CN217949376U - Anti-seepage structure of elevator steel outer frame - Google Patents

Anti-seepage structure of elevator steel outer frame Download PDF

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Publication number
CN217949376U
CN217949376U CN202222063862.1U CN202222063862U CN217949376U CN 217949376 U CN217949376 U CN 217949376U CN 202222063862 U CN202222063862 U CN 202222063862U CN 217949376 U CN217949376 U CN 217949376U
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China
Prior art keywords
rectangular frame
groove
elevator
montant
honeycomb duct
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Active
Application number
CN202222063862.1U
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Chinese (zh)
Inventor
易溪
王深山
郭光远
颜文武
熊明荣
吴宏磊
王毅
刘海东
安明远
周宇轩
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China Construction Fifth Engineering Bureau Co Ltd
Huadong Building Co Ltd of China Construction Fifth Engineering Bureau Co Ltd
Original Assignee
China Construction Fifth Engineering Bureau Co Ltd
Huadong Building Co Ltd of China Construction Fifth Engineering Bureau Co Ltd
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Priority to CN202222063862.1U priority Critical patent/CN217949376U/en
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Abstract

The utility model discloses an elevator steel outrigger prevention of seepage water structure, including the steelframe, the steelframe is including a plurality of horizontal rectangular frame, vertically to carrying out the montant of connecting between these rectangular frame, the montant is four, and set up the right angle department at every rectangular frame respectively, fixed glass is supported in the outside of rectangular frame and montant, every rectangular frame's inboard all is provided with annular groove that converges, along vertical adjacent converge be connected with the first honeycomb duct of erecting between the groove, the second honeycomb duct is worn to be equipped with by the inside and outside of the rectangular frame who is close to elevator pit top setting, the both ends of this second honeycomb duct are linked together with the groove that converges and the elevartor shaft outside respectively. The utility model discloses an elevator steel outrigger prevention of seepage water structure can improve the water-proof effects of external elevartor shaft.

Description

Anti-seepage structure of elevator steel outer frame
Technical Field
The utility model relates to an elevator steel outrigger prevention of seepage water structure.
Background
The existing external elevator generally comprises an elevator shaft (as shown in fig. 1) formed by steel frames, and the outside of the elevator shaft generally uses glass to form the side wall of the elevator shaft. The joint between the glass and the steel frame is usually subjected to anti-seepage treatment by adopting a sealant, but after long-term use, the joint is easy to leak due to the influence of natural disasters such as rainstorm or typhoon, and the leaked rainwater can flow downwards into an elevator pit positioned at the lowest part of an elevator shaft. The mosquito is easy to breed after long-term use, and even certain potential safety hazards exist.
At present, the existing treatment mode is that a person adopts a water pump to pump out accumulated water in a pit, so that the operation is troublesome and time is very long.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides a better elevator steel outrigger prevention of seepage water structure of water-proof effects.
In order to achieve the purpose, the utility model provides an elevator steel outrigger prevention of seepage water structure, including the steelframe, the steelframe is including a plurality of horizontal rectangular frame, vertically to the montant of connecting between these rectangular frame, and the montant is four, and sets up the right angle department at every rectangular frame respectively, and the outside of rectangular frame and montant supports fixed glass, its characterized in that: the inside of every rectangular frame all is provided with annular groove that converges, is connected with the first honeycomb duct of erectting between the groove that converges along vertical adjacent, and the second honeycomb duct is worn to be equipped with by the inside and outside of the rectangular frame who is close to the setting of elevator pit top, and the both ends of this second honeycomb duct are linked together with the groove that converges and the elevartor shaft outside respectively.
Further, the groove of converging is including erectting the first lateral wall of putting, the second lateral wall that the slope set up, connect the diapire between first lateral wall and second lateral wall bottom, and first lateral wall is used for being connected fixedly with rectangular frame's inboard cooperation, the upper end of first honeycomb duct and the diapire cooperation intercommunication setting of the groove of converging that is located the top, the lower extreme of first honeycomb duct is inserted and is established in the groove of converging that is located the below.
Further, the first side wall and the inner side of the rectangular frame are fixedly connected through bolts, and waterproof glue is coated at the connection position.
Furthermore, the first flow guide pipe is connected with the inner side of the rectangular frame through a clamp.
And further, a water retaining cover is arranged at the position corresponding to the second flow guide pipe and close to the outer side of the rectangular frame arranged above the elevator shaft pit.
The utility model has the advantages that: when the rainwater oozes along the gap between the glass and along rectangular frame towards the inboard direction of elevartor shaft, can flow into and converge the groove, converge into first honeycomb duct through converging the groove with the rainwater of infiltration, carry through the groove of converging of the below of first honeycomb duct reservoir, when carrying the groove of converging that is bottommost and lie in elevator pit top, discharge to the outside of elevartor shaft through the second honeycomb duct. The utility model discloses simple structure, construction convenience can improve the prevention of seepage water effect of external elevartor shaft, can play the effect of automatic drainage, can reduce the maintenance cost of elevator.
Drawings
FIG. 1 is a structural diagram of an external elevator steel frame in the prior art;
fig. 2 is a side view in cross section of an embodiment of the present invention;
fig. 3 is a cross-sectional view of a top view of an embodiment of the present invention;
fig. 4 is a partially enlarged view of fig. 2.
Detailed Description
The utility model discloses elevator steel outrigger prevention of seepage water structure's embodiment is shown in fig. 2-4, including steelframe 1, steelframe 1 is including a plurality of horizontal rectangular frame 11, vertically to carrying out the montant 12 of connecting between these rectangular frame 11, montant 12 is four, and set up the right angle department at every rectangular frame 11 respectively, steel frame 1's structure adopts common external elevartor shaft steelframe structure on the market, rectangular frame 11 is the rectangle by four horizontal pole centers on being, and montant 12's the outside supports fixed glass, every rectangular frame 11's inboard all is provided with annular groove 2 that converges, along vertically adjacent converge be connected with vertical first honeycomb duct 3 of putting between the groove 2, be close to the inside and outside of the rectangular frame 11 that elevator pit top set up and wear to be equipped with second honeycomb duct 4, this second honeycomb duct 4's both ends are linked together with the groove 2 that converges and the outside respectively.
When the rainwater oozes along the gap between the glass and along rectangular frame 11 towards the inboard direction of elevartor shaft, can flow into and converge in groove 2, converge into first honeycomb duct 3 through converging groove 2 with the rainwater of equidirectional infiltration, converge groove 2 below through first honeycomb duct 3 reservoir carries in proper order, when carrying the most below and being arranged in the groove 2 that converges of elevator pit top (this converge groove 2 and correspond and connect the outside that matched with rectangular frame 11 all set up at the pit), discharge to the outside of elevartor shaft through second honeycomb duct 4.
Converge groove 2 including erect first lateral wall 21, the second lateral wall 22 that sets up of slope, connect the diapire 23 between first lateral wall 21 and second lateral wall 22 bottom, first lateral wall 21 is used for being connected fixedly with rectangular frame 11's inboard cooperation, and concretely connects fixed mode and is: the first side wall 21 and the inner side of the rectangular frame 11 are fixedly connected through bolts, and waterproof glue is coated at the joint to prevent rainwater from seeping along the space between the first side wall 21 and the inner side of the rectangular frame 11. The upper end of first honeycomb duct 3 and the diapire 23 cooperation intercommunication setting that converges groove 2 that is located the top, the lower extreme of first honeycomb duct 3 is inserted and is established in converging groove 2 that is located the below, consequently can be successive layer carry water liquid downwards. The inclined second side wall 22 can improve the water collecting effect, increase the water collecting area, and prevent the water from splashing.
The first guide pipe 3 is connected with the inner side of the rectangular frame 11 through a hoop, and the first guide pipe 3 can also be fixed on the vertical rod 12.
The outer side of the rectangular frame 11 arranged above the elevator shaft pit is provided with a water retaining cover 5 corresponding to the second flow guide pipe 4, the lower end of the water retaining cover 5 is provided with an opening, and the second flow guide pipe 4 is correspondingly arranged on the inner side of the water retaining cover 5. Adopt structural design like this can prevent that external rainwater from entering into the inboard of elevartor shaft along second honeycomb duct 4, further improvement waterproof effect.
The above embodiments are only one of the preferred embodiments of the present invention, and the general changes and substitutions performed by those skilled in the art within the technical scope of the present invention are all included in the protection scope of the present invention.

Claims (5)

1. The utility model provides an elevator steel outrigger prevention of seepage water structure, including the steelframe, the steelframe is including a plurality of horizontal rectangular frame, vertically to carrying out the montant of connecting between these rectangular frame, and the montant is four, and sets up the right angle department at every rectangular frame respectively, and the outside of rectangular frame and montant supports fixed glass, its characterized in that: the inner side of each rectangular frame is provided with an annular converging groove, a vertically arranged first flow guide pipe is connected between every two adjacent converging grooves in the longitudinal direction, second flow guide pipes are arranged on the inner side and the outer side of the rectangular frame, which are close to the upper portion of the elevator shaft pit, in a penetrating manner, and the two ends of each second flow guide pipe are respectively communicated with the converging grooves and the outer side of the elevator shaft.
2. The elevator steel outer frame seepage prevention structure according to claim 1, characterized in that: the groove that converges sets up including perpendicular first lateral wall, the slope, connect the diapire between first lateral wall and second lateral wall bottom, and first lateral wall is used for being connected fixedly with rectangular frame's inboard cooperation, the upper end of first honeycomb duct and the diapire cooperation intercommunication setting that is located the groove that converges of top, the lower extreme of first honeycomb duct is inserted and is established in the groove that converges that is located the below.
3. The elevator steel outer frame seepage prevention structure according to claim 2, characterized in that: the first side wall and the inner side of the rectangular frame are fixedly connected through bolts, and waterproof glue is coated at the connection position.
4. The elevator steel outrigger seepage prevention structure of claim 2, wherein: and the first flow guide pipe is connected with the inner side of the rectangular frame through a hoop.
5. The elevator steel outer frame seepage prevention structure according to claim 1, characterized in that: and a water retaining cover is arranged at the position corresponding to the second flow guide pipe and on the outer side of the rectangular frame arranged above the elevator shaft pit.
CN202222063862.1U 2022-08-05 2022-08-05 Anti-seepage structure of elevator steel outer frame Active CN217949376U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222063862.1U CN217949376U (en) 2022-08-05 2022-08-05 Anti-seepage structure of elevator steel outer frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222063862.1U CN217949376U (en) 2022-08-05 2022-08-05 Anti-seepage structure of elevator steel outer frame

Publications (1)

Publication Number Publication Date
CN217949376U true CN217949376U (en) 2022-12-02

Family

ID=84225617

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222063862.1U Active CN217949376U (en) 2022-08-05 2022-08-05 Anti-seepage structure of elevator steel outer frame

Country Status (1)

Country Link
CN (1) CN217949376U (en)

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