Rail system for construction elevator
The construction elevator track system, designed with lightweight standard sections and multi-point positioning connections, solves the problems of large weight, large size and poor stability of existing construction elevator track systems, achieving convenient installation and high stability, and ensuring construction safety.
Patent Information
- Application Number
- CN202210086470.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-25
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2042-01-25
AI Technical Summary
The existing construction elevator track system is heavy and bulky, which is not conducive to on-site installation, disassembly and transportation. Moreover, the structural stability after installation is poor, which poses a construction safety hazard.
It adopts a lightweight plate-type standard section and multi-point positioning connection design, including a base, plate-type standard section, wall mount and sliding contact line. Through the precise docking of the bottom positioning part and the support frame, the connection points are increased and the structural stability is improved.
The lightweight and compact design of the construction elevator track system facilitates installation, disassembly, and transportation, thereby improving the safety and structural stability of the construction site.
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Figure CN114314258B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of construction equipment, in particular to a track system of a construction elevator. BACKGROUND
[0002] When building a high-rise building, a construction elevator needs to be installed at the construction site to enable workers to quickly reach the desired height. One approach in the prior art is to install a vertical elevator track at the construction site, and a elevator car travels along the elevator track to ascend and descend, and the elevator car serves the purpose of carrying people or carrying objects.
[0003] The existing track system has a large overall weight and volume, which is not conducive to on-site installation, disassembly and transportation, and the overall structural stability of the track system after installation is poor, which can easily cause construction accidents during construction. SUMMARY
[0004] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application proposes a track system of a construction elevator, which has a small overall weight and volume, is convenient for on-site installation, disassembly and transportation, and has high structural stability after installation.
[0005] The embodiment of the present application provides a track system of a construction elevator, which comprises a base, a sheet type standard section, a wall seat and a slide contact line, wherein the base comprises a base body, a first bottom support assembly and a second bottom support assembly, the base body is used to be placed on a foundation, the first bottom support assembly and the second bottom support assembly are arranged on the top of the base body and are connected, the first bottom support assembly comprises two first bottom support columns arranged vertically, and the first bottom support assembly is provided with a first bottom positioning part on the top; the sheet type standard section is a plurality of sections, the plurality of sheet type standard sections are connected in a top-down manner, the lowermost sheet type standard section is connected to the base, the sheet type standard section comprises a guide frame and a support frame, the guide frame comprises two guide columns and a connecting rod, the two guide columns are arranged vertically, and the connecting rod is connected between the two guide columns, the support frame is arranged vertically, the support frame is fixedly connected to the horizontal side of the guide frame, and the support frame is provided with a support mounting hole; when the sheet type standard sections are connected, the two guide columns of the upper sheet type standard section are respectively connected to the two guide columns of the lower sheet type standard section, and the support frame of the upper sheet type standard section is connected to the support frame of the lower sheet type standard section; the top and the bottom of the guide frame are respectively provided with a guide frame upper positioning part and a guide frame lower positioning part, and when the sheet type standard sections are connected, the guide frame lower positioning part of the upper sheet type standard section is connected to the guide frame upper positioning part of the lower sheet type standard section; the top and the bottom of the support frame are respectively provided with a support upper connecting part and a support lower connecting part, and when the sheet type standard sections are connected, the support lower connecting part of the upper sheet type standard section is connected to the support upper connecting part of the lower sheet type standard section; the two guide columns of the lowermost guide frame are connected to the two first bottom support columns of the first bottom support assembly, and the guide frame lower positioning part is connected to the first bottom positioning part; the lowermost support frame is connected to the top of the second bottom support assembly; the wall seat is a plurality of seats and is arranged in at least one row, the plurality of wall seats in each row are arranged on the sheet type standard section in a vertically spaced manner, each wall seat is connected to the support mounting hole of the support frame, and the slide contact line comprises a plurality of slide contact line single sections, the slide contact line single sections are connected in a top-down manner, and each slide contact line is connected to the sheet type standard section.
[0006] The track system of the construction elevator provided by the embodiment of the present application connects the guide frame of the lowermost sheet type standard section and the first bottom support assembly of the base through the lower positioning part and the first bottom positioning part, connects the support frame of the lowermost sheet type standard section and the second bottom support assembly of the base, connects the plurality of sheet type standard sections through the upper positioning part and the lower positioning part on the guide frame in sequence, arranges a plurality of wall seats on the sheet type standard section in a vertical direction through the support mounting hole of the support frame, and further arranges a plurality of slide contact line single sections on the sheet type standard section. Compared with the track system in the related art, the track system has a small volume and weight, is convenient to install, disassemble and transport on site, has high overall structural stability after installation, and guarantees the safety of the lifting construction operation.
[0007] In a possible implementation of the present application, the base further comprises at least one bottom support leg, and the base body is vertically adjustably connected to the bottom support leg. The bottom support leg can adjust the distance between the base body and the foundation in the vertical direction, thereby adjusting the distance between the track system and the foundation.
[0008] In a possible implementation of the present application, the base body is provided with a bottom support hole, the bottom support leg comprises a bottom support screw, the bottom support screw is vertically arranged in the bottom support hole, and a fastening nut is arranged on the upper and lower sides of the base body and matched with the bottom support screw. By changing the position of the base body on the bottom support screw, the height of the base can be adjusted, which is simple and convenient to operate.
[0009] In a possible implementation of the present application, the top of the support frame is provided with a support upper positioning part, the bottom of the support frame is provided with a support lower positioning part, the support lower positioning part of the upper piece type standard section is connected to the support upper positioning part of the lower piece type standard section during splicing, the top of the second bottom support assembly is provided with a second bottom positioning part, and the support lower positioning part of the lowermost piece type standard section is connected to the second bottom positioning part on the top of the second bottom support assembly during splicing. The support upper positioning part and the support lower positioning part are used for mounting and positioning between the support frames of the two piece type standard sections during splicing, so that the splicing process is more accurate and efficient, the connection stability between the support frame and the guide frame after splicing and mounting is improved, and the connection between the support frame and the attached wall support after connection maintains good tensile and torsional resistance.
[0010] In a possible implementation of the present application, the support frame comprises two vertical support longitudinal rods, the two guide columns of the upper piece type standard section are respectively connected to the two guide columns of the lower piece type standard section during splicing, and the second bottom support assembly comprises two vertical second bottom support columns, the two support longitudinal rods of the lowermost support frame are connected to the two second bottom support columns of the second bottom support assembly, the support upper positioning part and the support lower positioning part are arranged at the two ends of the support longitudinal rod, one of the support upper positioning part and the support lower positioning part is a matched column, and the other is a matched hole matched with the matched column, and the support longitudinal rod is a pipe body, and the pipe opening at one end of the pipe body forms the matched hole.
[0011] The support frame is formed by vertical support longitudinal rods and a plurality of horizontal second horizontal connecting rods, and is positioned and connected by the support upper positioning part, the support lower positioning part, and the support upper connecting part and the support lower connecting part, so as to improve the overall structural stability of the support frame, make the connection between the support frame and the attached wall support more stable, and make the connection between the support frame and the guide frame more firm, so that the structural stability of the piece type standard section is stronger. The support upper positioning part and the support lower positioning part are positioned and connected by the matched column and the matched hole, so that the installation process is simple and convenient, and the installation efficiency is improved.
[0012] In a possible implementation of the present application, the wall-attached seat comprises a first fixing plate, a second fixing plate and a connecting plate, the first fixing plate is provided with a first fixing hole, the first fixing hole is a long hole, the first fixing hole is used for connecting a pre-buried part on the building, the second fixing plate is provided with a second fixing hole, the second fixing hole is connected with a support mounting hole of the sheet type standard section, the connecting plate is connected between the first fixing plate and the second fixing plate, the first fixing plate is provided with a positioning part, and the positioning part is used for positioning a gasket or a nut matched with the pre-buried part.
[0013] In a possible implementation of the present application, the slide wire single section comprises a support pipe, a wire body, a first power connection group and a second power connection group, the support pipe is provided with a sliding opening on the pipe wall, the sliding opening is provided through along the length direction of the support pipe, the pipe cavity of the support pipe comprises a first sub-area and a second sub-area, the first sub-area is opposite to the sliding opening, and the rest of the pipe cavity except the first sub-area is the second sub-area, the inner wall of the support pipe is provided with a partition wall extending towards the first sub-area, the partition wall separates the second sub-area into at least two installation grooves, the installation grooves are through along the length direction of the support pipe, and each installation groove forms a matching opening on the side towards the first sub-area, the wire body is at least two and is correspondingly matched in the installation grooves, the first power connection group is located at one end of the support pipe, the first power connection group comprises a first power connection part connected with the wire body in one-to-one correspondence, the second power connection group is located at the other end of the support pipe, the second power connection group comprises a second power connection part connected with the wire body in one-to-one correspondence, and when two slide wire single sections are spliced along the length direction, each first power connection part of one slide wire single section is detachably butted with the corresponding second power connection part of the other slide wire single section.
[0014] In a possible implementation of the present application, the wire body has a conductive contact surface, the conductive contact surface is arranged towards the matching opening, the cross section of the conductive contact surface perpendicular to the length direction is an arc, and the arc is recessed into the installation groove from both ends to the middle.
[0015] In a possible implementation of the present application, the first power connection part is connected to the wire body through a first fastening part, the second power connection part is connected to the wire body through a second fastening part, and the first fastening part and the second fastening part both stop and fix the wire body on the support pipe.
[0016] In a possible implementation of the present application, the rack further comprises a plurality of rack single sections, the rack single sections are connected in up-down splicing, each rack is connected to the sheet type standard section, and the rack is located on the side of the sheet type standard section away from the wall-attached support.
[0017] Additional aspects and advantages of the application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0018] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0019] Figure 1 This is a schematic diagram of the track system of the construction elevator provided in the embodiments of this application;
[0020] Figure 2 This is a schematic diagram of the base of the track system of the construction elevator provided in this application embodiment;
[0021] Figure 3 This is a schematic diagram of the bottom support leg of the track system of the construction elevator provided in this application embodiment;
[0022] Figure 4 This is a schematic diagram of a three-dimensional structure of a sheet-type standard section at an angle provided in an embodiment of this application;
[0023] Figure 5 This is another three-dimensional schematic diagram of the standard section of the track system of the construction elevator provided in the embodiments of this application;
[0024] Figure 6 This is a three-dimensional structural diagram of the plate-type standard section after the rack is installed, as provided in the embodiments of this application.
[0025] Figure 7 This is an assembly diagram of a plate-type standard section with a rack provided in an embodiment of this application;
[0026] Figure 8 This is a schematic diagram of the front view structure of the standard sheet section provided in the embodiments of this application;
[0027] Figure 9 This is provided by the embodiments of this application. Figure 8 Schematic diagram of section AA;
[0028] Figure 10 This is a top view of the sheet-type standard section provided in the embodiments of this application;
[0029] Figure 11 This is provided by the embodiments of this application. Figure 10 Enlarged view of the structure of region P in the middle;
[0030] Figure 12 This is a three-dimensional schematic diagram of the wall mount provided in the embodiments of this application;
[0031] Figure 13 This is a perspective view of the wall-mounted connection component provided in the embodiments of this application;
[0032] Figure 14 This is a three-dimensional schematic diagram of the gasket of the wall-mounted connection assembly provided in the embodiments of this application;
[0033] Figure 15 is a perspective view of a single section of the slide wire provided by an embodiment of the present application;
[0034] Figure 16 is a perspective view of one end of a single section of the slide wire provided by an embodiment of the present application;
[0035] Figure 17 is a perspective view of the other end of a single section of the slide wire provided by an embodiment of the present application;
[0036] Figure 18 is a side view of a single section of the slide wire provided by an embodiment of the present application;
[0037] Figure 19 is a cross-sectional view of a wire body of a single section of the slide wire provided by an embodiment of the present application;
[0038] Figure 20 is a cross-sectional view of a fastening assembly of a single section of the slide wire provided by an embodiment of the present application;
[0039] Figure 21 is a side view of a support tube of a single section of the slide wire provided by an embodiment of the present application.
[0040] Reference signs:
[0041] 1 - base; 11 - base body; 111 - horizontal column; 1111 - pre-installed mounting hole; 112 - vertical column; 113 - upper connecting plate; 1131 - upper reinforcing plate; 114 - lower connecting plate; 1141 - lower reinforcing plate; 12 - first bottom support assembly; 121 - first bottom support column; 13 - second bottom support assembly; 131 - second bottom support column; 14 - bottom positioning part; 141 - first bottom positioning part; 142 - second bottom positioning part; 15 - bottom support leg; 151 - bottom support screw rod; 152 - fastening nut; 153 - foot pad; 1531 - bottom support sleeve; 1532 - bottom support reinforcing rib;
[0042] 2 - sheet-shaped standard section; 21 - guide frame; 211 - guide column; 212 - connecting rod; 2121 - first horizontal connecting rod; 2122 - first inclined connecting rod; 213 - upper guide frame positioning part; 214 - lower guide frame positioning part; 215 - upper guide frame connecting hole; 216 - lower guide frame connecting hole; 22 - support frame; 221 - support vertical rod; 222 - second horizontal connecting rod; 223 - support mounting hole; 224 - upper support connecting part; 225 - lower support connecting part; 226 - upper support positioning part; 227 - lower support positioning part; 23 - rack; 24 - bolt;
[0043] 3 - wall connecting assembly; 31 - wall connecting seat; 311 - first fixing plate; 3111 - first fixing hole; 3112 - positioning part; 312 - second fixing plate; 3121 - second fixing hole; 313 - connecting plate; 314 - reinforcing plate; 32 - embedded screw rod; 33 - gasket; 331 - clamping part;
[0044] 4 - slide wire single section; 41 - support tube; 411 - sliding port; 412 - lumen; 4121 - first sub-region; 4122 - second sub-region; 413 - partition wall; 4131 - corner wall; 4132 - transverse wall; 414 - mounting groove; 4141 - matching port; 4142 - first mounting groove; 4143 - second mounting groove; 4144 - blocking strip; 415 - mounting hole; 416 - clamping groove; 42 - wire body; 421 - conductive contact surface; 422 - protruding strip; 423 - contact piece; 424 - positioning piece; 425 - inner cavity; 426 - clamping piece; 43 - first power connection group; 431 first power connection piece; 4311 - first fastening part; 44 - second power connection group; 441 - second power connection piece; 4411 - second fastening part; 45 - fastening assembly; 451 - fastening plate; 4511 - threaded hole; 452 - locking screw; 46 - soft rubber curtain; 461 - clamping column; 47 - connecting sleeve. DETAILED DESCRIPTION
[0045] The embodiments of the present application are described below in detail with reference to the accompanying drawings, wherein the same or similar components are denoted by the same or similar reference numerals throughout the drawings. The embodiments described below by reference to the drawings are exemplary and are for the purpose of explaining the present application, and should not be understood as limiting the present application.
[0046] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the features defined as "first", "second" can be explicitly or implicitly included one or more features. In the description of the present application, unless otherwise stated, the meaning of "a plurality of" is two or more.
[0047] In the description of the present application, it should be noted that unless specifically stated and limited otherwise, the terms "mounting", "connected", "connection" should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integrally connected; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0048] The track system of the construction elevator according to the embodiments of the present application is described below with reference to the accompanying drawings.
[0049] Referring to Figure 1 , the present application provides a track system of a construction elevator, comprising a base 1, a sheet type standard section 2, a wall attachment base 3 and a slide wire 4.
[0050] Referring to Figures 2-3 , the base 1 comprises a base body 11, a first bottom support assembly 12 for connecting with a guide frame 21 of the sheet type standard section 2 and a second bottom support assembly 13 for connecting with a support frame 22 of the sheet type standard section 2, wherein the base body 11 is used for placing on a foundation, the first bottom support assembly 12 is arranged at the top of the base body 11, the first bottom support assembly 12 comprises two vertically arranged first bottom support columns 121, the two first bottom support columns 121 are used for abutting with guide columns 211 on both sides of the guide frame 21, the guide columns 211 are used for guiding guide wheels or sliding blocks, the second bottom support assembly 13 is arranged at the top of the base body 11, the support frame 22 is used for connecting with the wall attachment base 31, and the top of at least one of the first bottom support assembly 12 and the second bottom support assembly 13 is provided with a bottom positioning portion 14 to cooperate with a positioning structure at the bottom of the sheet type standard section 2 to position;
[0051] Referring to Figures 4-11 , the sheet type standard section 2 comprises the guide frame 21 and the support frame 22, the guide frame 21 comprises two guide columns 211 and a connecting rod 212, the two guide columns 211 are vertically arranged, the connecting rod 212 is connected between the two guide columns 211, the guide columns 211 are used for guiding guide wheels or sliding blocks, the support frame 22 is vertically arranged, the support frame 22 is fixedly connected to the horizontal side of the guide frame 21, the support frame 22 is provided with a support mounting hole 223, the support mounting hole 223 is used for connecting with the wall attachment base 31, the top of the guide frame 21 is provided with a guide frame upper positioning portion 213, the bottom of the guide frame 21 is provided with a guide frame lower positioning portion 214, so that the guide frame lower positioning portion 214 of the upper sheet type standard section 2 is abutted on the guide frame upper positioning portion 213 of the lower sheet type standard section 2 when splicing, the top of the support frame 22 is provided with a support upper connecting portion 224, and the bottom of the support frame 22 is provided with a support lower connecting portion 225, so that the support lower connecting portion 225 of the upper sheet type standard section 2 is connectable on the support upper connecting portion 224 of the lower sheet type standard section 2 when splicing;
[0052] With reference to Figures 12-14 The wall-attached base 31 comprises a first fixed plate 311, a second fixed plate 312, and a connecting plate 313. The first fixed plate 311 is provided with a first fixed hole 3111, which is a long hole and is used to connect a pre-buried part on a building. The second fixed plate 312 is provided with a second fixed hole 3121, which is used to connect the sheet-shaped standard section 2. The connecting plate 313 is connected between the first fixed plate 311 and the second fixed plate 312. The first fixed plate 311 is provided with a positioning part 3112, which is used to position a gasket 33 or a nut matched with the pre-buried part.
[0053] With reference to Figures 15-21 The slide-wire single section 4 comprises a support tube 41, a wire body 42, a first power connection group 43, and a second power connection group 44. The support tube 41 is provided with a sliding opening 411 on the tube wall, which is arranged through along the length direction of the support tube 41. The tube cavity of the support tube 41 comprises a first sub-zone 4121 and a second sub-zone 4122. The first sub-zone 4121 is opposite to the sliding opening 411, and the rest of the tube cavity 412 except the first sub-zone 4121 is the second sub-zone 4122. The inner wall of the support tube 41 is provided with a partition wall 413 extending towards the first sub-zone 4121, which separates the second sub-zone 4122 into at least two installation grooves 414. The installation grooves 414 are arranged through along the length direction of the support tube 41. Each installation groove 414 forms a matching opening 4141 on the side towards the first sub-zone 4121. The wire body 42 is at least two and is correspondingly matched in the installation grooves 414. The first power connection group 43 is located at one end of the support tube 41 and comprises a first power connection part 431 connected with the wire body 42 one by one. The second power connection group 44 is located at the other end of the support tube 41 and comprises a second power connection part 431 connected with the wire body 42 one by one. When two slide-wire single sections 4 are spliced along the length direction, each first power connection part 431 of one slide-wire single section 4 is detachably butted with the corresponding second power connection part 441 of the other slide-wire single section 4.
[0054] The track system of the construction elevator provided by the embodiment of the application connects the guide frame 21 of the lowermost sheet type standard section 2 and the first bottom support assembly 12 of the base 1 through the bottom positioning part 14 and the first bottom positioning part 141, connects the support frame 22 of the lowermost sheet type standard section 2 and the second bottom support assembly 13 of the base 1, and connects a plurality of sheet type standard sections 2 together in sequence through the guide frame upper positioning part 213 and the guide frame lower positioning part 214 on the guide frame 21, so that the track system of the required height or length can be spliced and installed, the track system formed by the spliced and installed sheet type standard sections 2 has more positioning connection points, the stability of the structure is improved, a plurality of wall attachment bases 31 are arranged on the sheet type standard section 2 in the vertical direction along the support base mounting hole 223 of the support frame 22, the stability of the sheet type standard section 2 during the lifting operation is improved, a plurality of slide contact line single sections 4 are arranged on the sheet type standard section 2, the lead wire body 42 is arranged in the support pipe 41, the lead wire body 42 can be insulated, during use, two slide contact line single sections 4 are spliced in the length direction through the first power connection group 43 and the second power connection group 44, different numbers of slide contact line single sections 4 can be selected according to different distances, and the purpose of reducing the use cost is achieved. Compared with the related art, the overall weight and volume of the track system are large, the installation, disassembly and carrying of the track system on the construction site are not convenient, and the overall structural stability of the track system after installation is poor. The track system of the embodiment of the application is simple and compact in overall structure, small in volume and weight, convenient to install, disassemble and carry on the construction site, and high in overall structural stability after installation, so that the safety of the lifting operation is ensured.
[0055] The structure of the base 1 of the track system of the construction elevator will be described below with reference to Figures 2-3 .
[0056] With reference to Figure 2 , the second bottom support assembly 13 includes at least one vertically arranged second bottom support column 131, the bottom positioning part 14 includes the first bottom positioning part 141 and the second bottom positioning part 142, the first bottom positioning part 141 is arranged at the top of the at least one first bottom support column 121, and the second bottom positioning part 142 is arranged at the top of the at least one second bottom support column 131.
[0057] During installation, the first bottom positioning part 141 is connected with the positioning structure of the guide frame, the second bottom positioning part 142 is connected with the positioning structure of the support frame, the structural stability of the base after being connected with the sheet type standard section 2 is improved through the connection of a plurality of positioning points.
[0058] Specifically, the two first bottom support columns 121 are fixed together through a connecting column in the embodiment of the application, the second bottom support column 131 is fixed on the connecting column, and the second bottom support column 131 is provided with two, the top of the two first bottom support columns 121 is provided with a first bottom positioning part 141, and the top of the two second bottom support columns 131 is provided with a second bottom positioning part 142. By providing the positioning part at the top of each bottom support column, the number of positioning points is increased, and the stability of the structure is improved.
[0059] Further, any one of the first bottom support column 121 and the second bottom support column 131 can be a circular pipe or a non-circular pipe. In order to cooperate with the sheet type standard joint 2, the first bottom support column 121 adopts a circular pipe, and the second bottom support column 131 adopts a square pipe in the embodiment of the application.
[0060] It should be noted that the connecting column adopts a square pipe, and the top of the connecting column is provided with a connecting hole which cooperates with a guide frame connecting hole on the guide frame frame and fixes the guide frame frame and the base together through a fastener.
[0061] Referring to Figure 2 , the bottom positioning part 14 in the embodiment of the application includes at least one of a plug-in sleeve and a plug-in hole, which cooperates with the positioning structure through the plug-in sleeve or the plug-in hole, is convenient to operate, and has high installation efficiency.
[0062] Specifically, the bottom positioning part 14 in the embodiment of the application is a plug-in sleeve, and the plug-in sleeve is a conical sleeve. In order to improve the stability when the positioning part is connected with the sheet type standard joint 2, the maximum diameter of the conical sleeve of the first bottom positioning part 141 is the same as the inner diameter of the guide column, and the conical sleeve of the second bottom positioning part 142 is tangent to the support vertical rod at the maximum diameter. When installing, the conical sleeve of the base is inserted into the plug-in hole of the sheet type standard joint 2 to be positioned, which is convenient to operate.
[0063] Referring to Figure 2 and Figure 3 , the base 1 of the track system in the embodiment of the application further includes at least one bottom support leg 15, and the base body 11 is connected to the bottom support leg 15 in a vertical adjustable manner, so that the height of the track system relative to the foundation can be adjusted within a certain range.
[0064] Referring to Figure 2 , the bottom support leg 15 in the embodiment of the application is four, and is arranged corresponding to the four corners of the base body 11, which facilitates adjustment of the levelness of the base body 11, and the plurality of bottom support legs 15 support the base body 11, which can improve the stability of the support.
[0065] Referring to Figure 2 and Figure 3In the embodiment of the application, the base 11 is provided with a support hole, the support leg 15 comprises a support screw 151 vertically arranged in the support hole, and the support screw 151 is provided with a fastening nut 152 on the upper and lower sides of the base 11. The distance between the base 11 and the foundation can be adjusted by adjusting the position of the fastening nut 152 on the support screw 151, which is simple and convenient to operate.
[0066] With reference to Figure 3 In the embodiment of the application, the support leg 15 further comprises a foot pad 153, the foot pad 153 is used to be placed on the foundation, the foot pad 153 is provided with a support sleeve 1531, the foot pad 153 is connected with a support reinforcing rib 1532 at the outer periphery of the support sleeve 1531, and the lower end of the support screw 151 is inserted into the support sleeve 1531. The support screw 151 is placed on the foundation through the foot pad 153, thereby improving the stability of the base, the foot pad 153 is connected with the support reinforcing rib 1532 at the outer periphery of the support sleeve 1531, thereby preventing the support sleeve 1531 from being skewed and improving the stability of the support sleeve 1531 and prolonging the service life of the foot pad 153.
[0067] Specifically, the foot pad 153 is a square, the support sleeve 1531 is located at the geometric center of the foot pad 153, and the support reinforcing ribs 1532 are uniformly distributed at the outer periphery of the support sleeve 1531, so that the outer periphery of the support sleeve 1531 is uniformly supported.
[0068] It should be noted that the number of the support reinforcing ribs 1532 can be two or more than two, in order to uniformly support the outer periphery of the support sleeve 1531 and considering the structural cost, four support reinforcing ribs 1532 are arranged at the outer periphery of each support sleeve 1531 in the embodiment of the application. In order to improve the supporting effect of the support reinforcing rib 1532, the support reinforcing rib 1532 is a right-angled trapezoidal plate in the embodiment of the application, and one right-angled side is fixed with the support sleeve 1531 and the other right-angled side is fixed with the foot pad 153.
[0069] With reference to Figure 2 In the embodiment of the application, the base 11 further comprises a horizontal column 111 arranged horizontally and two groups of vertical columns 112 arranged vertically, the two groups of vertical columns 112 are arranged near the two ends of the horizontal column 111, each group of vertical columns 112 has at least two vertical columns 112 and is connected to the horizontal sides of the horizontal column 111, the upper ends of the vertical columns 112 in the same group are connected through an upper connecting plate 113, the lower ends of the vertical columns 112 in the same group are connected through a lower connecting plate 114, the upper connecting plate 113 and the lower connecting plate 114 are provided with corresponding support holes for connecting the support leg 15, and each upper connecting plate 113 is connected with a first support column 121. The base 11 is formed by combining the vertical columns 112, the horizontal column 111, the upper connecting plate 113 and the lower connecting plate 114, which has a simple structure and is easy to install, and the vertical columns 112 play a supporting role in the longitudinal direction for the overall structure of the track system.
[0070] With reference to Figure 2 In the embodiment of the application, the horizontal column 111 is provided with preset mounting holes 1111 on both sides of the two groups of vertical columns 112, the preset mounting holes 1111 are long holes, and are used to connect the embedded parts on the building. The base is fixed with the building through the connection of the preset mounting holes 1111 and the embedded parts, so that the track system structure is fixed and is not easy to move.
[0071] With reference to Figure 2 In the embodiment of the application, the horizontal column 111 and the vertical column 112 are square tubes, the upper connecting plate 113 is welded with an upper reinforcing plate 1131 corresponding to the vertical column 112, and the lower connecting plate 114 is welded with a lower reinforcing plate 1141 corresponding to the vertical column 112. The horizontal column 111 is limited between the vertical columns by being provided as a square tube, so that the overall stability of the base body 11 is improved, the upper reinforcing plate 1131 is welded on the upper connecting plate 113 corresponding to the vertical column 112, and the lower reinforcing plate 1141 is welded on the lower connecting plate 114 corresponding to the vertical column 112, so as to prevent the upper connecting plate 113 and the lower connecting plate 114 from being abraded when the fastening screw is connected with the bottom support screw rod 151, and the service life of the base body 11 is improved.
[0072] With reference to Figures 4-11 The structure of the sheet type standard section 2 of the track system of the construction elevator is described.
[0073] In the embodiment of the application, the support frame 22 can be detachably connected to the guide frame 21 through screws or bolts 24, or can be fixedly connected to the guide frame 21 through welding.
[0074] In some embodiments, the height of the sheet type standard section 2 in the vertical direction after assembly can be 0.3m-1.5m, and the width in the horizontal direction can be 0.2m-1m. Appropriate specifications of the sheet type standard section 2 can be selected and set according to the actual construction site and environment for assembly.
[0075] In the embodiment of the application, the sheet type standard section 2, with reference to Figures 4-5 The guide column 211 is a pipe body, the upper guide frame positioning part 213 and the lower guide frame positioning part 214 are arranged at both ends of the guide column 211, one end of the pipe body forms a socket and serves as one of the upper guide frame positioning part 213 and the lower guide frame positioning part 214, and the other end of the pipe body forms a plug matching the socket and serves as the other one of the upper guide frame positioning part 213 and the lower guide frame positioning part 214. During installation, the plug of the guide frame 21 of the upper sheet type standard section 2 is inserted and fixed with the socket of the guide frame 21 of the lower sheet type standard section 2, so that the splicing and installation between the guide frames of the sheet type standard section 2 are completed, the installation process is simple and convenient, and the installation efficiency is improved.
[0076] Further, referring to Figures 10-11 , the plug-in cylinder is a conical cylinder, the vertex end of the conical cylinder is more convenient to insert into the insertion hole, and the side wall of the conical cylinder can play a guiding role, so that the plug-in process is more convenient and efficient.
[0077] Optionally, when the guide column 211 is a circular pipe, the maximum diameter of the conical cylinder is equal to the inner diameter of the circular pipe; when the guide column 211 is a non-circular pipe, the conical cylinder is tangent to the insertion hole at the maximum diameter. The conical cylinder is tangent to the insertion hole at the maximum diameter, so that the butt joint between the plug-in cylinder and the insertion hole at the plug-in position is more secure, reducing the shaking condition after splicing, and improving the stability of the connection of the guide frame 21.
[0078] In some embodiments, the inner wall of the insertion hole of the guide column 211 can be provided with a clamping groove, and the outer wall of the plug-in cylinder can be provided with a clamping rib matched with the clamping groove. The clamping rib of the plug-in cylinder is in interference fit at the opening of the insertion hole, the clamping rib is clamped into the clamping groove after the plug-in cylinder is plugged into the insertion hole, and the outer wall of the plug-in cylinder is attached to the inner wall of the insertion hole. To strengthen the firmness of the splicing between the guide frame 21.
[0079] In the embodiment of the application, the sheet type standard section 2, referring to Figures 4-7 , the connecting rod 212 includes a plurality of first horizontal connecting rods 2121 and first inclined connecting rods 2122, wherein the plurality of first horizontal connecting rods 2121 are vertically spaced apart, each first horizontal connecting rod 2121 is horizontally arranged, and the two ends of each first horizontal connecting rod 2121 are respectively connected to two guide columns 211. The first horizontal connecting rod 2121 arranged plays a role of horizontal support between the two guide columns 211, making the connection between the two guide columns 211 more secure.
[0080] Further, the first inclined connecting rod 2122 is inclinedly arranged between the adjacent two first horizontal connecting rods 2121, and the first inclined connecting rod 2122 arranged plays a role of oblique support and reinforcement of the sheet type standard section 2 on the basis of the horizontal support of the first horizontal connecting rod 2121, reduces the risk of deformation of the sheet type standard section 2 under oblique pressure, and improves the tensile and torsional resistance of the guide frame 21.
[0081] In some embodiments, the two ends of the first inclined connecting rod 2122 can be respectively connected to be fixed on the two guide columns 211, or can be respectively connected to be fixed on the adjacent two first horizontal connecting rods 2121, or can be connected to be fixed on the guide column 211 at one end and connected to be fixed on the first horizontal connecting rod 2121 at the other end.
[0082] In the embodiment of the application, the sheet type standard section 2, referring to Figures 4-7The uppermost first cross connecting rod 2121 is provided with a guide frame upper connecting hole 215, and the lowermost first cross connecting rod 2121 is provided with a guide frame lower connecting hole 216, so that the guide frame lower connecting hole 216 of the upper piece type standard joint 2 is connected to the guide frame upper connecting hole 215 of the lower piece type standard joint 2 by a bolt 24 during splicing; each first cross connecting rod 2121 is fixedly connected with the support frame 22. The piece type standard joint 2 is further connected by the first cross rod and the bolt 24 to continue to reinforce the structure stability of the track system after the piece type standard joint 2 is spliced and installed; and each first cross connecting rod 2121 is connected and fixed with the support frame 22, so that the connection between the support frame 22 and the guide frame 21 is more firm, and the structure stability of the piece type standard joint 2 is stronger.
[0083] In some embodiments, referring to Figures 4-5 The top of the support frame 22 is provided with a support upper positioning part 226, and the bottom of the support frame 22 is provided with a support lower positioning part 227. The support upper positioning part 226 and the support lower positioning part 227 are used for positioning and installing the support frames 22 of the two piece type standard joints 2 during splicing, so that the splicing process is more accurate and efficient, and the connection stability between the support frame 22 and the guide frame 21 after splicing and installation is improved, so that the connection between the support frame 22 and the wall-attached support after connection maintains good tensile and torsional resistance.
[0084] Further, the support frame 22 includes a second cross connecting rod 222 and two support vertical rods 221, the two support vertical rods 221 are vertically arranged, the second cross connecting rod 222 is at least two and vertically spaced, each second cross connecting rod 222 is horizontally arranged, and the two ends of each second cross connecting rod 222 are respectively connected to the two support vertical rods 221, the support upper positioning part 226 and the support lower positioning part 227 are arranged at the two ends of the support vertical rod 221, the support mounting hole 223 is arranged on the support vertical rod 221, the guide frame 21 is fixedly connected with the support vertical rod 221, and the support upper connecting part 224 and the support lower connecting part 225 are arranged on the second cross connecting rod 222.
[0085] The support frame 22 is formed by the vertical support vertical rod 221 and the horizontal second cross connecting rod 222, and the overall structure stability of the support frame 22 is improved by the positioning and connection of the support upper positioning part 226, the support lower positioning part 227, the support upper connecting part 224 and the support lower connecting part 225, so that the connection between the support frame 22 and the wall-attached support is more stable, and the connection between the support frame 22 and the guide frame 21 is more firm, and the structure stability of the piece type standard joint 2 is stronger.
[0086] It can be understood that the support frame 22 as a sub-frame connected with the wall support, the stability of the structure affects the safety of the whole sheet standard section 2, in addition to the bolt 24 reinforcement between the support frame 22 and the guide frame 21, the upper and lower end splicing and fixing, and the structure reinforcement of the horizontal and vertical connecting rods and the inclined connecting rods, make the connection between the support frame 22 and the guide frame 21 more firm, and the stability of its own structure is also strengthened, so that even when the external force in different directions acts on the sheet standard section of the application, the support frame 22 and the guide frame 21 can maintain good structural stability, reduce the risk of structural deformation or deviation, and improve the safety of construction.
[0087] Optionally, one of the support upper positioning part 226 and the support lower positioning part 227 is a matching column, and the other is a matching hole matched with the matching column; the support vertical rod 221 is a pipe body, and one end of the pipe body is provided with a pipe opening to form the matching hole.
[0088] During installation, the matching column of the support frame 22 of the upper sheet standard section 2 is inserted and fixed with the matching hole of the guide frame 21 of the lower sheet standard section 2, so that the splicing and installation between the support frames 22 of the sheet standard sections 2 can be completed, and the support upper positioning part 226 and the support lower positioning part 227 are positioned and connected by the column and hole matching, so that the installation process is simple and convenient, and the installation efficiency is improved.
[0089] In the sheet standard section 2 of the embodiment of the application, the support frame 22 is connected with the guide frame 21 through the bolt 24. Figures 6-7 Further, the rack 23 is vertically arranged and connected with the guide frame 21. The rack 23 is used as a guide structure to engage with a direction control structure of the lifting elevator, and plays a vertical guiding role for the lifting elevator, so that the lifting elevator can keep vertical lifting and less running deviation.
[0090] Further, the rack 23 is vertically arranged and connected with the guide frame 21. The rack 23 is used as a guide structure to engage with a direction control structure of the lifting elevator, and plays a vertical guiding role for the lifting elevator, so that the lifting elevator can keep vertical lifting and less running deviation. Figure 7 Further, the rack 23 is vertically arranged and connected with the guide frame 21. The rack 23 is used as a guide structure to engage with a direction control structure of the lifting elevator, and plays a vertical guiding role for the lifting elevator, so that the lifting elevator can keep vertical lifting and less running deviation.
[0091] In the sheet standard section 2 of the embodiment of the application, the matching column is a conical cylinder; when the support vertical rod 221 is a circular pipe, the maximum diameter of the conical cylinder is equal to the inner diameter of the circular pipe; when the support vertical rod 221 is a non-circular pipe, the conical cylinder is tangent to the matching hole at the maximum diameter. The vertex end of the conical cylinder is more convenient to insert into the matching hole, and the side wall of the conical cylinder can play a guiding role, so that the insertion process is more convenient and efficient. At the same time, the conical cylinder is tangent to the matching hole at the maximum diameter, so that the butt joint of the insertion part is more firm, and the stability of the connection of the support frame 22 is improved.
[0092] In the embodiment of the present application, the sheet type standard section 2, refer to Figures 4-7 The first cross connecting rod 2121 is a square tube or a channel steel. The square tube or the channel steel makes the structure of the first connecting rod more light and has sufficient supporting strength, saves materials and reduces the weight of the sheet type standard section 2, and is more convenient for punching holes on different side walls of the first cross connecting rod 2121 to facilitate connection and fixation with the support frame 22 and the rack 23.
[0093] In the embodiment of the present application, the sheet type standard section 2, refer to Figures 6-7 The second cross connecting rod 222 is a flat plate. The flat plate structure is more light and reduces the weight of the sheet type standard section 2, and is more convenient for the butt joint surface between the two second cross connecting rods 222 corresponding to the connection when the upper and lower sheet type standard sections 2 are spliced.
[0094] In the embodiment of the present application, the sheet type standard section 2, refer to Figures 4-8 Each support vertical rod 221 is provided with a plurality of support mounting holes 223, so that the wall-attached support can be connected with part of the support mounting holes 223. The sheet type standard section 2 can match the wall-attached support suitable for more setting modes, so that the sheet type standard section 2 has a larger applicable range and more applicable scenarios.
[0095] Hereinafter, refer to Figures 12-14 The structure of the wall-attached seat 31 of the track system of the construction elevator is described.
[0096] It should be noted that the length of the first fixing hole 3111 is not specifically limited in the embodiment of the present application, and can be adjusted according to actual needs. The embedded part on the building needs to be pre-punched for embedding, which may cause the position of the embedded part not to correspond to the position of the fixing hole on the track system. At this time, since the first fixing hole 3111 is a long hole, it can adapt to the mispositioning of the embedded part within a certain range, thereby increasing the adaptability of the wall-attached seat 31. The length of the first fixing hole 3111 can be changed differently according to different construction environments. For example, in some harsh construction environments, the accuracy of the embedded part when being set cannot be guaranteed. At this time, the length of the first fixing hole 3111 can be increased to adapt to the mispositioning of the embedded part.
[0097] When the length of the first fixing hole 3111 is increased, the thickness of the first fixing plate 311 needs to be increased correspondingly. In actual engineering applications, the wall-attached seat 31 functions to connect the track system and the building, and needs to ensure sufficient connection strength. When the length of the first fixing hole 3111 is increased, the opening of the first fixing plate 311 becomes larger, which reduces the structural strength of the first fixing plate 311. At this time, increasing the thickness of the first fixing plate 311 can ensure the structural strength of the first fixing plate 311 while the length of the first fixing hole 3111 is increased.
[0098] After the first fixing plate 311 of the wall connecting seat 31 is connected with the embedded part, since the first fixing hole 3111 is a long hole, when the track system shakes or slightly shifts, the embedded part is easy to slide in the first fixing hole 3111, and the stability of the connection of the wall connecting seat 31 cannot be guaranteed. The positioning part 3112 is arranged on the first fixing plate 311, which can position the embedded part. When the first fixing plate 311 is connected with the embedded part, the first fixing plate 311 is generally connected with the embedded part by screwing or a gasket 33 is arranged between the nut and the first fixing plate 311. The positioning part 3112 on the first fixing plate 311 can cooperate with the nut or the gasket 33, so that the embedded part and the wall connecting seat 31 cannot slide relative to each other, thereby increasing the stability of the connection of the wall connecting seat 31 to the track system.
[0099] In some embodiments, the positioning part 3112 is arranged on the side of the first fixing plate 311 facing the second fixing plate 312. When the wall connecting seat 31 is connected with the building, the embedded part passes out through the first fixing hole 3111, and the embedded part is connected with the wall connecting seat 31 by the nut or the gasket 33. At this time, the nut or the gasket 33 is arranged on the side of the first fixing plate 311 facing the second fixing plate 312. Arranging the positioning part 3112 on this side can better fix the nut or the gasket 33, so that the connection of the wall connecting seat 31 and the embedded part is more stable.
[0100] Correspondingly, the side of the first fixing plate 311 away from the second fixing plate 312 is a plane. Arranging this side as a plane can increase the contact area between the first fixing plate 311 and the building, increase the friction, and thereby make the connection between the wall connecting seat 31 and the building more stable.
[0101] It should be noted that the shape of the positioning part 3112 is not limited here, as long as the positioning part 3112 can cooperate with the nut or the gasket 33.
[0102] As shown in FIG. 1, Figure 12 In some embodiments, the positioning part 3112 is a plurality of positioning parts 3112, and the plurality of positioning parts 3112 are spaced apart along the length direction of the first fixing hole 3111, and are used for cooperation of the gasket 33 or the nut with different positioning parts 3112. When the position of the embedded part is dislocated, the plurality of positioning parts 3112 can ensure that the gasket 33 or the nut can cooperate at different positions of the first fixing hole 3111, so that the wall connecting seat 31 and the embedded part are stably connected, and the safety is increased.
[0103] Further, the positioning part 3112 is a positioning rib, which extends along the width direction of the first fixing hole 3111. The positioning part 3112 is designed as a positioning rib, which can hold the nut or the gasket 33 in the middle of the positioning rib, preventing the relative sliding between the wall connector 31 and the embedded part. The positioning rib extending along the width direction of the first fixing hole 3111 is perpendicular to the extension direction of the first fixing hole 3111, so that the gasket 33 or the nut can be limited in two directions perpendicular to each other when fixing the embedded part, thereby increasing the stability of the connection between the wall connector 31 and the building.
[0104] Optionally, the cross section of the positioning rib is triangular, and the positioning rib is welded to the first fixing plate 311. The gasket 33 can be designed as a buckle shape, and when the wall connector 31 is connected to the embedded part, the gasket 33 is first buckled on the positioning rib, and then the buckle-shaped gasket 33 is fastened by the nut, so that the relative movement between the wall connector 31 and the embedded part can be prevented, thereby increasing the stability of the connection. The triangular positioning rib can better hold the gasket 33 between the positioning ribs, increasing the convenience of installation.
[0105] Optionally, the cross section of the positioning rib is square, and the positioning rib is welded to the first fixing plate 311. The square cross section has a larger area and can bear a larger shear force, so that the square positioning rib can ensure that the gasket 33 is buckled while increasing the structural strength, thereby making the connection between the wall connector 31 and the embedded part more stable and increasing the safety.
[0106] Optionally, the positioning rib can be formed by forging. The positioning rib formed by forging can ensure that the positioning rib and the first fixing plate 311 are an integral whole, increase the structural strength of the wall connector 31, and make the connection of the wall connector 31 more stable.
[0107] In some embodiments, the length of the first fixing hole 3111 is at least two-thirds of the length of the first fixing plate 311. Thus, the wall connector 31 can be fine-tuned when the fixing hole of the embedded part and the track system are misaligned, thereby increasing the stability of the connection and making the connection of the wall connector 31 to the building safer.
[0108] In some embodiments, the connecting plate 313 is connected to one of the left and right sides of the first fixed plate 311, and connected to the other of the left and right sides of the second fixed plate 312. When one side of the connecting plate 313 is connected to the left side of the first fixed plate 311, the other side of the connecting plate 313 is connected to the right side of the second fixed plate 312. Correspondingly, when one side of the connecting plate 313 is connected to the right side of the first fixed plate 311, the other side of the connecting plate 313 is connected to the left side of the second fixed plate 312. Thus, the cross section of the connecting plate 313 after being connected to the first fixed plate 311 and the second fixed plate 312 is in the shape of a "Z", and when the bracket 31 is connected to the embedded part and the track system, the bracket 31 is first fixed on the track system, the second fixed plate 312 is connected to the track system through bolts, and after the connection is stable, the embedded part is moved to pass through the first fixed hole 3111, and then is stably connected through the gasket 33 and the nut. The bracket 31 in the shape of a "Z" can ensure that it is not affected when it is connected to the embedded part after being connected to the track system. Thus, the installation convenience of the bracket 31 is increased, and the installation efficiency is improved.
[0109] In some embodiments, the bracket 31 further comprises two reinforcing plates 314, which are located at both ends and connected to the first fixed plate 311, the second fixed plate 312 and the connecting plate 313. Thus, the deformation between the first fixed plate 311, the second fixed plate 312 and the connecting plate 313 can be prevented, the structural strength of the bracket 31 is increased, and the stability of the bracket 31 in connecting the track system and the building is further increased.
[0110] Optionally, the first fixed plate 311, the second fixed plate 312 and the connecting plate 313 are bent from a steel plate, and the reinforcing plates 314 are welded to the first fixed plate 311, the second fixed plate 312 and the connecting plate 313, respectively. Thus, the structural strength of the bracket 31 is higher by bending, so as to bear greater force, and the stability of the bracket 31 in connecting the track system and the building is increased.
[0111] The bracket 31 according to the embodiments of the present application will be described below. Figures 13-14 The bracket connecting assembly 3 according to the embodiments of the present application is described.
[0112] As shown in Figure 13 the bracket connecting assembly 3 according to the embodiments of the present application comprises an embedded screw rod 32, a bracket 31 and a gasket 33. The embedded screw rod 32 is used for embedded connection on a building. The bracket 31 is the bracket 31 in the above embodiments, and the first fixed plate 311 of the bracket 31 is fitted on the embedded screw rod 32 through the first fixed hole 3111. The gasket 33 is sleeved on the embedded screw rod 32, and one side of the gasket 33 is bent to form a clamping portion 331, which is matched with the positioning portion 3112.
[0113] The wall-attached connecting assembly 3 of the embodiment of the present application, when the wall-attached base 31 is connected with the embedded threaded rod 32, since the first fixing hole 3111 is a long hole, the gasket 33 is clamped on the positioning part 3112 to prevent the wall-attached base 31 from sliding with the embedded threaded rod 32, thereby increasing the stability of the connection between the wall-attached base 31 and the building.
[0114] Other configurations, such as materials, of the wall-attached base 31 of the embodiment of the present application are known to those skilled in the art and will not be described in detail here.
[0115] The structure of the sliding contact line single section 4 of a track system of a construction elevator of the embodiment of the present application will be described below with reference to Figures 15-21
[0116] During construction, a plurality of sliding contact line single sections 4 are laid in parallel beside the running track system of the mobile equipment, and a current collector can be connected to the mobile equipment, the current collector being in sliding connection with the sliding contact line single section 4 and being capable of supplying power to the mobile equipment. Thus, uninterrupted power supply to the mobile equipment can be achieved through the sliding connection of the current collector with the sliding contact line single section 4. The current collector can be electrically connected to the mobile equipment through the sliding opening 411.
[0117] At least two wire bodies 42 can be arranged in the mounting groove 414, and each wire body 42 is separated by the partition wall 413. In this way, the adjacent two wire bodies 42 are separated, one wire body 42 can be arranged as a zero line, and the other wire body 42 can be arranged as a live line, thereby achieving power supply to the mobile equipment through the current collector.
[0118] When two sliding contact line single sections 4 are assembled, uninterrupted power transmission can be achieved through the butt joint between the first power connection part 431 and the second power connection part 441. Different numbers of sliding contact line single sections 4 can be selected for splicing to supply power to the mobile equipment according to actual engineering needs.
[0119] It can be understood that the partition wall 413 in the second sub-area 4122 can be multiple, and the corresponding mounting grooves 414 separated by the partition wall 413 can also be multiple. In actual engineering applications, the mobile equipment needs not only power supply but also control operation. The plurality of mounting grooves 414 can be arranged to accommodate a plurality of wire bodies 42, thereby achieving the transmission of multiple electrical signals in one sliding contact line single section 4, increasing the integration degree, and thus reducing the use cost.
[0120] As Figure 19 As shown, in some embodiments, the wire body 42 has a conductive contact surface 421 arranged towards the fitting opening 4141, and the conductive contact surface 421 is in an arc shape in a cross section perpendicular to the length direction, and the arc shape is arranged concave towards the mounting groove 414 from both ends to the middle. The trolley wire single section 4 is electrically connected with the current collector through the conductive contact surface 421 of the wire body 42, and the cross section of the conductive contact surface 421 is arranged in an arc shape, so that the power supply stability is increased by limiting the contact between the power receiving end of the current collector and the conductive contact surface 421.
[0121] During the connection between the current collector and the trolley wire single section 4, the power receiving end of the current collector and the conductive contact surface 421 can be offset from each other, so that the power receiving end and the conductive contact surface 421 cannot be matched. The conductive contact surface 421 is arranged in an arc shape, so that the power receiving end and the conductive contact surface 421 can be inserted into the recess when they are in contact, so as to achieve better power connection.
[0122] It can be understood that the power receiving end of the current collector matched with the conductive contact surface 421 is arranged in a convex shape, so that the contact effect between the current collector and the trolley wire single section 4 is better.
[0123] Further, the wire body 42 is provided with a protrusion 422 at both ends of the width corresponding to the fitting opening 4141, and the conductive contact surface 421 is formed between the two protrusions 422. Through the protrusions 422, the power receiving end of the current collector is limited when the current collector is in contact with the trolley wire single section 4, so that the electrical connection is more stable.
[0124] In some embodiments, the wire body 42 includes a contact piece 423 and two positioning pieces 424. The contact piece 423 is opposite to the fitting opening 4141, and the contact piece 423 is arranged to extend along the length direction of the support pipe 41. The two positioning pieces 424 are arranged to extend towards the same side from both ends of the width direction of the contact piece 423, and the inner cavity 425 is defined between the two positioning pieces 424 and the contact piece 423. The first power receiving part 431 and the second power receiving part 441 are both connected with the wire body 42 in the inner cavity 425. The outer surface of the contact piece 423 is arranged in an arc shape, so that the power supply of the mobile device is more stable.
[0125] The contact piece 423 and the two positioning pieces 424 form a tubular shape. In production, the wire body 42 is inserted into the installation groove 414 to fix the wire body 42, so that the structure of the slide-wire single section 4 is more stable to provide more stable power supply for the mobile device. The contact piece 423 and the two positioning pieces 424 form an inner cavity 425 towards the outer wall of the support tube 41. The inner cavity 425 can provide accommodation space for the first electrical connection piece 431 and the second electrical connection piece 441. When the first electrical connection piece 431 and the second electrical connection piece 441 are connected at the two ends of the slide-wire single section 4, the two slide-wire single sections 4 can be connected by splicing, and the expandability of the slide-wire single section 4 is increased by the modular design.
[0126] Further, the wire body 42 further comprises: a clamping piece 426, the ends of the two positioning pieces 424 away from the contact piece 423 extend towards each other to form the clamping piece 426. The slide-wire single section 4 further comprises a fastening assembly 45 connected with at least one of the clamping piece 426 and the contact piece 423 to fasten the wire body 42 on the inner wall of the support tube 41. Thus, the wire body 42 can be more stably connected on the support tube 41 to make the electrical connection more stable and increase the safety.
[0127] When the fastening assembly 45 fastens the wire body 42, the fastening assembly 45 can abut against the contact piece 423, so that the contact piece 423 and the partition wall 413 in the support tube 41 abut against each other to fix the wire body 42.
[0128] It should be noted that the fastening mode of the fastening assembly 45 is not limited here. The fastening assembly 45 can fasten the wire body 42 by threaded connection or riveting.
[0129] As shown in FIG. 4, Figure 20 In some embodiments, the fastening assembly 45 comprises a fastening plate 451 and a fastening screw 452. The fastening plate 451 is located in the inner cavity 425 and contacts the two clamping pieces 426. The fastening plate 451 is provided with a threaded hole 4511. The fastening screw 452 is connected at the threaded hole 4511. The head of the fastening screw 452 is located between the two clamping pieces 426, and the tail of the fastening screw 452 is used to fasten the contact piece 423. The wall of the support tube 41 is provided with an installation hole 415 opposite the fastening screw 452. By threaded connection, the fastening assembly 45 can adjust the tightness of the wire body 42 in the support tube 41. After the wire body 42 is installed in place in the installation groove 414, the fastening screw 452 is tightened to fix the wire body 42.
[0130] Optionally, one fastening assembly 45 can include a plurality of fastening plates 451 and a plurality of fastening screws 452. The plurality of fastening assemblies 45 arranged can make the fastening of the conductor body 42 in the mounting groove 414 more stable, so as to improve the stability of the connection between the slide wire single sections 4. Further optionally, one fastening assembly 45 can include one fastening plate 451 and a plurality of fastening screws 452, and the fastening plate 451 is provided with a plurality of threaded holes 4511 corresponding to the number of fastening screws 452. In this way, the number of parts of the fastening assembly 45 can be reduced, and the assembly cost can be reduced.
[0131] As shown in FIG. 1, in some embodiments, the first power contact 431 is connected to the conductor body 42 through the first fastening part 4311. The second power contact 441 is connected to the conductor body 42 through the second fastening part 4411. The first fastening part 4311 and the second fastening part 4411 both fix the conductor body 42 to the support tube 41. In this way, the first power contact 431 and the conductor body 42, and the second power contact 441 and the conductor body 42 form an integral whole, which is fixed to the support tube 41. When the two slide wire single sections 4 are connected, the stable first power contact 431 and the second power contact 441 can provide more stable connection for the slide wire single sections 4. Figures 16-17
[0132] When the first power contact 431 is installed, the first fastening part 4311 is inserted into the inner cavity of the conductor body 42. By rotating the fastening screw 452, the tail of the fastening screw 452 is abutted to the surface of the first fastening part 4311. After the fastening screw 452 is fastened, the tail of the fastening screw 452 abuts the first fastening part 4311 and the contact sheet 423 to the tube wall of the support tube 41, and the side of the fastening plate 451 in contact with the head of the fastening screw 452 is abutted to the inner surface of the clamping sheet 426. In this way, the stable connection between the first power contact 431, the conductor body 42 and the support tube 41 is achieved. The second power contact 441 is the same.
[0133] In some embodiments, a part of the first power contact 431 extends out of the support tube 41, and the second power contact 441 is a spring sheet. When splicing, the first power contact 431 extends into the support tube 41 of another slide wire single section 4 and is clamped between the second power contact 441 and the conductor body 42 of another slide wire single section 4. Due to the elasticity of the second power contact 441, the elastic deformation can be generated when the first power contact 431 is inserted, and the first power contact 431 can be pressed. In this way, the stable electrical connection between the first power contact 431 and the second power contact 441 is achieved, and the stability of the power supply of the slide wire single section 4 to the mobile device is increased.
[0134] As shown in FIG. 1, in some embodiments, the first power contact 431 is connected to the conductor body 42 through the first fastening part 4311. The second power contact 441 is connected to the conductor body 42 through the second fastening part 4411. The first fastening part 4311 and the second fastening part 4411 both fix the conductor body 42 to the support tube 41. In this way, the first power contact 431 and the conductor body 42, and the second power contact 441 and the conductor body 42 form an integral whole, which is fixed to the support tube 41. When the two slide wire single sections 4 are connected, the stable first power contact 431 and the second power contact 441 can provide more stable connection for the slide wire single sections 4. Figure 21 As shown, in some embodiments, the support tube 41 is a square tube, the wire bodies 42 are odd in number, the mounting slots 414 include a first mounting slot 4142 and a second mounting slot 4143, the first mounting slot 4142 is one and is arranged opposite the sliding opening 411, and the second mounting slot 4143 is even in number and is symmetrically arranged relative to the first mounting slot 4142. The partition wall 413 includes: a corner wall 4131 located between the first mounting slot 4142 and the second mounting slot 4143. When there are at least two second mounting slots 4143 on each side, the partition wall 413 further includes: a horizontal wall 4132 located between adjacent two second mounting slots 4143. The side of each mounting slot 414 facing the first sub-area 4121 is provided with a blocking strip 4144 connected to the inner wall of the support tube 41 and the partition wall 413, and the blocking strips 4144 between the two form a fitting opening 4141. The blocking strip 4144 arranged on the mounting slot 414 can prevent the wire body 42 from falling off after being inserted into the mounting slot 414, and plays a limiting role on the wire body 42. When the fastening assembly 45 is fastening the wire body 42, the contact piece 423 of the wire body 42 is stopped by the tail end of the set screw 452, so that the contact piece 423 of the wire body 42 is extruded towards the horizontal wall 4132 of the partition wall 413, so as to realize the fixing effect on the wire body 42.
[0135] As shown, Figures 16-17 In some embodiments, the slide wire single section 4 further includes: a soft rubber curtain 46 located on both sides of the width of the sliding opening 411, the two soft rubber curtains 46 are arranged along the length direction of the support tube 41, and the ends of the two soft rubber curtains 46 away from each other are provided with a clamping column 461, and the support tube 41 is provided with a clamping groove 416 corresponding to the clamping column 461. The soft rubber curtain 46 can be fixed on the support tube 41 through the cooperation of the clamping column 461 and the clamping groove 416. In actual application, the power collecting end of the current collector realizes the purpose of supplying power to the mobile device through contact with the wire body 42. Part of the current collector extends out of the slide wire single section 4 through the sliding opening 411 to transmit current to the mobile device. The soft rubber curtain 46 arranged at the sliding opening 411 can provide a certain shielding effect for the slide wire single section 4, prevent dust or other sundries from falling in to cause poor contact or short circuit, thereby increasing the stability and safety of the slide wire single section 4 for power supply.
[0136] In some embodiments, the slide wire single section 4 further comprises a connecting sleeve 47 sleeved on the outer side of the support tube 41, the connecting sleeve 47 is provided with an avoiding opening corresponding to the sliding opening 411, and the two ends of the connecting sleeve 47 are rubber sleeves. Thus, the joint between the two connected slide wire single sections 4 can be shielded to prevent dust or other sundries from entering, and the stability and safety of the power supply of the slide wire single section 4 are increased. In some embodiments, the top of the uppermost slide wire single section 4 is further provided with a cover to prevent dust and other sundries from entering, and the stability and safety of the overall power supply of the slide wire are improved.
[0137] The operation of the slide wire single section 4 according to the embodiments of the present application is known to those skilled in the art, and will not be described in detail here.
[0138] In the description of the present specification, the description referring to the terms "embodiment", "example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations of the embodiments can be made without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. A track system for a construction elevator, characterized in that The utility model provides a kind of building standard module system, including: Base, the base includes: base body, first bottom support component and second bottom support component, the base body is used to place on foundation, the first bottom support component and the second bottom support component are set on the top of the base body and are connected, the first bottom support component includes two vertically arranged first bottom support columns, and the top of the first bottom support component is provided with first bottom positioning part; Sheet type standard node, the sheet type standard node is multiple, multiple sheet type standard node is connected in series from top to bottom, the lowest sheet type standard node is connected on the base, the sheet type standard node includes: guide frame and support frame, the guide frame includes two guide columns and connecting rod, the two guide columns are vertically arranged, the connecting rod is connected between the two guide columns, the support frame is vertically arranged, and the support frame is fixedly connected to the horizontal side of the guide frame, and the support frame is provided with support mounting hole;When splicing, the two guide columns of the sheet type standard node above are respectively connected with the two guide columns of the sheet type standard node below, and the support frame of the sheet type standard node above is connected with the support frame of the sheet type standard node below;The top and bottom of the guide frame are respectively provided with guide frame upper positioning part and guide frame lower positioning part, and the guide frame lower positioning part of the sheet type standard node above is connected on the guide frame upper positioning part of the sheet type standard node below when splicing;The top and bottom of the support frame are respectively provided with support upper connecting part and support lower connecting part, and the support lower connecting part of the sheet type standard node above is connected on the support upper connecting part of the sheet type standard node below when splicing;The two guide columns of the lowest guide frame are connected with the two first bottom support columns of the first bottom support component, and the guide frame lower positioning part is connected on the first bottom positioning part, and the lowest support frame is connected on the top of the second bottom support component; Wall seat, the wall seat is multiple and is arranged into at least one column, and each column of multiple wall seats is arranged on the sheet type standard node at intervals from top to bottom, and each wall seat is connected on the support mounting hole of the support frame; Slide wire, the slide wire includes multiple slide wire single nodes, and the slide wire single nodes are connected in series from top to bottom, and each slide wire is connected on the sheet type standard node; The base further includes: at least one bottom support leg, and the base body is vertically connected on the bottom support leg in a adjustable manner; The wall seat includes: First fixed plate, the first fixed plate is provided with first fixed hole, the first fixed hole is long hole, and the first fixed hole is used for connecting embedded part on building; Second fixed plate, the second fixed plate is provided with second fixed hole, and the second fixed hole is connected with the support mounting hole of the sheet type standard node; Connecting plate, the connecting plate is connected between the first fixed plate and the second fixed plate;Wherein, The first fixed plate is provided with first positioning part, and the first positioning part is used for positioning washer or nut matched with the embedded part.
2. A track system for a construction elevator according to claim 1, characterized in that The base body is provided with bottom support hole, the bottom support leg includes bottom support screw rod, the bottom support screw rod is vertically arranged in the bottom support hole, and the bottom support screw rod is matched with fastening nut on the upper and lower sides of the base body.
3. The track system of a construction elevator according to claim 1, characterized in that The top of the support frame is provided with a support upper positioning part, and the bottom of the support frame is provided with a support lower positioning part; when spliced, the support lower positioning part of the upper sheet type standard joint is connected to the support upper positioning part of the lower sheet type standard joint; The top of the second bottom support assembly is provided with a second bottom positioning part; when spliced, the support lower positioning part of the lowermost sheet type standard joint is connected to the second bottom positioning part of the top of the second bottom support assembly.
4. A track system for a construction elevator according to claim 3, characterized in that The support frame comprises two support vertical rods arranged vertically; when spliced, the two guide columns of the upper sheet type standard joint are respectively connected to the two guide columns of the lower sheet type standard joint; the second bottom support assembly comprises two second bottom support columns arranged vertically; the two support vertical rods of the lowermost support frame are connected to the two second bottom support columns of the second bottom support assembly. The support upper positioning part and the support lower positioning part are arranged at both ends of the support vertical rod; one of the support upper positioning part and the support lower positioning part is a matching column, and the other is a matching hole matched with the matching column; the support vertical rod is a pipe body, and the pipe opening at one end of the pipe body forms the matching hole.
5. The track system of a construction elevator according to claim 1, characterized in that The slide wire single joint comprises: A support pipe, a sliding opening is arranged on the pipe wall of the support pipe, the sliding opening is arranged through along the length direction of the support pipe, the pipe cavity of the support pipe comprises a first sub-area and a second sub-area, the first sub-area is opposite to the sliding opening, the rest of the pipe cavity except the first sub-area is the second sub-area, a partition wall extending towards the first sub-area is arranged on the inner wall of the support pipe, the second sub-area is divided into at least two installation grooves by the partition wall, the installation grooves are arranged through along the length direction of the support pipe, and a matching hole is formed on one side of each installation groove towards the first sub-area; A wire body, the wire body is at least two and is matched in the installation groove one by one; A first power connection group, the first power connection group is located at one end of the support pipe, and the first power connection group comprises a first power connection piece connected with the wire body one by one; A second power connection group, the second power connection group is located at the other end of the support pipe, and the second power connection group comprises a second power connection piece connected with the wire body one by one; When two slide wire single joints are spliced along the length direction, each first power connection piece of one slide wire single joint is detachably connected with the corresponding second power connection piece of the other slide wire single joint.
6. A track system for a construction elevator according to claim 5, characterized in that The wire body has a conductive contact surface, the conductive contact surface is arranged towards the matching hole, the cross section of the conductive contact surface perpendicular to the length direction is an arc, and the arc is recessed into the installation groove from both ends to the middle; a convex strip is formed at the width end of the wire body corresponding to the matching hole, and the conductive contact surface is formed between the two convex strips.
7. A track system for a construction elevator according to claim 5, characterized in that The first power connection piece is connected to the wire body by a first fastening part; The second power connection piece is connected to the wire body by a second fastening part; The first fastening part and the second fastening part both stop and fix the wire body on the support pipe.
8. A track system of a construction elevator according to any of claims 1 - 7, characterized in that, Further comprising: A rack comprising a plurality of rack segments, the rack segments being connected end to end, each of the rack segments being connected to a sheet standard segment, the rack being located on a side of the sheet standard segment distal from the parietal seat.
Citation Information
Patent Citations
Rail system of construction elevator
CN216763972U