CN205314547U - It is electronic from climbing formula elevator shaft template - Google Patents

It is electronic from climbing formula elevator shaft template Download PDF

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Publication number
CN205314547U
CN205314547U CN201520975093.XU CN201520975093U CN205314547U CN 205314547 U CN205314547 U CN 205314547U CN 201520975093 U CN201520975093 U CN 201520975093U CN 205314547 U CN205314547 U CN 205314547U
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CN
China
Prior art keywords
lifting beam
elevator shaft
frame body
power frame
driven self
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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.)
Withdrawn - After Issue
Application number
CN201520975093.XU
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Chinese (zh)
Inventor
徐洪广
魏炜
戴明星
徐辉
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CSCEC Strait Construction and Development Co Ltd
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CSCEC Strait Construction and Development Co Ltd
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Priority to CN201520975093.XU priority Critical patent/CN205314547U/en
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Publication of CN205314547U publication Critical patent/CN205314547U/en
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Abstract

The utility model relates to an it is electronic from climbing formula elevator shaft template, it includes atress support body, lift system, balanced system and template system. An object of the utility model is to provide a can effectively improve elevator shaft inner formword construction efficiency's it is electronic from climbing formula elevator shaft template. The utility model has the advantages of: 1. The balanced system set up the perpendicular transportation of having guaranteed the atress support body, prevent its in -process run -off the straight of rising. 2. Loose pulley assembly A and cooperate between the loose pulley assembly B, can effectively carry out slide steering to the atress support body, improved the stability of displacement in -process about the atress support body. 3. Spaced cuboid frames around the standard saves and sets two to down, the last position of sill that promotes of messenger promotes in the middle part of the atress support body, is favorable to the force balance, prevents that the atress support body from upwards promoting the opposite side slope of roof beam. 4. The controller that transships surpasses 30% o'clock of first weight when force sensor institute check weighing volume, stops the function of main electric block, prevents the incident emergence.

Description

Driven self-crawling type elevator shaft template
Technical field
The utility model relates to the realm of building construction, particularly a kind of driven self-crawling type elevator shaft template.
Background technology
The elevator shaft of Highrise buildings is like the Aorta being whole building, single elevator shaft area is little, construction number can be held limited, how to improve the speed of application of elevator shaft template and work efficiency, the security risk of reduction elevator shaft operation, the rapid transport etc. that ensures structure construction quality, how to shorten working-yard vertical transportation machinery holding time and narrow place, it is several difficult problems of puzzlement structure construction all the time. If constructional method routinely, face several big problems such as work efficiency, cost, safety and carriage vertically.
Summary of the invention
The purpose of this utility model is to provide a kind of driven self-crawling type elevator shaft template that can effectively improve elevator shaft inner formword construction efficiency.
The purpose of this utility model is achieved through the following technical solutions: a kind of driven self-crawling type elevator shaft template, and it comprises by power frame body, lifting system, equilibrium system and template system; Described by being installed with supporting beam on power frame body, described supporting beam is inserted in the reserving hole of elevator raise sidewall; Described lifting system comprises lifting beam, lower lifting beam and main electric block, upper lifting beam is inserted in the reserving hole of elevator raise sidewall, lower lifting beam is installed in by bottom power frame body, main electric block is located in lifting beam in order to promote lower lifting beam, and described upper lifting beam is provided with for being resisted against by the pulley assembly A in power frame body vertical portion; Described equilibrium system comprises and is set in by the external balance hoop of power frame, is located at balance hoop outer circumferential side and to the leg assembly of external extension and can be located at balance hoop inner side and for being resisted against by the pulley assembly B in power frame body vertical portion; Described template system comprises template and the static line for hanging template.
Compared to prior art, the utility model has the advantage of:
1. the setting of equilibrium system ensure that the carriage vertically by power frame body, prevents from tilting in its uphill process.
2. coordinate between pulley assembly A and pulley assembly B, effectively can carry out slide-and-guide to by power frame body, it is to increase the stability being subject in power frame body upper and lower displacement process.
3. descend standard joint to be arranged to the rectangular parallelepiped framework of two time intervals, lifting beam is positioned at and promotes by the middle part of power frame body, be conducive to stress balance, prevent from rolling tiltedly by another of power frame body upwards lifting beam.
4. premature beats device is when pulling force sensor institute on measured weight exceedes the 30% of just weight, stops the running of main electric block, prevents security incident from occurring.
Accompanying drawing explanation
Fig. 1 is the perspective view of a kind of driven self-crawling type elevator shaft template embodiment of the utility model.
Fig. 2 is the two dimensional structure schematic diagram of driven self-crawling type elevator shaft template.
Fig. 3 is the perspective view of equilibrium system place section in Fig. 1.
Fig. 4 is the perspective view of upper lifting beam place section in Fig. 1.
Fig. 5 is the perspective view of supporting beam place section in Fig. 1.
Fig. 6 is the vertical view of equilibrium system.
Fig. 7 is the perspective view by power shelf component.
Label illustrates: 1 by power frame body, standard joint on 11, 12 times standard joints, 121 rectangular parallelepiped frameworks, 13 upper strata platforms, 14 support platforms, 15 supporting beams, 151 main sleeve A, 152 flexible positioning pipe A, 16 lock nut, 2 lifting system, lifting beam on 21, 211 main sleeve pipe B, 212 flexible positioning pipe B, 22 times lifting beams, 23 main electric blocks, 24 electric blocks, 25 pulley assembly A, 251 strongbacks, 252U shape head A, 253 pulley A, 254 adjustment screw rod A, 3 equilibrium systems, 31 balance hoops, 32 leg assemblies, 321 inner thread sleeves, 322U shape leg, 323 top pressure screw rods, 33 pulley assembly B, 331U shape head B, 332 pulley B, 333 adjustment screw rod B, 4 template systems, 41 templates, 42 static lines, 51 pulling force sensors, 61 anti-fall pull bars, the anti-fall pincers of 62V type.
Embodiment
Below in conjunction with Figure of description and embodiment, the utility model content is described in detail:
As Fig. 1 to 7 show the embodiment schematic diagram of a kind of driven self-crawling type elevator shaft template that the utility model provides, it comprises by power frame body 1, lifting system 2, equilibrium system 3 and template system 4;
Described by being installed with supporting beam 15 on power frame body 1, described supporting beam 15 is inserted in the reserving hole of elevator raise sidewall; Described supporting beam 15 is two, and each supporting beam 15 points is located at the side, front and back by power frame body 1 and extends in left-right direction.
Described lifting system 2 comprises lifting beam 21, lower lifting beam 22 and main electric block 23, upper lifting beam 21 is inserted in the reserving hole of elevator raise sidewall, lower lifting beam 22 is installed in by bottom power frame body 1, main electric block 23 is located in lifting beam 21 in order to promote lower lifting beam 22, and described upper lifting beam 21 is provided with for being resisted against by the pulley assembly A25 in power frame body 1 vertical portion.
When lifting system 2 promotes by power frame body 1, first upper lifting beam 21 is plugged in the reserving hole being fixed on elevator raise sidewall, start main electric block 23, drive and rise by power frame body 1, when on rise to specify height, supporting beam 15 is plugged in the reserving hole being fixed on elevator raise sidewall.
Described equilibrium system 3 comprise be set in by the balance hoop 31 outside power frame body 1, be located at balance hoop 31 outer circumferential sides and can to the leg assembly 32 of external extension and be located at balance hoop 31 inside and for being resisted against by the pulley assembly B33 in power frame body 1 vertical portion.
The setting of equilibrium system 3 is to ensure the carriage vertically by power frame body 1, prevent from tilting in its uphill process.
In the present embodiment, balance hoop 31 is rectangular shaped rim, and each limit of rectangular shaped rim is respectively provided with two groups of leg assemblies 32, when balance hoop 31 is fixing, is stretched out laterally by leg assembly 32 and leans on elevator raise sidewall.
Coordinate between pulley assembly A25 and pulley assembly B33, can effectively to carry out slide-and-guide by power frame body 1, it is to increase by the stability in power frame body 1 upper and lower displacement process.
Described template system 4 comprises template 41 and the static line 42 for hanging template 41.
Preferably, electric block can be set on static line 42, control reeling of static line 42 by electric block.
Described by power frame body 1 comprise standard joint 11 and lower standard joint 12; Described lower standard joint 12 comprises the rectangular parallelepiped framework 121 that two time intervals are arranged, and described upper lifting beam 21 is located between two rectangular parallelepiped frameworks 121. Upper lifting beam 21 extends in left-right direction.
In order to ensure the stability by power frame body 1 lifting further, lower standard is saved the rectangular parallelepiped framework 121 that 12 are arranged to two time intervals by the present embodiment, lifting beam 21 is positioned at promote by the middle part of power frame body 1, prevents from rolling tiltedly by another of power frame body 1 upwards lifting beam 21.
It is fixedly connected with by connected structure between described upper standard joint 11 and lower standard joint 12; The splicing position side of upper standard joint 11 and the splicing position side of lower standard joint 12 are equipped with lock nut 16, upper standard joint 11 and lower standard save 12 grafting fixing time, adjacent two lock nut 16 are directed at mutually, and are locked by bolt.
The framework that each rectangular parallelepiped framework 121 is all spliced up and down successively by more piece is formed, and it is consistent that the mode of connection of neighbouring framework saves mode of connection between 11 and lower standard joint 12 with upper standard.
The described top by power frame body 1 is provided with upper strata platform 13; The power frame body 1 that is subject to of described upper strata platform less than 13 is also provided with some support platforms 14, and each support platform 14 is corresponding with floor.
Upper strata platform 13 is toward the support platform 14 of next layer for placing template 41, and static line 42 one end is fixed on upper strata platform 13, and the other end is hooked in template 41.
Described pulley assembly A25 is two groups, divides the side, left and right being located at lifting beam 21; Each pulley assembly A25 comprises the strongback 251 being installed in lifting beam 21 and two corresponding sliding part A in front and back rectangular parallelepiped framework 121 vertical portion of difference, described sliding part A comprises U shape head A252, be located in U shape head A252 opening pulley A253 and the adjustment screw rod A254 being located at U shape head A252 rearward end, described adjustment screw rod A254 level is located on strongback 251, and fixes by being positioned at the bolt of strongback about 251 side. Described strongback 251 is L-shaped, and the bottom surface of strongback 251 is welded in lifting beam 21.
Sliding part A regulates it to go up position in left-right direction by bolt, makes the pulley A253 on sliding part A be resisted against the side, left and right of rectangular parallelepiped framework 121 after adjustment, the left and right displacement of restriction rectangular parallelepiped framework 121; And the vertical portion of rectangular parallelepiped framework 121 is included in opening by U shape head A252, limit its front and back skew on a large scale.
Described pulley assembly B33 comprises U shape head B331, be located in U shape head B331 opening pulley B332 and the adjustment screw rod B333 being located at U shape head B331 rearward end, described adjustment screw rod B333 level is located on balance hoop 31, and fixes by being positioned at the bolt in balance hoop 31 outside.
Described leg assembly 32 comprise be located at balance hoop 31 outside and horizontally disposed inner thread sleeve 321, revolve be located in inner thread sleeve 321 top pressure screw rod 323 and be positioned at top pressure screw rod 323 outer end U shape leg 322. Outwardly, top pressure screw rod 323 is provided with swing handle to U shape leg 322 opening, presses screw rod 323 to realize the flexible of leg assembly 32 by rotating top.
Described supporting beam 15 comprises main sleeve A 151 and is plugged in the flexible positioning pipe A152 at main sleeve A 151 two ends; Flexible positioning pipe A152 fixes by being located in the latch of main sleeve A 151 and flexible positioning pipe A152 sidewall after stretching out; Described upper lifting beam 21 comprises main sleeve pipe B211 and is plugged in the flexible positioning pipe B212 at main sleeve pipe B211 two ends; Flexible positioning pipe B212 fixes by being located in the latch of main sleeve pipe B211 and flexible positioning pipe B212 sidewall after stretching out.
It also comprises the secondary electric block 24 for promoting upper lifting beam 21, and described time electric block 24 is installed in being subject on power frame body 1 on the upside of lifting beam 21.
It also comprises the premature beats device being located on main electric block 23; Described premature beats device comprises pulling force sensor 51, when pulling force sensor 51 on measured weight exceed the 30% of just weight, stops main electric block 23 and operates. Institute's on measured weight when above-mentioned just weight is only place template 41 by power frame body 1.
It also comprises the displacement controller for controlling main electric block 23 and time electric block 24.
It also comprises anti-drop system, and described anti-drop system comprises the anti-fall pull bar 61 being located between lifting beam 21 and lower lifting beam 22 and the anti-fall pincers 62 of V-type being located in lower lifting beam 22, and described anti-fall pull bar 61 is located on the anti-fall pincers 62 of V-type; When anti-fall pull bar 61 drops, the anti-fall pincers of V-type 62 block anti-fall pull bar 61.

Claims (10)

1. a driven self-crawling type elevator shaft template, it is characterised in that: it comprises by power frame body (1), lifting system (2), equilibrium system (3) and template system (4);
Described by being installed with supporting beam (15) in power frame body (1), described supporting beam (15) is inserted in the reserving hole of elevator raise sidewall;
Described lifting system (2) comprises lifting beam (21), lower lifting beam (22) and main electric block (23), upper lifting beam (21) is inserted in the reserving hole of elevator raise sidewall, lower lifting beam (22) is installed in by power frame body (1) bottom, main electric block (23) is located in lifting beam (21) in order to promote lower lifting beam (22), and described upper lifting beam (21) is provided with for being resisted against by the pulley assembly A (25) in power frame body (1) vertical portion;
Described equilibrium system (3) comprises and is set in by the outer balance hoop (31) of power frame body (1), is located at balance hoop (31) outer circumferential side and to the leg assembly (32) of external extension and can be located at balance hoop (31) inner side and for being resisted against by the pulley assembly B (33) in power frame body (1) vertical portion;
Described template system (4) comprises template (41) and the static line (42) for hanging template (41).
2. driven self-crawling type elevator shaft template according to claim 1, it is characterised in that: described by power frame body (1) comprise standard joint (11) and lower standard joint (12); Described lower standard joint (12) comprises the rectangular parallelepiped framework (121) that two time intervals are arranged, and described upper lifting beam (21) is located between two rectangular parallelepiped frameworks (121).
3. driven self-crawling type elevator shaft template according to claim 2, it is characterised in that: it is fixedly connected with by connected structure between described upper standard joint (11) and lower standard joint (12);The splicing position side of the splicing position side of upper standard joint (11) and lower standard joint (12) is equipped with lock nut (16), when upper standard joint (11) and joint (12) grafting of lower standard are fixing, adjacent two lock nut (16) are directed at mutually, and are locked by bolt.
4. driven self-crawling type elevator shaft template according to claim 1, it is characterised in that: the described top by power frame body (1) is provided with upper strata platform (13); Described upper strata platform (13) power frame body (1) that is subject to below is also provided with some support platforms (14), and each support platform (14) is corresponding with floor.
5. driven self-crawling type elevator shaft template according to claim 2, it is characterised in that: described pulley assembly A (25) is two groups, divides the side, left and right being located at lifting beam (21); Each pulley assembly A (25) comprises the strongback (251) being installed in lifting beam (21) and two corresponding sliding part A in front and back rectangular parallelepiped framework (121) vertical portion of difference, described sliding part A comprises U shape head A (252), be located in U shape head A (252) opening pulley A (253) and adjustment screw rod A (254) being located at U shape head A (252) rearward end, described adjustment screw rod A (254) level is located on strongback (251), and fixes by being positioned at the bolt of strongback (251) side, left and right; Described pulley assembly B (33) comprises U shape head B (331), be located in U shape head B (331) opening pulley B (332) and adjustment screw rod B (333) being located at U shape head B (331) rearward end, described adjustment screw rod B (333) level is located in balance hoop (31), and fixes by being positioned at the bolt in balance hoop (31) outside.
6. driven self-crawling type elevator shaft template according to claim 1, it is characterised in that: described leg assembly (32) comprise be located at balance hoop (31) outside and horizontally disposed inner thread sleeve (321), revolve be located in inner thread sleeve (321) top pressure screw rod (323) and be positioned at top pressure screw rod (323) outer end U shape leg (322).
7. driven self-crawling type elevator shaft template according to claim 1, it is characterised in that: described supporting beam (15) comprises main sleeve A (151) and is plugged in the flexible positioning pipe A (152) at main sleeve A (151) two ends; Flexible positioning pipe A (152) fixes by being located in the latch of main sleeve A (151) and flexible positioning pipe A (152) sidewall after stretching out; Described upper lifting beam (21) comprises main sleeve pipe B (211) and is plugged in the flexible positioning pipe B (212) at main sleeve pipe B (211) two ends; Flexible positioning pipe B (212) fixes by being located in the latch of main sleeve pipe B (211) and flexible positioning pipe B (212) sidewall after stretching out.
8. driven self-crawling type elevator shaft template according to claim 1-7 any one, it is characterized in that: it also comprises the secondary electric block (24) for promoting upper lifting beam (21), described electric block (24) is installed in being subject in power frame body (1) on the upside of lifting beam (21).
9. driven self-crawling type elevator shaft template according to claim 1-7 any one, it is characterised in that: it also comprises the premature beats device being located on main electric block (23); Described premature beats device comprises pulling force sensor (51), when pulling force sensor (51) institute on measured weight exceedes the 30% of just weight, stops main electric block (23) running.
10. driven self-crawling type elevator shaft template according to claim 1-7 any one, it is characterized in that: it also comprises anti-drop system, described anti-drop system comprises the anti-fall pull bar (61) being located between lifting beam (21) and lower lifting beam (22) and the anti-fall pincers of the V-type (62) being located in lower lifting beam (22), and described anti-fall pull bar (61) is located in the anti-fall pincers of V-type (62);When anti-fall pull bar (61) drops, the anti-fall pincers of V-type (62) blocks anti-fall pull bar (61).
CN201520975093.XU 2015-11-30 2015-11-30 It is electronic from climbing formula elevator shaft template Withdrawn - After Issue CN205314547U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520975093.XU CN205314547U (en) 2015-11-30 2015-11-30 It is electronic from climbing formula elevator shaft template

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520975093.XU CN205314547U (en) 2015-11-30 2015-11-30 It is electronic from climbing formula elevator shaft template

Publications (1)

Publication Number Publication Date
CN205314547U true CN205314547U (en) 2016-06-15

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CN201520975093.XU Withdrawn - After Issue CN205314547U (en) 2015-11-30 2015-11-30 It is electronic from climbing formula elevator shaft template

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105464364A (en) * 2015-11-30 2016-04-06 中建海峡建设发展有限公司 Electric self-climbing type elevator shaft formwork
CN109025235A (en) * 2018-08-14 2018-12-18 中建局集团建设发展有限公司 Wellbore operations platform and template integrated construction system and the method constructed using it

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105464364A (en) * 2015-11-30 2016-04-06 中建海峡建设发展有限公司 Electric self-climbing type elevator shaft formwork
CN105464364B (en) * 2015-11-30 2017-07-07 中建海峡建设发展有限公司 Driven self-crawling type elevator shaft template
CN109025235A (en) * 2018-08-14 2018-12-18 中建局集团建设发展有限公司 Wellbore operations platform and template integrated construction system and the method constructed using it
CN109025235B (en) * 2018-08-14 2023-10-24 中建一局集团建设发展有限公司 Shaft operation platform and template integrated construction system and construction method using same

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20160615

Effective date of abandoning: 20170707

AV01 Patent right actively abandoned