CN115872255A - Method for installing sundry goods elevator fast-assembling shaft way - Google Patents

Method for installing sundry goods elevator fast-assembling shaft way Download PDF

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Publication number
CN115872255A
CN115872255A CN202211565573.XA CN202211565573A CN115872255A CN 115872255 A CN115872255 A CN 115872255A CN 202211565573 A CN202211565573 A CN 202211565573A CN 115872255 A CN115872255 A CN 115872255A
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vertical
transverse
door
installing
door body
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毛先金
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Schmidt Elevator Co ltd
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Schmidt Elevator Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B50/00Energy efficient technologies in elevators, escalators and moving walkways, e.g. energy saving or recuperation technologies

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Abstract

The invention discloses a method for installing a rapid hoistway of a goods elevator, which comprises the following steps: vertical roof beam, direction track and horizontal roof beam, vertical roof beam has four, the horizontal cross-section of vertical roof beam is L shape structure, each horizontal roof beam is square frame shape structure, four vertical roof beams all encircle four corners departments at each horizontal roof beam, the direction track has immediately at the inboard of each horizontal roof beam, the direction track is used for leading elevator car to go up and down, the inner wall that the horizontal roof beam corresponds layer gate one side is the layer door inner wall, three side inner walls are basic inner wall in addition, the three basic inner wall middle parts of horizontal roof beam all are provided with a direction track, the direction track passes through the screw and is connected with horizontal roof beam middle part. The method for installing the sundry goods elevator fast-assembly shaft solves the problem that in the prior art, the production efficiency is low because the vertical beam and the transverse beam need to be welded before leaving a factory.

Description

Method for installing sundry goods elevator fast-assembling shaft way
Technical Field
The invention relates to an elevator shaft, in particular to a sundry goods elevator quick-assembly shaft installation method.
Background
In an elevator system, an elevator shaft is provided to provide a lifting space for lifting a car. In a general residential building, an elevator shaft is formed by enclosing concrete, and the elevator shaft needs to be preset when a house is built. Some old buildings need to be additionally provided with elevator shafts beside the buildings, and in order to improve the installation efficiency, the fast-assembly elevator shafts are designed.
In the prior art, a ready-package elevator hoistway includes: a plurality of sections skeleton, the skeleton includes: the vertical beam is provided with four guide conical heads, the middle parts of the four vertical beams are connected by the transverse beam, the bottom end of each vertical beam is extended with a guide conical head, the vertical beam is of a steel pipe structure, the vertical beam in the framework of the next section is used for inserting the guide conical head in the framework of the previous section, and therefore the previous section of framework is aligned with the next section of framework when the hoisting is performed under the condition of convenience. Although the installation efficiency of the elevator shaft site can be improved, the ready-package elevator shaft still has the following defects:
however, in the production process, the vertical beam and the transverse beam need to be welded together before leaving the factory, and meanwhile, the guide conical head also needs to be produced at the bottom end of the vertical beam, so that the production efficiency is low, the long enough time is needed for leaving the factory, and the goods elevator has low safety requirement and cannot be installed quickly in time.
Disclosure of Invention
The invention provides a method for installing a fast-assembling shaft of a goods elevator, which solves the problem of low production efficiency caused by welding a vertical beam and a transverse beam before leaving a factory in the prior art.
In order to realize the purpose, the invention adopts the following technical scheme:
the invention discloses a method for installing a sundry goods elevator fast-assembling shaft, which comprises the following steps:
s1, preparing the following components: the elevator car lifting guide device comprises four vertical beams, four guide rails and four transverse beams, wherein the horizontal sections of the vertical beams are L-shaped structures, each transverse beam is of a square frame structure, the guide rails are used for guiding the elevator car to lift, the inner wall of one side, corresponding to a landing door, of each transverse beam is a landing door inner wall, and the inner walls of the other three sides are basic inner walls;
s2, mounting a vertical beam: pouring a concrete layer on the ground, and inserting a vertical beam into the concrete layer;
s3, mounting a transverse beam: placing the transverse beams among four vertical beams, wherein the four vertical beams surround four corners of each transverse beam;
s4, installing a guide rail: the middle parts of the basic inner walls of the transverse beams are provided with guide rails, and the guide rails are connected with the middle parts of the transverse beams through screws.
Preferably, in step S3, the vertical beam is connected to the transverse beam using a snap mechanism.
Preferably, the click mechanism includes: the clamping jaw is pressed on the vertical beam by the pressing bolt, and the pressing bolt is installed on the transverse beam.
Preferably, the jaw includes: the clamping bolt comprises a disk body and claws, wherein at least three claws are formed on one end face of the disk body in a protruding mode, the disk body is tightly attached to the large end of the clamping bolt, and the claws are tightly pressed on the vertical beam and the transverse beam.
Preferably, the following components are also provided in step S1: the door guide rail and the landing door device further execute the following steps after the step S3 is finished:
s5, installing a door guide rail: a door guide rail is arranged at the joint of the transverse beam and the vertical beam;
s6, installing a landing door device: and a landing door device is arranged on the door guide rail and is arranged corresponding to the two adjacent transverse beams.
Preferably, the landing door apparatus prepared in step S1 includes the following components: the door comprises an upper door body, a lower door body and a vertical driving mechanism;
the step S3 includes the steps of:
s31, installing an upper door body and a lower door body on a door guide rail installed in the elevator shaft, wherein the upper door body and the lower door body can move in the vertical direction under the guidance of the door guide rail;
and S32, installing two vertical driving mechanisms beside the door guide rail, wherein the output end of one vertical driving mechanism is connected to the upper door body, and the output end of the other vertical driving mechanism is connected to the lower door body.
Preferably, one transverse beam of the two transverse beams in each layer of door device is a first transverse rib, and the other transverse beam is a second transverse rib;
the step of preparing the upper door body and the lower door body in the step S1 comprises the following steps:
s11, preparing parts of an upper door body and a lower door body: the upper door body and the lower door body both comprise: door plant, barrier plate and deflector: the door panel includes: the plate comprises a plate body and two frames, wherein each frame is composed of two side blocks;
s12, installing a frame: clamping the two side blocks on one side of the plate body to form a frame, and clamping the two side blocks on the other side of the plate body to form another frame;
s13, installing a guide plate: the guide plates are arranged on the two frames through a first mounting bolt and a first nut, the large end of the first mounting bolt and the first nut clamp the two side blocks of the frames and the guide plates, and the guide plates are arranged at the upper end and the lower end of the plate body;
s14, mounting a blocking plate: and a blocking plate is arranged at the end part of the frame and hooks the first transverse rib or the second transverse rib.
Preferably, the blocking plate is of a structure like '12579', one side of the blocking plate is provided with two first positioning holes, the other side of the blocking plate is provided with two second positioning holes, the first positioning holes and the second positioning holes are used for a second mounting bolt to pass through, the second mounting bolt passes through the frame, and the second mounting bolt is matched with a second nut to clamp the blocking plate and the frame tightly.
Compared with the prior art, the invention has the following beneficial effects:
the framework of the elevator shaft is only made of the vertical beam and the transverse beam, the vertical beam and the transverse beam do not need to be welded before leaving a factory, the guide conical head does not need to be formed on the vertical beam, the production time of the framework in a factory is reduced, the transverse beam only needs to be welded on the vertical beam when the framework is assembled on site, a large amount of manpower and material resources do not need to be consumed to hoist the framework section in the prior art, and the production efficiency is improved. Certainly, in the application, the requirement of the sundry goods elevator is not high, only the elevator shaft is firmly installed, and meanwhile, the height of the installation method of the whole sundry goods elevator fast-assembly shaft is not high, so that the installation method of the sundry goods elevator fast-assembly shaft is formed only by arranging the whole vertical beam, and the application direction is special.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
FIG. 1 is a schematic structural diagram of a method for installing a rapid hoistway of a cargo lift;
fig. 2 is an enlarged view at I in fig. 1.
Fig. 3 is a schematic view of the structure at the landing door apparatus.
Reference numerals: the vertical beam 1, the guide track 2, the transverse beam 3, the clamping mechanism 4, the compression bolt 41, the clamping jaw 42, the disc body 421, the jaw 422, the landing door device 5, the upper door body 51, the lower door body 52, the door panel 511, the blocking plate 512, the guide plate 513, the plate body 514, the frame 515, the first positioning hole 516, the second positioning hole 517, the second mounting bolt 518 and the door guide rail 6.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the functions of the invention clearer and easier to understand, the invention is further explained by combining the drawings and the detailed implementation mode:
example 1:
as shown in fig. 1 and fig. 2, the embodiment discloses a method for installing a rapid hoistway of a cargo lift, which includes: vertical roof beam 1, guide rail 2 and horizontal roof beam 3, vertical roof beam 1 has four, vertical roof beam 1's horizontal cross-section is L shape structure, each horizontal roof beam 3 is square frame shape structure, four vertical roof beams 1 all encircle four corners departments at each horizontal roof beam 3, there is guide rail 2 in the inboard of each horizontal roof beam 3 immediately, guide rail 2 is used for leading elevator car to go up and down, the inner wall that horizontal roof beam 3 corresponds layer gate one side is layer door inner wall, three side inner walls are basic inner wall in addition, the three basic inner wall middle parts of horizontal roof beam 3 all are provided with a guide rail 2, guide rail 2 passes through the screw and is connected with horizontal roof beam 3 middle part.
The vertical beam 1 is connected with the transverse beam 3 through a clamping mechanism 4. Use vertical roof beam 1 as the basis, vertical roof beam 1 set up to provide the installation basis for horizontal roof beam 3, what horizontal roof beam 3 played is the effect of embracing four vertical roof beams 1, also provides the installation basis for the setting of layer door simultaneously.
The click mechanism 4 includes: a clamp bolt 41 and a jaw 42, the jaw 42 being pressed against the vertical beam 1 by the clamp bolt 41, the clamp bolt 41 being mounted on the transverse beam 3. It is achieved that the pressure bolt 41 is mounted on the transverse beam 3 and the jaw 42 is pressed by the pressure bolt 41 against the vertical beam 1, thereby limiting the movement of the transverse beam 3 on the vertical beam 1.
The pawl 42 includes: the plate 421 is provided with at least three claws 422, one end surface of the plate 421 is protruded, the plate 421 is tightly attached to the large end of the pressing bolt 41, and the claws 422 are pressed on the vertical beam 1 and the transverse beam 3. The plate 421 provides a base for the compression bolt 41 and the claw 422 is clamped to the vertical beam 1.
A buffer support device (not shown) for supporting the elevator car is mounted at the bottom of the elevator shaft. The damage of the car caused by the fact that the car impacts the bottom of the elevator shaft is avoided.
The buffering strutting arrangement includes: buffering head and support column, support column are installed at the pit, and the buffering head is installed at the support column top, and the buffering head adopts elastic material to make, and the buffering head extends towards elevator car. The buffer head is used for contacting with the elevator car, and the buffer head is connected with the support column, thereby providing an installation basis for the buffer head.
The landing door device 5 is installed on the inner wall of the landing door of the transverse beam 3. The transverse beams 3 provide a basis for opening and closing the landing door device 5, namely, the landing door device 5 is correspondingly arranged between two adjacent transverse beams 3.
The landing door apparatus 5 includes: the elevator door comprises an upper door body 51, a lower door body 52 and a vertical driving mechanism, wherein the upper door body 51 and the lower door body 52 are installed on a door guide rail 6 installed in an elevator shaft (in the drawing, the length of the door guide rail 6 is different from that of a vertical beam 1, and the length of the door guide rail 6 is the same as that of the vertical beam 1 in the actual situation because the drawing is only a schematic diagram), and the upper door body 51 and the lower door body 52 can move in the vertical direction under the guidance of the door guide rail 6; two transverse beams 3 which are mutually spaced are arranged corresponding to each floor, one transverse beam 3 in the transverse beams 3 corresponding to each floor is a first transverse rib, the other transverse beam 3 is a second transverse rib, the first transverse rib and the second transverse rib are positioned beside a door guide rail 6, a group of first transverse ribs and a group of second transverse ribs are arranged corresponding to each floor, and a gap is reserved between the first transverse ribs and the second transverse ribs in each group; the upper door body 51 and the lower door body 52 each include: the door comprises a door plate 511, a blocking plate 512 and a guide plate 513, wherein the blocking plate 512 is installed on the door plate 511, the blocking plate 512 is used for limiting the operation range of the upper door body 51 and the lower door body 52 through matching with a first transverse rib and a second transverse rib, the guide plate 513 is installed on the door plate 511, the guide plate 513 can extend into a door guide rail 6 in a sliding manner, and the door guide rail 6 is positioned in the vertical direction; a vertical driving mechanism (not shown) is installed in the elevator shaft, the output end of the vertical driving mechanism is connected to the upper door body 51 and the lower door body 52, and the vertical driving mechanism is used for driving the upper door body 51 and the lower door body 52 to open and close. The transverse beam 3 not only connects the vertical beams 1 together, but also the transverse beam 3 is matched with the barrier plate 512, so that the running range of the landing door is limited. A door guide rail 6 is installed at the vertical beam 1, and the door guide rail 6 guides the operation of the upper and lower door bodies 51 and 52 through a guide plate 513, so that the upper and lower door bodies 51 and 52 operate in a designated range.
When the whole freighter elevator fast-assembling shaft is installed, firstly, the vertical beam 1 is pre-buried on the ground through a concrete structure, and the concrete structure ensures that the whole vertical beam 1 is in a vertical state and also ensures that the vertical beam 1 is in a standing state; then, the transverse beams 3 are placed between the four vertical beams 1, all the transverse beams 3 are arranged on the vertical beams 1 at intervals, the transverse beams 3 are installed on the vertical beams 1 through the clamping mechanism 4, the clamping mechanism 4 only needs to rotate the pressing bolts 41 in place, the pressing bolts 41 penetrate through the disc body 421, so that the claw parts 422 are pressed on the vertical beams 1 through the disc body 421, the claw parts 422 pull each vertical beam 1 towards the centers of the four vertical beams 1, the four vertical beams 1 can be tightly held together, the vertical beams 1 are prevented from inclining outwards towards the four vertical beams 1, the vertical beams 1 are ensured to be located in the vertical direction, and meanwhile the vertical beams 1 limit the transverse beams 3 to slide on the vertical beams 1 through friction with the claw parts 422; then, installing a door guide rail 6, and welding the door guide rail 6 on the transverse beam 3 and the vertical beam 1; finally, the upper door 51 and the lower door 52 are installed.
Example 2:
as shown in fig. 1 to 3, based on embodiment 1, the present embodiment discloses a method for installing a glove compartment quick-assembly hoistway, including the following steps:
s1, preparing the following components: the elevator car lifting guide device comprises vertical beams 1, guide rails 2 and transverse beams 3, wherein the number of the vertical beams 1 is four, the horizontal sections of the vertical beams 1 are L-shaped structures, each transverse beam 3 is a square frame structure, the guide rails 2 are used for guiding an elevator car to lift, the inner wall of one side, corresponding to a landing door, of each transverse beam 3 is a landing door inner wall, and the inner walls of the other three sides are basic inner walls;
s2, mounting the vertical beam 1: a concrete layer is poured on the ground, and the vertical beam 1 is inserted into the concrete layer;
s3, mounting a transverse beam 3: placing the transverse beams 3 among the four vertical beams 1, wherein the four vertical beams 1 surround the four corners of each transverse beam 3;
s4, installing a guide rail 2: the middle parts of the basic inner walls of the transverse beams 3 are provided with guide tracks 2, and the guide tracks 2 are connected with the middle parts of the transverse beams 3 through screws.
In step S3, the vertical beam 1 is connected to the transverse beam 3 using the clamping mechanism 4.
The click mechanism 4 includes: a clamp bolt 41 and a jaw 42, the jaw 42 being pressed against the vertical beam 1 by the clamp bolt 41, the clamp bolt 41 being mounted on the transverse beam 3.
The pawl 42 includes: the clamping device comprises a disc body 421 and claw parts 422, wherein at least three claw parts 422 are convexly formed on one end surface of the disc body 421, the disc body 421 is tightly attached to the large end of the pressing bolt 41, and the claw parts 422 are pressed on the vertical beam 1 and the transverse beam 3.
Preferably, the following components are also provided in step S1: the door guide rail 6 and the landing door device 5, after the step S3 is completed, the following steps are executed:
s5, mounting a door guide rail 6: a door guide rail 6 is arranged at the joint of the transverse beam 3 and the vertical beam 1;
s6, installing a landing door device 5: the door guide rail 6 is provided with a landing door device 5, and the landing door device 5 is arranged corresponding to the two adjacent transverse beams 3.
The landing door device 5 prepared in step S1 includes the following components: an upper door body 51, a lower door body 52 and a vertical driving mechanism;
the step S3 comprises the following steps:
s31, mounting an upper door body 51 and a lower door body 52 on a door guide rail 6 installed in the elevator shaft, wherein the upper door body 51 and the lower door body 52 can move in the vertical direction under the guidance of the door guide rail 6;
and S32, installing two vertical driving mechanisms beside the door guide rail 6, wherein the output end of one vertical driving mechanism is connected to the upper door body 51, and the output end of the other vertical driving mechanism is connected to the lower door body 52.
Preferably, one transverse beam 3 of the two transverse beams 3 in each layer of door device 5 is a first transverse rib, and the other transverse beam 3 is a second transverse rib;
the steps of preparing the upper door body 51 and the lower door body 52 in step S1 are:
s11, preparing components of the upper door body 51 and the lower door body 52: the upper door body 51 and the lower door body 52 each include: door panel 511, barrier panel 512, and guide panel 513: the door panel 511 includes: the plate comprises a plate body 514 and two frames 515, wherein each frame 515 is composed of two side blocks;
s12, installing the frame 515: clamping the two side blocks on one side of the plate body 514 to form a frame 515, and clamping the two side blocks on the other side of the plate body 514 to form another frame 515;
s13, mounting the guide plate 513: the guide plates 513 are installed on the two frames 515 through first installation bolts and first nuts, the large ends of the first installation bolts and the first nuts clamp the two side blocks of the frames 515 and the guide plates 513, and the guide plates 513 are installed at the upper ends and the lower ends of the plate bodies 514;
s14, mounting a blocking plate 512: a blocking plate 512 is arranged at the end part of the frame 515, and the blocking plate 512 hooks the first transverse rib or the second transverse rib.
The blocking plate 512 is in a structure like a '12579', one side of the blocking plate 512 is provided with two first positioning holes 516, the other side of the blocking plate 512 is provided with two second positioning holes 517, the first positioning holes 516 and the second positioning holes 517 are used for the second mounting bolts 518 to pass through, the second mounting bolts 518 pass through the frame 515, and the second mounting bolts 518 and the second nuts are matched to clamp the blocking plate 512 and the frame 515.
In the application, firstly, a concrete layer is arranged for the whole hoistway to stand, the vertical beam 1 is erected on the ground by the concrete layer, the vertical beam 1 is prevented from inclining, and the whole vertical beam 1 subsequently bears the weight of all parts, so that the concrete layer is firm as a foundation; then, the transverse beam 3 is arranged, the clamping mechanism 4 is installed on the transverse beam 3, the clamping mechanism 4 enables the four vertical beams 1 to be pulled towards the middle, so that the vertical beams 1 are prevented from inclining, meanwhile, the transverse beam 3 is positioned on the vertical beams 1, the arrangement of the transverse beam 3 provides a foundation for the arrangement of the subsequent layer door device 5, and particularly, the transverse beam is matched with a stop plate 512 in the layer door device 5, so that the running ranges of the upper door body 51 and the lower door body 52 are limited; then, in order to facilitate installation of the upper door body 51 and the lower door body 52, the edge blocks are arranged to clamp two sides of the plate body 514, so that people are prevented from being cut due to the fact that the plate body 514 is thin, and meanwhile, the guide plates 513 are installed on the edge frames 515, so that the two edge blocks can be matched and positioned on the plate body 514; then, in order to set the operation ranges of the upper door body 51 and the lower door body 52, the blocking plate 512 is provided, and the blocking plate 512 and the transverse beam 3 form a first transverse rib and a second transverse rib, so that the operation range of the blocking plate 512 is limited; finally, the blocking plate 512 is arranged to be in a '12579' shape, meanwhile, one side of the blocking plate 512 is provided with a first positioning hole 516, and the other side of the blocking plate 512 is provided with a second positioning hole 517, so that when the blocking plate 512 is installed, the direction of the blocking plate 512 does not need to be noticed, the first transverse rib and the second transverse rib can be hooked by the blocking plate 512, and when the blocking plate 512 is installed, the fact that the position of the first positioning hole 516 of the blocking plate 512 is clung to the frame 515 or the position of the second positioning hole 517 of the blocking plate 512 is clung to the frame 515 does not need to be noticed; when the first positioning hole 516 of the blocking plate 512 is tightly attached to the frame 515, the second mounting bolt 518 passes through the first positioning hole 516, and the large end of the second mounting bolt 518 matches with the second nut to match with the blocking plate 512 and the frame 515; when the second positioning hole 517 of the blocking plate 512 is tightly attached to the frame 515, the second mounting bolt 518 passes through the second positioning hole 517, and the large end of the second mounting bolt 518 matches with the second nut to match with the blocking plate 512 and the frame 515, so that the blocking plate 512 is more conveniently mounted on the frame 515.
Finally, the above embodiments are only for illustrating the technical solutions of the present invention and not for limiting, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions may be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all of them should be covered in the claims of the present invention.

Claims (8)

1. The installation method of the rapid hoistway of the cargo lift is characterized by comprising the following steps:
s1, preparing the following components: the elevator car lifting guide device comprises four vertical beams, four guide rails and four transverse beams, wherein the horizontal sections of the vertical beams are L-shaped structures, each transverse beam is of a square frame structure, the guide rails are used for guiding the elevator car to lift, the inner wall of one side, corresponding to a landing door, of each transverse beam is a landing door inner wall, and the inner walls of the other three sides are basic inner walls;
s2, mounting a vertical beam: pouring a concrete layer on the ground, and inserting a vertical beam into the concrete layer;
s3, mounting a transverse beam: placing the transverse beams among four vertical beams, wherein the four vertical beams surround four corners of each transverse beam;
s4, installing a guide rail: the middle parts of the basic inner walls of the transverse beams are provided with guide rails, and the guide rails are connected with the middle parts of the transverse beams through screws.
2. The method for installing the package well of the glove cargo lift according to claim 1, wherein in step S3, the vertical beam and the transverse beam are connected by a clamping mechanism.
3. The method for installing the rapid loading shaft of the cargo lift according to claim 2, characterized in that the clamping mechanism comprises: the clamping jaw is pressed on the vertical beam by the pressing bolt, and the pressing bolt is installed on the transverse beam.
4. The method of installing the glove cargo lift quick-install hoistway of claim 3, wherein the claw comprises: the clamping device comprises a disc body and claw parts, wherein at least three claw parts are formed on one end face of the disc body in a protruding mode, the disc body is tightly attached to the large end of the pressing bolt, and the claw parts are pressed on the vertical beam and the transverse beam.
5. The method for installing the glove cargo lift quick-installation hoistway according to any one of claims 1 to 4, wherein the following components are prepared in step S1: and the door guide rail and the landing door device, after the step S3 is finished, the following steps are executed:
s5, mounting a door guide rail: a door guide rail is arranged at the joint of the transverse beam and the vertical beam;
s6, installing a landing door device: and a landing door device is arranged on the door guide rail and is arranged corresponding to the two adjacent transverse beams.
6. The method for installing the rapid package hoistway of the cargo lift according to claim 5, wherein the landing door device prepared in the step S1 comprises the following components: the door comprises an upper door body, a lower door body and a vertical driving mechanism;
the step S3 comprises the following steps:
s31, mounting an upper door body and a lower door body on a door guide rail mounted in the elevator shaft, wherein the upper door body and the lower door body can move in the vertical direction under the guidance of the door guide rail;
and S32, installing two vertical driving mechanisms beside the door guide rail, wherein the output end of one vertical driving mechanism is connected to the upper door body, and the output end of the other vertical driving mechanism is connected to the lower door body.
7. The method as claimed in claim 6, wherein one of the two transverse beams of each landing door assembly is a first transverse rib, and the other transverse beam is a second transverse rib;
the step of preparing the upper door body and the lower door body in the step S1 comprises the following steps:
s11, preparing parts of the upper door body and the lower door body: the upper door body and the lower door body both comprise: door plant, barrier plate and deflector: the door panel includes: the plate comprises a plate body and two frames, wherein each frame is composed of two side blocks;
s12, installing a frame: clamping the two side blocks on one side of the plate body to form a frame, and clamping the two side blocks on the other side of the plate body to form another frame;
s13, installing a guide plate: the guide plates are arranged on the two frames through a first mounting bolt and a first nut, the large end of the first mounting bolt and the first nut clamp the two side blocks of the frames and the guide plates, and the guide plates are arranged at the upper end and the lower end of the plate body;
s14, mounting a blocking plate: and a blocking plate is arranged at the end part of the frame and hooks the first transverse rib or the second transverse rib.
8. The method for installing the rapid loading hoistway of the cargo lift of the sundries according to claim 7, wherein the blocking plate is of a structure like a '12579', one side of the blocking plate is provided with two first positioning holes, the other side of the blocking plate is provided with two second positioning holes, the first positioning holes and the second positioning holes are used for the second installation bolts to pass through, the second installation bolts pass through the frame, and the second installation bolts are matched with second nuts to clamp the blocking plate and the frame tightly.
CN202211565573.XA 2022-12-07 2022-12-07 Method for installing sundry goods elevator fast-assembling shaft way Pending CN115872255A (en)

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CN202211565573.XA CN115872255A (en) 2022-12-07 2022-12-07 Method for installing sundry goods elevator fast-assembling shaft way

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Application Number Priority Date Filing Date Title
CN202211565573.XA CN115872255A (en) 2022-12-07 2022-12-07 Method for installing sundry goods elevator fast-assembling shaft way

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CN115872255A true CN115872255A (en) 2023-03-31

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CN113602937A (en) * 2021-08-12 2021-11-05 广东奥菱电梯有限公司 Installation process of elevator hoistway

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CN214456075U (en) * 2021-02-24 2021-10-22 中国新兴建设开发有限责任公司 Construction stage indoor elevator baffle protector
CN113602937A (en) * 2021-08-12 2021-11-05 广东奥菱电梯有限公司 Installation process of elevator hoistway

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