Lifting wire rope support pulley assembly and pole tower assembly holding system

By designing the lifting wire rope supporting pulley assembly, the problem of wire rope instability during construction is solved, construction safety and stable support and lubrication of the wire rope are achieved, wear is reduced and service life is extended.

CN119143002BActive Publication Date: 2025-09-30ANHUI ELECTRIC POWER TRANSMISSION & TRANSFORMATION ENG CO LTD
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Patent Information

Application Number
CN202411615717.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-30
Estimated Expiration
2044-11-13

AI Technical Summary

Technical Problem

In the existing pulley system, the wire rope is easily suspended in the air or in contact with the ground in the distance section between the holding rod and the traction system, causing the wire rope to be unstable and affecting construction safety.

Method used

A lifting wire rope supporting pulley assembly is designed, including a supporting part and a support part. It is supported on the ground by a pulley. A limit assembly and anti-damage parts are set to prevent the wire rope from deflection and wear. The protective assembly prevents rainwater from intruding, thereby achieving stable support and lubrication of the wire rope.

Benefits of technology

It effectively prevents the wire rope from interfering with the ground, ensures construction safety, reduces wear, improves the operational stability of the wire rope, and extends its service life through lubrication.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of a boom system, specifically, to a lifting wire rope supporting pulley assembly and a boom system for pole tower assembly; the lifting wire rope supporting pulley assembly of the present invention comprises a main body; the main body comprises a supporting member for supporting a wire rope, and a support member for supporting the supporting member on the ground; the supporting member comprises a support plate connected to the support member, and a pulley for supporting the wire rope is rotatably engaged at one side of the support plate. Through the support member and the supporting member of the present invention, the pulley of the supporting member can be supported on the ground, and multiple groups of main bodies can be arranged at intervals between the boom and the traction system to support the wire rope between the boom and the traction system at intervals to prevent the wire rope from interfering with the ground, thereby ensuring construction safety during pole tower assembly.
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Description

Technical Field

[0001] The present invention relates to the technical field of a pole holding system, in particular to a lifting wire rope supporting pulley assembly and a pole holding system for tower assembly. Background Art

[0002] When assembling towers with systems such as double-arm floor-standing booms, a traction system including winches and other equipment will be set up on the ground. The traction wire rope at the traction system is pulled from the traction yard where the traction system is located to the boom through a pulley system to realize functions such as lifting the boom and lifting the tower components for construction.

[0003] However, current pulley systems are typically deployed at the mast or tower, with the traction system directly connected to the mast base. However, there's a significant distance between the traction system and the mast, leaving the wire rope largely unsupported and potentially suspended or in contact with ground objects. This creates an instability that can affect safe construction operations, potentially interfering with the ground. Summary of the Invention

[0004] The present invention provides a lifting wire rope supporting pulley assembly and a pole holding system for tower assembly, which can overcome certain defects of the prior art.

[0005] The lifting wire rope supporting pulley assembly according to the present invention comprises a body; the body comprises a supporting member for supporting the wire rope, and a supporting member for supporting the supporting member on the ground;

[0006] The supporting member comprises a supporting plate connected to the supporting member, and a pulley for supporting the steel wire rope is rotatably matched at one side of the supporting plate.

[0007] Through the support and bearing parts of the present invention, the pulley of the bearing part can be supported on the ground. Multiple groups of bodies can be arranged at intervals between the holding pole and the traction system, and the wire rope between the holding pole and the traction system can be supported at intervals to prevent the wire rope from interfering with the ground, thereby ensuring construction safety during the assembly of the pole tower.

[0008] Preferably, the supporting member is provided with a limiting assembly for limiting the wire rope at the pulley; two support plates are provided and symmetrically arranged at both ends of the pulley; the limiting assembly includes a limiting block located between the two support plates, and the limiting block, the support plate and the pulley constitute an accommodating interval for accommodating the wire rope; the limiting block is provided with a locking member for fixing to the support plate.

[0009] In the present invention, by setting the limiting component, the opening between the two support plates and the pulley can be blocked by the limiting block. Since the wire rope has a certain offset when the holding rod is running, the limiting component can prevent the wire rope from separating from the main body due to the offset, thereby ensuring the stability of the wire rope during operation.

[0010] Preferably, the locking member includes a sliding cavity provided at the end of the limit block away from the pulley, and two sliders are slidably fitted in the sliding cavity; a clamping block is provided at the opposite ends of the two sliders and extends to the outside of the limit block; a clamping hole is provided at the two support plates for the clamping block to extend into; a first spring is also provided inside the sliding cavity and is pressed against between the two sliders, and the first spring is used to enable the clamping block to maintain the tendency to move toward the clamping hole; a cover plate for blocking the sliding cavity is provided at the limit block; a slot is provided at the cover plate and passes through the sliding cavity; and a paddle is provided at the slider that extends out of the slot.

[0011] In the present invention, by setting the paddles, sliders, first springs and clamping blocks, the two clamping blocks can be driven to move when the two paddles are pinched, so that the two clamping blocks can be engaged with or separated from the clamping holes of the two support plates, so that the limit block and the supporting member can be quickly assembled. In actual construction, the main body is provided with multiple groups, and the above-mentioned rapid assembly can greatly reduce the assembly time.

[0012] Preferably, a bottom plate perpendicular to the support plate is provided on both sides of the limit block; a positioning rod is provided on one end face of the bottom plate away from the cover plate; and a positioning cylinder for the positioning rod to extend into is provided on the opposite sides of the two support plates.

[0013] In the present invention, by setting the positioning rod and the positioning cylinder, the clamping block can keep the limit assembly stable after the clamping hole is engaged, and the positioning rod can be pre-plugged and engaged with the positioning cylinder. After engagement, the clamping block and the clamping hole can automatically maintain a straight line, thereby reducing assembly time.

[0014] Preferably, an anti-damage part is provided at the limit block; the anti-damage part includes a notch provided along the length direction of the wire rope; the notch passes through both sides of the limit block and one end face of the limit block close to the wire rope, and is connected to the sliding cavity; a mounting frame located between two sliders is provided inside the sliding cavity; a limiting roller is provided at the mounting frame, which slides with the mounting frame along the height of the limit block and can rotate, and the axial direction of the limiting roller is kept perpendicular to the axial direction of the positioning rod; one end of the limit block is rotatably fitted with limiting rollers located on both sides of the notch, and the axial direction of the limiting roller is kept parallel to the axial direction of the positioning rod; the limiting roller, the limiting roller and the pulley constitute an interval for accommodating the wire rope.

[0015] In the present invention, through the setting of anti-damage parts, the limiting roller and two limiting rollers at the notch can form a U-shaped area, so that the wire rope will not rub against the right-angle edge of the limiting block after deflection, causing wear, and the limiting roller and the two limiting rollers can achieve rolling friction with the wire rope when the wire rope is retracted and released, thereby further limiting the position while reducing the wear of the wire rope.

[0016] Preferably, a threaded barrel that passes through the notch is provided at one end face of the mounting frame away from the limiting roller; the threaded barrel is threadedly fitted with a push rod; the push rod is arranged along the radial direction of the limiting roller; one end of the push rod extends out of the slot, and the other end is semicircular and can be tightly pressed against the limiting roller.

[0017] In the present invention, by setting the push rod, the push rod can be pressed against the surface of the limit roller after rotation, so that the limit roller cannot move up. Since the wire rope has an offset during operation, the maximum height of the limit roller can be limited by rotating the screw rod to adjust the height of the screw rod, that is, the amount of upward offset of the wire rope is limited, so that the wire rope can operate safely within the set offset range.

[0018] Preferably, a protective assembly is provided at the cover plate; the protective assembly includes a plurality of vertical poles arranged at the end face of the cover plate, and a sealing cover for sealing the slot; a collar that slides with the pole is provided on the outer side of the sealing cover; a limiting plate is provided at the end of the pole, and a second spring is pressed between the limiting plate and the collar; the second spring is used to enable the sealing cover to maintain a sealed state of sealing the slot.

[0019] In the present invention, through the provision of the protective component, the sealing cover can seal the notch to prevent rainwater from entering the threads of the threaded barrel and the push rod, and to protect the first spring and other positions that may be affected by rust and performance. In addition, the sealing cover can always be pressed tightly against the cover plate due to the second spring to seal the notch, thereby achieving better protection effect.

[0020] Preferably, an oil storage box is provided at one end surface of the sealing cover away from the cover plate, the oil storage box is provided with a cavity, and a sleeve is provided in the cavity which penetrates into the sealing cover; one end of the sleeve located inside the oil storage box is in a closed state and is provided with a through oil seepage hole; one end of the sleeve located inside the sealing cover is in an open state and is kept in socket connection with the end of the push rod, and a sponge block is provided in the sleeve which is tightly pressed against the end of the push rod; a sealing cover for sealing the cavity is provided at the oil storage box.

[0021] In the present invention, through the arrangement of the oil storage box, the sleeve and the sponge block, the protective component can also have the characteristic of easy lubrication. During daily maintenance, it is only necessary to pour the lubricating oil into the oil storage box, and the lubricating oil will enter the interior of the sleeve from the oil seepage hole of the sleeve, and be absorbed by the sponge block when passing through the sponge block. Since the sponge block is tightly pressed against the end of the push rod, the lubricating oil will seep into the surface of the push rod, and flow to the push rod, the threaded barrel, the mounting frame, the limiting roller, the wire rope and the pulley in turn; thereby, the threads of the push rod and the threaded barrel, the contact part between the push rod and the surface of the limiting roller, the contact part between the limiting roller and the wire rope, and the contact part between the wire rope and the pulley can all be lubricated, thereby achieving the effect of pouring oil in one step and slowly penetrating and lubricating everywhere, and lubricating each friction part to prolong its service life.

[0022] Preferably, the support member includes a fixing seat and a mounting seat, both of which are rectangular; one end of the mounting seat is fixed to two support plates; a slot is provided at the fixing seat along the length direction of the fixing seat; the slot is used for the mounting seat to extend into; both the mounting seat and the fixing seat are provided with a number of positioning holes for assembling fasteners; a fixing plate is provided at the mounting seat; a back plate parallel to the fixing plate is provided at the fixing seat; a bolt with an end portion pressed against the back plate is threadedly fitted at the fixing plate.

[0023] In the present invention, by setting the adjusting member, the length of the mounting seat extending into the fixing seat can be adjusted by rotating the bolt, so that the positioning hole to be assembled with the fastener can be aligned. There is no need to hold the supporting member and the mounting seat with one hand and operate the fastener with the other hand to fix the mounting seat and the fixing seat during assembly, which reduces the difficulty of single-person assembly.

[0024] A pole holding system for tower assembly includes any one of the lifting wire rope supporting pulley assemblies described above. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a schematic diagram of the cooperation between the body and the wire rope in Example 1;

[0026] Figure 2 This is a schematic diagram of the explosion of the body in Example 1;

[0027] Figure 3 This is a schematic diagram of the front side of the main body in Example 1;

[0028] Figure 4 Schematic diagram of the cooperation between the limiting assembly and the supporting member in Example 1;

[0029] Figure 5 Schematic diagram of the limiting component and the protection component in Example 1;

[0030] Figure 6 This is a top view of the separated limit assembly and protection assembly in Example 1;

[0031] Figure 7 This is a bottom view of the separated limit assembly and protection assembly in Example 1;

[0032] Figure 8 is a schematic diagram of the internal schematic diagram of the sliding cavity in Example 1;

[0033] Figure 9 is a schematic diagram of a cross section of the body in Example 1;

[0034] Figure 10 Schematic diagram of the cross section of the limiting component and the protective component in Example 1. DETAILED DESCRIPTION

[0035] In order to further understand the content of the present invention, the present invention is described in detail with reference to the embodiments. It should be understood that the embodiments are merely for explanation of the present invention and are not intended to limit the present invention.

[0036] Example 1

[0037] like Figure 1-10 As shown, this embodiment provides a lifting wire rope supporting pulley assembly, which includes a body 100; the body 100 includes a supporting member 120 for supporting a wire rope 130, and a supporting member 110 for supporting the supporting member 120 on the ground;

[0038] The supporting member 120 includes a supporting plate 222 connected to the supporting member 110 , and a pulley 221 for supporting the steel wire rope 130 is rotatably engaged at one side of the supporting plate 222 .

[0039] By means of the support member 110 and the supporting member 120 in this embodiment, the pulley 221 of the supporting member 120 can be supported on the ground, and multiple groups of bodies 100 can be arranged at intervals between the holding pole and the traction system to support the wire rope 130 between the holding pole and the traction system at intervals to prevent the wire rope 130 from interfering with the ground, thereby ensuring the construction safety during the tower assembly; not only that, a limiting component 140 is also provided at the supporting member 120, and the limiting block 241 of the limiting component 140 can block the opening between the two support plates 222 to form an accommodating interval 250 for the wire rope 130 to pass through, thereby preventing the wire rope 130 from interfering with the ground. The wire rope 130 is deflected or separated from the main body 100 due to deviation or other factors; at the same time, in order to prevent the wire rope 130 from rubbing against the right-angled edge of the limit block 241 after deviation and wearing, an anti-damage part 547 is also provided. The anti-damage part 547 includes two limit rollers 5473 and a liftable limit roller 5472. The wire rope 130 is wrapped by the limit rollers 5473, the limit rollers 5472 and the pulley 221. When the wire rope 130 deflects to any direction, rolling friction can be achieved at all locations with the wire rope 130 to reduce the wear of the wire rope 130. At the same time, the liftable limit roller 5472 can adjust the upward movement of the wire rope 130. The offset range can stably operate within the preset safety range; the limit component 140 is also provided with a protective component 460, which prevents rainwater from entering the limit block 241 through the sealing cover 561 to cause aging of the internal threaded connection and the first spring 6443, and can always maintain a sealed state through the second spring 669; at the same time, the protective component 460 also includes an oil storage box 562, a sleeve 664 and other structures. During daily maintenance, it is only necessary to pour oil into the oil storage box 562, and the lubricating oil will enter the interior of the sleeve 664 from the oil seepage hole 6640 of the sleeve 664, and be absorbed by the sponge block 765 when passing through the sponge block 765 , and because the sponge block 765 is tightly pressed against the end of the push rod 5474, the lubricating oil will seep into the surface of the push rod 5474, and flow to the push rod 5474, the threaded cylinder 8475, the mounting frame 5471, the limiting roller 5472, the wire rope 130 and the pulley 221 in sequence; thereby, the threads of the push rod 5474 and the threaded cylinder 8475, the contact parts between the push rod 5474 and the surface of the limiting roller 5472, the contact parts between the limiting roller 5472 and the wire rope 130, and the contact parts between the wire rope 130 and the pulley 221 can all be lubricated, thereby achieving the effect of pouring oil in one step and slowly penetrating and lubricating everywhere, lubricating each friction part to prolong its service life.

[0040] In this embodiment, a limiting assembly 140 is provided at the supporting member 120 to limit the wire rope 130 at the pulley 221; two support plates 222 are provided and symmetrically arranged at both ends of the pulley 221; the limiting assembly 140 includes a limiting block 241 located between the two support plates 222, and the limiting block 241, the support plate 222 and the pulley 221 constitute an accommodating area 250 for accommodating the wire rope 130; a locking member 544 is provided at the limiting block 241 for fixing to the support plate 222.

[0041] By setting the limiting assembly 140 in this embodiment, the opening between the two support plates 222 and the pulley 221 can be blocked by the limiting block 241. Since the wire rope 130 has a certain offset when the boom is running, the limiting assembly 140 can prevent the wire rope 130 from detaching from the main body 100 due to the offset, thereby ensuring the stability of the wire rope 130 during operation.

[0042] In this embodiment, the locking member 544 includes a sliding cavity 6440 opened at the end of the limit block 241 away from the pulley 221, and two sliders 6441 are slidably engaged in the sliding cavity 6440; the two sliders 6441 are provided with a blocking block 6444 extending to the outside of the limit block 241 at the opposite ends; the two support plates 222 are provided with a blocking hole 448 for the blocking block 6444 to extend into; the sliding cavity 6440 is also provided with a first spring 6443 pressed between the two sliders 6441, and the first spring 6443 is used to enable the blocking block 6444 to maintain the tendency to move toward the blocking hole 448; the limit block 241 is provided with a cover plate 545 for blocking the sliding cavity 6440; the cover plate 545 is provided with a slot 6450 that passes through the sliding cavity 6440; the slider 6441 is provided with a paddle 6442 that extends out of the slot 6450.

[0043] Through the arrangement of the paddle 6442, slider 6441, first spring 6443 and block 6444 in this embodiment, the two blocks 6444 can be driven to move when the two paddles 6442 are pinched, so that the two blocks 6444 can be engaged with or separated from the holes 448 of the two support plates 222, so that the limit block 241 and the supporting member 120 can be quickly assembled. In actual construction, the main body 100 is provided with multiple groups, and the assembly time can be greatly reduced through the above-mentioned quick assembly.

[0044] In this embodiment, a bottom plate 546 that is perpendicular to the support plate 222 is provided on both sides of the limit block 241; a positioning rod 242 is provided on one end face of the bottom plate 546 away from the cover plate 545; and a positioning tube 243 for the positioning rod 242 to extend into is provided on the opposite side of the two support plates 222.

[0045] By setting the positioning rod 242 and the positioning cylinder 243 in this embodiment, the clamping block 6444 can keep the limit assembly 140 stable after the clamping hole 448 is engaged, and the positioning rod 242 can be pre-plugged and engaged with the positioning cylinder 243. After engagement, the clamping block 6444 and the clamping hole 448 can automatically maintain a straight line, thereby reducing assembly time.

[0046] In this embodiment, the limit block 241 is provided with an anti-damage member 547; the anti-damage member 547 includes a notch 5470 arranged along the length direction of the wire rope 130; the notch 5470 passes through both sides of the limit block 241 and one end face of the limit block 241 close to the wire rope 130, and is connected to the sliding cavity 6440; the sliding cavity 6440 is provided with a mounting bracket 5471 located between the two sliders 6441; the mounting bracket 5471 is provided along the limit block 241 The limiting roller 5472 is slidably matched with the mounting frame 5471 in height and can rotate, and the axial direction of the limiting roller 5472 remains perpendicular to the axial direction of the positioning rod 242; one end of the limiting block 241 is rotatably matched with the limiting roller 5473 located on both sides of the notch 5470, and the axial direction of the limiting roller 5473 remains parallel to the axial direction of the positioning rod 242; the limiting roller 5472, the limiting roller 5473 and the pulley 221 constitute an interval for accommodating the wire rope 130.

[0047] By setting the anti-damage part 547 in this embodiment, the limiting roller 5472 and the two limiting rollers 5473 at the notch 5470 can form a U-shaped area, so that the wire rope 130 will not rub against the right-angled edge of the limiting block 241 after the deviation, causing wear, and the limiting roller 5472 and the two limiting rollers 5473 can achieve rolling friction with the wire rope 130 when the wire rope 130 is retracted, thereby further limiting the position while reducing Wear of the wire rope 130; detachable cylinders can be set at both ends of the limiting roller 5472, and slide grooves 8476 arranged along the height direction of the main body 100 are provided on both sides of the mounting frame 5471 to realize the sliding and lifting of the limiting roller 5472; an oil seepage groove 8477 is also provided at the upper end of the mounting frame 5471, and when the lubricating oil seeps into the surface of the mounting frame 5471, it can extend from the oil seepage groove 8477 to the surface of the limiting roller 5472 and the pulley 221 below.

[0048] In this embodiment, a threaded cylinder 8475 that passes through the notch 5470 is provided at one end face of the mounting frame 5471 away from the limiting roller 5472; the threaded cylinder 8475 is threadedly fitted with a push rod 5474; the push rod 5474 is arranged along the radial direction of the limiting roller 5472; one end of the push rod 5474 extends out of the slot 6450, and the other end is semicircular and can be tightly pressed against the limiting roller 5472.

[0049] Through the setting of the support rod 5474 in this embodiment, the support rod 5474 can be tightly pressed against the surface of the limiting roller 5472 after rotation, so that the limiting roller 5472 cannot move up. Since the wire rope 130 has an offset during operation, the maximum height of the limiting roller 5472 can be limited by rotating the screw to adjust the height of the screw, that is, the amount of upward offset of the wire rope 130 is limited, so that the wire rope 130 can operate safely within the set offset range.

[0050] In this embodiment, a protective component 460 is provided at the cover plate 545; the protective component 460 includes a plurality of vertical poles 668 arranged vertically at the end surface of the cover plate 545, and a sealing cover 561 for sealing and blocking the slot 6450; a ring 666 that slides with the vertical pole 668 is provided on the outer side of the sealing cover 561; a limiting plate 667 is provided at the end of the vertical pole 668, and a second spring 669 is pressed between the limiting plate 667 and the ring 666; the second spring 669 is used to enable the sealing cover 561 to maintain a sealed state of blocking the slot 6450.

[0051] By providing the protective component 460 in this embodiment, the sealing cover 561 can seal the slot 6450 to prevent rainwater from entering the threads of the threaded barrel 8475 and the push rod 5474, and to protect the first spring 6443 and other positions that may be affected by rust and performance. In addition, the sealing cover 561 can always be pressed tightly against the cover plate 545 due to the second spring 669 to seal the slot 6450, thereby achieving better protection effect.

[0052] In this embodiment, an oil storage box 562 is provided at an end surface of the sealing cover 561 away from the cover plate 545, and a cavity is provided at the oil storage box 562, in which a sleeve 664 is provided that passes through the sealing cover 561; one end of the sleeve 664 located inside the oil storage box 562 is in a closed state, and is provided with a through oil seepage hole 6640; one end of the sleeve 664 located inside the sealing cover 561 is in an open state, and is kept in socket connection with the end of the push rod 5474, and a sponge block 765 is provided in the sleeve 664 that is tightly pressed against the end of the push rod 5474; a sealing cover 563 for sealing the cavity is provided at the oil storage box 562.

[0053] By setting the oil storage box 562, sleeve 664 and sponge block 765 in this embodiment, the protective component 460 can also have the characteristic of being easy to lubricate. During daily maintenance, it is only necessary to pour the lubricating oil into the oil storage box 562. The lubricating oil will enter the interior of the sleeve 664 from the oil seepage hole 6640 of the sleeve 664 and be absorbed by the sponge block 765 when passing through the sponge block 765. Since the sponge block 765 is tightly pressed against the end of the push rod 5474, the lubricating oil will seep onto the surface of the push rod 5474 and flow to the push rod 5474 in turn. 5474, threaded barrel 8475, mounting frame 5471, limiting roller 5472, wire rope 130 and pulley 221; thereby, the threads of the push rod 5474 and the threaded barrel 8475, the contact portion between the push rod 5474 and the surface of the limiting roller 5472, the contact portion between the limiting roller 5472 and the wire rope 130, and the contact portion between the wire rope 130 and the pulley 221 can all be lubricated, thereby achieving the effect of pouring oil in one step and slowly penetrating and lubricating everywhere, lubricating each friction part to prolong its service life.

[0054] In this embodiment, the support member 110 includes a fixing seat 212 and a mounting seat 214, both of which are rectangular; one end of the mounting seat 214 is fixed to two support plates 222; a slot 213 is provided at the fixing seat 212 along the length direction of the fixing seat 212; the slot 213 is used for the mounting seat 214 to extend into; the mounting seat 214 and the fixing seat 212 are both provided with a number of positioning holes 215 for assembling fasteners; a fixing plate 2110 is provided at the mounting seat 214; a back plate 2111 parallel to the fixing plate 2110 is provided at the fixing seat 212; a bolt 2112 with an end portion pressed against the back plate 2111 is threadedly fitted at the fixing plate 2110.

[0055] By setting the adjustment member 111 in this embodiment, the length of the mounting seat 214 extending into the fixing seat 212 can be adjusted by rotating the bolt 2112, so that the positioning hole 215 to be assembled with the fastener can be aligned. There is no need to hold the supporting member 120 and the mounting seat 214 with one hand and operate the fastener with the other hand to fix the mounting seat 214 to the fixing seat 212 during assembly, which reduces the difficulty of single-person assembly.

[0056] A pole holding system for tower assembly, comprising any of the above-described lifting wire rope supporting pulley assemblies; wherein the system may also include a known main support, double horizontal arms, an assembled base, a jacking system, a slewing bearing, a boom, a traction system, etc.; the lifting wire rope supporting pulley assembly in this article is arranged between a traction system such as a winch and the pole holding main support; wherein the fixed seat 212 can be fixed to the ground by casting, and the base fixing fixed seat 212 is cast according to the height of the wire rope 130, and multiple groups are arranged at intervals according to the height change of the wire rope 130 to support and limit the wire rope 130 at multiple points.

[0057] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application based on one or several embodiments provided in the present application to obtain other embodiments, and these embodiments do not exceed the scope of protection of the present application.

[0058] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The embodiments shown in the embodiments are only part of the embodiments of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the above and, without departing from the purpose of the present invention, designs a structure and embodiment similar to the technical solution without creatively designing, they shall fall within the scope of protection of the present invention.

Claims

1. A lifting wire rope supporting pulley assembly, characterized in that: The invention comprises a body (100) which is arranged at intervals between a holding pole and a traction system and is used to support the steel wire ropes between the holding pole and the traction system in the process of pulling the steel wire ropes to the holding pole; the body (100) comprises a supporting member (120) for supporting the steel wire ropes (130), and a supporting member (110) for supporting the supporting member (120) on the ground; The supporting member (120) includes a supporting plate (222) connected to the supporting member (110), and a pulley (221) for supporting the steel wire rope (130) is rotatably engaged at one side of the supporting plate (222); A limiting assembly (140) is provided at the supporting member (120) for limiting the steel wire rope (130) at the pulley (221); two support plates (222) are provided and are symmetrically arranged at both ends of the pulley (221); the limiting assembly (140) includes a limiting block (241) located between the two support plates (222); the limiting block (241) and the support plates (222) and the pulley (221) form an accommodating area (250) for accommodating the steel wire rope (130); a locking member (544) is provided at the limiting block (241) for fixing with the support plate (222); The locking member (544) includes a sliding cavity (6440) provided at one end of the limit block (241) away from the pulley (221), and two sliders (6441) are slidably fitted in the sliding cavity (6440); a clamping block (6444) is provided at the opposite ends of the two sliders (6441) and extends to the outside of the limit block (241); a clamping hole (448) is provided at each of the two support plates (222) for the clamping block (6444) to extend into; and a clamping member (448) is provided inside the sliding cavity (6440) to tighten against the limit block (241). A first spring (6443) is provided between the two sliders (6441), and the first spring (6443) is used to enable the clamping block (6444) to maintain a tendency to move toward the clamping hole (448); a cover plate (545) is provided at the limit block (241) for blocking the sliding cavity (6440); a notch (6450) is provided at the cover plate (545) and is in communication with the sliding cavity (6440); and a paddle (6442) is provided at the slider (6441) and extends out of the notch (6450); Bottom plates (546) perpendicular to the support plate (222) are provided on both sides of the limit block (241); a positioning rod (242) is provided on one end surface of the bottom plate (546) away from the cover plate (545); and positioning cylinders (243) for the positioning rods (242) to extend into are provided on the opposite sides of the two support plates (222); A protective assembly (460) is provided at the cover plate (545); the protective assembly (460) includes a plurality of vertical rods (668) arranged vertically at the end surface of the cover plate (545), and a sealing cover (561) for sealing and blocking the notch (6450); a collar (666) is provided on the outer side of the sealing cover (561) and is slidably matched with the vertical rod (668); a limiting plate (667) is provided at the end of the vertical rod (668), and a second spring (669) is pressed tightly between the limiting plate (667) and the collar (666); the second spring (669) is used to enable the sealing cover (561) to maintain a state of sealing and blocking the notch (6450); The support member (110) comprises a rectangular fixing seat (212) and a mounting seat (214); one end of the mounting seat (214) is fixed to two support plates (222); a slot (213) is provided on the fixing seat (212) along the length direction of the fixing seat (212); the slot (213) is used for the mounting seat (214) to extend into; the mounting seat (214) and the fixing seat (212) are both provided with a plurality of positioning holes (215) capable of assembling fasteners; a fixing plate (2110) is provided on the mounting seat (214); a backing plate (2111) parallel to the fixing plate (2110) is provided on the fixing seat (212); a bolt (2112) whose end is screwed together with the backing plate (2111) is screwed on the fixing plate (2110).

2. The lifting wire rope supporting pulley assembly according to claim 1, characterized in that: The stop block (241) is provided with an anti-damage part (547); the anti-damage part (547) includes a notch (5470) provided along the length direction of the wire rope (130); the notch (5470) passes through both sides of the stop block (241) and one end face of the stop block (241) close to the wire rope (130), and is connected to the sliding cavity (6440); the sliding cavity (6440) is provided with a mounting frame (5471) located between the two sliders (6441); the mounting frame (5471) is provided with a notch (5470) ... notch (5471) The limiting roller (5472) is rotatably engaged with the mounting frame (5471), and the axial direction of the limiting roller (5472) is kept perpendicular to the axial direction of the positioning rod (242); one end of the limiting block (241) is rotatably engaged with the limiting rollers (5473) located on both sides of the notch (5470), and the axial direction of the limiting rollers (5473) is kept parallel to the axial direction of the positioning rod (242); the limiting rollers (5472), the limiting rollers (5473) and the pulley (221) form a section for accommodating the wire rope (130).

3. The lifting wire rope supporting pulley assembly according to claim 2, characterized in that: A threaded barrel (8475) is provided at one end face of the mounting frame (5471) away from the limiting roller (5472) and is communicated with the notch (5470); the threaded barrel (8475) is threadedly engaged with a push rod (5474); the push rod (5474) is arranged along the radial direction of the limiting roller (5472); one end of the push rod (5474) extends out of the notch (6450), and the other end is semicircular and can be tightly pressed against the limiting roller (5472).

4. The lifting wire rope supporting pulley assembly according to claim 2, characterized in that: An oil storage box (562) is provided at one end surface of the sealing cover (561) away from the cover plate (545), and a cavity is provided at the oil storage box (562), in which a sleeve (664) is provided that penetrates into the sealing cover (561); one end of the sleeve (664) located inside the oil storage box (562) is in a closed state and is provided with a through oil seepage hole (6640); one end of the sleeve (664) located inside the sealing cover (561) is in an open state and is kept in sleeve connection with the end of the push rod (5474), and a sponge block (765) is provided in the sleeve (664) and is tightly pressed against the end of the push rod (5474); a sealing cover (563) for sealing the cavity is provided at the oil storage box (562).

5. A pole holding system for tower assembly, comprising a lifting wire rope supporting pulley assembly as described in any one of claims 1 to 4.

Citation Information

Patent Citations

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