CN209752099U - Pole climber - Google Patents
Pole climber Download PDFInfo
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- CN209752099U CN209752099U CN201920339139.7U CN201920339139U CN209752099U CN 209752099 U CN209752099 U CN 209752099U CN 201920339139 U CN201920339139 U CN 201920339139U CN 209752099 U CN209752099 U CN 209752099U
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- belt
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Abstract
The utility model discloses a climbing pole climber, which comprises a pedal, a buckling belt, an antiskid block, a foot sleeve, a hook body, a buckling body and a limit nail; the pedal is a full-support pedal in the shape of a sole plate, the pedal is fixedly connected with the buckle body through the arc-shaped connecting rod, the side face of the pedal is connected with the anti-skid block, the front part of the pedal is connected with the socket-shaped hard PE foot sleeve, and the heel position at the rear part of the pedal is connected with the hard rubber buckle belt with the self-locking device, which can adjust the angle in the longitudinal direction and the tightness in the transverse direction, so that the uniform stress on the sole of a person on the rod is ensured, the pressure at the sole part is reduced, the comfort and fatigue of the sole are; can thoroughly avoid the unexpected drop of operation personnel climbers on the pole to lead to the personal casualty risk that personnel's eminence falls on the pole.
Description
Technical Field
The utility model belongs to the electric power production field relates to a step on pole operation personnel labor protection and step on pole instrument, especially relates to a step on pole climbers.
Background
the climbers are easy to wear, convenient to use and flexible, and are good partners for operators who ascend. However, in actual operation, it is found that the electrical operator with skilled technique can work on the electric pole flexibly and freely in a short time by using the foot fastener, but if the electrical operator with unskilled technique or works on the electric pole for a long time, the foot fastener falls off when the electrical operator uses the traditional foot fastener to work on the electric pole, and the operator can cause numbness of lower limbs due to too long pressure bearing of the foot sole part, thereby causing potential safety hazards such as unstable standing.
Research and analysis show that the potential safety hazard is caused by the following structural defects of the traditional climbers:
(1) Because the running-board of current climbers is less, only be applicable to the sole and trample, the impetus only accounts for sole area 1/3, and pole radial distance is too little, can not stand on a reference surface simultaneously by both feet, and the operation personnel focus all presses on the sole that the position leaned on, equals that the pressure that this sole actually bore is 6 times when normal both feet stand, and the sole of operation personnel atress is extremely easily tired numb, neither accords with humanized labor protection requirement, has very big operation risk again. The existing solution is that after the operation time is longer, the worker generally adopts the upper and lower climbers to change the position to relieve the fatigue of the sole. The sole below originally bears the weight and is tired and numb for a long time, so the climbers slip and fall off when the upper and lower transposition is easily caused, and a larger risk exists.
(2) The sole fastening belt of the existing foot fastener is a single belt, so that although the sole is flexible and convenient to wear, when the foot is operated on a rod, parts such as instep, arch and the like are not supported, the effect of dispersing sole pressure cannot be achieved, and if the foot fastening belt is loosened, the foot fastener is very easy to slip off in the process that an operator moves up and down.
(3) When climbing a pole, the requirement on the skill of the worker is high. The primary skill requirement is that the safety precautions must be fully reliable. The safety and comfort of the climbers determine whether the comprehensive skills of the operators on the pole are ensured. People who climb the pole must feel comfortable wearing the foot fastener, the sole, the instep and the heel should be tightly wrapped, and the foot should be tightly wrapped with the fastener after wearing. At the same time, the rod cannot fall off when displaced. Secondly, if when the staff arrives at the stable platforms such as cross arms for operation, when the climbers are to be separated according to the work requirements, whether the separation strength is adjusted to a proper position or not is convenient, and whether the separation is convenient according to the work intention or not is determined.
Investigation finds that no more advanced climbers exist in the market at present, and the problems that the climbers fall off when the climbers are used for long-time operation by a climbing operator can be solved safely and effectively when the lower limbs of the operator are tired and the pole shifts are solved.
Disclosure of Invention
For overcoming the deficiencies of the prior art, the utility model aims at providing a pole climber with simple structure, convenient use and safe and reliable operation, which ensures the safety of pole climbing action and improves the working efficiency.
In order to achieve the above object, the utility model adopts the following technical scheme:
a pole climbing foot fastener comprises a pedal, a fastening belt, an anti-skid block, a foot sleeve, a hook body, a fastener body and a limit nail;
The hook body is of an arc steel bar structure, a non-slip pad covers the contact surface of the inner side of the front section of the hook body and an electric pole, the rear section of the hook body is sleeved with the buckle body, the buckle body can move on the hook body, and the rear section of the hook body is provided with a limit nail for limiting the position of the buckle body;
The pedal is a full-supporting pedal in the shape of a foot bottom plate, the pedal is fixedly connected with the buckle body through an arc-shaped connecting rod, the side face of the pedal is connected with the anti-skidding block, the anti-skidding block is connected with the pedal through a telescopic structure, the front part of the pedal is connected with a nest-shaped hard PE foot sleeve, and the heel position at the rear part of the pedal is connected with a hard rubber buckle belt with a self-locking device, wherein the angle of the hard rubber buckle belt can.
Furthermore, two ends of the buckle belt are connected to two sides of the position of the heel of the pedal through screws, the buckle belt is divided into two sections, the two sections are connected through a self-locking device, and the self-locking device adopts a belt self-locking buckle head.
furthermore, the plane of the pedal and the plane of the arc hook body form an angle of 30 +/-5 degrees.
Furthermore, the non-slip block is an alloy member embedded rubber block structure, and non-slip particles are arranged on the contact surface of the non-slip block and the rod body.
Furthermore, the non-slip mat adopts an elastic rubber layer, and the surface of the non-slip mat is a non-smooth surface with non-slip particles.
Further, the size of the pedal is slightly larger than the size of the corresponding shoe size.
Further, the buckle belt is a hard rubber buckle belt.
Further, the pedal is made of alloy materials.
The utility model discloses the beneficial effect who produces as follows:
1. Compare traditional climbers, the utility model discloses can all hold effectively and step on pole operation personnel sole, ensure that personnel's sole atress is even on the pole, reduce sole position pressure, when realizing the long-time operation of personnel on the pole, the sole is comfortable, alleviate fatigue, improved work efficiency, saved operating time, practiced thrift social resources.
2. Convenient to use, safe firm can thoroughly avoid the pole on the operation personnel climbers accident to drop to lead to the personal casualty risk, safety, convenience, the stability that the personnel eminence on the pole falls.
3. The utility model discloses simple structure, easily batch production, the outward appearance is exquisite, and sturdy structure can satisfy the field operation and go out convenient to carry, adapt to the all kinds of operational environment requirements of pole climbing operation of electric power production during operation.
4. The full-wrapping design of the full lifting of the pedal, the shoe cover and the buckle belt is in line with the ergonomics, the experience pleasure of operators is improved, the human-oriented development concept is in line, and the production purpose taking employees as the core is practiced.
5. The method solves a great safety risk in the management aspect of the pole climbing operation work in the power production industry.
Drawings
FIG. 1 is a schematic structural diagram of the present invention
FIG. 2 is a schematic view of the force applied when the present invention is used
In the figure: 1-a pedal; 2-buckling a belt; 3-anti-skid blocks; 4-foot cover; 5-hook body; 6-buckle body; 7-a limit pin.
Detailed Description
The present invention will be described in further detail with reference to the following specific examples, which should not be construed as limiting the invention.
As shown in figure 1, the climbing pole climber of the utility model comprises a pedal 1, a buckle belt 2, an antiskid block 3, a foot sleeve 4, a hook body 5, a buckle body 6 and a limit nail 7.
The coupler body 5 is an arc-shaped steel bar structure, the contact surface of the inner side of the front section of the coupler body 5 and an electric pole is covered with an anti-slip pad, the rear section of the coupler body 5 is sleeved with a buckle body 6, the buckle body 6 can move on the coupler body 5, and the rear section of the coupler body 5 is provided with a limit nail 7 for limiting the position of the buckle body 6. The surface of the non-slip mat is a non-smooth surface with non-slip particles, and an elastic rubber layer is adopted.
Footboard 1 is the full support footboard of sole plate shape, and footboard 1 passes through arc connecting rod and detains 6 fixed connection of body, and non slipping spur 3 is connected to footboard 1 side, and non slipping spur 3 passes through extending structure and links to each other with footboard 1, can adjust the distance between non slipping spur 3 and the footboard 1 according to the pole diameter. The non-slip block 3 is an alloy component embedded rubber block structure, and non-slip particles are arranged on the contact surface of the non-slip block 3 and the rod body, so that the non-slip anti-slip rod has the characteristics of firmness and non-slip.
The pedal 1 is lengthened according to the model of the working sole, is slightly loose compared with the corresponding shoe size, the front part of the pedal 1 is connected with a socket-shaped hard PE foot sleeve 4, and the heel position at the rear part of the pedal 1 is connected with a hard rubber buckle belt 2 with a self-locking device, the angle of which can be adjusted longitudinally and the tightness of which can be adjusted transversely. The two ends of the buckle belt 2 are connected to the two sides of the heel position of the pedal 1 through screws, the buckle belt can swing to adjust the angle longitudinally, the buckle belt is divided into two sections, the two sections are connected through a self-locking device, the self-locking device adopts a belt self-locking buckle head, the length of the buckle belt can be adjusted, and the buckle belt has the advantages of being anti-loosening, firm and durable and meeting the requirements of people of different sizes.
The self-locking device can prevent the buckle belt from loosening, so that the protection that the climbers do not fall off accidentally is achieved, and when the operation is needed, an operator can easily remove the climbers consciously.
The footboard adopts alloy material for bear person's self weight of ascending a height, have the sole and bear advantages such as even, mechanical strength height.
As shown in figure 2, the plane of the pedal 1 and the plane of the arc-shaped hook body 5 form an angle of 30 +/-5 degrees, the angle between the pedal and the hook body 5 is small, the pedal exerts small vertical force on the hook body 5, the bearing capacity of the pedal is strong, the hook body 5 is reliably connected with an electric pole, the slipping phenomenon of the hook body 5 is avoided, and the work safety is ensured.
Before climbing the pole, the user stretches the sole of the working shoe into the front foot sleeve of the pedal, transversely adjusts the buckling belt at the rear part of the pedal, the tightness of the heel part of the working shoe is proper, and the whole foot firmly steps on the pedal, and then the rod can be climbed by locking the buckling belt. When the pole is operated to the platform position and the foot fastener needs to be taken off, a worker only needs to stir the waistband self-locking fastener head shifting block on the heel part fastener belt with the assistance of a single hand to pull the fastener belt open, the fastener belt can be unlocked, and the sole can be pulled out.
The utility model discloses an economic value:
According to the conventional operation mode, the ascending operation needs to be completed by groups in a matching way, each group comprises 4-5 persons, 1 person on ground and 1 person on guardianship, the on-pole operation needs more than 2-3 persons, the standard is that each person calculates 200 yuan per working day, and 5 technical workers need 1000 yuan per working day. The labor is consumed very much when the traditional climbers are used for operation, and the working efficiency is not high. After the climber tries on a pole climbing operation training site, due to the fact that the design of the pedal accords with the principle of human engineering, a person feels that the comfort of feet is greatly improved, the fatigue is greatly relieved during continuous operation, and the work rhythm is obviously improved; because the new climbers avoid the safety concern and the uncomfortable feeling of feet of the staff on the pole, the whole working efficiency of the staff is greatly improved, the work of 2-3 people on the pole can be safely and easily finished by 1 person instead, the labor cost is reduced by 40 percent.
The utility model discloses a social value:
1. The pole climbing operation mode is changed, the disordered scene of multi-person operation on the pole is changed into 1-2-person operation, and the safety and the high efficiency are realized.
2. The safety risk of the workers on the pole is greatly reduced, and safe and reliable guarantee is brought to the self and the family of the workers at high altitude.
3. The labor intensity of operators on the pole is reduced, and happiness is brought to the electric power production personnel.
4. The efficiency is improved, the time for electric power installation and maintenance is shortened, the customers can be electrified early, and the social security value of the electric power industry for people is improved.
finally, it should be noted that: the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the same, and although the present invention is described in detail with reference to the above embodiments, those of ordinary skill in the art should understand that: modifications and equivalents may be made to the embodiments of the invention without departing from the spirit and scope of the invention, which is intended to be covered by the claims.
Claims (8)
1. the utility model provides a step on pole climbers which characterized in that: comprises a pedal (1), a buckle belt (2), an antiskid block (3), a foot sleeve (4), a hook body (5), a buckle body (6) and a limit nail (7);
The hook body (5) is of an arc steel bar structure, a non-slip mat covers the contact surface of the inner side of the front section of the hook body (5) and an electric pole, a buckle body (6) is sleeved on the rear section of the hook body (5), the buckle body (6) can move on the hook body (5), and a limiting nail (7) for limiting the position of the buckle body (6) is arranged on the rear section of the hook body (5);
Footboard (1) is the full support footboard of sole plate shape, footboard (1) through arc connecting rod and knot body (6) fixed connection, non slipping spur (3) are connected to footboard (1) side, non slipping spur (3) link to each other with footboard (1) through extending structure, be connected with nest form stereoplasm PE podotheca (4) on footboard (1) front portion, footboard (1) rear portion heel position is connected with vertical angle regulation, horizontal adjustable elasticity take self-lock device's hard rubber to detain area (2).
2. The pole climber of claim 1, wherein: the two ends of the buckle belt (2) are connected to the two sides of the heel position of the pedal (1) through screws, the buckle belt is divided into two sections, the two sections are connected through a self-locking device, and the self-locking device adopts a belt self-locking buckle head.
3. The pole climber of claim 2, wherein: the plane of the pedal (1) and the plane of the arc hook body (5) form an angle of 30 +/-5 degrees.
4. the pole climber of claim 3, wherein: the anti-skid block (3) is an alloy member embedded rubber block structure, and anti-skid particles are arranged on the contact surface of the anti-skid block (3) and the rod body.
5. the pole climber of claim 3, wherein: the non-slip mat adopts an elastic rubber layer, and the surface of the non-slip mat is a non-smooth surface with non-slip particles.
6. the pole climber of any one of claims 1 to 5, wherein: the size of the pedal (1) is slightly larger than the size of a corresponding shoe size.
7. The pole climber of any one of claims 1 to 5, wherein: the buckle belt (2) is a hard rubber buckle belt.
8. The pole climber of any one of claims 1 to 5, wherein: the pedal (1) is made of alloy materials.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920339139.7U CN209752099U (en) | 2019-03-18 | 2019-03-18 | Pole climber |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920339139.7U CN209752099U (en) | 2019-03-18 | 2019-03-18 | Pole climber |
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CN209752099U true CN209752099U (en) | 2019-12-10 |
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CN201920339139.7U Active CN209752099U (en) | 2019-03-18 | 2019-03-18 | Pole climber |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114984543A (en) * | 2022-05-11 | 2022-09-02 | 广东电网有限责任公司 | Pole climbers are climbed in electrodeless regulation |
CN115888039A (en) * | 2022-11-20 | 2023-04-04 | 贵州电网有限责任公司 | Passive ectoskeleton climbers of stepping on pole |
CN116271742A (en) * | 2021-12-09 | 2023-06-23 | 贵州电网有限责任公司 | Multi-scene detachable pole climber antiskid device |
-
2019
- 2019-03-18 CN CN201920339139.7U patent/CN209752099U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116271742A (en) * | 2021-12-09 | 2023-06-23 | 贵州电网有限责任公司 | Multi-scene detachable pole climber antiskid device |
CN114984543A (en) * | 2022-05-11 | 2022-09-02 | 广东电网有限责任公司 | Pole climbers are climbed in electrodeless regulation |
CN114984543B (en) * | 2022-05-11 | 2023-12-29 | 广东电网有限责任公司 | Electrodeless regulation pole climbing climbers |
CN115888039A (en) * | 2022-11-20 | 2023-04-04 | 贵州电网有限责任公司 | Passive ectoskeleton climbers of stepping on pole |
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