CN203494075U - High-rise gliding device - Google Patents

High-rise gliding device Download PDF

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Publication number
CN203494075U
CN203494075U CN201320445597.1U CN201320445597U CN203494075U CN 203494075 U CN203494075 U CN 203494075U CN 201320445597 U CN201320445597 U CN 201320445597U CN 203494075 U CN203494075 U CN 203494075U
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China
Prior art keywords
rope
brake block
abseiling
braking
support box
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Expired - Fee Related
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CN201320445597.1U
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Chinese (zh)
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王学明
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Individual
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Individual
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Abstract

The utility model discloses a high-rise gliding device. The speed can be randomly controlled in a gliding process; at landing, a certain shock absorption function can be realized; a sliding rope and a braking rope are wound on a wire post in the same direction and are supported by a bracket box; a braking sheet is connected to the interior of the bracket box; the braking rope is pulled to work on the braking sheet and generate friction with a coil, so that the aim of random speed control is fulfilled; one end of the sliding rope is connected with an elastic rope; a spring is arranged at the bottom end of a foot plate, so that the aim of shock absorption can be fulfilled; the braking sheet is connected in a sliding manner; a friction surface adopts a series-parallel rolling type friction surface, so that gliding from a high rise can be realized. The high-rise gliding device is suitable for public long-time standby use.

Description

High building down slide device
Technical field:
The utility model relates to a kind of high-storey down slide device, in the process gliding, the random governing speed of energy, has again certain shock-absorbing function while landing.
Background technology:
Current down slide device be when gliding from eminence is thrown rope, then along rope lower slide, operation inconvenience, unsuitable popular standby.
Utility model content:
For the problem existing: the purpose of this utility model is to provide a kind ofly can arbitrarily control gliding speed, while landing, there is again certain shock-absorbing function, be applicable to popularly, be fixed on the outer long-term standby high-storey down slide device of body of wall.
The technical scheme that the utility model technical solution problem adopts is:
A kind ofly can arbitrarily control gliding speed, the high-storey down slide device that has again certain shock-absorbing function while landing, comprise that an abseiling and a braking rope are wrapped on a terminal in the same way, the length of abseiling is no more than glide height, the top that approaches of abseiling also connects one section of stretch cord, the other end of stretch cord is connected on the slip ring on terminal, after abseiling and braking rope are wound around one section and stretch cord together three ropes be wound around, stretch cord is after complete, abseiling and braking rope continue to be wound around, coil after complete is put into support box, and terminal two ends are packed in the hole at support box two ends, terminal two ends put a brake block, brake block adopts double-screw bolt to be fixed on the two ends of support box, two bent type shell fragments for brake block, in between many semi-annular jade pendants that play of Anvil, interior connection friction plate forms, on brake block, be also connected with adjustable clamp, regulate the friction dynamics of brake block to terminal, in support box, also need to connect another brake block, its rubbing surface is pasting coil, and the end of braking rope is walked around the brake block back side, together pull out with abseiling again, the short distance of ground floor layer glided, and adopts a rubbing surface to be fixed on an elasticity braking bracket, and elasticity braking bracket bottom is fixed on support box inner bottom surface, the long distance of high-storey glides, and just adopts and can be slidably connected with support box, and rubbing surface can move the brake block of (rolling) on coil, the roller brake block of being gone here and there and being formed by a plurality of pearl balls or the section of rolling, uses an elasticity braking bracket exactly, connects many gear rope sheets, on gear rope sheet, there is porous, many elasticity connection straps are inserted in the hole, more a plurality of pearl ball or the sections of rolling with holes are packed into connection strap, the rubbing surface of going here and there and becoming to roll, and in the bottom of elasticity braking bracket, be set to bending, and connect therein one group of head pulley or ball and one group of auxiliary pulley, form roller brake block, by the long edge break of support box, be separately right-angle side, and two groups of pulley sleeves to right-angle side, form in roller brake block and support box and be slidably connected, in brake block bottom, two gear rope bars are also set, keeping off two ropes, abseiling and braking rope are together pulled out between two gear rope bars, the two ends or the every rope that after a balustrade panel commissure, are connected to foot pedal connect a foot pedal from each, between balustrade panel and pedal, cover has a straight tube or is directly connected with straight tube, the bottom of foot pedal is connected with spring, there is one section of short rope at the nearly top of abseiling and braking rope or directly with brake handgrip, abseiling is connected with braking rope, its length is no more than the swinging distance that brake block is set, and is connected with waist rope on balustrade panel, being connected between abseiling and braking rope and brake handgrip and foot pedal, adopt the connection of contrary theory, abseiling is connected to tricing line, is connected to the control end that pulls of brake handgrip and pedal, braking rope is running rope not, and what be connected to brake handgrip and pedal does not pull one end.
The beneficial effects of the utility model are: in downslide process, can arbitrarily control speed, and when landing, there is certain shock-absorbing function, simultaneously because brake block can move in brake process, reduce to produce the restriction of this device downslide height, and be fixed on outside body of wall, simple to operate, applicable masses are standby for a long time.
Accompanying drawing explanation:
Fig. 1 is the utility model overall structure schematic diagram.
Fig. 2 is abseiling, braking rope, stretch cord top winding schematic diagram.
Fig. 3 is the brake block schematic diagram at support box and terminal two ends.
Fig. 4 is the roller brake block schematic diagram being slidably connected with support box in support box.
Fig. 5 is roller brake block and the support box place's schematic cross-section that is slidably connected in support box.
The specific embodiment:
Fig. 1, shown in 2, abseiling 1 and braking rope 2 are wrapped on terminal 3 in the same way, the length of abseiling is no more than glide height, the top (not completely to termination, top) that approaches of abseiling 1 also connects one section of stretch cord 4, the other end of stretch cord 4 connects a slip ring 5, slip ring 5 is enclosed within on terminal 3, abseiling 1 and braking rope 2 are wound around after one section on terminal 3, together be wound around with stretch cord again, after stretch cord 4 has twined, abseiling 1 and braking rope 2 continue to be wound around, during downslide, the number of turns of three ropes synchronously subtracts circle, when reducing to the number of turns of stretch cord 4 and subtracted, abseiling 1 and braking rope 2 also drive terminal 3 to rotate continuing to be drawn out, slip ring 5 on terminal 3 slides, although strained by stretch cord 4, but not affecting its terminal 3 pulls, with pulling out of abseiling 1 and braking rope 2, stretch cord 4 is elongated, produce screen resilience, and the length of abseiling 1 is no more than glide height, when approaching landing, just there is a screen resilience progressively increasing.The coil 6 being coiled into is put into a support box 7, and terminal 3 two ends are packed in the hole at support box two ends, terminal 3 two ends put a brake block 8, and this brake block is close to terminal and is produced friction, and brake block 8 use screws 9 are fixed on support box 7 two ends, on brake block, also has adjustable clamp 10, make people's prediction downslide weight before sliding, regulate a corresponding gear, produce a fixing gliding speed, in order to avoid people is when gliding, operate miss and produce the situation that hurtles down freely.In support box 7, also need to connect another brake block, its rubbing surface is close to coil and is produced frictional force, braking rope 2 ends are walked around the brake block back side, pull out with abseiling 1-is same again, the short distance of ground floor layer glided, with a friction plate, be fixed on an elasticity braking bracket and be connected with support box 7, the long distance of high-storey glides, just adopt the brake block that can be slidably connected with support box 7, rubbing surface adopts can be under the larger active force of braking rope 2, the frictional resistance of abseiling 1 traffic direction can be produced, (rolling) moving rubbing surface can be on coil 6, laterally moved again.Because abseiling 1 and braking rope 2 are longer, the big or small gap of coil 6 being coiled into is excessive, the crooked springing amplitude of brake block is excessive, will affect its stability and reliability, only have and lengthen terminal 3, make the coil 6 that is coiled in the stable control range of brake block, just can make brake block and braking rope 1 keep the consistent state of setting, the variation that brake block will subtract the position of circle with braking rope 2 is moved, so adopt pearl ball or the section of rolling string roller brake block 11 also just can reach this object.For better make brake block 11 be slidably connected a little and rubbing surface obtains the drive of the corresponding balance of braking rope, the moving brake block 11 of two rope bands is laterally moved, brake block 11 bottoms also connect two gear rope bars 12, the end of abseiling 1 and braking rope 2, from between two gear rope bars, pull out, after balustrade panel 13 commissures, be connected to the two ends of pedal 14, or every rope connects a foot pedal separately, balustrade panel 13 is connected with a sleeve pipe or straight tube 15 with 14 of pedals.Make people when gliding, it is vertical with foot pedal 14 that people's center of gravity keeps, if with tightrope, when pedal is stressed, will rock and make deviation of gravity center, the unsettled or overturning by people, pedal 14 bottoms are connected with spring 16, make people when landing again by damping.Between abseiling 1 and braking rope 2, have one section short rope 17 or directly with brake handgrip 18, abseiling 1 be connected with braking rope 2, because in sliding, two ropes are synchronously pulled out.If abseiling 1 is pulled out too much, and braking rope 2 because be subject to some resistances on brake block 11, will be trapped on terminal coil 6, produce loose ring, twisted rope, card rope, two ropes are fixed together, stretchy braking rope 2 not again, should not brake, thus the i.e. connection of two ropes, the space that has again braking rope 2 to move up and down, so be connected 18 with a short rope 17 or handrail between two ropes, and length can not surpass the swinging distance that brake block 11 is set.When arbitrary rope of tension is when sliding, will synchronously drive another rope operation, and not be trapped on coil.On balustrade panel 13, be connected with waist rope 19.In addition, abseiling 1 and braking rope 2 are connected with brake handgrip 18 and foot pedal 14, adopt contrary theory to connect.Be that abseiling 1 is connected to tricing line, be connected to the control end that pulls of brake handgrip 18 parallel port pedals 14, braking rope is connected to not running rope, be connected to brake 18 and pedal 14 do not pull end, make people when setting foot on pedal 14, initial one end (not moved end) of just setting foot on braking rope 2 connections, braking rope 2 is subject to whole weight, abseiling 1 does not have stressed, terminal 3 just can not rotate, whole in halted state, after being ready to, pull again or center of gravity moves to one end that abseiling 1 connects, just start to control gliding speed with the size of pulling force or the size of swerving the weight.Prevent from controlling braking rope 2 improper or prepare deficiency and just start to glide.
Shown in Fig. 3: the two ends of support box 7 are the brake block (8) at terminal 6 two ends, with many springs of Anvil 21 between in two bent type shell fragments 20, inside being connected with mill layer 22 forms, and connecting with pin 23 at the lap of the opening part of shell fragment 20, outside opening or on pin 23, connect adjustable clamp 10, adjustable clamp is by two strut one end interconnections, strut termination is comprised of fastener 24, in the time of need to gliding, prediction downslide weight, adjustable clamp 10 is moved to corresponding gear, fastener 24 is supportting the convex surface place of bent type shell fragment, shell fragment is stretched to its opening direction, extruding plays the bed mat made of woven strips of bamboo 21, make the stressed terminal 3 of being close to of interior mill layer 22 produce a fixing resistance, in downslide process except random control speed, all the time there is this uniform draught control gliding speed, reduce to produce the danger of freely gliding fast because of misoperation.
Shown in Fig. 4,5, brake block 11 is by being connected with many support rope sheets 26 on an elasticity brake frame 25, on it, there is porous 27, many elasticity connection straps 28 are inserted in the hole, again a plurality of pearl balls with holes or the section of rolling 29 are packed into connection strap 28, form the rubbing surface of a plurality of pearl balls or the rolling also of the section of rolling string, when braking rope 2 pulls, can produce frictional resistance with coil, can enclose synchronous transverse shifting on coil 6 with subtracting of braking rope 2 again.There is gear ran 30 at the back side of support rope sheet 26, being used for keeping off braking rope 2 moves, do not depart from again the brake back side, the bottom of elasticity brake frame 25 is set to hook solid 31, in crotch, fix one group of head pulley 32 (or spin) and one group of auxiliary pulley 33, two groups of pulley sleeves the knuckle straight flange 34 of support box 7, auxiliary pulley 33 prevents that brake block 11 from moving forward and backward or coming off, head pulley 32 rolls on right-angle side 34, in order to make two ropes better drive brake block 11 laterally to move, will make the rubbing surface of brake block 11 and be slidably connected a while producing balanced forces, therefore also connect two gear rope bars 12 in the bottom of elastic support 25, what make that whole brake block 11 can be with braking rope 2 pulls generation resistance, again can be synchronous in coil top rail to movement, make down slide device not limit story height all can produce.

Claims (7)

1. energy arbitrarily speed governing in the process gliding, the high building down slide device of the certain shock-absorbing function of tool again while landing, comprise: abseiling (1), braking rope (2), terminal (3), it is characterized in that: abseiling (1) and braking rope (2) are wrapped on terminal (3) in the same way, the length of abseiling (1) is no longer than glide height, its top connects one section of stretch cord (4) and is together wound around, form coil (6) and put into support box (7), and terminal (3) two ends are packed in the hole at support box (7) two ends, terminal (3) two ends put brake block (8), brake block (8) is fixed on the two ends of support box (7) with double-screw bolt (9), on brake block (8), be also provided with adjustable clamp (10), in support box (7), also need to connect another brake block, its rubbing surface is pasting coil (6), and the end of braking rope (2) is walked around the back side of brake block, then and abseiling (1) together pull out, the short distance of ground floor layer glided, and adopts a friction plate to be fixedly connected on an elasticity braking bracket, then is connected in support box (7), the long distance of high-storey glides, and just adopting the brake block that can be slidably connected with support box (7), brake block rubbing surface to adopt can be at the rubbing surface of the upper transverse shifting of coil (6), brake block (11) is a kind of can be slidably connected with support box (7), by a plurality of pearl balls or the section of rolling, go here and there and the roller brake block of the rubbing surface that forms, the long edge break of support box (7) is become to a right-angle side (34), pack into two groups of pulleys (32 of brake block (11) bottom, 33) between, form in roller brake block (11) and support box (7) and be slidably connected, the bottom of brake block (11) is also connected with two gear rope bars (12), braking rope (2) is walked around behind the back side of brake block (11), abseiling (1) and braking rope (2) are together pulled out between two gear rope bars (12), the two ends or the every rope that after a balustrade panel (13) commissure, are connected to pedal (14) connect a pedal separately, between balustrade panel (13) and pedal (14), with a straight tube (15), be connected, the bottom of pedal (14) is connected with and plays semi-annular jade pendant (16), abseiling (1) and braking rope (2) approach end, there is one section of short rope (17) or directly with brake handgrip (18), abseiling (1) be connected with braking rope (2), on balustrade panel (13), be connected with waist rope (19), abseiling (1) and braking rope (2) and the connection of brake handgrip (18) and pedal (14) adopt the connection of contrary theory, that is: abseiling (1) is connected to tricing line, the control end that pulls that is connected to brake handgrip (18) and pedal (14), braking rope (2) is connected to one end not pulling of brake handgrip (18) and pedal (14).
2. according to the high building down slide device of claim 1, it is characterized in that: described abseiling (1) top, be connected with a stretch cord (4), the top that approaches that is connected to abseiling (1), and stretch cord (4) other end is connected with a slip ring (5), and slip ring (5) is enclosed within on terminal (3).
3. according to the high building down slide device of claim 1, it is characterized in that: three rope winding methods of abseiling (1), braking rope (2), stretch cord (4) are: abseiling (1) and braking rope (2) are wound around in the same way after one section on terminal (3), again and stretch cord (4) together three ropes be wound around in the same way, stretch cord continues to be wound in terminal coil (6) around complete rear abseiling (1) and braking rope (2).
4. according to the high building down slide device of claim 1, it is characterized in that: the brake block (8) at described terminal (3) two ends, to play semi-annular jade pendants (21) with many of Anvil between in two bent type shell fragments (20), the interior friction plate (22) that connects forms, the opening part of two shell fragments (20) of brake block (8), there is unnecessary overlapped part, with pin (23), connect, at opening part or pin (23) two ends, connect adjustable clamp (10), adjustable clamp (10) is formed by two strut interconnections, and there is fastener (24) one end of the strut of adjustable clamp.
5. according to the high building down slide device of claim 1, it is characterized in that: described brake block (11) is set to hook solid (31) with the bottom that being slidably connected of support box (7) is brake block (11), and in crotch, connect one group of head pulley (32) or ball, one group of auxiliary pulley (33), by a right-angle side of the long edge break of support box (7) (34), two groups of pulley sleeves to right-angle side (34) formation and be slidably connected simultaneously.
6. according to the high building down slide device of claim 5, it is characterized in that: the rubbing surface of described roller brake block (11), by being connected with support rope sheet (26) on an elasticity brake frame (25), on it, there is porous (27), many elasticity connection straps (28) are inserted in the hole, again pearl ball with holes or the section of rolling (29) are enclosed within to connection strap (28) above, form the rolling scouring face that a plurality of pearl balls or the section of rolling are gone here and there and formed.
7. according to the high building down slide device of claim 1, it is characterized in that: the approaching top with one section of short rope (17) or directly with brake handgrip (18), abseiling (1) be connected with braking rope (2) of abseiling (1) and braking rope (2), its length is no more than the swinging distance of brake block (11) setting.
CN201320445597.1U 2013-07-25 2013-07-25 High-rise gliding device Expired - Fee Related CN203494075U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320445597.1U CN203494075U (en) 2013-07-25 2013-07-25 High-rise gliding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320445597.1U CN203494075U (en) 2013-07-25 2013-07-25 High-rise gliding device

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CN203494075U true CN203494075U (en) 2014-03-26

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CN201320445597.1U Expired - Fee Related CN203494075U (en) 2013-07-25 2013-07-25 High-rise gliding device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104338253A (en) * 2013-07-25 2015-02-11 王学明 High-rise down-sliding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104338253A (en) * 2013-07-25 2015-02-11 王学明 High-rise down-sliding device

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140326

Termination date: 20150725

EXPY Termination of patent right or utility model