A wire rope guide capable of reducing friction of a steel wire rope
Patent Information
- Application Number
- CN202511857193.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-10
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2045-12-10
AI Technical Summary
[0005]本发明的目的是为了解决现有技术中存在长时间的摩擦加上温度较高降低了钢丝绳本身的强度,从而减少了钢丝绳的使用寿命,更换周期变短,间接的增加了钢丝绳的使用成本的问题
[0016]与现有技术相比,本发明的优点和积极效果在于,
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Figure CN121609245B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of rope guide technology, and more particularly to a rope guide that can reduce friction in steel wire ropes. Background Technology
[0002] Rope guides, also known as rope arrangers, are accessories for electric hoists. Their function is to ensure that the wire rope is neatly arranged on the drum, preventing it from becoming tangled or overlapping, which could cause mechanical failures and damage to the electric hoist. Most electric hoists now use rope guides to facilitate the orderly arrangement of the wire rope. During operation, the rope guide constantly rubs against the wire rope, causing rapid wear. If workers do not promptly address severely worn rope guides, sudden malfunctions can occur, posing a safety threat to construction workers. Furthermore, the rapid wear necessitates frequent repairs, increasing production costs and reducing efficiency.
[0003] The existing Chinese patent publication number is CN107954358A, which discloses an adjustable roller rope guide, including a mounting frame. Two elliptical long rollers with adjustable spacing are connected to the mounting frame. Two movable seats that move closer or further apart are slidably mounted on the long rollers. Short rollers are mounted on the movable seats. Fixed sleeves connected to the mounting frame via bearings are fixed on the long rollers. Rotating sleeves that cooperate with the movable seats are fitted on the long rollers. A first adjusting mechanism is connected to the movable seats, and a second adjusting mechanism is connected to the long rollers. The first adjusting mechanism includes a connecting block, a double-ended lead screw, and a rotating handwheel. The second adjusting mechanism includes a knob, a toothed clamp, a small double-ended lead screw, and a handle.
[0004] Although the above solution has an adjustment mechanism that allows for adjustment of the guide rope width and length, with multiple adjustment methods, flexible operation, and convenient use, resulting in better anti-tangling and anti-overlapping effects on the wire rope and preventing misalignment of the wire rope in the guide rope, thus improving the guiding effect, significant friction occurs between the wire rope and the surface of the device during use. This leads to high temperatures in the wire rope during use, and prolonged friction combined with high temperatures reduces the strength of the wire rope itself, thereby reducing its service life, shortening the replacement cycle, and indirectly increasing the operating cost of the wire rope. Summary of the Invention
[0005] The purpose of this invention is to solve the problem in the prior art that prolonged friction and high temperature reduce the strength of the wire rope itself, thereby reducing the service life of the wire rope, shortening the replacement cycle, and indirectly increasing the cost of using the wire rope.
[0006] To achieve the above objectives, the present invention employs the following technical solution: a wire rope guide that reduces wire rope friction, comprising: a mounting plate and a U-shaped strip, two semicircles, and two mounting semicircular blocks. A vertical strip is fixedly connected to the top of the outer surface of one of the semicircles. A limit block is fixedly connected to the top of the outer surface of the vertical strip. Multiple locking holes are provided on the outer surface of the vertical strip. A rectangular block I is fixedly connected to the top of the outer surface of the U-shaped strip. A rectangular block II is fixedly connected to the top of the outer surface of the U-shaped strip. A circular block is movably connected to the outer surface of the rectangular block II. A spring II is fixedly connected to the outer surface of the circular block. One end of the second spring is fixedly connected to the outer surface of the first rectangular block. A pull rod is fixedly connected to the outer surface of the circular block. A locking rod is fixedly connected to the outer surface of the circular block away from the second spring. The locking rod is movably embedded in the inside of one of the locking holes. The other semicircle is fixedly connected to the outer surface of the U-shaped strip. Fixed steel rings are fixedly connected to the inner walls of both semicircles. Multiple rollers are movably sleeved on the outer surfaces of both fixed steel rings. Two first springs are fixedly connected to the outer surfaces of opposite sides of the two semicircles. Two dampers are fixedly connected to the outer surfaces of opposite sides of the two semicircles.
[0007] The technical effect of adopting the above-mentioned further solution is as follows: When the wire rope passes through the inside of the semicircle, it moves on the surface of the multiple rollers set inside, and the multiple rollers rotate on the surface of the fixed steel ring. When the wire rope passes through the roller surface, the rollers rotate, which can reduce the friction between the wire rope and the semicircle, improve the service life of the wire rope, and reduce the damage to the wire rope caused by friction. At the same time, pulling the pull rod drives the circular block to move, and the circular block drives the locking rod to move. The locking rod disengages from the inside of the locking hole. At this time, pressing the vertical bar drives the upper semicircle to move downward. At this time, the inner diameter of the two semicircles can be adjusted. The spring and damper can limit the two semicircles. When the top semicircle is not subjected to any external force, the inner diameter of the two semicircles is at its maximum.
[0008] In a preferred embodiment, a rotating rod 1 is movably embedded inside the mounting plate near its top. A movable plate is movably fitted onto the outer surface of the rotating rod 1. A horizontal plate is fixedly connected to the bottom of the outer surface of the movable plate. A threaded rod 2 is fixedly connected to the outer surface of the mounting plate near its bottom. An angle plate is movably fitted onto the outer surface of the threaded rod 2. Multiple threaded rods 3 are movably embedded on the surface of the angle plate. An adjustment hole 1 is formed on the outer surface of the movable plate. One of the threaded rods 3 is movably embedded inside the adjustment hole 1. A sliding groove is formed on the top of the outer surface of the horizontal plate. A slider is slidably connected inside the sliding groove. An L-shaped block is fixedly connected to the outer surface of the slider. A threaded rod 4 is movably embedded inside the L-shaped block.
[0009] The technical effect of adopting the above-mentioned further solution is as follows: After the mounting plate is lifted, the entire device is installed by multiple screws. By rotating the threaded rod four, it moves inside the L-shaped block. At this time, the threaded rod four disengages from the inside of the adjustment hole two. At this time, the slider is pushed to move inside the slide groove. When it moves, the angle between the adjustment bar and the connecting plate increases or decreases. At this time, the lifting block can be pushed to slide on the outer surface of the two vertical rods. When sliding, the height of the entire guide rope device can be adjusted.
[0010] In a preferred embodiment, the outer surface of the horizontal plate has multiple adjustment holes 2. The threaded rod 4 is movably embedded in one of the adjustment holes 2. The slider 2 is movably embedded in the inside. The outer surface of the rotating rod 2 is movably fitted with an adjustment strip. One end of the adjustment strip is movably embedded with a rotating rod 3. The outer surface of the rotating rod 3 is fixedly connected to a connecting plate. The outer surface of the connecting plate is fixedly connected to a lifting block. Two vertical rods are fixedly connected to the top of the outer surface of the horizontal plate. The lifting block is movably fitted on the outer surface of the two vertical rods. The lifting block is fixedly connected to the outer surface of the U-shaped strip. The outer surface of the U-shaped strip is fixedly connected to a flat strip. The flat strip 2 is movably embedded with a threaded rod 1. The flat strip 2 is movably embedded with a round rod 1.
[0011] The technical effect of adopting the above-mentioned further solution is as follows: by rotating the threaded rod four, it moves back and forth inside the L-shaped block. At this time, the threaded rod four is embedded in one of the adjustment holes two to limit the slider. It should be noted that the adjustment bar is connected to the slider and the connecting plate through the rotating rod two and the rotating rod three, which can realize rotation. The movable plate rotates horizontally in a semi-circle around the mounting plate with the rotating rod one as the center. At this time, the angle of the movable plate can be adjusted. The slide can rotate horizontally in a semi-circle around the threaded rod two as the center. At this time, rotating any threaded rod three to embed it into the adjustment hole one limits the movable plate. At this time, the angle of the entire guide device can be adjusted.
[0012] In a preferred embodiment, the threaded rod 1 is rotatably connected to the top of the outer surface of one of the mounting semicircular blocks via a bearing, the round rod 1 is fixedly connected to the top of the outer surface of one of the mounting semicircular blocks, and a plurality of round rods 2 are fixedly connected to the bottom of the outer surface of one of the mounting semicircular blocks. The plurality of round rods 2 are evenly distributed on both sides of the bottom of one of the mounting semicircular blocks, and one of the mounting semicircular blocks is movably embedded inside another mounting semicircular block through the plurality of round rods 2. Threaded rods 2 are movably embedded inside both of the mounting semicircular blocks.
[0013] The technical effect of adopting the above-mentioned further solution is that: rotating the threaded rod moves up and down inside the flat bar, and at this time, under the limit of the round rod, the mounting semicircular block moves up and down. At this time, the inner diameter of the two mounting semicircular blocks can be adjusted, which can clean thicker or thinner wire ropes.
[0014] In a preferred embodiment, a circular rod 2 is movably embedded inside each of the two mounting semicircular blocks, and a clamping block is rotatably connected to one end of each of the two threaded rods via a bearing. A cleaning cotton strip is detachably connected to the inner wall of each of the two mounting semicircular blocks, and the two clamping blocks are located on the outer surface of the two cleaning cotton strips. Two abutment blocks are fixedly connected to the inner wall of each of the two mounting semicircular blocks, and the two abutment blocks are located on the outer surface of the two cleaning cotton strips.
[0015] The technical effect of adopting the above-mentioned further solution is that the wire rope will pass through the relative surfaces of the installed semicircular block, and the two cleaning cotton strips will clean the dirt on the surface of the wire rope, so that the surface of the wire rope is always in a smooth state, which can reduce the friction of its surface. By rotating the threaded rod two and moving it on the inner wall of the installed semicircular block, the clamping block will move under the limit of the rod two, which can install or remove the cleaning cotton strips, and the used cleaning cotton strips can be removed.
[0016] Compared with the prior art, the advantages and positive effects of the present invention are as follows: 1. In this embodiment of the invention, when the wire rope passes through the interior of the semicircle, it moves on the surface of the multiple rollers arranged inside, and the multiple rollers rotate on the surface of the fixed steel ring. When the wire rope passes through the roller surface, the rollers rotate, which can reduce the friction between the wire rope and the semicircle, improve the service life of the wire rope, and reduce the damage to the wire rope caused by friction. At the same time, pulling the pull rod drives the circular block to move, and the circular block drives the locking rod to move. The locking rod disengages from the inside of the locking hole. At this time, pressing the vertical bar drives the upper semicircle to move downward. At this time, the inner diameter of the two semicircles can be adjusted.
[0017] 2. In this embodiment of the invention, when in use, after picking up the mounting plate, install the entire device with multiple screws and install the entire device to the place where it is needed. Then, by rotating the threaded rod four, it moves inside the L-shaped block. At this time, the threaded rod four disengages from the inside of the adjustment hole two. At this time, the slider is pushed to move inside the slide groove. When moving, the angle between the adjustment bar and the connecting plate increases or decreases. At this time, the lifting block can be pushed to slide on the outer surface of the two vertical rods. When sliding, the height of the entire guide rope device can be adjusted.
[0018] 3. In this embodiment of the invention, the wire rope passes over the opposite surface of the mounting semicircular block. Two cleaning cotton strips clean the dirt on the surface of the wire rope, so that the surface of the wire rope is always in a smooth state, which can reduce the friction of its surface. By rotating the threaded rod two, it moves on the inner wall of the mounting semicircular block. At this time, under the limit of the rod two, the clamping block moves, which can install or remove the cleaning cotton strips, and can remove the used cleaning cotton strips. Attached Figure Description
[0019] Figure 1 A three-dimensional structural schematic diagram of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 2 A side view of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 3 A rear view schematic diagram of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 4 An enlarged structural diagram of the L-shaped block of a rope guide that can reduce friction of steel wire rope provided by the present invention; Figure 5 An enlarged structural diagram of point A of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 6 An enlarged structural diagram of section B of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 7 An enlarged structural diagram of point C of a rope guide that can reduce friction in steel wire ropes, provided by the present invention; Figure 8 This is a front view schematic diagram of a rope guide that can reduce friction in steel wire ropes, provided by the present invention.
[0020] Legend: 101. Mounting plate; 102. Rotating rod one; 103. Movable plate; 104. Horizontal plate; 105. Slide groove; 106. Vertical rod; 107. Sliding block; 108. Rotating rod two; 109. Adjusting bar; 110. Rotating rod three; 1101. Connecting plate; 111. Lifting block; 112. U-shaped bar; 113. Semicircle; 114. Roller; 115. Fixed steel ring; 116. Damper; 117. Spring one; 118. Vertical bar; 119. Limiting block; 120. Locking hole; 121. Rectangular Block 1; 122. Rectangular Block 2; 123. Pull Rod; 124. Round Block; 125. Spring 2; 126. Clamping Rod; 127. Flat Strip; 128. Threaded Rod 1; 129. Round Rod 1; 130. Install Semicircular Block; 131. Abutment Block; 132. Cleaning Cotton Strip; 133. Round Rod 2; 134. Threaded Rod 2; 135. Angle Plate; 136. Threaded Rod 3; 137. Adjustment Hole 1; 138. L-shaped Block; 139. Threaded Rod 4; 140. Adjustment Hole 2. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0022] Please see Figure 1-8 This embodiment provides a technical solution: a rope guide that can reduce the friction of steel wire rope, including: a mounting plate 101 and a U-shaped bar 112, two semicircles 113, and two mounting semicircular blocks 130. A vertical bar 118 is fixedly connected to the top of the outer surface of one of the semicircles 113. A limit block 119 is fixedly connected to the top of the outer surface of the vertical bar 118. Multiple locking holes 120 are formed on the outer surface of the vertical bar 118. A rectangular block 121 is fixedly connected to the top of the outer surface of the U-shaped bar 112, and a rectangular block 122 is fixedly connected to the top of the outer surface of the U-shaped bar 112. A circular block 124 is movably connected to the outer surface of the rectangular block 121. A spring 125 is fixedly connected to the outer surface of the circular block 124. One end of the spring 125 is fixedly connected to the outer surface of the rectangular block 121. A pull rod 123 is fixedly connected to the outer surface of the circular block 124. A locking rod 126 is fixedly connected to the outer surface of the circular block 124 away from the spring 125. The locking rod 126 is movably embedded in one of the locking holes 120. Another semicircle 113 is fixedly connected to the outer surface of the U-shaped strip 112. A fixing steel ring 115 is fixedly connected to the inner wall of both semicircles 113. Multiple rollers 114 are movably fitted onto the outer surface of the ring 115. Two springs 117 are fixedly connected to the outer surfaces of opposite sides of the two semicircles 113, and two dampers 116 are fixedly connected to the outer surfaces of opposite sides of the two semicircles 113. When the wire rope passes through the interior of the semicircle 113, it moves across the surfaces of the multiple rollers 114. The multiple rollers 114 rotate on the surface of the fixed ring 115. The rotation of the rollers 114 as the wire rope passes over their surfaces reduces friction between the wire rope and the semicircle 113. The friction mechanism improves the service life of the wire rope and reduces damage caused by friction. At the same time, pulling the lever 123 moves the round block 124, which in turn moves the locking lever 126. The locking lever 126 disengages from the locking hole 120. At this time, pressing the vertical bar 118 moves the upper semicircle 113 downward. The inner diameter of the two semicircles 113 can be adjusted. The spring 117 and the damper 116 limit the two semicircles 113. When the top semicircle 113 is not subjected to any external force, the inner diameter of the two semicircles 113 is at its maximum.
[0023] like Figures 1 to 8As shown, a rotating rod 102 is movably embedded inside the mounting plate 101 near its top. A movable plate 103 is movably fitted onto the outer surface of the rotating rod 102. A horizontal plate 104 is fixedly connected to the bottom of the outer surface of the movable plate 103. A threaded rod 134 is fixedly connected to the outer surface of the mounting plate 101 near its bottom. An angle plate 135 is movably fitted onto the outer surface of the threaded rod 134. Multiple threaded rods 136 are movably embedded on the surface of the angle plate 135. An adjustment hole 137 is opened on the outer surface of the movable plate 103, and one of the threaded rods 136 is movably embedded inside the adjustment hole 137. A groove 105 is opened on the top of the outer surface of the horizontal plate 104, and the groove 105 slides inside. A slider 107 is connected, and an L-shaped block 138 is fixedly connected to the outer surface of the slider 107. A threaded rod 139 is movably embedded inside the L-shaped block 138. After the mounting plate 101 is lifted, the entire device is installed by multiple screws. By rotating the threaded rod 139, it moves inside the L-shaped block 138. At this time, the threaded rod 139 disengages from the inside of the adjustment hole 140. This pushes the slider 107 to move inside the slide groove 105. When it moves, the angle between the adjustment bar 109 and the connecting plate 1101 increases or decreases. At this time, the lifting block 111 can be pushed to slide on the outer surface of the two vertical rods 106. When sliding, the height of the entire guide rope device can be adjusted.
[0024] like Figures 1 to 8As shown, the outer surface of the horizontal plate 104 has multiple adjustment holes 140. A threaded rod 139 is movably embedded in one of the adjustment holes 140. A rotating rod 108 is movably embedded inside the slider 107. An adjusting strip 109 is movably fitted onto the outer surface of the rotating rod 108. A rotating rod 110 is movably embedded at one end of the adjusting strip 109. A connecting plate 1101 is fixedly connected to the outer surface of the rotating rod 110. A lifting block 111 is fixedly connected to the outer surface of the connecting plate 1101. Two vertical rods 106 are fixedly connected to the top of the outer surface of the horizontal plate 104. The lifting block 111 is movably fitted onto the outer surface of the two vertical rods 106. The lifting block 111 is fixedly connected to the outer surface of the U-shaped strip 112. A flat strip 127 is fixedly connected to the outer surface of the U-shaped strip 112. A threaded rod 139 is movably embedded inside the flat strip 127. 28. A round rod 129 is movably embedded inside the flat bar 127. By rotating the threaded rod 139, it moves back and forth inside the L-shaped block 138. At this time, the threaded rod 139 is embedded inside one of the adjustment holes 140 to limit the slider 107. It should be noted that the adjustment bar 109 is connected to the slider 107 and the connecting plate 1101 through the rotating rod 108 and the rotating rod 110, which can be rotated. The movable plate 103 rotates horizontally in a semi-circle around the mounting plate 101 with the rotating rod 102 as the center. At this time, the angle of the movable plate 103 can be adjusted. The slide groove 105 can rotate horizontally in a semi-circle around the threaded rod 134 as the center. At this time, rotating any threaded rod 136 can embed it inside the adjustment hole 137 to limit the movable plate 103. At this time, the angle of the entire guide device can be adjusted.
[0025] like Figures 1 to 8 As shown, threaded rod 128 is rotatably connected to the top of the outer surface of one of the mounting semicircular blocks 130 via a bearing. Round rod 129 is fixedly connected to the top of the outer surface of one of the mounting semicircular blocks 130. Multiple round rods 133 are fixedly connected to the bottom of the outer surface of one of the mounting semicircular blocks 130. The multiple round rods 133 are evenly distributed on both sides of the bottom of one of the mounting semicircular blocks 130. One of the mounting semicircular blocks 130 is movably embedded inside the other mounting semicircular block 130 through the multiple round rods 133. Threaded rods 134 are movably embedded inside both mounting semicircular blocks 130. Rotating threaded rod 128 moves it up and down inside the flat bar 127. At this time, under the limit of round rod 129, the mounting semicircular block 130 moves up and down. At this time, the inner diameter of the two mounting semicircular blocks 130 can be adjusted, which can clean thicker or thinner wire ropes.
[0026] like Figures 1 to 8As shown, two circular rods 133 are movably embedded inside the two mounting semicircular blocks 130. One end of each of the two threaded rods 134 is rotatably connected to a clamping block via a bearing. Cleaning cotton strips 132 are detachably connected to the inner walls of the two mounting semicircular blocks 130. The two clamping blocks are located on the outer surfaces of the two cleaning cotton strips 132. Two abutments 131 are fixedly connected to the inner walls of the two mounting semicircular blocks 130. The two abutments 131 are located on the outer surfaces of the two cleaning cotton strips 132. The wire rope passes over the opposite surfaces of the mounting semicircular blocks 130. The two cleaning cotton strips 132 clean the dirt on the surface of the wire rope, keeping the surface of the wire rope smooth and reducing its surface friction. By rotating the threaded rods 134, the clamping blocks move under the limit of the circular rods 133, allowing the cleaning cotton strips 132 to be installed or removed. Used cleaning cotton strips 132 can be removed.
[0027] Working principle: In use, after lifting the mounting plate 101, install the entire device using multiple screws. Position the device where it is needed. Then, rotate the threaded rod 139 to move it inside the L-shaped block 138. At this time, the threaded rod 139 disengages from the adjusting hole 140, pushing the slider 107 to move inside the groove 105. This movement causes the angle between the adjusting bar 109 and the connecting plate 1101 to increase or decrease, allowing the lifting block 111 to slide on the outer surface of the two vertical rods 106. This sliding motion adjusts the height of the entire guide rope device. After adjusting to the desired height, rotate the threaded rod 139... The L-shaped block 138 moves back and forth internally. At this time, the threaded rod 139 is embedded in one of the adjustment holes 140 to limit the slider 107. It should be noted that the adjustment bar 109 is connected to the slider 107 and the connecting plate 1101 through the rotating rod 108 and the rotating rod 110, which can be rotated. The movable plate 103 rotates horizontally in a semi-circle around the mounting plate 101 with the rotating rod 102 as the center. At this time, the angle of the movable plate 103 can be adjusted. The slide groove 105 can rotate horizontally in a semi-circle around the threaded rod 134 as the center. At this time, the threaded rod 136 is embedded in the adjustment hole 137 to limit the movable plate 103. At this time, the entire guiding device can realize The angle is adjusted so that when the wire rope passes through the interior of the semicircle 113, it moves on the surface of multiple rollers 114 arranged inside. The rollers 114 rotate on the surface of the fixed steel ring 115. The rotation of the rollers 114 as the wire rope passes reduces friction between the wire rope and the semicircle 113, improving the service life of the wire rope and reducing damage caused by friction. Simultaneously, pulling the lever 123 moves the block 124, which in turn moves the locking lever 126, disengaging it from the locking hole 120. At this point, pressing the vertical bar 118 moves the upper semicircle 113 downwards. The inner diameter of the two semicircles 113 is now larger. The adjustment is possible. The spring 117 and damper 116 limit the two semicircles 113. When the top semicircle 113 is not subjected to any external force, the inner diameter of the two semicircles 113 is at its maximum. At the same time, the wire rope will pass through the opposite surface of the mounting semicircle block 130. The two cleaning strips 132 clean the dirt on the surface of the wire rope, so that the surface of the wire rope is always in a smooth state, which can reduce the surface friction. By rotating the threaded rod 134, it moves on the inner wall of the mounting semicircle block 130. At this time, under the limit of the round rod 133, the clamping block moves, which can install or remove the cleaning strips 132. The used cleaning strips 132 can be removed.
[0028] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments that can be applied to other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the protection scope of the present invention.
Claims
1. A rope guide for reducing friction in steel wire ropes, comprising: The mounting plate (101), U-shaped strip (112), two semicircles (113), and two mounting semicircular blocks (130) are characterized in that a vertical strip (118) is fixedly connected to the top of the outer surface of one of the semicircles (113), a limit block (119) is fixedly connected to the top of the outer surface of the vertical strip (118), and a plurality of locking holes (120) are opened on the outer surface of the vertical strip (118). A rectangular block (121) is fixedly connected to the top of the outer surface of the U-shaped strip (112), and a rectangular block (122) is fixedly connected to the top of the outer surface of the U-shaped strip (112). A circular block (12) is movably connected to the outer surface of the rectangular block (122). 4) A second spring (125) is fixedly connected to the outer surface of the circular block (124). One end of the second spring (125) is fixedly connected to the outer surface of the first rectangular block (121). A pull rod (123) is fixedly connected to the outer surface of the circular block (124). A locking rod (126) is fixedly connected to the outer surface of the circular block (124) away from the second spring (125). The locking rod (126) is movably embedded in the inside of one of the locking holes (120). The other semicircle (113) is fixedly connected to the outer surface of the U-shaped strip (112). A fixing steel ring (115) is fixedly connected to the inner wall of both semicircles (113). (115) The outer surface of each of the two semicircles (113) is movably fitted with multiple rollers (114). Two springs (117) are fixedly connected to the outer surface of the opposite side of the two semicircles (113). Two dampers (116) are fixedly connected to the outer surface of the opposite side of the two semicircles (113). A rotating rod (102) is movably embedded in the inner part of the mounting plate (101) near its top. A movable plate (103) is movably fitted on the outer surface of the rotating rod (102). A horizontal plate (104) is fixedly connected to the bottom of the outer surface of the movable plate (103). A threaded rod (134) is fixedly connected to the outer surface of the mounting plate (101) near its bottom. An angle plate (135) is movably fitted on the outer surface of the threaded rod two (134). Multiple threaded rods three (136) are movably embedded on the surface of the angle plate (135). An adjustment hole one (137) is opened on the outer surface of the movable plate (103), and one of the threaded rods three (136) is movably embedded in the adjustment hole one (137). A sliding groove (105) is opened on the top of the outer surface of the horizontal plate (104). A slider (107) is slidably connected inside the sliding groove (105). An L-shaped block (138) is fixedly connected to the outer surface of the slider (107). A threaded rod four (139) is movably embedded inside the L-shaped block (138).The outer surface of the horizontal plate (104) is provided with a plurality of adjustment holes 2 (140). The threaded rod 4 (139) is movably embedded in one of the adjustment holes 2 (140). The slider (107) is movably embedded with a rotating rod 2 (108). The outer surface of the rotating rod 2 (108) is movably fitted with an adjustment strip (109). One end of the adjustment strip (109) is movably embedded with a rotating rod 3 (110). The outer surface of the rotating rod 3 (110) is fixedly connected with a connecting plate (1101). The outer surface of the connecting plate (1101) is fixedly connected with a lifting block (111). The top of the outer surface of the horizontal plate (104) is fixedly... The fixed connection has two vertical rods (106); a flat strip (127) is fixedly connected to the outer surface of the U-shaped strip (112), and a threaded rod (128) is movably embedded inside the flat strip (127), and a round rod (129) is movably embedded inside the flat strip (127); a threaded rod (134) is movably embedded inside the two mounting semicircular blocks (130); a round rod (133) is movably embedded inside the two mounting semicircular blocks (130), and a clamping block is rotatably connected to one end of each of the two threaded rods (134) via a bearing; a cleaning cotton strip (132) is detachably connected to the inner wall of each of the two mounting semicircular blocks (130).
2. The rope guide for reducing wire rope friction according to claim 1, characterized in that: The lifting block (111) is movably sleeved on the outer surface of the two vertical rods (106).
3. A rope guide for reducing wire rope friction according to claim 2, characterized in that: The lifting block (111) is fixedly connected to the outer surface of the U-shaped bar (112).
4. A rope guide for reducing wire rope friction according to claim 3, characterized in that: The threaded rod one (128) is rotatably connected to the top of the outer surface of one of the mounting semicircular blocks (130) via a bearing, the round rod one (129) is fixedly connected to the top of the outer surface of one of the mounting semicircular blocks (130), and a plurality of round rod two (133) are fixedly connected to the bottom of the outer surface of one of the mounting semicircular blocks (130).
5. A rope guide for reducing wire rope friction according to claim 4, characterized in that: Multiple circular rods (133) are evenly distributed on both sides of the bottom of one of the mounting semicircular blocks (130), and one of the mounting semicircular blocks (130) is movably embedded inside the other mounting semicircular block (130) by multiple circular rods (133).
6. A rope guide for reducing wire rope friction according to claim 5, characterized in that: Both clamping blocks are located on the outer surfaces of the two cleaning tampons (132), and the inner walls of the two mounting semicircular blocks (130) are fixedly connected to two abutments (131), both of which are located on the outer surfaces of the two cleaning tampons (132).
Citation Information
Patent Citations
Adjustable pin roller rope guide
CN107954358A
Roller type rope guide
CN215626403U