CN218363007U - Welding and fixing support for elevator cage - Google Patents

Welding and fixing support for elevator cage Download PDF

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Publication number
CN218363007U
CN218363007U CN202222157617.7U CN202222157617U CN218363007U CN 218363007 U CN218363007 U CN 218363007U CN 202222157617 U CN202222157617 U CN 202222157617U CN 218363007 U CN218363007 U CN 218363007U
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China
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cage
base
fixing
mount
connecting plate
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CN202222157617.7U
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Chinese (zh)
Inventor
胡开灼
郭志海
张新华
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Zoomlion Construction Crane Co Ltd
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Zoomlion Construction Crane Co Ltd
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Abstract

The utility model provides an elevator cage welded fastening support for the cage of fixed lift, including first mount, second mount and base, the base is equipped with the fixed part that is used for fixed cage and is used for adjusting elevator cage welded fastening support with the adjustment portion at the connection position of cage, the adjustment portion is including being used for connecting different specifications the first adjustment stand and the second adjustment stand of cage, second adjustment stand parallel arrangement in first adjustment stand is close to one side of fixed part, first mount with the second mount sets up relatively and respectively sliding connection in on the base, set up relatively the fixed part with the adjustment portion is located first mount with between the second mount. This lift cage welded fastening support can improve the welding precision of cage, is applicable to the cage of multiple model, improves production efficiency, reduces manufacturing cost's input and improves the place utilization ratio.

Description

Welding and fixing support for elevator cage
Technical Field
The utility model relates to an auxiliary machinery welding equipment technical field especially relates to an elevator cage welded fastening support.
Background
The welding piece is positioned by the tool and then welded, and the tool is one of important ways for ensuring the size of the welding piece. In construction elevator, the structure is mostly the welding hookup, and the welding frock has just become essential size assurance equipment. The construction elevator cage serves as a main body mechanism of the construction elevator, and the dimensional accuracy of the construction elevator cage directly influences the stability and comfort of operation of the construction elevator cage.
The construction lifter is increased in models due to the factors of the current domestic and foreign use working conditions, the height limitation of a transport container and the like, the models of the construction lifter mainly comprise two models of a cage with an inner clear height of 2500mm and a cage with an inner clear height of 2200mm, the cage is called a high cage and a low cage in the industry, and if two cages with different models need to be welded, two welding tools with different models need to be used due to the fact that the sizes of positioning holes of key parts (stand columns) are different. Referring to fig. 1, cage welding tools used in the conventional construction elevator generally have a single type of applicability, that is, one type of tool can only weld one type of construction elevator cage.
The conventional high cage can be welded only by the existing tool, the short cage is welded after platform measurement, scribing and rivet welding are adopted for fixing, and the welding efficiency and the size precision are lower than those of the tool for fixed-position welding.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing an elevator cage welded fastening support can improve the welding precision of cage, is applicable to the cage of multiple model, improves production efficiency, reduces manufacturing cost's input and improves the place utilization ratio.
The utility model provides an elevator cage welded fastening support for the cage of fixed elevator, including first mount, second mount and base, the base is equipped with the fixed part that is used for fixed cage and is used for adjusting elevator cage welded fastening support with the adjustment portion at the connection position of cage, the adjustment portion is including being used for connecting different specifications the first adjustment stand and the second adjustment stand of cage, second adjustment stand parallel arrangement is in first adjustment stand is close to one side of fixed part, first mount with the second mount sets up relatively and respectively sliding connection in on the base, set up relatively the fixed part with the adjustment portion is located between first mount with the second mount.
In an embodiment, the base is provided with a first slide rail for providing a sliding path for the first fixing frame and a first abutting seat located at one end of the base, and two ends of the first slide rail are respectively connected to the first abutting seat and the adjusting portion, so that the first fixing frame can slide between the first abutting seat and the adjusting portion.
In an embodiment, the base is further provided with a second slide rail for providing a sliding path for the second fixing frame and a second abutting seat located at one end of the base, and two ends of the second slide rail are respectively connected to the second abutting seat and the fixing portion, so that the second fixing frame can slide between the second abutting seat and the fixing portion.
In an embodiment, the fixing portion of the base includes a plurality of fixing posts for detachably fixing a side surface of the suspension cage.
In an embodiment, the fixing column of the fixing portion of the base is disposed opposite to and parallel to the second adjusting column.
In an embodiment, the first fixing frame includes a first pressing portion for pressing the suspension cage and a first supporting portion for reinforcing the structural stability of the first fixing frame, a plurality of first reinforcements for fixing the top portion of the suspension cage and a plurality of second reinforcements for preventing the suspension cage from deforming are arranged on one surface of the first pressing portion of the first fixing frame facing the second fixing frame, the second reinforcements are located between the plurality of first reinforcements, and one surface of the first pressing portion facing away from the second fixing frame is connected to the first supporting portion.
In an embodiment, the second fixing frame includes a second pressing portion for pressing the suspension cage and a second supporting portion for reinforcing the structural stability of the second fixing frame, a plurality of third reinforcements for fixing the bottom of the suspension cage and a plurality of fourth reinforcements for preventing the suspension cage from deforming are arranged on one surface of the second pressing portion facing the first fixing frame, the fourth reinforcements are located between the plurality of third reinforcements, and one surface of the second pressing portion facing away from the first fixing frame is connected to the second supporting portion.
In an embodiment, the suspension cage further comprises a positioning seat for reinforcing and fixing the side surface of the suspension cage, wherein the positioning seat comprises a first connecting plate used for being detachably connected with the base, a second connecting plate used for being connected with the suspension cage, and two first vertical plates which are oppositely arranged and vertically connected between the first connecting plate and the second connecting plate.
In an embodiment, the positioning seat further includes a first shaft hole located on the second connecting plate, and the first shaft hole is perpendicular to the thickness direction of the second connecting plate.
In an embodiment, the positioning seat further includes a third connecting plate for connecting with the suspension cage, a second vertical plate vertically connected to the third connecting plate, and a second shaft hole located on the second vertical plate, the third connecting plate is stacked on the second connecting plate, and the second shaft hole is perpendicular to the thickness direction of the second vertical plate.
The utility model provides an elevator cage welded fastening support through the adjustment portion that sets up the cage that can fix various specifications on the base for current high cage (the clear height 2500mm in the cage) and short cage (the clear height 2200mm in the cage) all can be fixed on this elevator cage welded fastening support. The adjusting part designs a first adjusting stand column and a second adjusting stand column specifically according to key positions of a high cage and a low cage which are connected with a welding and fixing support of the lifting cage respectively, when the high cage needs to be fixed, the other end of the side face of the high cage is connected with the first adjusting stand column after the fixed stand column is connected with one end of the side face of the high cage, and when the low cage needs to be fixed, the other end of the side face of the low cage is connected with the second adjusting stand column after the fixed stand column is connected with one end of the side face of the low cage. When high cage and short cage switch fixedly, only need to use different adjustment stands to be connected with high cage or short cage on the adjustment portion of same lift cage welded fastening support, have higher flexibility ratio, avoided putting of a plurality of high cage lift cage welded fastening supports and short cage lift cage welded fastening support to cause the space waste. After the side face of the suspension cage is stably fixed on the base, the first fixing frame and the second fixing frame adjust the distance between the first fixing frame and the second fixing frame through the first sliding rail and the second sliding rail at the two ends of the base, so that the gap between the components of the suspension cage is compacted, and the welding precision of the suspension cage can be improved. In order to prevent the deformation of the top and the bottom of the cage due to extrusion, the utility model discloses on the first mount and the second mount that are used for fixed top and the bottom of cage, not only distributed at four angles of first portion and the second portion of compressing tightly has the reinforcement (first mounting and third mounting) that is used for the top and the bottom of preliminary fixed cage, also is provided with the mounting (second mounting and fourth mounting) that is used for preventing the top and the bottom of cage from taking place deformation of a pair of relative setting in the centre of first portion and the second portion of compressing tightly. When the side face, the top face and the bottom face of the cage are all stably fixed on the welding and fixing support of the lifting cage, one end of a positioning seat is connected to the base, and the other end of the positioning seat is connected to the cage, so that the preset state of the cage on the welding and fixing support of the lifting cage is more stable, and errors caused by the welding process are avoided.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
Fig. 1 is a top view of a prior art elevator cage weld fixture support.
Fig. 2 is a front view of a welding and fixing bracket for an elevator cage according to a first embodiment of the present invention.
Fig. 3 is a partial front view of the base of fig. 2.
Fig. 4 is a perspective view of the connection structure of the first fixing frame and the base in fig. 2.
Fig. 5 is a perspective view of the second fixing frame in fig. 2.
Fig. 6 is a perspective view of the positioning socket in fig. 2.
Fig. 7 is a schematic perspective view of a connection structure between the positioning seat and the suspension cage in fig. 2.
Fig. 8 is a front view of a welding fixture support for an elevator cage according to a second embodiment of the present invention.
Fig. 9 is a perspective view of the positioning seat in the third embodiment of the present invention.
Fig. 10 is a schematic perspective view of the connection structure of the positioning seat and the suspension cage in fig. 9.
Detailed Description
Specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings. It is to be understood that the disclosed embodiments are merely exemplary of the invention, and are not intended to limit the invention to the precise embodiments disclosed. Based on the description of the present invention, all other embodiments obtained by a person skilled in the art without making creative efforts belong to the protection scope of the present invention.
In the description of the present invention, unless otherwise expressly specified or limited, the terms "disposed," "mounted," "connected," and the like are to be construed broadly, e.g., as meaning fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meaning of the above terms can be understood as a special case for those of ordinary skill in the art.
The terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", and the like refer to orientations or positional relationships based on those shown in the drawings, or orientations or positional relationships that are conventionally used to place the products of the present invention, and are used for convenience of description and simplicity of illustration, rather than to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, are not to be construed as limiting the invention.
The terms "first," "second," "third," and the like are used solely to distinguish between similar elements and not to indicate or imply relative importance or a particular order.
The terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, including not only those elements listed, but may also include other elements not expressly listed.
First embodiment
Referring to fig. 2 to 7, an embodiment of the present invention provides an elevator cage welding fixing support, including a first fixing frame 10, a second fixing frame 20 and a base 30, wherein the base 30 is provided with a fixing portion 31 for fixing a side of the cage 100 and an adjusting portion 32 for adjusting a connection portion between the elevator cage welding fixing support and the cage 100, and the key fixing portions of the cage 100 for connecting the elevator cage welding fixing support are different due to different sizes of the cage 100, and the adjusting portion 32 can flexibly adapt to various types of cages 100. The both ends of the side of cage 100 are connected respectively detachably on fixed part 31 and the adjustment portion 32 of base 30, adjustment portion 32 is including first adjustment stand 321 and the second adjustment stand 322 that are used for connecting the cage 100 of different specifications, second adjustment stand 322 parallel bit is in the one side that first adjustment stand 321 is close to fixed part 31, first mount 10 and second mount 20 set up relatively and respectively sliding connection on base 30, fixed part 31 and the adjustment portion 32 that set up relatively are located between first mount 10 and the second mount 20, the top and the bottom of cage 100 are connected respectively adjustably on first mount 10 and second mount 20.
Specifically, the first adjusting column 321 is more suitable for fixing the cage 100 with a higher net height in the cage than the second adjusting column 322. It should be noted that, two kinds of cages 100 (a high cage with an empty height of 2500mm in the cage and a short cage with an empty height of 2200mm in the cage) commonly used at present are arranged on the adjusting portion 32, and if the cages 100 with other specifications can still be arranged on the adjusting portion 32 of the base 30 on the welding and fixing support of the elevator cage according to the needs of the development and production of the technology, the third adjusting upright, the fourth adjusting upright and the like of the adaptation are arranged on the adjusting portion 32.
In addition, the base 30 includes two long rods arranged in parallel and a plurality of short rods vertically connected between the two long rods, the fixing portion 31 and the adjusting portion 32 of the base 30 are relatively fixed between the two long rods of the base 30 along the length direction of the long rods of the base 30, the first fixing frame 10 and the second fixing frame 20 are slidably connected on the two long rods, and the fixing portion 31 and the adjusting portion 32 arranged in parallel are located between the first fixing frame 10 and the second fixing frame 20. The cage 100 fixed on the fixing portion 31 and the adjusting portion 32 is clamped and pressed by the first fixing frame 10 and the second fixing frame 20, so that gaps between components of the cage 100 are as small as possible, welding is facilitated, and welding accuracy is improved.
The base 30 is provided with a first slide rail 33 for providing a slide path for the first fixing frame 10 and a first abutting seat 34 located at one end of the base 30, the first fixing frame 10 is provided with two first slide blocks which are arranged oppositely and in parallel and matched with the first slide rail 33, and two ends of the first slide rail 33 are respectively connected with the first abutting seat 34 and the adjusting part 32 to enable the first fixing frame 10 to slide between the first abutting seat 34 and the adjusting part 32.
Specifically, one end of the two long rods of the base 30, which is close to the adjusting portion 32 in the length direction thereof, is provided with a short rod, and two ends of the short rod in the length direction thereof are respectively provided with a first abutting seat 34, so as to prevent the first fixing frame 10 from sliding out of the first slide rail 33 of the base 30. A first rotating upright post is arranged in the middle of the short rod, a first rotating shaft hole is formed in the first rotating upright post, a first screw rod penetrates into the rotating shaft hole, one end of the first screw rod is connected with a first fixing frame 10, the other end of the first screw rod is connected with a first driving device, and the first driving device is preferably a hand wheel. The first driving device drives the first lead screw, and the first lead screw pushes or pulls out the first fixing frame 10 to adjust the distance between the suspension cage 100 and the second fixing frame 20, so as to adjust the tightness degree between the components of the suspension cage 100.
The base 30 is further provided with a second slide rail 35 for providing a sliding path for the second fixing frame 20 and a second abutting seat 36 located at one end of the base 30, the second fixing frame 20 is provided with two second slide blocks which are arranged oppositely and in parallel and matched with the second slide rail 35, and two ends of the second slide rail 35 are respectively connected with the second abutting seat 36 and the fixing portion 31 so that the second fixing frame 20 can slide between the second abutting seat 36 and the fixing portion 31.
Specifically, a short rod is disposed at one end of the two long rods of the base 30 close to the fixing portion 31, and a second abutting seat 36 is disposed at each of two ends of the short rod in the length direction, so as to prevent the second fixing frame 20 from sliding out of the second slide rail 35 of the base 30. A second rotating upright is arranged in the middle of the short rod, a second rotating shaft hole is formed in the second rotating upright, a second screw rod penetrates into the second rotating shaft hole, one end of the second screw rod is connected with a second fixing frame 20, the other end of the second screw rod is connected with a second driving device, and the second driving device is preferably a hand wheel. The second driving device drives the second lead screw, and the second lead screw pushes or pulls out the second fixing frame 20 to adjust the distance between the cage 100 and the second fixing frame 20, so as to adjust the tightness degree between the components of the cage 100.
The fixing portion 31 of the base 30 includes at least two fixing posts 311 disposed oppositely, and one end of the side surface of the cage 100 is connected to the fixing posts 311 of the fixing portion 31 of the base 30.
The fixing post 311 of the fixing portion 31 of the base 30 is disposed opposite to and parallel to the second adjustment post 322.
Specifically, the fixed column 311 and the first adjusting column 321 are respectively located at two sides of the second adjusting column 322 in parallel, wherein the fixed column 311 is respectively opposite to and parallel to the first adjusting column 321 and the second adjusting column 322, the first adjusting column 321 and the second adjusting column 322 are sequentially arranged in parallel, and the other end of the side surface of the cage 100 is connected to the first adjusting column 321 of the adjusting portion 32 of the base 30.
Because the key part who is used for fixing on base 30 on the cage 100 of various specifications has difference, the utility model discloses in, the different suitability that sets up different adaptation stands in order to improve lift cage welded fastening support according to the difference of net height in cage 100's the cage increases production efficiency.
The first fixing frame 10 includes a first pressing portion 11 for pressing the suspension cage 100 and a first supporting portion 12 for reinforcing the structural stability of the first fixing frame 10, a plurality of first reinforcements 111 for fixing the top of the suspension cage 100 and a plurality of second reinforcements 112 for preventing the suspension cage 100 from deforming are disposed on a surface of the first pressing portion 11 of the first fixing frame 10 facing the second fixing frame 20, the second reinforcements 112 are disposed between the plurality of first reinforcements 111, and the first supporting portion 12 is connected to a surface of the first pressing portion 11 facing away from the second fixing frame 20.
Specifically, the first pressing portion 11 and the first supporting portion 12 of the first fixing frame 10 are provided with first sliders at positions where the first pressing portion and the first supporting portion 12 are connected to the base 30, the first fixing frame 10 slides on a first slide rail 33 between a first abutting seat 34 and an adjusting portion 32 of the base 30 through the first sliders, the other end of a first lead screw of which one end is connected with a first driving device is connected to the first supporting portion 12 of the first fixing frame 10, and the first lead screw drives and pushes the first fixing frame 10 to move on the first slide rail 33 of the base 30 through the first driving device. The first compression part 11 is of a square structure, wherein the number of the first reinforcing members 111 is at least four, the first reinforcing members are respectively and uniformly distributed at four top corners of the square first compression part 11, the number of the second reinforcing members 112 is at least two, the two second reinforcing members 112 are oppositely and parallelly arranged in the middle of the square first compression part 11, and the two second reinforcing members 112 are surrounded by the four first reinforcing members 111, so that the top of the suspension cage 100 fixed on the first fixing frame 10 is uniformly stressed, and deformation is prevented.
The second fixing frame 20 includes a second compressing portion 21 for compressing the suspension cage 100 and a second supporting portion 22 for reinforcing the structural stability of the second fixing frame 20, a plurality of third reinforcements 211 for fixing the bottom of the suspension cage 100 and a plurality of fourth reinforcements 212 for preventing the suspension cage 100 from deforming are disposed on one surface of the second compressing portion 21 facing the first fixing frame 10, the fourth reinforcements 212 are disposed between the plurality of third reinforcements 211, and the second supporting portion 22 is connected to one surface of the second compressing portion 21 facing away from the first fixing frame 10.
Specifically, the positions of the second pressing portion 21 and the second supporting portion 22 of the second fixing frame 20, which are connected to the base 30, are both provided with first sliders, the second fixing frame 20 slides on the second slide rail 35 between the second abutting seat 36 and the fixing portion 31 of the base 30 through the second sliders, the other end of a second lead screw, one end of which is connected with a second driving device, is connected to the second supporting portion 22 of the second fixing frame 20, and the second lead screw drives the second fixing frame 20 to move on the second slide rail 35 of the base 30 through the second driving device. The second compressing portion 21 has a square structure, wherein the number of the third reinforcing members 211 is at least four, the third reinforcing members 211 are respectively and uniformly distributed at four top corners of the square second compressing portion 21, the number of the fourth reinforcing members 212 is at least two, the two fourth reinforcing members 212 are oppositely and parallelly arranged in the middle of the square second compressing portion 21, and the two fourth reinforcing members 212 are surrounded by the four third reinforcing members 211, so that the top of the suspension cage 100 fixed on the second fixing frame 20 is uniformly pressed, and deformation is prevented.
The welding and fixing support for the elevator cage further comprises a positioning seat 40 used for reinforcing and fixing the side face of the cage 100, the positioning seat 40 comprises a first connecting plate 41 used for being detachably connected with the base 30, a second connecting plate 42 used for being connected with the cage 100 and two first vertical plates 43 which are oppositely arranged and vertically connected between the first connecting plate 41 and the second connecting plate 42, and the number of the positioning seats 40 is at least one.
Specifically, after the lateral sides of the cage 100 are preliminarily fixed on the base 30 and the cage 100 is fixed between the first fixing frame 10 and the second fixing frame 20 through the top and bottom surfaces, respectively, at least one positioning seat 40 needs to be added on the lateral sides of the cage 100 to strengthen and ensure that the cage 100 is stable on the welding and fixing bracket of the elevator cage and the gaps between the components of the cage 100 are not changed.
The positioning seat 40 further includes a third connecting plate 44 for connecting with the suspension cage 100, a second vertical plate 45 vertically connected to the third connecting plate 44, and a second shaft hole 451 located on the second vertical plate 45, wherein the third connecting plate 44 is stacked on the second connecting plate 42, and the second shaft hole 451 is perpendicular to the thickness direction of the second vertical plate 45.
Specifically, the second shaft hole 451 of the second vertical plate 45 is matched with the connecting hole of the cage 100, and after the connecting hole of the cage 100 is matched with the second shaft hole 451, a fixing pin is inserted to fix the connecting hole and the second shaft hole 451 to each other. The end of the positioning base 40 opposite to the end provided with the second shaft hole 451 is preferably fixed to the fixing portion 31 of the base 30.
Second embodiment
Referring to fig. 8, another embodiment of the present invention provides an elevator cage welding fixing bracket, which is different from the first embodiment in that the adjusting portion 32 of the base 30 includes a first adjusting upright 321 and a second adjusting upright 322 for connecting cages 100 of different specifications, the fixing upright 311 and the first adjusting upright 321 are respectively located on two sides of the second adjusting upright 322 in a relative and parallel manner, and the other end of the side surface of the cage 100 is connected to the second adjusting upright 322 of the adjusting portion 32 of the base 30.
Third embodiment
Referring to fig. 9 to 10, another embodiment of the welding and fixing bracket for elevator cages according to the present invention is different from the first embodiment in that the positioning seat 40 does not include the third connecting plate 44 and the second vertical plate 45, and is disposed on the second connecting plate 42 and provided with the first shaft hole 421, and the first shaft hole 421 is perpendicular to the thickness direction of the second connecting plate 42.
Specifically, the first shaft hole 421 on the second connection plate 42 and the connection hole on the cage 100 are fitted to each other, and the connection hole of the cage 100 and the first shaft hole 421 are overlapped and then a fixing pin is inserted so that the connection hole and the first shaft hole 421 are fixed to each other. The end of the positioning seat 40 opposite to the end provided with the first shaft hole 421 is preferably fixed on the fixing portion 31 of the base 30.
The utility model provides an elevator cage welded fastening support through the adjustment portion 32 that sets up the cage 100 that can fix various specifications on base 30 for current high cage (the clear height 2500mm in the cage) and short cage (the clear height 2200mm in the cage) all can be fixed on this elevator cage welded fastening support. This adjustment portion 32 has designed first adjustment stand 321 and second adjustment stand 322 according to the key position specificity that high cage and short cage and lift cage welded fastening support are connected respectively, and when needs fixed high cage, the other end is connected first adjustment stand 321 after fixed stand 311 is connected to the one end of the side of high cage, when needs fixed short cage, only needs to be connected after fixed stand 311 at the one end of the side of short cage, and the other end is connected with second adjustment stand 322. When the high cage and the low cage are switched to be fixed, only different adjusting upright columns are needed to be used for being connected with the high cage or the low cage on the adjusting part 32 of the same welding and fixing support of the lifting cage, so that higher flexibility is realized, and the space waste caused by the arrangement of a plurality of welding and fixing supports of the high cage and the low cage is avoided. After the side surface of the cage 100 is stably fixed on the base 30, the first fixing frame 10 and the second fixing frame 20 adjust the distance between the first fixing frame 10 and the second fixing frame 20 through the first slide rail 33 and the second slide rail 35 on the two ends of the base 30, so as to ensure that the gaps between the components of the cage 100 are compacted, and improve the welding precision of the cage 100. In order to prevent the deformation of the top and bottom of the cage 100 due to the extrusion, the present invention discloses that on the first fixing frame 10 and the second fixing frame 20 for fixing the top and bottom of the cage 100, the reinforcing members (the first reinforcing member 111 and the third reinforcing member 211) for primarily fixing the top and bottom of the cage 100 are distributed at four corners of the first compressing portion 11 and the second compressing portion 21, and a pair of oppositely disposed fixing members (the second reinforcing member 112 and the fourth reinforcing member 212) for preventing the deformation of the top and bottom of the cage 100 are also provided in the middle of the first compressing portion 11 and the second compressing portion 21. When the side, top and bottom surfaces of cage 100 are all stably fixed on this elevator cage welded fastening support, a locating seat 40 is connected on base 30 at one end, and the other end is connected on cage 100 for cage 100 is more stable at the default condition on elevator cage welded fastening support, avoids welding process to cause the error.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (10)

1. The utility model provides an elevator cage welded fastening support for cage (100) of fixed elevator, characterized by, including first mount (10), second mount (20) and base (30), base (30) are equipped with fixed part (31) that are used for fixed cage (100) and are used for adjusting elevator cage welded fastening support with adjusting part (32) of the position of being connected of cage (100), adjusting part (32) are including being used for connecting different specifications first adjustment stand (321) and second adjustment stand (322) of cage (100), second adjustment stand (322) parallel bit in first adjustment stand (321) are close to one side of fixed part (31), first mount (10) and second mount (20) set up relatively and respectively sliding connection in on base (30), fixed part (31) and adjusting part (32) that set up relatively are located between first mount (10) and second mount (20).
2. The welding and fixing bracket for the elevator cage according to claim 1, wherein the base (30) is provided with a first slide rail (33) for providing a sliding path for the first fixing frame (10) and a first abutting seat (34) at one end of the base (30), and two ends of the first slide rail (33) are respectively connected with the first abutting seat (34) and the adjusting part (32) so that the first fixing frame (10) can slide between the first abutting seat (34) and the adjusting part (32).
3. The welding and fixing bracket for the elevator cage according to claim 1, wherein the base (30) is further provided with a second slide rail (35) for providing a sliding path for the second fixing frame (20) and a second abutting seat (36) at one end of the base (30), and two ends of the second slide rail (35) are respectively connected with the second abutting seat (36) and the fixing portion (31) so that the second fixing frame (20) can slide between the second abutting seat (36) and the fixing portion (31).
4. An elevator cage weld fixture bracket as set forth in claim 1 wherein said fixture portion (31) of said base (30) includes a plurality of fixture posts (311) for removably securing the sides of said cage (100).
5. The welding fixture of elevator cages as in claim 4, characterized in that said fixing upright (311) of said fixing portion (31) of said base (30) is disposed opposite and parallel to said second adjustment upright (322).
6. The welding fixture of an elevator cage according to claim 1, wherein the first fixture (10) includes a first pressing portion (11) for pressing the cage (100) and a first supporting portion (12) for reinforcing the structural stability of the first fixture (10), the first pressing portion (11) of the first fixture (10) is provided with a plurality of first reinforcements (111) for fixing the top portion of the cage (100) and a plurality of second reinforcements (112) for preventing the deformation of the cage (100) on a surface facing the second fixture (20), the second reinforcements (112) are located between the plurality of first reinforcements (111), and a surface of the first pressing portion (11) facing away from the second fixture (20) is connected to the first supporting portion (12).
7. The welding fixture of an elevator cage according to claim 1, wherein the second fastening frame (20) comprises a second pressing portion (21) for pressing the cage (100) and a second support portion (22) for reinforcing the structural stability of the second fastening frame (20), the second pressing portion (21) is provided with a plurality of third reinforcing members (211) for fixing the bottom of the cage (100) and a plurality of fourth reinforcing members (212) for preventing the cage (100) from being deformed on a surface facing the first fastening frame (10), the fourth reinforcing members (212) are located among the plurality of third reinforcing members (211), and a surface of the second pressing portion (21) facing away from the first fastening frame (10) is connected to the second support portion (22).
8. The welding fixture of an elevator cage according to claim 1, further comprising a positioning socket (40) for reinforcing the sides of said cage (100), said positioning socket (40) comprising a first connecting plate (41) for detachably connecting said base (30), a second connecting plate (42) for connecting said cage (100), and two first vertical plates (43) disposed opposite and vertically connected between said first connecting plate (41) and said second connecting plate (42).
9. The welding fixture of an elevator cage according to claim 8, wherein said positioning socket (40) further comprises a first axial hole (421) in said second connecting plate (42), said first axial hole (421) being perpendicular to a thickness direction of said second connecting plate (42).
10. The welding and fixing bracket for the elevator cage according to claim 8, wherein the positioning seat (40) further comprises a third connecting plate (44) for connecting with the cage (100), a second vertical plate (45) vertically connected to the third connecting plate (44), and a second shaft hole (451) located on the second vertical plate (45), the third connecting plate (44) is stacked on the second connecting plate (42), and the second shaft hole (451) is perpendicular to the thickness direction of the second vertical plate (45).
CN202222157617.7U 2022-08-16 2022-08-16 Welding and fixing support for elevator cage Active CN218363007U (en)

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CN202222157617.7U CN218363007U (en) 2022-08-16 2022-08-16 Welding and fixing support for elevator cage

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CN202222157617.7U CN218363007U (en) 2022-08-16 2022-08-16 Welding and fixing support for elevator cage

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CN218363007U true CN218363007U (en) 2023-01-24

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