CN211486431U - Portable rope climbing device - Google Patents

Portable rope climbing device Download PDF

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Publication number
CN211486431U
CN211486431U CN201921935043.3U CN201921935043U CN211486431U CN 211486431 U CN211486431 U CN 211486431U CN 201921935043 U CN201921935043 U CN 201921935043U CN 211486431 U CN211486431 U CN 211486431U
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CN
China
Prior art keywords
rope
positioning plate
plate
pressing plate
pedal
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Expired - Fee Related
Application number
CN201921935043.3U
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Chinese (zh)
Inventor
付克明
郑丙利
樊丽梅
周星宇
蔡逸飘
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Jiaozuo university
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Jiaozuo university
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Priority to CN201921935043.3U priority Critical patent/CN211486431U/en
Application granted granted Critical
Publication of CN211486431U publication Critical patent/CN211486431U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a portable rope climbing device, including gripping the bracelet, trampling the pedal and connecting the hank rope, wherein grip the bracelet, trample the pedal and all be not more than two, grip bracelet and one and trample and connect and constitute a work group through connecting the hank rope between the pedal, and the bracelet that grips in same work group is located and tramples directly over the pedal, and when gripping the bracelet, trample the pedal and constitute two work groups, through connecting hank rope interconnect between two work groups. The utility model has the advantages of simple structure, flexible and convenient operation, good universality, convenient carrying and small physical loss during operation; on the other hand simple operation, clamping stability is good, can effectually satisfy the quick centre gripping location to the rope body to prevent to take place danger when the climbing rope activity that leads to the gliding because of the atress is too big, clamping stability such as drop and inefficacy and cause because of climbing rope ware centre gripping location.

Description

Portable rope climbing device
Technical Field
The utility model relates to a rope climbing equipment, the exact portable rope climbing ware that says so.
Background
At present, in activities such as rock climbing, high-altitude sliding and escaping, and the like, due to the fact that personnel often lack professional training and the physical abilities of the personnel and the climbing or sliding environments are different, climbing personnel are often required to climb or slide along a rope body with the help of a special rope climbing device, in actual use, a large number of various types of rope climbing equipment exist in the current market, but in the operation of various types of rope climbing equipment used at present, on one hand, acting force is directly exerted through hands and feet of the operator, so that the friction force between the rope climbing device and the climbing rope body is increased or reduced, the requirement of climbing or sliding operation through the rope climbing device is met, the physical ability loss of the operator is large when climbing, the rope climbing device is easy to fail due to insufficient physical abilities of the operator, and even the personnel fall from high altitude due to the failure of the rope climbing rope device in severe cases, the current rope climbing device is relatively complex in structure, great inconvenience exists in use and carrying, the current rope climbing device is often used for hands and footsteps, the use harmony is poor, the falling of the device is easy to happen, and great inconvenience and potential safety hazards are caused to the use.
Therefore, in order to solve the problem, a brand new rope climbing device is urgently needed to be developed to meet the actual use requirement.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects existing in the prior art, the utility model provides a portable rope climbing device, which has the advantages of simple structure, flexible and convenient operation, good universality, convenient carrying and small physical loss during operation; on the other hand simple operation, clamping stability is good, can effectually satisfy the quick centre gripping location to the rope body to prevent to take place danger when the climbing rope activity that leads to the gliding because of the atress is too big, clamping stability such as drop and inefficacy and cause because of climbing rope ware centre gripping location.
In order to achieve the above purpose, the utility model discloses a realize through following technical scheme:
the utility model provides a portable rope ware of climbing, is including gripping the bracelet, trampling the pedal and connecting the hank rope, wherein grip the bracelet, trample the pedal and all be not more than two, grip bracelet and one and trample and connect and constitute a work group through connecting the hank rope between the pedal, and the bracelet that grips in same work group is located and tramples directly over the pedal, and when gripping the bracelet, trample the pedal and constitute two work groups, two work groups are through connecting hank rope interconnect.
Further, the bracelet of gripping include left clamp plate, right clamp plate, bandage, operation gloves, antislip strip, wherein left side clamp plate, right clamp plate surface are circular-arc platelike structure, and a rope guide groove is all established to its internal surface, antislip strip inlay in the rope guide groove and with rope guide groove axis parallel distribution, left side clamp plate, right clamp plate rear end face are through two at least elasticity hinge interconnect, and are 0-180 contained angle between left clamp plate, right clamp plate internal surface, and when left clamp plate, right clamp plate internal surface were 0 contained angle, left clamp plate, right clamp plate internal surface offset, the surface constitutes the cross section and is oval columnar structure, and the rope guide groove of left clamp plate, right clamp plate is with left clamp plate, right clamp plate contact surface symmetric distribution and constitute closed circular cavity structure simultaneously, operation gloves cladding respectively at left clamp plate, right clamp plate external surface and left clamp plate, The upper end face and the lower end face of the right pressing plate exceed the upper end face and the lower end face of the operating glove by at least 1 cm, the length of the binding band is not less than 10 cm, and the front end face of the binding band is respectively connected with the outer surfaces of the left pressing plate and the right pressing plate through connecting buckles.
Further, the treading pedal comprises a left positioning plate, a right positioning plate, a guide post, a driving rod, a reset spring, a binding band, an anti-slip strip and a pedal plate, wherein the outer surfaces of the left positioning plate and the right positioning plate are of arc-shaped plate structures, the inner surfaces of the left positioning plate and the right positioning plate are respectively provided with a rope guide groove, the anti-slip strip is embedded in the rope guide groove and is distributed in parallel with the axis of the rope guide groove, the rear end surfaces of the left positioning plate and the right positioning plate are connected with each other through at least two elastic hinges, an included angle of 0-180 degrees is formed between the inner surfaces of the left positioning plate and the right positioning plate, the front end surfaces of the left positioning plate and the right positioning plate are respectively provided with a guide plate, the guide plates are respectively distributed in parallel with the axis of the left positioning plate and the rear end surfaces of the left positioning, the distance between the guide plates of the left positioning plate and the right positioning plate is 0-10 mm, the rope guide grooves are symmetrically distributed on the contact surfaces of the left positioning plate and the right positioning plate to form a closed circular cavity structure, the number of the driving rods is two, the driving rods are respectively connected with the outer surfaces of the left positioning plate and the right positioning plate in a sliding mode through at least two shaft sleeves, the guide columns are distributed in parallel with the axes of the left positioning plate and the right positioning plate, the upper half parts and the lower half parts of the guide columns are hinged with the rear end face of one driving rod, the front end face of the driving rod is hinged with the side surface of the guide plates, the axes of the driving rods, the guide plates and the axes of the guide columns form an included angle of 30-90 degrees, at least one reset spring is coated outside the guide columns, the reset springs and the guide columns are coaxially distributed, the positions between every two adjacent shaft sleeves are provided, the cross section of the pedal is of a structure of a shape of a Chinese character 'ji' groove, the upper end face of the pedal is respectively connected with the lower end faces of the guide posts of the left positioning plate and the right positioning plate, the space between the pedal and the lower end faces of the left positioning plate and the right positioning plate is not less than 5 cm, the outer side face of the pedal is connected with the front end face of at least one binding band through a connecting buckle, and the length of the binding band is not less than 10 cm.
Furthermore, a plurality of anti-skid lugs with triangular, trapezoidal and circular arc-shaped axial sections are uniformly distributed on the front end face of the anti-skid strip, the axis of each anti-skid lug forms an included angle of 0-60 degrees with the horizontal plane, and when the axis of each anti-skid lug is larger than 0 degree with the axis of the horizontal plane, each anti-skid lug is distributed along the obliquely downward direction.
Furthermore, in the connecting twisted rope, at least one positioning buckle is additionally arranged on the connecting twisted rope for connecting the two working groups, and the positioning buckle is connected with the connecting twisted rope in a sliding manner.
The utility model has the advantages of simple structure, flexible and convenient operation, good universality, convenient carrying and small physical loss during operation; on the other hand simple operation, clamping stability is good, can effectually satisfy the quick centre gripping location to the rope body to prevent to take place danger when the climbing rope activity that leads to the gliding because of the atress is too big, clamping stability such as drop and inefficacy and cause because of climbing rope ware centre gripping location.
Drawings
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments;
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a front view of a hand ring;
FIG. 3 is a schematic top view of a hand ring;
FIG. 4 is a schematic view of a front view of the pedal;
fig. 5 is a top view of the pedal.
Detailed Description
In order to make the utility model realize, the technical end, the creation characteristics, the achievement purpose and the efficacy are easy to understand and understand, and the utility model is further explained by combining the specific implementation mode.
Like fig. 1-5 a portable rope ware of climbing, including gripping bracelet 1, trampling pedal 2 and connecting hank rope 3, wherein grip bracelet 1, trample pedal 2 and all be not more than two, grip bracelet 1 and one trample and connect and constitute a work group through connecting hank rope between pedal 2, and grip the bracelet in same work group and be located and trample pedal 2 directly over, and when gripping bracelet 1, trample pedal 2 and constitute two work groups, through connecting 3 interconnect of hank rope between two work groups.
In this embodiment, the holding bracelet 1 includes a left pressing plate 11, a right pressing plate 12, a binding band 4, an operating glove 13 and an anti-slip strip 5, wherein the outer surfaces of the left pressing plate 11 and the right pressing plate 12 are arc-shaped plate structures, the inner surfaces thereof are all provided with a rope guide groove 6, the anti-slip strip 5 is embedded in the rope guide groove 6 and is distributed in parallel with the axis of the rope guide groove 6, the rear end surfaces of the left pressing plate 11 and the right pressing plate 12 are connected with each other through at least two elastic hinges 7, and the inner surfaces of the left pressing plate 11 and the right pressing plate 12 form an included angle of 0 degree-180 degrees, and when the inner surfaces of the left pressing plate 11 and the right pressing plate 12 form an included angle of 0 degree, the inner surfaces of the left pressing plate 11 and the right pressing plate 12 are abutted, the outer surfaces form a columnar structure with an oval cross section, and the rope guide grooves 6 of the left pressing plate 11 and the right pressing, the operation gloves 13 are respectively coated on the outer surfaces of the left pressing plate 11 and the right pressing plate 12, the upper end faces and the lower end faces of the left pressing plate 11 and the right pressing plate 12 exceed the upper end faces and the lower end faces of the operation gloves 13 by at least 1 cm, the length of the binding band 4 is not less than 10 cm, and the front end face of the binding band is respectively connected with the outer surfaces of the left pressing plate 11 and the right pressing plate 12 through connecting buckles.
Besides, the operation glove 13 is connected with the outer surfaces of the left pressure plate 11 and the right pressure plate 12 through connecting ports.
In this embodiment, the pedal 1 includes a left positioning plate 21, a right positioning plate 22, a guiding plate 23, a guiding post 24, a driving rod 25, a return spring 26, a binding band 4, an antislip strip 5 and a pedal 27, wherein the outer surfaces of the left positioning plate 21 and the right positioning plate 22 are both arc-shaped plate structures, the inner surfaces thereof are respectively provided with a rope guiding groove 6, the antislip strip 5 is embedded in the rope guiding groove 6 and is distributed in parallel with the axis of the rope guiding groove 6, the rear end surfaces of the left positioning plate 21 and the right positioning plate 22 are connected with each other through at least two elastic hinges 7, an included angle of 0-180 degrees is formed between the inner surfaces of the left positioning plate 21 and the right positioning plate 22, the front end surfaces of the left positioning plate 21 and the right positioning plate 22 are respectively provided with a guiding plate 23, the guiding plate 23 is respectively distributed in parallel with the axis of the left positioning plate 21 and the right positioning, When the inner surface of the right positioning plate 22 forms an included angle of 0 degree, the inner surfaces of the left positioning plate 21 and the right positioning plate 22 are abutted, the distance between the guide plates 23 of the left positioning plate 21 and the right positioning plate 22 is 0-10 mm, the guide rope grooves 6 are symmetrically distributed on the contact surfaces of the left positioning plate 21 and the right positioning plate 22 to form a closed circular cavity structure, two drive rods 25 are provided, the two drive rods are respectively connected with the outer surfaces of the left positioning plate 21 and the right positioning plate 22 in a sliding manner through at least two shaft sleeves 28, the guide posts 24 are distributed in parallel with the axial lines of the left positioning plate 21 and the right positioning plate 22, the upper half parts and the lower half parts of the guide posts 24 are hinged with the rear end surface of one drive rod 25, the front end surface of the drive rod 25 is hinged with the side surface of the guide plate 23, the axial lines of the drive rod 25 form included angles of, the reset spring 26 and the guide post 24 are coaxially distributed, the reset spring is located between two adjacent shaft sleeves 28, two ends of the reset spring are respectively connected with the guide post 24 through a positioning ring 29, the diameter of the positioning ring 29 is 1-1.5 times of the outer diameter of the shaft sleeves 28, the pedal 27 is in a cross section of a reversed V-shaped groove-shaped structure, the upper end face of the pedal 27 is respectively connected with the lower end faces of the guide posts 24 of the left positioning plate 21 and the right positioning plate 22, the distance between the pedal 27 and the lower end faces of the left positioning plate 21 and the right positioning plate 22 is not smaller than 5 cm, the outer side face of the pedal 27 is connected with the front end face of at least one binding band 4 through a connecting.
In this embodiment, the front end surface of the antislip strip 5 is uniformly provided with a plurality of antislip protrusions 51 with triangular, trapezoidal and circular arc-shaped axial cross sections, the axial lines of the antislip protrusions 51 form included angles of 0-60 degrees with the horizontal plane, and when the axial lines of the antislip protrusions 51 and the axial line of the horizontal plane are greater than 0 degree, the antislip protrusions 51 are distributed along the inclined downward direction.
Preferably, the connecting twisted rope 3 is provided with at least one positioning buckle 8 on the connecting twisted rope 3 for connecting the two working groups, and the positioning buckle 8 is connected with the connecting twisted rope 3 in a sliding manner.
This is novel in the concrete implementation, at first uses and height needs according to the user, selects to grip the bracelet, tramples the pedal and connect the hank rope, then assembles gripping the bracelet, tramples the pedal and connect the hank rope to this novel connector link that is used for connecting on the hank rope of connection of two workgroups after will assembling is connected with equipment such as waistband, the safety belt on the user's body, prevents this novel emergence and drops the potential safety hazard that the loss and cause.
When climbing the rope operation, the user at first respectively grips the bracelet, tramples the pedal and pass through the wire rope groove cladding respectively and treat to climb the rope external, then grip the operating gloves of bracelet on the one hand and report again outside the hand to tie up the bandage at the user wrist, on the other hand both feet trample on trample the running-board of trample the pedal, and be connected through the bandage shank with using, thereby accomplish this novel assembly spare.
When climbing operation is carried out:
on one hand, a user simultaneously applies pressure to the left pressing plate and the right pressing plate for holding the bracelet through operating the gloves, and the friction force between the left pressing plate and the right pressing plate and a rope body through the anti-skidding strips in the rope guide grooves is increased by adjusting the pressure, so that the requirements of anti-skidding, upward climbing and sliding speed adjustment are met;
on the other hand, a user applies acting force downwards to the pedal, the pedal is stressed to descend and is driven to the guide post to descend together, the driving rod is driven to overturn in the descending process of the guide post, the left positioning plate and the right positioning plate are driven to close in the overturning process, the friction force between the anti-slip strips and the rope body in the rope guide grooves is increased while the anti-slip strips and the rope body are closed, and the purposes of preventing slip, bearing the upward climbing acting force and achieving the positioning rest of the user through treading when the physical strength descends are achieved; when the acting force of the treading pedal needs to be reduced or relieved, a user lifts the foot upwards to drive the guide post to move upwards, the drive rod is driven to overturn and drive the left positioning plate and the right positioning plate to separate in the overturning process, the friction force between the anti-slip strip and the rope body in the rope guide groove is reduced during separation, and therefore the purpose of driving the treading pedal to move upwards or slide downwards is achieved.
The utility model has the advantages of simple structure, flexible and convenient operation, good universality, convenient carrying and small physical loss during operation; on the other hand simple operation, clamping stability is good, can effectually satisfy the quick centre gripping location to the rope body to prevent to take place danger when the climbing rope activity that leads to the gliding because of the atress is too big, clamping stability such as drop and inefficacy and cause because of climbing rope ware centre gripping location.
It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (5)

1. The utility model provides a portable rope climbing ware which characterized in that: portable rope ware of climbing is including gripping the bracelet, trampling the pedal and connecting the hank rope, wherein grip the bracelet, trample the pedal and all be not more than two, grip bracelet and one and trample and connect and constitute a workgroup through connecting the hank rope between the pedal, and the bracelet that grips in same workgroup is located and tramples directly over the pedal, and when gripping the bracelet, trample the pedal and constitute two workgroups, through connecting hank rope interconnect between two workgroups.
2. The portable rope climbing device according to claim 1, wherein the holding bracelet comprises a left pressing plate, a right pressing plate, a binding band, an operating glove and an anti-slip strip, wherein the outer surfaces of the left pressing plate and the right pressing plate are arc-shaped plate structures, a rope guide groove is formed in the inner surfaces of the left pressing plate and the right pressing plate, the anti-slip strip is embedded in the rope guide groove and is distributed in parallel with the axis of the rope guide groove, the rear end surfaces of the left pressing plate and the right pressing plate are connected with each other through at least two elastic hinges, an included angle of 0-180 degrees is formed between the inner surfaces of the left pressing plate and the right pressing plate, when the inner surfaces of the left pressing plate and the right pressing plate are in 0 degree included angle, the inner surfaces of the left pressing plate and the right pressing plate are abutted, the outer surfaces of the left pressing plate and the right pressing plate form an oval columnar structure, the rope guide grooves of the left pressing plate and the right pressing plate are, The outer surface of the right pressing plate and the upper end face and the lower end face of the left pressing plate and the right pressing plate both exceed the upper end face and the lower end face of the operating handle by at least 1 centimeter, the length of the binding band is not less than 10 centimeters, and the front end face of the binding band is respectively connected with the outer surfaces of the left pressing plate and the right pressing plate through connecting buckles.
3. The portable rope climbing device according to claim 1, wherein the treading pedal comprises a left positioning plate, a right positioning plate, a guiding post, a driving rod, a return spring, a binding band, an anti-slip strip and a pedal plate, the outer surfaces of the left positioning plate and the right positioning plate are both arc-shaped plate structures, the inner surfaces of the left positioning plate and the right positioning plate are both provided with a rope guiding groove, the anti-slip strip is embedded in the rope guiding groove and is distributed in parallel with the axis of the rope guiding groove, the rear end surfaces of the left positioning plate and the right positioning plate are connected with each other through at least two elastic hinges, an included angle of 0-180 degrees is formed between the inner surfaces of the left positioning plate and the right positioning plate, the front end surfaces of the left positioning plate and the right positioning plate are respectively provided with a guiding plate, the guiding plates are respectively distributed in parallel with the axis of the left positioning plate and the rear end surfaces of, the inner surfaces of the left positioning plate and the right positioning plate are abutted, the distance between the guide plates of the left positioning plate and the right positioning plate is 0-10 mm, the rope guide grooves are symmetrically distributed on the contact surfaces of the left positioning plate and the right positioning plate to form a closed circular cavity structure, the number of the drive rods is two, the drive rods are respectively connected with the outer surfaces of the left positioning plate and the right positioning plate in a sliding mode through at least two shaft sleeves, the guide posts are distributed in parallel with the axes of the left positioning plate and the right positioning plate, the upper half parts and the lower half parts of the guide posts are hinged with the rear end surface of one drive rod, the front end surface of the drive rod is hinged with the side surface of the guide plate, the axes of the drive rods, the guide plates and the axes of the guide posts form an included angle of 30-90 degrees, at least one reset spring is coated outside the guide posts, the diameter of the positioning ring is 1-1.5 times of the outer diameter of the shaft sleeve, the cross section of the pedal is in a structure of a shape like a Chinese character 'ji' groove, the upper end face of the pedal is respectively connected with the lower end faces of the guide posts of the left positioning plate and the right positioning plate, the distance between the pedal and the lower end faces of the left positioning plate and the right positioning plate is not smaller than 5 cm, the outer side face of the pedal is connected with the front end face of at least one binding band through a connecting buckle, and the length of the binding band is.
4. The portable rope climbing device according to claim 2 or 3, wherein the front end surface of the anti-slip strip is uniformly provided with a plurality of anti-slip lugs with triangular, trapezoidal and circular arc-shaped axial sections, the axial line of each anti-slip lug forms an included angle of 0-60 degrees with the horizontal plane, and when the axial line of each anti-slip lug is larger than 0 degree with the axial line of the horizontal plane, each anti-slip lug is distributed along the oblique downward direction.
5. The portable rope climbing device according to claim 1, wherein at least one positioning buckle is additionally arranged on the connecting stranded rope for connecting the two working groups, and the positioning buckle is slidably connected with the connecting stranded rope.
CN201921935043.3U 2019-11-11 2019-11-11 Portable rope climbing device Expired - Fee Related CN211486431U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921935043.3U CN211486431U (en) 2019-11-11 2019-11-11 Portable rope climbing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921935043.3U CN211486431U (en) 2019-11-11 2019-11-11 Portable rope climbing device

Publications (1)

Publication Number Publication Date
CN211486431U true CN211486431U (en) 2020-09-15

Family

ID=72409119

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921935043.3U Expired - Fee Related CN211486431U (en) 2019-11-11 2019-11-11 Portable rope climbing device

Country Status (1)

Country Link
CN (1) CN211486431U (en)

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Granted publication date: 20200915