CN104746521A - Application of super large-section slope cushion layer construction structure - Google Patents

Application of super large-section slope cushion layer construction structure Download PDF

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Publication number
CN104746521A
CN104746521A CN201510162741.4A CN201510162741A CN104746521A CN 104746521 A CN104746521 A CN 104746521A CN 201510162741 A CN201510162741 A CN 201510162741A CN 104746521 A CN104746521 A CN 104746521A
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slope
vertical
muscle
horizontal
construction
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CN104746521B (en
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杨建江
李苏盐
王飞
陈响
何宇航
王余强
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Tianjin University
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Tianjin University
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D17/00Excavations; Bordering of excavations; Making embankments
    • E02D17/02Foundation pits
    • E02D17/04Bordering surfacing or stiffening the sides of foundation pits
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D17/00Excavations; Bordering of excavations; Making embankments
    • E02D17/20Securing of slopes or inclines

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  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Pit Excavations, Shoring, Fill Or Stabilisation Of Slopes (AREA)

Abstract

The invention discloses application of a super large-section slope cushion layer construction structure. An entire construction slope is divided into a plurality of casting units on the construction slope by using horizontal partition structures and vertical partition structures; the vertical partition structures are uniformly arranged along the slope top; the slope is divided into a plurality of processing regions by using vertical positioning ribs, vertical limiting ribs, vertical templates, horizontal supporting ribs and horizontal templates and then cushion layer casting is performed. According to the technical scheme, the limitation of the slope cushion layer to slope gradient, slope height and casting area is broken through, the construction quality of the cushion layer is controlled, the construction efficiency is increased, and the economic benefit is improved.

Description

Super large breaks the application of cross-section slope cushion layer constructing structure
The present patent application is the divisional application of parent application " a kind of for super large break the construction method of cross-section slope cushion layer and structure ", and the applying date of parent application is on July 8th, 2013, and application number is 2013102845864.
Technical field
The present invention relates to construction engineering technical field, more particularly, relate to and a kind ofly on super large breaks cross-section slope, carry out construction method that cement mortar bedding cushion builds and structure, belong to the pouring technique for the large-area retaining wall bed course of heavy grade.
Background technology
At present, in the basement construction of common buildings, special in the construction of deep foundation ditch, in order to ensure that the design of deep foundation pit degree of depth meets the demands, usually side slope is adopted multi level slope, but when the restriction of place red line and scene reality does not allow multi level slope, that slope retaining can be done is very steep very high, and the highest meeting reaches more than 10 meters.Because cement mortar is a kind of plastic material, mobility is comparatively large, when carrying out large slope cushion layer and building, cement mortar easily glides, particularly in the construction of comparatively steep higher slope, the thickness of bed course very easily produces the phenomenon of upper-thin-lower-thick, does not meet the construction quality requirement of waterproofing.Therefore, build principle based on what jump storehouse method, pass through technological innovation, propose a kind of easy and extremely easy-operating construction technology, solve by cement isogel material early flow large, difficult problem of evenly building on large slope, its construction quality is easy to control, good in economic efficiency.
Summary of the invention
Technical purpose of the present invention is intended to overcome the deficiencies in the prior art, there is provided a kind of to break the construction method of cross-section slope cushion layer and structure for super large, in the construction of high and steep big cross section slope waterproof bed course, it is unfavorable that the early flow controlling the cementitious material such as cement very well brings, and ensure that the construction quality of cement mortar bedding cushion.
Technical purpose of the present invention is achieved by following technical proposals:
A kind of construction method of cross-section slope cushion layer of breaking for super large, first on construction slope body 1, utilizing horizontal direction to draw draws every structure 6 every structure 5 and vertical direction, be divided into several build unit 4 by domatic for whole construction, wherein draw every structure 6 being evenly provided with vertical direction on Po Ding (or at the bottom of slope) direction, comprise vertical positioning bar 6-1, vertical spacing muscle 6-2, vertical formwork 6-3; Draw every structure 5 being provided with horizontal direction on construction slope body bevel direction, comprise horizontal shuttering 5-1, horizontal support muscle 5-2.
Carry out according to following step
Step (1) is according to the side slope situation of engineering reality, arrange vertical positioning bar, according to from slope, the chamfer length pushed up at the bottom of slope is uniformly distributed the vertical positioning bar of first row, then adopt the interval of each vertical positioning bar in same intervals and the vertical positioning bar of first row according to the length on (or top, slope) at the bottom of slope, body inclined-plane, slope arranges the vertical positioning bar of other all row.
When Specific construction, draw from side slope top along the vertical vertical direction in slope with tape measure bottom side slope, at interval, every 2000mm inserts a positioning bar, is knocked in the soil of slope body with hand hammer, lays out the vertical positioning bar of row; Then use tape measure stretching at slope bottom level, at interval, a positioning bar is inserted in the position of every 2200mm, and mark goes out the horizontal level of the positioning bar of other row, adopts the method same with the vertical positioning bar of first row, lays out other and arrange vertical positioning bar.Described vertical positioning bar selects diameter to be 6mm, and long is 200mm, and be placed in soil 100mm, material is HPB235.
Step (2), after vertical positioning bar has all been arranged, carry out layout vertical spacing muscle, one group of vertical spacing muscle is arranged respectively at 100-150mm place, the left and right sides of the vertical positioning bar often arranged, described vertical spacing muscle pushes up on the chamfer length direction at the bottom of slope on slope and is uniformly distributed, so, form two row vertical spacing muscle in the both sides of the vertical positioning bar of row, each row vertical spacing muscle is made up of on chamfer length direction is pushed up at the bottom of slope on slope some groups of vertical spacing muscle.
In Specific construction, vertical spacing muscle pushes up spacing 1000mm on the chamfer length direction at the bottom of slope on slope, to ensure the anti-side rigidity that vertical formwork is built.Described vertical spacing muscle selects diameter to be 6mm, and long is 400mm, is placed in soil 200mm, material is HPB235.
Step (3), after often row vertical spacing muscle has been arranged, carry out the placement of vertical formwork 6-3, namely the gap between vertical spacing muscle is utilized, vertical formwork card is inserted in vertical spacing muscle, fix and limit the left and right translation of vertical formwork, the distance namely between vertical formwork is the distance about vertical positioning bar between two groups of vertical spacing muscle.
In Specific construction, often the spacing organized between vertical spacing muscle is a bit larger tham template thickness, be decided to be 15mm, described vertical formwork adopts common red template, thick is 10mm, vertical formwork is placed between vertical spacing muscle, constitutes one group of vertical stupefied bar to make two pieces of vertical formworks at interval of 200-300mm.
Step (4), arrange horizontal support muscle 5-2, after vertical formwork installation, horizontal support muscle 5-2 is evenly set between the vertical stupefied bar that vertical formwork is formed, the chamfer length direction that slope is pushed up at the bottom of slope evenly arranges several rows horizontal support muscle.
In Specific construction, described horizontal support muscle selects diameter to be 12mm, and long is 400mm, is placed in soil 200mm, material is HPB235.Along short transverse (pushing up the chamfer length direction at the bottom of slope on slope), arrange six row horizontal support muscle, spacing is 1200mm; In the horizontal direction of often going, arrange a horizontal support muscle every 500mm, to guarantee the working load born in casting process.
Step (5), is laid in horizontal shuttering 5-1 on horizontal support muscle 5-2, and adopts tied silk to carry out colligation to fix, and ensures the stability of plank, and using horizontal shuttering as interim operation planar.In Specific construction, described horizontal shuttering adopts common red template, and thick is 10mm, and horizontal shuttering is laid on horizontal support muscle, and adopts tied silk to carry out colligation to fix.
Step (6), after the support of body inclined-plane, the slope pouring structure according to step (1)-(5) all completes, carry out bed course to build, first vertical stupefied bar is slowly built from right to left, ensure that side form pressure is less than the land power of vertical formwork, after material final set to be built, vertical formwork is removed.
Step (7), after vertical formwork is removed, the block placement at other positions of bed course will be carried out, advance left from the most top-right block of first row bed course and build one by one, six blocks in horizontal direction (slope is pushed up or direction at the bottom of slope) are selected to be the section of building, wipe one's face receive after light when every row has built the 6th block, carry out next row from right to left, the construction of arranging same casting direction with upper.
In the inventive solutions, the gradient of described construction slope body is selected on 40 degree, maximumly reaches 50 degree; Its height, according to engineering practice, maximumly reaches 10m.Now, break in slope, and section area is maximum reaches 1500 square metres.When Specific construction, constructor stands on horizontal shuttering, carries out troweling in time receive face to the bed course in vertical stupefied bar.When the bed course in all vertical stupefied bars is built all, as shown in Figure 5.Until after final setting time about 10 hours, carry out the dismounting of vertical formwork from right to left.Build order as shown in Figure 6, note manually wiping one's face in time receipts light after often having built a block, before next row is built, the block of the same position of a upper row has about built 10 hours, and cement final set makes the horizontal shuttering of this position remove.After removing horizontal shuttering, carry out the construction of next row bed course, note manually wiping one's face timely receipts light equally.Building that its method and upper one is arranged is consistent.
Described vertical positioning bar is evenly arranged on body inclined-plane, slope, and the interval, chamfer length direction of pushing up from slope at the bottom of slope is no more than 2000mm, interval 2200mm on slope Po Ding (or at the bottom of slope) direction.Described vertical positioning bar selects diameter to be 6mm, and long is 200mm, and be placed in soil 100mm, material is HPB235.
At 100-150mm place, the left and right sides of described vertical positioning bar difference vertical spacing muscle, described vertical spacing muscle is one group of vertical spacing muscle, described vertical spacing muscle pushes up on the chamfer length direction at the bottom of slope on slope and is uniformly distributed, such as vertical spacing muscle pushes up spacing 1000mm on the chamfer length direction at the bottom of slope on slope, to ensure the anti-side rigidity that vertical formwork is built.Described vertical spacing muscle selects diameter to be 6mm, and long is 400mm, and material is HPB235.
Vertical formwork is set described often group between vertical positioning bar, namely utilizes the gap between vertical spacing muscle, vertical formwork card is inserted in vertical spacing muscle, constitutes one group of vertical stupefied bar to make two pieces of vertical formworks.Described vertical formwork adopts common red template, and thick is 10mm, and often the spacing organized between vertical spacing muscle is a bit larger tham template thickness, is decided to be 15mm.
Horizontal support muscle is evenly set between the vertical stupefied bar that vertical formwork is formed, and several rows horizontal support muscle is evenly set on chamfer length direction is pushed up at the bottom of slope on slope.Described horizontal support muscle selects diameter to be 12mm, and long is 400mm, and material is HPB235.Along short transverse (pushing up the chamfer length direction at the bottom of slope on slope), arrange six row horizontal support muscle, spacing is 1200mm; In the horizontal direction of often going, arrange a horizontal support muscle every 500mm, to guarantee the working load born in casting process.
Horizontal shuttering 5-1 is arranged on horizontal support muscle 5-2, and adopts tied silk to carry out colligation to fix, ensure the stability of plank, and using horizontal shuttering as interim operation planar.Described horizontal shuttering adopts common red template, and thick is 10mm, and horizontal shuttering is laid on horizontal support muscle, and adopts tied silk to carry out colligation to fix.
Compared with prior art, technical scheme of the present invention breaches slope cushion layer and builds by ramp slope, ramp height and the restriction of building area, provide a kind of method can carrying out cushion construction on any slope, control the construction quality of bed course, add efficiency of construction, improve economic benefit.
Accompanying drawing explanation
Fig. 1 is the structural representation of slope body of constructing in the present invention, and wherein 1 is construction slope body, and 2 for pushing up on slope, and 3 is at the bottom of slope, and 4 for building unit, and 5 draw every structure for horizontal direction, and 6 draw every structure for vertical direction.
Fig. 2 constructs in the present invention slope body to be built the structural representation of unit, and wherein 5-1 is horizontal shuttering, and 5-2 is horizontal support muscle, and 6-1 is vertical positioning bar, and 6-2 is vertical spacing muscle, and 6-3 is vertical formwork.
Fig. 3 be in the present invention along perpendicular to line of slope to domatic view (1).
Fig. 4 be in the present invention along perpendicular to line of slope to domatic view (2).
Fig. 5 is bed course block placement sequential schematic (1) in the present invention.
Fig. 6 is bed course block placement sequential schematic (2) in the present invention.
Detailed description of the invention
Technical scheme of the present invention is further illustrated below in conjunction with the drawings and specific embodiments.
As shown in accompanying drawing 1-4, when utilizing technical scheme of the present invention to carry out building of construction slope body, for ensureing that building material does not produce the adverse effect glided by ramp slope and height, needing first on construction slope body 1, to utilize horizontal direction to draw draws every structure 6 every structure 5 and vertical direction, be divided into several build unit 4 by domatic for whole construction, wherein draw every structure 6 being evenly provided with vertical direction on Po Ding (or at the bottom of slope) direction, comprise vertical positioning bar 6-1, vertical spacing muscle 6-2, vertical formwork 6-3; Draw every structure 5 being provided with horizontal direction on construction slope body bevel direction, comprise horizontal shuttering 5-1, horizontal support muscle 5-2.
Described vertical positioning bar is evenly arranged on body inclined-plane, slope, and the interval, chamfer length direction of pushing up from slope at the bottom of slope is no more than 2000mm, interval 2200mm on slope Po Ding (or at the bottom of slope) direction.Described vertical positioning bar selects diameter to be 6mm, and long is 200mm, and be placed in soil 100mm, material is HPB235.
At 100-150mm place, the left and right sides of described vertical positioning bar difference vertical spacing muscle, described vertical spacing muscle is one group of vertical spacing muscle, described vertical spacing muscle pushes up on the chamfer length direction at the bottom of slope on slope and is uniformly distributed, such as vertical spacing muscle pushes up spacing 1000mm on the chamfer length direction at the bottom of slope on slope, to ensure the anti-side rigidity that vertical formwork is built.Described vertical spacing muscle selects diameter to be 6mm, and long is 400mm, and material is HPB235.
Vertical formwork is set described often group between vertical positioning bar, namely utilizes the gap between vertical spacing muscle, vertical formwork card is inserted in vertical spacing muscle, constitutes one group of vertical stupefied bar to make two pieces of vertical formworks.Described vertical formwork adopts common red template, and thick is 10mm, and often the spacing organized between vertical spacing muscle is a bit larger tham template thickness, is decided to be 15mm.
Horizontal support muscle is evenly set between the vertical stupefied bar that vertical formwork is formed, and several rows horizontal support muscle is evenly set on chamfer length direction is pushed up at the bottom of slope on slope.Described horizontal support muscle selects diameter to be 12mm, and long is 400mm, and material is HPB235.Along short transverse (pushing up the chamfer length direction at the bottom of slope on slope), arrange six row horizontal support muscle, spacing is 1200mm; In the horizontal direction of often going, arrange a horizontal support muscle every 500mm, to guarantee the working load born in casting process.
Horizontal shuttering 5-1 is arranged on horizontal support muscle 5-2, and adopts tied silk to carry out colligation to fix, ensure the stability of plank, and using horizontal shuttering as interim operation planar.Described horizontal shuttering adopts common red template, and thick is 10mm, and horizontal shuttering is laid on horizontal support muscle, and adopts tied silk to carry out colligation to fix.
The gradient of described construction slope body is selected on 40 degree, maximumly reaches 50 degree; Its height, according to engineering practice, maximumly reaches 10m.Now, break in slope, and section area is maximum reaches 1500 square metres.The break construction sequence of cross-section slope cushion layer construction method of super large of the present invention is carried out according to following step
Step (1) is according to the side slope situation of engineering reality, arrange vertical positioning bar, according to from slope, the chamfer length pushed up at the bottom of slope is uniformly distributed the vertical positioning bar of first row, then adopt the interval of each vertical positioning bar in same intervals and the vertical positioning bar of first row according to the length on (or top, slope) at the bottom of slope, body inclined-plane, slope arranges the vertical positioning bar of other all row.
When Specific construction, draw from side slope top along the vertical vertical direction in slope with tape measure bottom side slope, at interval, every 2000mm inserts a positioning bar, is knocked in the soil of slope body with hand hammer, lays out the vertical positioning bar of row; Then use tape measure stretching at slope bottom level, at interval, a positioning bar is inserted in the position of every 2200mm, and mark goes out the horizontal level of the positioning bar of other row, adopts the method same with the vertical positioning bar of first row, lays out other and arrange vertical positioning bar.Described vertical positioning bar selects diameter to be 6mm, and long is 200mm, and be placed in soil 100mm, material is HPB235.
Step (2), after vertical positioning bar has all been arranged, carry out layout vertical spacing muscle, one group of vertical spacing muscle is arranged respectively at the 100mm place, the left and right sides of the vertical positioning bar often arranged, described vertical spacing muscle pushes up on the chamfer length direction at the bottom of slope on slope and is uniformly distributed, so, form two row vertical spacing muscle in the both sides of the vertical positioning bar 6-1 of row, each row vertical spacing muscle is made up of on chamfer length direction is pushed up at the bottom of slope on slope some groups of vertical spacing muscle 6-2.
In Specific construction, vertical spacing muscle pushes up spacing 1000mm on the chamfer length direction at the bottom of slope on slope, to ensure the anti-side rigidity that vertical formwork is built.Described vertical spacing muscle selects diameter to be 6mm, and long is 400mm, is placed in soil 200mm, material is HPB235.
Step (3), after often row vertical spacing muscle has been arranged, carry out the placement of vertical formwork 6-3, namely the gap between vertical spacing muscle is utilized, vertical formwork card is inserted in vertical spacing muscle, fix and limit the left and right translation of vertical formwork, the distance namely between vertical formwork is the distance about vertical positioning bar between two groups of vertical spacing muscle.
In Specific construction, often the spacing organized between vertical spacing muscle is a bit larger tham template thickness, is decided to be 15mm, described vertical formwork adopts common red template, thick is 10mm, and vertical formwork is placed between vertical spacing muscle, constitutes one group of vertical stupefied bar to make two pieces of vertical formworks at interval of 200mm.
Step (4), arrange horizontal support muscle 5-2, after vertical formwork installation, horizontal support muscle 5-2 is evenly set between the vertical stupefied bar that vertical formwork is formed, the chamfer length direction that slope is pushed up at the bottom of slope evenly arranges several rows horizontal support muscle.
In Specific construction, described horizontal support muscle selects diameter to be 12mm, and long is 400mm, is placed in soil 200mm, material is HPB235.Along short transverse (pushing up the chamfer length direction at the bottom of slope on slope), arrange six row horizontal support muscle, spacing is 1200mm; In the horizontal direction of often going, arrange a horizontal support muscle every 500mm, to guarantee the working load born in casting process.
Step (5), is laid in horizontal shuttering 5-1 on horizontal support muscle 5-2, and adopts tied silk to carry out colligation to fix, and ensures the stability of plank, and using horizontal shuttering as interim operation planar.In Specific construction, described horizontal shuttering adopts common red template, and thick is 10mm, and horizontal shuttering is laid on horizontal support muscle, and adopts tied silk to carry out colligation to fix.
As depicted in figures 5 and 6, after the support of body inclined-plane, the slope pouring structure according to step (1)-(5) all completes, carry out bed course to build, first vertical stupefied bar is slowly built from right to left, ensure that side form pressure is less than the land power of vertical formwork.Constructor stands on horizontal shuttering, carries out troweling in time receive face to the bed course in vertical stupefied bar.When the bed course in all vertical stupefied bars is built all, as shown in Figure 5.Until after final setting time about 10 hours, carry out the dismounting of vertical formwork from right to left.
After vertical formwork is removed, will the block placement at other positions of bed course be carried out, wherein build order as shown in Figure 6.Advance left from the most top-right block of first row bed course and build one by one, after often having built a block, note manually wiping one's face in time receipts light.Select six blocks in horizontal direction (top, slope or slope at the bottom of direction) to be the section of building, wipe one's face receive after light when every row has built the 6th block, carry out next row from right to left, the construction of arranging same casting direction with upper.Before next row is built, the block of the same position of a upper row has about built 10 hours, and cement final set makes the horizontal shuttering of this position remove.After removing horizontal shuttering, carry out the construction of next row bed course, note manually wiping one's face timely receipts light equally.Building that its method and upper one is arranged is consistent.
Above to invention has been exemplary description; should be noted that; when not departing from core of the present invention, any simple distortion, amendment or other those skilled in the art can not spend the equivalent replacement of creative work all to fall into protection scope of the present invention.

Claims (2)

1. super large breaks the application of cross-section slope cushion layer constructing structure, it is characterized in that, construction slope body utilizes horizontal direction draw to draw every structure and vertical direction and be divided into several every structure build unit by domatic for whole construction, wherein draw every structure being evenly provided with vertical direction on Po Ding direction, comprise vertical positioning bar, vertical spacing muscle, vertical formwork; Draw every structure being provided with horizontal direction on construction slope body bevel direction, comprise horizontal shuttering, horizontal support muscle; Described vertical positioning bar is evenly arranged on body inclined-plane, slope, and the interval, chamfer length direction of pushing up from slope at the bottom of slope is no more than 2000mm, interval 2200mm on Po Ding direction, slope; At 100-150mm place, the left and right sides of described vertical positioning bar difference vertical spacing muscle, described vertical spacing muscle is one group of vertical spacing muscle, and described vertical spacing muscle pushes up on the chamfer length direction at the bottom of slope on slope and is uniformly distributed; Arrange vertical formwork described often group between vertical positioning bar, often the spacing organized between vertical spacing muscle is greater than template thickness, constitutes one group of vertical stupefied bar to make two pieces of vertical formworks; Horizontal support muscle is evenly set between the vertical stupefied bar that vertical formwork is formed, and several rows horizontal support muscle is evenly set on chamfer length direction is pushed up at the bottom of slope on slope; Described horizontal shuttering is arranged on horizontal support muscle, and the gradient of wherein said construction slope body is selected on 40 degree, maximumly reaches 50 degree; Its height, according to engineering practice, maximumly reaches 10m.
2. super large according to claim 1 breaks the application of cross-section slope cushion layer constructing structure, and it is characterized in that, described vertical positioning bar selects diameter to be 6mm, and long is 200mm, and material is HPB235; Described vertical spacing muscle pushes up spacing 1000mm on the chamfer length direction at the bottom of slope on slope, and described vertical spacing muscle selects diameter to be 6mm, and long is 400mm, and material is HPB235; Described vertical formwork adopts common red template, and thick is 10mm, and the described often spacing organized between vertical spacing muscle is decided to be 15mm; Described horizontal support muscle selects diameter to be 12mm, and long is 400mm, and material is HPB235, arranges six row horizontal support muscle along short transverse, and spacing is 1200mm; In the horizontal direction of often going, arrange a horizontal support muscle every 500mm; Described horizontal shuttering adopts common red template, and thick is 10mm.
CN201510162741.4A 2013-07-08 2013-07-08 The application of oversized cross-section slope cushion layer constructing structure Expired - Fee Related CN104746521B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107391831A (en) * 2017-07-14 2017-11-24 上海嘉实(集团)有限公司 Vertical layout method, system and the storage medium and terminal of building block

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103741699A (en) * 2013-12-24 2014-04-23 苏州欢颜电气有限公司 Support against soil landslide
CN108956226B (en) * 2018-06-27 2021-04-06 河海大学 Large-size cement soil test piece forming device and forming method

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006104667A (en) * 2004-09-30 2006-04-20 Yoshinori Ishizuka Structure and construction method of grating crib
CN201362854Y (en) * 2009-03-04 2009-12-16 王建军 Vertical and horizontal grid concrete casting ecological slope protection template
KR101031366B1 (en) * 2010-12-30 2011-04-29 김현래 Construction method of earth retaining structures
CN102787608A (en) * 2012-08-17 2012-11-21 中国土木工程集团有限公司 Gravity type foundation pit supporting system under vacuum effect and construction method
CN102900087A (en) * 2011-07-26 2013-01-30 王建军 Slope protection mold for cast-in-place ecological slope protection

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55132816A (en) * 1979-04-05 1980-10-16 Takaaki Shimauchi Slope protection work and method therefor
CN101649608B (en) * 2009-09-01 2011-07-27 同济大学 Ecological slope protection structure
CN102031785A (en) * 2009-09-24 2011-04-27 上海市第一建筑有限公司 Foundation pit supporting technique for replacing temporary enclosing purlin by using plate belt of permanent structure
KR101131242B1 (en) * 2011-10-18 2012-03-29 손재용 A drain apparatus for sloping side of linear structures
CN203346893U (en) * 2013-07-08 2013-12-18 天津大学 Construction structure used for slope cushion layer with extra-large cross section

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006104667A (en) * 2004-09-30 2006-04-20 Yoshinori Ishizuka Structure and construction method of grating crib
CN201362854Y (en) * 2009-03-04 2009-12-16 王建军 Vertical and horizontal grid concrete casting ecological slope protection template
KR101031366B1 (en) * 2010-12-30 2011-04-29 김현래 Construction method of earth retaining structures
CN102900087A (en) * 2011-07-26 2013-01-30 王建军 Slope protection mold for cast-in-place ecological slope protection
CN102787608A (en) * 2012-08-17 2012-11-21 中国土木工程集团有限公司 Gravity type foundation pit supporting system under vacuum effect and construction method

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
海新龙: "水利工程斜坡混凝土施工", 《黑龙江水利科技》, vol. 40, no. 11, 30 November 2012 (2012-11-30), pages 70 - 71 *
苏孝敏: "简易滑模在斜坡护面混凝土施工中的应用", 《水利建设与管理》, no. 9, 30 September 2011 (2011-09-30), pages 7 - 11 *

Cited By (1)

* Cited by examiner, † Cited by third party
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CN107391831A (en) * 2017-07-14 2017-11-24 上海嘉实(集团)有限公司 Vertical layout method, system and the storage medium and terminal of building block

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