CN115040844A - Anti-slip foot fastener - Google Patents

Anti-slip foot fastener Download PDF

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Publication number
CN115040844A
CN115040844A CN202210482669.3A CN202210482669A CN115040844A CN 115040844 A CN115040844 A CN 115040844A CN 202210482669 A CN202210482669 A CN 202210482669A CN 115040844 A CN115040844 A CN 115040844A
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CN
China
Prior art keywords
floating
rod
pedal
slip
plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202210482669.3A
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Chinese (zh)
Inventor
郑阳洋
郑勇
周荣伟
李凯佳
赵品超
蔡利吉
朱雨薪
李喆
毛艺霖
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangshan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Original Assignee
Jiangshan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangshan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd filed Critical Jiangshan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Priority to CN202210482669.3A priority Critical patent/CN115040844A/en
Publication of CN115040844A publication Critical patent/CN115040844A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B27/00Apparatus for climbing poles, trees, or the like
    • A63B27/02Climbing devices for round poles or trees attachable to the feet

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Floor Finish (AREA)

Abstract

The invention discloses an anti-slip foot fastener, and aims to provide an anti-slip foot fastener which can effectively avoid the problem that the operation safety of a pole-climbing operator is influenced because the feet of the pole-climbing operator fall off from the foot fastener due to the slip between the feet of the pole-climbing operator and a pedal. It includes running-board and anti-skidding takes off the device, the anti-skidding takes off the device and includes: the upper surface of the elastic rubber plate is provided with a plurality of limit holes which are uniformly distributed, the elastic rubber plate is fixed on the lower surface of the pedal plate, and the pedal plate is provided with a plurality of floating rod guide holes which are in one-to-one correspondence with the limit holes; the floating rods correspond to the limiting holes one by one, the lower ends of the floating rods are fixed in the corresponding limiting holes, and the upper ends of the floating rods penetrate through the corresponding floating rod guide holes and are located above the pedal plates.

Description

Anti-slip foot fastener
Technical Field
The invention relates to a climber for climbing operation, in particular to an anti-slipping climber.
Background
The climber is an arc iron tool for sleeving the climbing wire pole on the shoe. The climbers have the advantages of light weight, high strength, good toughness, portability, flexibility, convenient carrying and the like, and the climbers have the characteristics of high speed, simple pole climbing method and the like when being used for climbing the electric pole. The climbers utilize the lever action, and the other side is tightly buckled on the telegraph pole by the weight of the human body to generate larger friction force, so that people can easily climb; when the foot is lifted, the weight borne by the foot is reduced, and the buckle is automatically loosened.
At present, in order to avoid the situation that feet fall off from the climbers in the pole climbing operation process, holes or bulges are usually arranged on the pedal plate to improve the friction force between the pedal plate and the sole. Although the prior pedal with the holes or the bulges can improve the friction force between the pedal and the sole to a certain extent, the pedal is favorable for preventing feet from falling off from the climbers; however, in cold weather conditions, especially in rainy and snowy weather conditions, the surface of the pedal plate is easy to freeze during long-time work of the pole-climbing operator on the pole, and at the moment, slipping between the feet of the pole-climbing operator and the pedal plate is easy to occur, so that the feet of the pole-climbing operator fall off from the climbers, and the operation safety of the pole-climbing operator is affected.
Disclosure of Invention
The invention aims to provide an anti-slip climber which can effectively avoid the problem that the operation safety of a pole climbing operator is influenced because the feet of the pole climbing operator fall off from the climber due to the slip between the feet of the pole climbing operator and a pedal.
The technical scheme of the invention is as follows:
an anti-slip climber comprising a pedal and an anti-slip device, the anti-slip device comprising:
the upper surface of the elastic rubber plate is provided with a plurality of limit holes which are uniformly distributed, the elastic rubber plate is fixed on the lower surface of the pedal plate, and the pedal plate is provided with a plurality of floating rod guide holes which are in one-to-one correspondence with the limit holes;
the floating rods correspond to the limiting holes one by one, the lower ends of the floating rods are fixed in the corresponding limiting holes, and the upper ends of the floating rods penetrate through the corresponding floating rod guide holes and are located above the pedal plates.
In the anti-slip foot buckle, the pedal plate is provided with a plurality of floating rods which are uniformly distributed, and the lower ends of the floating rods are provided with the limiting holes for fixing the elastic rubber plate, so that when shoes of a person who climbs the foot plate are trodden on the pedal plate, the upper ends of part of the floating rods move downwards into the floating rod guide holes along the floating rod guide holes, so that the shoes of the person who climbs the foot plate are trodden on the upper surface of the pedal plate, and part of the floating rods are clamped into the grooves of the patterns of the shoe sole (the shoe sole generally has concave-convex patterns), and when the shoes are lifted, the floating rods move upwards under the action of the elastic rubber plate, so that part of the floating rods are kept clamped into the grooves of the patterns of the shoe sole; therefore, even in rainy and snowy weather under cold weather conditions, the problem that the feet of the pole climbing operators fall off from the climbers to influence the operation safety of the pole climbing operators due to the fact that the feet of the pole climbing operators slip with the pedals can be effectively avoided.
More importantly, when the shoes of the staff for climbing the pole are stepped on the pedal, the floating rod moves downwards along the guide hole of the floating rod, when the shoes of the staff for climbing the pole are lifted and the sole is separated from the pedal, the floating rod moves upwards under the action of the elastic rubber plate, namely the floating rod moves upwards and downwards continuously in the pole climbing process; so, even when the operation in the sleet weather under cold weather condition, also can step on reciprocating of the floating lever of pole in-process, come timely destruction running-board upper surface and form the ice sheet to avoid running-board upper surface to appear thicker ice, thereby further effectively avoid because of the running-board surface freezes, and appear stepping on the pole operation personnel's foot and the running-board between take place to skid, lead to stepping on the pole operation personnel's foot from the problem that the climbers drops.
Preferably, an inner cavity of the plate is arranged in the elastic rubber plate, and each limiting hole is located above the inner cavity of the plate. Therefore, the elasticity below the elastic rubber plate at the lower end of the floating rod can be improved, so that the floating rod can move up and down at the elastic rubber plate; and the cavity in the plate can also play a role in heat insulation, so that the elasticity of the elastic rubber plate at the lower end of the floating rod is ensured under the cold weather condition, and the floating rod can move up and down under the elastic action of the elastic rubber plate.
Preferably, the inner top surface of the cavity in the plate is also provided with annular grooves corresponding to the limiting holes one by one, and the lower ends of the limiting holes are positioned in the corresponding annular grooves. Therefore, the elasticity of the lower part of the elastic rubber plate at the lower end of the floating rod can be further improved, so that the floating rod can move up and down at the elastic rubber plate.
Preferably, the upper end surface of the floating rod is a guide inclined surface, and one side of the guide inclined surface, which is close to the rear end of the pedal, inclines downwards. Therefore, on one hand, the upper end of the floating rod is clamped into the grooves of the patterns of the shoe sole, so that the slipping between the feet of the operator for climbing the rod and the pedal plate is avoided; on the other hand, in the process that the shoe extends into the pedal buckle belt of the pedal, if the shoe sole contacts with the guide inclined plane at the upper end of the floating rod, the floating rod is favorable to move downwards, so that the shoe extends into the pedal buckle belt of the pedal.
Preferably, the guide slope has an inclination angle of 20 to 40 degrees.
Preferably, the floating rod comprises a floating bottom rod and an upper clamping rod arranged at the upper end of the floating bottom rod, the outer diameter of the upper clamping rod is smaller than that of the floating bottom rod, and the floating bottom rod extends into the floating rod guide hole. Therefore, on one hand, the floating stability and the strength of the floating rod can be improved by matching the floating bottom rod with the larger outer diameter with the guide hole of the floating rod, and the upper clamping rod with the smaller outer diameter can be clamped into the groove of the pattern of the sole, so that the foot of a worker climbing the rod is prevented from slipping with the pedal; on the other hand, the floating bottom rod with larger outer diameter is matched with the floating rod guide hole to improve the aperture of the floating rod guide hole, so that the ice layer on the upper surface of the pedal plate can be damaged when the pedal plate works in rainy and snowy weather under the condition of cold climate.
Preferably, the upper end of the floating bottom rod is located above the upper surface of the footboard, and the distance between the upper end of the floating bottom rod and the upper surface of the footboard is less than or equal to 1 mm. Thus, it is advantageous to break the ice layer on the upper surface of the footboard by the floating bottom bar.
Preferably, the distance between the top end of the floating rod and the upper surface of the pedal is 3-6 mm.
Preferably, the knee joint device further comprises a knee connecting belt, one end of the knee connecting belt is connected with the pedal, and the other end of the knee connecting belt is provided with the knee buckle belt. So, can fix at the knee annex of the staff of climbing the pole through the knee cingulum, be connected to the pole-climbing staff on one's body through the knee connecting band with the climbers to avoid the climbers to drop.
Preferably, the upper surface of the elastic rubber sheet is closely attached to the lower surface of the footboard.
The invention has the beneficial effects that: can effectively avoid taking place to skid between the foot of the operating personnel of climbing the pole and the running-board, and lead to climbing the foot of the operating personnel of pole and drop from the climbers, influence the problem of climbing the operation safety of operating personnel of pole.
Drawings
FIG. 1 is a partial schematic view of the anti-slip climbers of the present invention.
Fig. 2 is a schematic cross-sectional view taken along line a-a in fig. 1.
FIG. 3 is a schematic view showing a structure of a floating bar of the anti-slip climber of the present invention.
In the figure:
a foot board 1;
an anti-slip device 2;
2.0 parts of an elastic rubber plate;
the floating rod is 2.1, the floating bottom rod is 2.11, the upper clamping rod is 2.12, and the guide inclined plane is 2.13;
an intra-plate cavity 2.3;
an annular groove 2.4;
and a limiting hole 2.5.
Detailed Description
The first embodiment is as follows: as shown in fig. 1 and 2, the anti-slip climber comprises a pedal 1 and an anti-slip device 2. The anti-slip device 2 comprises an elastic rubber plate 2.0 and a floating rod 2.1. The upper surface of the elastic rubber plate is provided with a plurality of limit holes 2.5 which are uniformly distributed. The elastic rubber plate is fixed on the lower surface of the pedal plate, and particularly, the upper surface of the elastic rubber plate is tightly attached to the lower surface of the pedal plate. In this embodiment, the upper surface of the elastic rubber sheet is adhered to the lower surface of the pedal. The pedal plate is provided with a plurality of floating rod guide holes 2.2 which are in one-to-one correspondence with the limiting holes. The floating rod guide hole penetrates through the upper surface and the lower surface of the pedal plate. The floating rods correspond to the limiting holes one by one. The lower end of the floating rod is fixed in the corresponding limit hole, and the upper end of the floating rod penetrates through the corresponding floating rod guide hole and is positioned above the pedal. In this embodiment, the upper surface of the floating rod pedal is perpendicular.
In the anti-slip foot buckle of the embodiment, the pedal plate is provided with the plurality of floating rods which are uniformly distributed, and the lower ends of the floating rods are provided with the limiting holes for fixing the elastic rubber plate, so that when shoes of a person who climbs the foot pedal are trodden on the pedal plate, the upper ends of part of the floating rods move downwards into the floating rod guide holes along the floating rod guide holes, so that the shoes of the person who climbs the foot pedal are trodden on the upper surface of the pedal plate, and part of the floating rods are clamped into the grooves of the patterns of the sole (the sole generally has concave-convex patterns), and when the shoes are lifted, the floating rods move upwards under the action of the elastic rubber plate, so that part of the floating rods are kept clamped into the grooves of the patterns of the sole; therefore, even in rainy and snowy weather under cold weather conditions, the problem that the feet of the pole climbing operators fall off from the climbers to influence the operation safety of the pole climbing operators due to the fact that the feet of the pole climbing operators slip with the pedals can be effectively avoided.
More importantly, when the shoes of the person working on the pole are stepped on the pedal, the floating rod moves downwards along the guide hole of the floating rod, when the shoes of the person working on the pole are lifted and the sole is separated from the pedal, the floating rod moves upwards under the action of the elastic rubber plate, namely the floating rod moves up and down continuously in the pole-climbing process; so, even when the operation in the sleet weather under cold weather condition, also can step on reciprocating of the floating lever of pole in-process, come timely destruction running-board upper surface to the ice sheet that forms to avoid running-board upper surface to appear thick ice, thereby further effectively avoid because of running-board surface freezes, and appear stepping on the pole operating personnel's foot and the running-board takes place to skid between the foot, leads to stepping on the pole operating personnel's foot from the problem that the climbers drop.
In this embodiment, the floating rods are uniformly arranged and distributed. The floating rods are arranged in 6-10 rows from the front end of the pedal plate to the rear end of the pedal plate, and specifically, the floating rods are arranged in 7 rows from the front end of the pedal plate to the rear end of the pedal plate. Each row of floating rods comprises 8-12 floating rods.
Further, as shown in fig. 2, an inner cavity 2.3 is arranged in the elastic rubber plate, and each limiting hole is located above the inner cavity. Therefore, the elasticity below the elastic rubber plate at the lower end of the floating rod can be improved, so that the floating rod can move up and down at the elastic rubber plate; and the cavity in the board can also play thermal-insulated effect, under cold weather condition, guarantees the elasticity of the elasticity rubber slab department at the lower extreme place of floating lever, makes the floating lever can reciprocate under the elastic action of elasticity rubber slab.
Further, as shown in fig. 2, annular grooves 2.4 corresponding to the limiting holes one to one are also formed in the inner top surface of the inner cavity of the plate. The lower end of the limiting hole is positioned in the corresponding annular groove. Therefore, the elasticity of the lower part of the elastic rubber plate at the lower end of the floating rod can be further improved, so that the floating rod can move up and down at the elastic rubber plate.
Further, as shown in fig. 2, the floating rod 2.1 includes a floating bottom rod 2.11 and an upper catching rod 2.12 disposed at an upper end of the floating bottom rod. The floating bottom rod extends into the guide hole of the floating rod. The outer diameter of the upper clamping rod is smaller than that of the floating bottom rod. Therefore, on one hand, the floating stability and the strength of the floating rod can be improved by matching the floating bottom rod with the larger outer diameter with the guide hole of the floating rod, and the upper clamping rod with the smaller outer diameter can be clamped into the groove of the pattern of the sole, so that the foot of a worker climbing the rod is prevented from slipping with the pedal; on the other hand, the floating bottom rod with larger outer diameter is matched with the floating rod guide hole to improve the aperture of the floating rod guide hole, so that the ice layer on the upper surface of the pedal plate can be damaged when the pedal plate works in rainy and snowy weather under the condition of cold climate.
The upper end of the floating bottom rod is positioned above the upper surface of the pedal plate, and the distance between the upper end of the floating bottom rod and the upper surface of the pedal plate is less than or equal to 1 mm. Thus, it is advantageous to break the ice layer on the upper surface of the footboard by the floating bottom bar.
Further, as shown in fig. 2 and 3, the upper end surface of the floating rod is a guide inclined surface 2.13, specifically, the upper end surface of the upper clamping rod of the floating rod is a guide inclined surface 2.13. One side of the guide inclined plane close to the rear end of the pedal is inclined downwards. The inclined angle of the guide inclined plane is 20-40 degrees, and in the embodiment, the inclined angle of the guide inclined plane is 30 degrees. Therefore, on one hand, the upper end of the floating rod is clamped into the grooves of the patterns of the shoe sole, so that the slipping between the feet of the operator for climbing the rod and the pedal plate is avoided; on the other hand, in the process that the shoe extends into the pedal buckle belt of the pedal, if the shoe sole contacts with the guide inclined plane at the upper end of the floating rod, the floating rod is favorable to move downwards, so that the shoe extends into the pedal buckle belt of the pedal.
The distance between the top end of the floating rod and the upper surface of the pedal is 3-6 mm.
Further, the anti-slip foot fastener further includes a knee joint strap (not shown in the drawings). One end of the knee connecting belt is connected with the pedal, and the other end of the knee connecting belt is provided with a knee buckle belt. Therefore, the knee buckle belt can be fixed at the knee accessory of the climbing rod operator, and the foot buckle is connected to the climbing rod operator through the knee connecting belt so as to avoid the falling of the foot buckle.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and all simple modifications, alterations and equivalents of the above embodiments according to the technical spirit of the present invention are still within the protection scope of the technical solution of the present invention.

Claims (10)

1. The utility model provides an antiskid climbers that takes off, includes the running-board, characterized by still includes the antiskid and takes off the device, the antiskid takes off the device and includes:
the upper surface of the elastic rubber plate is provided with a plurality of limit holes which are uniformly distributed, the elastic rubber plate is fixed on the lower surface of the pedal plate, and the pedal plate is provided with a plurality of floating rod guide holes which are in one-to-one correspondence with the limit holes;
the floating rods correspond to the limiting holes one by one, the lower ends of the floating rods are fixed in the corresponding limiting holes, and the upper ends of the floating rods penetrate through the corresponding floating rod guide holes and are located above the pedal plates.
2. The anti-slip climber as claimed in claim 1, wherein an inner cavity is formed in the elastic rubber plate, and each of the limiting holes is located above the inner cavity.
3. The anti-slip foot fastener according to claim 2, wherein the inner top surface of the inner cavity of the plate is further provided with annular grooves corresponding to the limiting holes one by one, and the lower ends of the limiting holes are positioned in the corresponding annular grooves.
4. The anti-slip climber as claimed in claim 1, 2 or 3, wherein the upper end surface of the floating rod is a guide slope, and the side of the guide slope, which is close to the rear end of the pedal, is inclined downward.
5. The anti-slip foot fastener according to claim 4, wherein the inclined angle of the guide slope is 20 to 40 degrees.
6. The anti-slip climber as claimed in claim 1, 2 or 3, wherein the floating rod comprises a floating bottom rod and an upper clamping rod arranged at the upper end of the floating bottom rod, the outer diameter of the upper clamping rod is smaller than that of the floating bottom rod, and the floating bottom rod extends into the guide hole of the floating rod.
7. The anti-slip climber as claimed in claim 6, wherein the upper end of the floating bottom bar is located above the upper surface of the footboard, and a distance between the upper end of the floating bottom bar and the upper surface of the footboard is 1 mm or less.
8. The anti-slip foot fastener according to claim 1, 2 or 3, wherein a distance between the top end of the floating rod and the upper surface of the foot board is 3-6 mm.
9. The anti-slip foot buckle according to claim 1, 2 or 3, further comprising a knee connecting strap, one end of the knee connecting strap being connected to the foot pedal, and the other end of the knee connecting strap being provided with a knee buckle.
10. The anti-slip climber as claimed in claim 1, 2 or 3, wherein the upper surface of the elastic rubber sheet is closely attached to the lower surface of the footboard.
CN202210482669.3A 2022-05-05 2022-05-05 Anti-slip foot fastener Pending CN115040844A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210482669.3A CN115040844A (en) 2022-05-05 2022-05-05 Anti-slip foot fastener

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210482669.3A CN115040844A (en) 2022-05-05 2022-05-05 Anti-slip foot fastener

Publications (1)

Publication Number Publication Date
CN115040844A true CN115040844A (en) 2022-09-13

Family

ID=83158367

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202210482669.3A Pending CN115040844A (en) 2022-05-05 2022-05-05 Anti-slip foot fastener

Country Status (1)

Country Link
CN (1) CN115040844A (en)

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