that The safety of the soil support construction greatly improves, and compared with existing water removal body, the water removal body is by the moisture in soil It is transferred in sandbag, while absorbing moisture by sandbag, the weight of sandbag can be increased, convenient for keeping soil support construction Balance, to improve the practicability of the water removal body.
Taking the above-mentioned ideal embodiment according to the present invention as inspiration, through the above description, relevant staff is complete Various changes and amendments can be carried out without departing from the scope of the technological thought of the present invention' entirely.The technology of this invention Property range is not limited to the contents of the specification, it is necessary to which the technical scope thereof is determined according to the scope of the claim.

Claims (10)

1. a kind of soil support construction for green building, which is characterized in that including two transverse slats (1), two support columns (2), two water removal bodies and at least two buffer gears, two transverse slats (1) are horizontally disposed, and two support columns (2) are vertical It is arranged between two transverse slats (1), the top and bottom end of the support column (2) are fixedly connected with two transverse slats (1) respectively, and two Water removal body is arranged between two transverse slats (1), and each buffer gear is evenly distributed between two transverse slats (1);
The buffer gear includes locating rod (3) and Buffer Unit, and the locating rod (3) is vertically fixed therein a transverse slat (1) on, the Buffer Unit is arranged on another transverse slat (1);
The Buffer Unit includes bearing plate (4), driver plate (5), connecting rod (6), piston (7), sleeve (8), two partial pressure plates (9), two limit plates (10) and two springs (11), two limit plates (10) are vertically arranged, the top of the limit plate (10) End is fixedly connected with transverse slat (1), and the bearing plate (4) is horizontally set between two limit plates (10), two partial pressure plates (9) point It is not inclined at the two sides of the lower section of bearing plate (4), one end of the separate bearing plate (4) of partial pressure plate (9) and limit plate (10) against, the partial pressure plate (9) is fixedly connected with bearing plate (4), and the partial pressure plate (9) is slidably connected with limit plate (10), The driver plate (5) is horizontally fixed on the top of bearing plate (4), and the connecting rod (6) is vertically fixed on the top of driver plate (5), The sleeve (8) is vertically arranged, and the top of the sleeve (8) is fixedly connected with transverse slat (1), and the piston (7) is horizontally set on In sleeve (8), the both ends of the piston (7) respectively with the inner wall of the two sides of sleeve (8) against, the top of the connecting rod (6) with Piston (7) is fixedly connected, and is all provided on the inner wall of the two sides of the sleeve (8) there are two the first opening, is located at the ipsilateral of sleeve (8) Inner wall on two first opening be interconnected, two springs (11) are vertically provided at the two sides of connecting rod (6), the biography respectively Movable plate (5) is connect by spring (11) with the bottom of sleeve (8);
The water removal body includes strainer (12), sandbag (13) and two compression assemblies, and the strainer (12) is vertically provided at two Between a transverse slat (1), the strainer (12) is fixedly connected with transverse slat (1), the sandbag (13) be vertically provided at strainer (12) with Between support column (2), the compression assembly and transverse slat (1) are corresponded, and the compression assembly is arranged on transverse slat (1);
The compression assembly includes driving unit, cross bar (14), expansion bracket (15), connecting plate (16), compression plate (17), two branch Fagging, two sliding blocks (18) and two drive blocks (19), the driving unit are arranged on transverse slat (1), cross bar (14) water Flat setting, two support plates are vertically fixed on the both ends of cross bar (14) respectively, and the cross bar (14) passes through support plate and transverse slat (1) It is fixedly connected, two sliding blocks (18) are set on cross bar (14), and the sliding block (18) is slidably connected with cross bar (14), the drive Moving cell drives two sliding blocks (18) close to each other or is located remotely from each other, and the connecting plate (16) is horizontally disposed, the connecting plate (16) it is equipped with strip-shaped hole, two drive blocks (19) are arranged in strip-shaped hole, and one of drive block (19) and strip-shaped hole are solid Fixed connection, another drive block (19) are fixedly connected with connecting plate (16), and the compression plate (17) is horizontally fixed on connecting plate (16) lower section, the two sides on the top of the expansion bracket (15) respectively with two sliding blocks (18) hingedly, the expansion bracket (15) The two sides of bottom end are hinged with two drive blocks (19) respectively.
2. being used for the soil support construction of green building as described in claim 1, which is characterized in that the spring (11) is pressure Contracting spring.
3. being used for the soil support construction of green building as described in claim 1, which is characterized in that the driving unit includes First motor (20), fixed block (21), pilot unit and two driven units, the first motor (20) are horizontally fixed on wherein In one support plate, the pilot unit is arranged between two support plates, and the fixed block (21) connect with pilot unit, and two A driven unit is separately positioned on the two sides of fixed block (21), and the first motor (20) connect with one of driven unit, The driven unit includes screw rod (22), movable block (23) and link block (24), and the screw rod (22) is horizontally disposed, and described first Motor (20) and one of screw rod (22) are sequentially connected, and two screw rods (22) are fixedly connected, and the screw thread of two screw rods (22) is anti- To on the contrary, the fixed block (21) is set in the junction of two screw rods (22), the movable block (23) is set in screw rod (22) On, the movable block (23) is equipped with the screw thread to match with screw rod (22), the link block with the junction of screw rod (22) (24) it is fixed on the side of the close sliding block (18) of movable block (23), the movable block (23) passes through link block (24) and sliding block (18) it is fixedly connected.
4. being used for the soil support construction of green building as claimed in claim 3, which is characterized in that the pilot unit includes Guide rod (25), locating piece (26) and two Slave Blocks (27), the guide rod (25) is horizontally disposed, the guide rod (25) Both ends are fixedly connected with two support plates respectively, and the locating piece (26) is set on guide rod (25), the locating piece (26) It is fixedly connected with guide rod (25), the locating piece (26) is fixedly connected with fixed block (21), and the Slave Block (27) is set in On guide rod (25), the Slave Block (27) is slidably connected with guide rod (25), and the Slave Block (27) and movable block (23) are solid Fixed connection.
5. being used for the soil support construction of green building as claimed in claim 3, which is characterized in that in two screw rods (22) One end of the separate first motor (20) of screw rod (22) far from first motor (20) is equipped with bearing block, the bearing block and two The support plate of separate first motor (20) in a support plate is fixedly connected, and the bearing sleeve is located on screw rod (22).
6. being used for the soil support construction of green building as described in claim 1, which is characterized in that two screw rods (22) are one Forming structure.
7. being used for the soil support construction of green building as claimed in claim 3, which is characterized in that the first motor (20) For servo motor.
8. being used for the soil support construction of green building as claimed in claim 3, which is characterized in that the system of the screw rod (22) Making material is stainless steel.
9. being used for the soil support construction of green building as described in claim 1, which is characterized in that the sliding block (18) and cross Bar (14) clearance fit.
10. being used for the soil support construction of green building as described in claim 1, which is characterized in that the drive block (19) Top and bottom be equipped with the first groove, a part of the connecting plate (16) is arranged in the first groove, the connecting plate (16) it is slidably connected with the first groove.
CN201810856369.0A 2018-07-31 2018-07-31 A soil bearing structure for green building Active CN108952217B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810856369.0A CN108952217B (en) 2018-07-31 2018-07-31 A soil bearing structure for green building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810856369.0A CN108952217B (en) 2018-07-31 2018-07-31 A soil bearing structure for green building

Publications (2)

Publication Number Publication Date
CN108952217A true CN108952217A (en) 2018-12-07
CN108952217B CN108952217B (en) 2020-12-01

Family

ID=64465377

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810856369.0A Active CN108952217B (en) 2018-07-31 2018-07-31 A soil bearing structure for green building

Country Status (1)

Country Link
CN (1) CN108952217B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113062295A (en) * 2021-03-25 2021-07-02 江苏银中建设有限公司 Land supporting structure for green building
CN113653090A (en) * 2021-08-17 2021-11-16 广东中基建工工程有限公司 A soil bearing structure for green building

Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL7206823A (en) * 1971-05-20 1972-11-22
SU755957A1 (en) * 1978-06-26 1980-08-15 Vnii Gidrotekh Vibration isolator of foundation for turbounit
US4280770A (en) * 1979-05-25 1981-07-28 Woodruff Roy J Apparatus for compacting soil
US5104257A (en) * 1989-06-02 1992-04-14 Construcciones Maquinaria Obras Publicas Lebrero, S.A. Vibration insulation system in compactors
DE19518830A1 (en) * 1994-03-10 1996-11-28 Moebius Josef Bau Method of stabilising underground below roads and buildings - involves column excavation replaced by geo-textile load-bearing casing for dewatering and compacting in-situ with resultant ground load absorption
JP2005314991A (en) * 2004-04-30 2005-11-10 Nakamura Bussan Kk Pile foundation structure for building and its construction method
CN101033609A (en) * 2007-03-27 2007-09-12 天津大学 Method of reinforcing soft soil foundation by gas extrusion drainage and used gasbag
CN104032726A (en) * 2013-03-04 2014-09-10 五邑大学 Post-grouting capped rigid pile and drainage unit combined foundation treatment technology
CN104532819A (en) * 2014-12-18 2015-04-22 重庆大学 Stress control type reinforcement enclosure structure and foundation treatment construction method thereof
KR20160025058A (en) * 2014-08-25 2016-03-08 삼성물산 주식회사 Multi-layer drain connecting structure for improving great deep soft ground
CN106087945A (en) * 2016-06-07 2016-11-09 浙江大学 Earth anchor and counter-force load precompressed soft foundation processing method
US20160356124A1 (en) * 2013-11-14 2016-12-08 Bar Star Energy, LLC Containment mat system
CN207062968U (en) * 2017-06-30 2018-03-02 郭志伟 A kind of composite foundation structure of sponge urban construction
CN207436083U (en) * 2017-08-17 2018-06-01 郭相兵 A kind of anti-settling foundation structure
CN108104104A (en) * 2017-12-29 2018-06-01 浙江工业大学 Method for reinforcing soft soil foundation through fluctuation pressurization type vacuum preloading

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL7206823A (en) * 1971-05-20 1972-11-22
SU755957A1 (en) * 1978-06-26 1980-08-15 Vnii Gidrotekh Vibration isolator of foundation for turbounit
US4280770A (en) * 1979-05-25 1981-07-28 Woodruff Roy J Apparatus for compacting soil
US5104257A (en) * 1989-06-02 1992-04-14 Construcciones Maquinaria Obras Publicas Lebrero, S.A. Vibration insulation system in compactors
DE19518830A1 (en) * 1994-03-10 1996-11-28 Moebius Josef Bau Method of stabilising underground below roads and buildings - involves column excavation replaced by geo-textile load-bearing casing for dewatering and compacting in-situ with resultant ground load absorption
JP2005314991A (en) * 2004-04-30 2005-11-10 Nakamura Bussan Kk Pile foundation structure for building and its construction method
CN101033609A (en) * 2007-03-27 2007-09-12 天津大学 Method of reinforcing soft soil foundation by gas extrusion drainage and used gasbag
CN104032726A (en) * 2013-03-04 2014-09-10 五邑大学 Post-grouting capped rigid pile and drainage unit combined foundation treatment technology
US20160356124A1 (en) * 2013-11-14 2016-12-08 Bar Star Energy, LLC Containment mat system
KR20160025058A (en) * 2014-08-25 2016-03-08 삼성물산 주식회사 Multi-layer drain connecting structure for improving great deep soft ground
CN104532819A (en) * 2014-12-18 2015-04-22 重庆大学 Stress control type reinforcement enclosure structure and foundation treatment construction method thereof
CN106087945A (en) * 2016-06-07 2016-11-09 浙江大学 Earth anchor and counter-force load precompressed soft foundation processing method
CN207062968U (en) * 2017-06-30 2018-03-02 郭志伟 A kind of composite foundation structure of sponge urban construction
CN207436083U (en) * 2017-08-17 2018-06-01 郭相兵 A kind of anti-settling foundation structure
CN108104104A (en) * 2017-12-29 2018-06-01 浙江工业大学 Method for reinforcing soft soil foundation through fluctuation pressurization type vacuum preloading

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113062295A (en) * 2021-03-25 2021-07-02 江苏银中建设有限公司 Land supporting structure for green building
CN113062295B (en) * 2021-03-25 2022-03-29 江苏银中建设有限公司 Land supporting structure for green building
CN113653090A (en) * 2021-08-17 2021-11-16 广东中基建工工程有限公司 A soil bearing structure for green building
CN113653090B (en) * 2021-08-17 2022-09-30 广东中基建工工程有限公司 A soil bearing structure for green building

Also Published As

Publication number Publication date
CN108952217B (en) 2020-12-01

Similar Documents

Publication Publication Date Title
CN110067576A (en) A kind of extruded swelling rock road tunnel suspension device
CN108952217A (en) A kind of soil support construction for green building
CN104131616A (en) Self-restoration prefabricated reinforced concrete frame
CN111021571A (en) Semi-active positive and negative stiffness parallel self-coordination vibration damper
CN104141644A (en) Power unit of hydraulic pumping unit and corresponding hydraulic pumping unit
CN101788043A (en) Toggle lever pressure transmission mechanism
CN200965501Y (en) Hydraulic universal tester with the active loading at both ends of test piece
CN108252983B (en) The hydraulic control system of mandrel movement limiting mechanism
CN108708332A (en) A kind of good railing of stability for tide track
CN211446584U (en) High-performance insulating damping bridge support
CN201027893Y (en) Pressure limiting valve hydraulic damper
CN107856198A (en) A kind of adjustable roof drilling equipment
CN104791543B (en) The urgent block valve of mechanical type
CN103195396A (en) Full-automatic walking beam rail sliding balancing device
CN110939630A (en) Hydraulic cylinder capable of adjusting buffer speed
CN208473011U (en) Displacement equations type is classified anti-seismic damper
CN203239662U (en) Power unit of hydraulic pumping unit and corresponding hydraulic pumping unit
CN203363226U (en) One-way two-way manual electro-hydraulic dual-purpose bulkhead gate
CN110182567A (en) Head height-regulating device
CN113503051B (en) Precast concrete wall type auxiliary supporting assembly
CN208934120U (en) A kind of mobile tourist device of antidetonation emission reduction
CN112278720B (en) Bridge type shock attenuation buffering bed
CN208593934U (en) A kind of construction lifting device
CN108979282B (en) Two-way displacement amplification shape memory alloy damper
CN208593750U (en) Upper and lower slide unit linkage

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
TA01 Transfer of patent application right
TA01 Transfer of patent application right

Effective date of registration: 20201111

Address after: 014010 Qinggong South Road, rare earth high tech Zone, Baotou City, Inner Mongolia Autonomous Region

Applicant after: Zhongdi Yingang Construction Group Co., Ltd

Address before: 518000 Guangdong Shenzhen Longgang District South Bay Street West Lake Road Xinghe court 12 1202

Applicant before: SHENZHEN LVYUAN HUIZHI TECHNOLOGY Co.,Ltd.

GR01 Patent grant
GR01 Patent grant