CN105536227A - Rotary type bicycle riding intelligent simulation system - Google Patents

Rotary type bicycle riding intelligent simulation system Download PDF

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Publication number
CN105536227A
CN105536227A CN201610081457.9A CN201610081457A CN105536227A CN 105536227 A CN105536227 A CN 105536227A CN 201610081457 A CN201610081457 A CN 201610081457A CN 105536227 A CN105536227 A CN 105536227A
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China
Prior art keywords
electric energy
power
swinging
mobile terminal
riding
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CN201610081457.9A
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Chinese (zh)
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徐峰
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Individual
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Individual
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Priority to CN201610081457.9A priority Critical patent/CN105536227A/en
Publication of CN105536227A publication Critical patent/CN105536227A/en
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B69/00Training appliances or apparatus for special sports
    • A63B69/16Training appliances or apparatus for special sports for cycling, i.e. arrangements on or for real bicycles
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B24/00Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances
    • A63B24/0003Analysing the course of a movement or motion sequences during an exercise or trainings sequence, e.g. swing for golf or tennis
    • A63B24/0006Computerised comparison for qualitative assessment of motion sequences or the course of a movement
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B24/00Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances
    • A63B24/0003Analysing the course of a movement or motion sequences during an exercise or trainings sequence, e.g. swing for golf or tennis
    • A63B24/0006Computerised comparison for qualitative assessment of motion sequences or the course of a movement
    • A63B2024/0012Comparing movements or motion sequences with a registered reference
    • A63B2024/0015Comparing movements or motion sequences with computerised simulations of movements or motion sequences, e.g. for generating an ideal template as reference to be achieved by the user

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Electric Propulsion And Braking For Vehicles (AREA)

Abstract

The invention relates to a rotary type bicycle riding intelligent simulation system which comprises a rotary type bicycle riding balance simulator, an intelligent control device, an electric energy conversion device, a power-adjustable load and a mobile terminal. The rotary type bicycle riding balance simulator is connected to the intelligent control device and the electric energy conversion device. The intelligent control device is connected with the rotary type bicycle riding balance simulator, the electric energy conversion device and the power-adjustable load, and is in communication with the mobile terminal. The electric energy conversion device is connected with the rotary type bicycle riding balance simulator, the power-adjustable load and the intelligent control device. The power-adjustable load is connected with the intelligent control device and the electric energy conversion device. The mobile terminal is connected with the intelligent control device. The intelligent control device is arranged on the system, can be connected with the mobile terminal to display riding parameters in real time, and can set riding parameters through the mobile terminal; in addition, the rotary type bicycle riding intelligent simulation system can be connected with other simulation devices through the mobile terminal so that people can play games or match together, and interestingness and entertainment are achieved.

Description

Swinging cycling intelligent modelling system
Technical field
The present invention relates to a kind of body-building apparatus, particularly a kind of and bicycle matching used swinging cycling intelligent modelling system.
Background technology
The quick propelling of urbanization and the universal fast of private car, have compressed the place can doing aerobic exercise for people, do an aerobic exercise safely and effectively, even becomes the one extravagant hope of majority.Cycling is exactly one of good aerobic exercise, and technical ability is easy to learn by bike, and most people grasps, but the universal of this motion and development are equally also perplexed in place required by bike always.Chinese patent 201410410244.7 discloses a kind of push-and-pull rod-type bike riding-balance simulator, place needed for this simulator is little, aerobic exercise can be carried out at indoor or outdoors, but this simulator lacks interesting, can only merely train, cannot the various parameter of riding of equipment, more together cannot carry out playing or competing with the fan that rides.
Summary of the invention
The object of the invention is to overcome above shortcoming, a kind of swinging cycling intelligent modelling system is provided, this system is provided with intelligent controlling device, can not only be connected with mobile terminal, to riding, parameter shows in real time, and by mobile terminal, parameter of riding is arranged, undertaken being connected by mobile terminal and other analogue means in addition and together carry out playing or competing, have interesting and recreational.
The present invention is achieved in that a kind of swinging cycling intelligent modelling system, and it is characterized in that, this system comprises:
Swinging bike riding-balance simulator, be connected to intelligent controlling device and device for converting electric energy respectively, described swinging bike riding-balance simulator produces mechanical energy by riding and is converted to electric energy by device for converting electric energy, and the parameter of riding of swinging bike riding-balance simulator is sent to intelligent controlling device;
Intelligent controlling device, connect swinging bike riding-balance simulator, device for converting electric energy and power-adjustable load respectively, and be connected with mobile terminal communication, described intelligent controlling device receives the power loading parameter of ride parameter and the power-adjustable load transmission that swinging bike riding-balance simulator transmits, and is forwarded to mobile terminal in real time after treatment;
Device for converting electric energy, connect swinging bike riding-balance simulator, power-adjustable load and intelligent controlling device respectively, described device for converting electric energy is intelligent controlling device and power-adjustable load supplying;
Power-adjustable load, connecting intelligent controlling device and device for converting electric energy respectively, for consuming the electric energy that device for converting electric energy produces, and sending the power loading parameter of generation to intelligent controlling device;
Mobile terminal, is connected with intelligent controlling device, and arranges the power loading parameter of power-adjustable load to intelligent controlling device by mobile terminal transmission instruction.
Described intelligent controlling device comprises:
Process chip, connecting sensor module, communication module, energy supply control module and power-adjustable load respectively, for the power loading parameter of ride parameter and the power-adjustable load of the swinging bike riding-balance simulator of receiving sensor module transmission, mobile terminal is forwarded in real time through communication module after process, and after the instruction sent by communication module mobile terminal receive, the power loading parameter of power-adjustable load is set according to instruction;
Sensor assembly, respectively connection handling chip and swinging bike riding-balance simulator, for the parameter parameter of riding is sent to process chip of riding receiving that swinging bike riding-balance simulator transmits;
Communication module, is connected with mobile terminal with process chip respectively, for the data after treated chip process are sent to mobile terminal, and the instruction that mobile terminal sends is sent to process chip;
Energy supply control module, is connected with device for converting electric energy with process chip, power supply output module respectively, after receiving electric energy that device for converting electric energy provides, be supplied to process chip and power supply to export simulation;
Power supply output module, is connected with energy supply control module, for providing electric energy for external loading.
In order to riding of analog bicycle better, described swinging bike riding-balance simulator comprises the bascule for placing front wheel and is positioned at the drum apparatus being used for placing bicycle rear at bascule rear; Described bascule comprises base and is rotationally connected with the revolving meber on base, one end of described revolving meber is rotationally connected with on base and the other end is in free state, described revolving meber is provided with the slip stopping means horizontally slipped for limiting front wheel, and described intelligent controlling device, device for converting electric energy, power-adjustable load are fixedly arranged on drum apparatus.
In order to reduce the center of gravity of riding further, described base is installed with gyroaxis, one end of described revolving meber is installed with the swivel sleeve matched with gyroaxis, and described swivel sleeve coaxial rotation is placed on gyroaxis.
In order to improve the flexibility that revolving meber rotates, between described gyroaxis and swivel sleeve, be also provided with floating bearing.
In order to prevent revolving meber and base from mutually throwing off, between described gyroaxis and swivel sleeve, be connected with anti-loosing screw.
In order to limit the angle of revolution of revolving meber better, described base is provided with the rotary caging device for limiting revolving meber angle of revolution.
In order to make base and earth surface more steady, the lower surface of described base is installed with rubber cushion.
The mechanical energy of rotating to utilize cylinder generates electricity, described drum apparatus comprises frame, is fixedly arranged on frame rear and front end and two fixed axis arranged along left and right horizontal direction and two cylinders be rotationally connected with respectively on two fixed axis, arbitrary fixed axis or two fixed axis are equipped with stator, described inner wall of rotary drum is provided with the rotor matched with stator, and described stators and rotators is all connected with device for converting electric energy.
Compared to prior art, the present invention has the following advantages:
(1) swinging cycling intelligent modelling system provided by the invention, this system is provided with intelligent controlling device, can not only be connected with mobile terminal, to riding, parameter shows in real time, and by mobile terminal, parameter of riding is arranged, undertaken being connected by mobile terminal and other analogue means in addition and together carry out playing or competing, have interesting and recreational;
(2) swinging cycling intelligent modelling system provided by the invention, arranges riding resistance by power-adjustable load, meets the requirement of different training strength;
(3) swinging cycling intelligent modelling system provided by the invention, not only centre-of-gravity is low, rides safer, and structure is simple, low cost of manufacture, easy to carry;
(4) swinging cycling intelligent modelling system provided by the invention, the swivel sleeve coaxial rotation in swinging bike riding-balance simulator is placed on gyroaxis, reduces the center of gravity of riding further;
(5) swinging cycling intelligent modelling system provided by the invention, is also provided with floating bearing between gyroaxis and swivel sleeve, substantially increases the flexibility that revolving meber rotates;
(6) swinging cycling intelligent modelling system provided by the invention, is connected with anti-loosing screw between gyroaxis and swivel sleeve, no matter to carry or in use procedure, revolving meber and base all can not be thrown off mutually;
(7) swinging cycling intelligent modelling system provided by the invention, base is provided with the rotary caging device for limiting revolving meber angle of revolution, effectively can not only limit the pivotal angle of revolving meber, and effectively can prevent that angle of revolution is excessive causes bicyclist unbalance, ensure that the security of motion;
(8) swinging cycling intelligent modelling system provided by the invention, bascule can adjust according to the different of bicycle wheels distance from drum apparatus, expand simulator and different specification size bicycle with the use of scope;
(9) swinging cycling intelligent modelling system provided by the invention, cylinder can generate electricity, for system and external equipment provide electric energy;
(10) swinging cycling intelligent modelling system provided by the invention, serviceability is reliable, integrates entertaining and body-building, is easy to apply.
Accompanying drawing explanation
The invention will be further described in conjunction with the embodiments with reference to the accompanying drawings:
Fig. 1 is the theory diagram of swinging cycling intelligent modelling system of the present invention;
Fig. 2 is the three-dimensional structure schematic diagram of swinging cycling intelligent modelling system of the present invention;
Fig. 3 is the three-dimensional structure schematic diagram of bascule in Fig. 2;
Fig. 4 is the explosive view of bascule in Fig. 3;
Fig. 5 is Fig. 2 intermediate roll device explosion view;
Fig. 6 is three-dimensional structure schematic diagram when front wheel turns left in Fig. 2;
Fig. 7 is three-dimensional structure schematic diagram when front wheel turns right in Fig. 2.
Symbol description in figure: 1, swinging bike riding-balance simulator, 1-1, bascule, 1-1-1, base, 1-1-2, revolving meber, 1-1-3, slip stopping means, 1-1-4, gyroaxis, 1-1-5, swivel sleeve, 1-1-6, floating bearing, 1-1-7, anti-loosing screw, 1-1-8, rotary caging device, 1-2, drum apparatus, 1-2-1, frame, 1-2-2, fixed axis, 1-2-3, cylinder, 2, intelligent controlling device, 3, device for converting electric energy, 4, power-adjustable load, 5, mobile terminal, 6, front wheel, 7, bicycle rear.
Detailed description of the invention
Below in conjunction with Figure of description and specific embodiment, content of the present invention is described in detail:
As shown in figs 1 to 6, be a kind of swinging cycling intelligent modelling system provided by the invention, as shown in Figure 1, this system comprises:
Swinging bike riding-balance simulator 1, be connected to intelligent controlling device 2 and device for converting electric energy 3 respectively, described swinging bike riding-balance simulator 1 produces mechanical energy by riding and is converted to electric energy by device for converting electric energy 3, and the parameter of riding of swinging bike riding-balance simulator 1 is sent to intelligent controlling device 2;
Intelligent controlling device 2, connect swinging bike riding-balance simulator 1, device for converting electric energy 3 and power-adjustable load 4 respectively, and be connected with mobile terminal 5 communication, described intelligent controlling device 2 receives the power loading parameter of ride parameter and power-adjustable load 4 transmission that swinging bike riding-balance simulator 1 transmits, and is forwarded to mobile terminal 5 in real time after treatment;
Device for converting electric energy 3, connect swinging bike riding-balance simulator 1, power-adjustable load 4 and intelligent controlling device 2 respectively, described device for converting electric energy 3 is powered for intelligent controlling device 2 and power-adjustable load 4;
Power-adjustable load 4, connecting intelligent controlling device 2 and device for converting electric energy 3 respectively, for consuming the electric energy that device for converting electric energy 3 produces, and sending the power loading parameter of generation to intelligent controlling device 2;
Mobile terminal 5, is connected with intelligent controlling device 2, and sends by mobile terminal 5 instruction to arrange power-adjustable load 4 power loading parameter to intelligent controlling device 2.Mobile terminal 5 can pass through wired connection, also can pass through wireless connections.Mobile terminal 5 can be mobile phone, flat board, hand-held PDA etc.
As shown in Figure 1, described intelligent controlling device 2 comprises:
Process chip, connecting sensor module, communication module, energy supply control module and power-adjustable load 4 respectively, for the power loading parameter of ride parameter and the power-adjustable load 4 of the swinging bike riding-balance simulator 1 of receiving sensor module transmission, mobile terminal 5 is forwarded in real time through communication module after process, and after passing through the instruction of communication module mobile terminal receive 5 transmission, the power loading parameter of power-adjustable load 4 is set according to instruction;
Sensor assembly, respectively connection handling chip and swinging bike riding-balance simulator 1, for the parameter parameter of riding is sent to process chip of riding receiving that swinging bike riding-balance simulator 1 transmits;
Communication module, is connected with mobile terminal 5 with process chip respectively, for the data after treated chip process are sent to mobile terminal 5, and the instruction that mobile terminal 5 sends is sent to process chip;
Energy supply control module, is connected with device for converting electric energy 3 with process chip, power supply output module respectively, after receiving electric energy that device for converting electric energy 3 provides, be supplied to process chip and power supply to export simulation;
Power supply output module, is connected with energy supply control module, for providing electric energy for external loading.
In order to riding of analog bicycle better, described swinging bike riding-balance simulator 1 comprises the bascule 1-1 for placing front wheel 6 and is positioned at the drum apparatus 1-2 being used for placing bicycle rear 7 at bascule 1-1 rear, described bascule 1-1 comprises base 1-1-1 and is rotationally connected with the revolving meber 1-1-2 on base 1-1-1, one end of described revolving meber 1-1-2 is rotationally connected with on base 1-1-1 and the other end is in free state, described revolving meber 1-1-2 is provided with the slip stopping means 1-1-3 horizontally slipped for limiting front wheel 6, as Fig. 2, shown in 3, described slip stopping means 1-1-3 is " V " type groove be arranged on revolving meber 1-1-2, front wheel 6 is positioned in " V " type groove, slip stopping means 1-1-3 can not only limit horizontally slipping of front wheel 6, and revolving meber 1-1-2 can be made to turn round with the swing of front wheel 6.The shape of slip stopping means 1-1-3 is not confined to the mode of the present embodiment, horizontally slips as long as can limit front wheel 6.Described intelligent controlling device 2, device for converting electric energy 3, power-adjustable load 4 are fixedly arranged on drum apparatus 1-2.
As shown in Figure 3,4, in order to reduce the center of gravity of riding further, described base 1-1-1 is installed with gyroaxis 1-1-4, and one end of described revolving meber 1-1-2 is installed with the swivel sleeve 1-1-5 matched with gyroaxis 1-1-4, and described swivel sleeve 1-1-5 coaxial rotation is placed on gyroaxis 1-1-4.
As shown in Figure 4, in order to improve the flexibility that revolving meber rotates, between described gyroaxis 1-1-4 and swivel sleeve 1-1-5, floating bearing 1-1-6 is also provided with.
As shown in Figure 4, in order to prevent revolving meber and base from mutually throwing off, between described gyroaxis 1-1-4 and swivel sleeve 1-1-5, anti-loosing screw 1-1-7 is connected with.
As shown in Figure 3,4, in order to limit the angle of revolution of revolving meber better, described base 1-1-1 is provided with the rotary caging device 1-1-8 for limiting revolving meber 1-1-2 angle of revolution.
In order to make base and earth surface more steady, the lower surface of described base 1-1-1 is installed with rubber cushion (not shown).Alternate manner can certainly be adopted, as the lower surface at base 1-1 installs vacuum cup.
As shown in Figure 5, the mechanical energy of rotating to utilize cylinder generates electricity, described drum apparatus 1-2 comprises frame 1-2-1, is fixedly arranged on frame 1-2-1 rear and front end and two fixed axis 1-2-2 and two the cylinder 1-2-3 be rotationally connected with respectively on two fixed axis 1-2-2 arranged along left and right horizontal direction, arbitrary fixed axis 1-2-2 or two fixed axis 1-2-2 is equipped with stator, described cylinder 1-2-3 inwall is provided with the rotor matched with stator, and described stators and rotators is all connected with device for converting electric energy 3.Sensor assembly comprises sensor chip, the transducer probe assembly be connected with sensor chip and and sensor sensing point.Sensor sensing point is arranged on the sidewall of cylinder 1-2-3, and transducer probe assembly is fixedly arranged on frame 1-2-1 for obtaining the information of sensor sensing point.Cylinder 1-2-3 is arranged to motorized pulleys by intelligent controlling device 2, dependence carries rechargable power supplies or external power supply, make it rotate, Direct driver bicycle rear 7, be convenient to the control that beginner attentively experiences balance like this, old bicyclist can reduce exercise intensity, also can loosen arrangement as post exercise, etc.
The operation principle of this invention is: be first fixed on the geometrical clamp of hundle-bar by the mobile phone of unlatching, the power switch of opening intelligent control device again, mobile phone is connected by wired or wireless mode with intelligent controlling device 2, again the front-wheel 6 of bicycle is placed on the slip stopping means 1-1-3 on bascule 1-1, bicycle rear is positioned on drum apparatus 1-2, then rides.As shown in Figure 2, when the people on swinging bike riding-balance simulator 1 does not twist bicycle handle bar, revolving meber 1-1-2 is in the centre position on base 1-1-1.As shown in Figure 6, when the people on swinging bike riding-balance simulator 1 twists bicycle handle bar left, the front wheel 6 be placed in slip stopping means 1-1-3 just drives revolving meber 1-1-2 to turn round by being rotationally connected a little of revolving meber 1-1-2 and base 1-1-1 left.After front wheel 6 shifts to left side, the bicycle rear 7 that cylinder 1-2-3 rolls just rolls automatically to the left.Vice versa, and as shown in Figure 7, when the people on swinging bike riding-balance simulator 1 twists bicycle handle bar to the right, front wheel 6 and bicycle rear 7 all can move right.Bicycle quick left, the speed of the size of the momentum that moves right and the speed of the translational speed size and riding speed that swing bicycle handlebar angle to cyclist is all directly proportional, thus achieves the simulated operation of riding-balance.The present invention is directly rotationally connected with on base 1-1-1 due to revolving meber 1-1-2, makes centre-of-gravity low, rides safer, and structure is simple, low cost of manufacture, easy to carry.The parameter such as rotating speed, riding resistance of cylinder 1-2-3 can be presented on mobile phone in real time, operator by mobile phone screen can Real Time Observation motion, game or various parameter and the video such as match, the power of power-adjustable load 4 also can be set by mobile phone, riding resistance is changed, the requirement of different training strength can be adapted to.The electricity that sends when cylinder 1-2-3 rotates, can become conventional voltage access power supply output module through energy supply control module, provides electric energy, also can be connected with charger, charge to electronic products such as computer cell phones to the sound of environment, the effect such as optical, electrical.Mobile terminal 5 also together carries out body-building game or match by the friend in internet platform and strange land or team.
Above-mentioned detailed description of the invention is just explained in detail technical scheme of the present invention, and the present invention has more than and is only confined to above-described embodiment, and every any improvement according to the principle of the invention or replacement, all should within protection scope of the present invention.

Claims (9)

1. a swinging cycling intelligent modelling system, is characterized in that, this system comprises:
Swinging bike riding-balance simulator (1), be connected to intelligent controlling device (2) and device for converting electric energy (3) respectively, described swinging bike riding-balance simulator (1) produces mechanical energy by riding and is converted to electric energy by device for converting electric energy (3), and the parameter of riding of swinging bike riding-balance simulator (1) is sent to intelligent controlling device (2);
Intelligent controlling device (2), connect swinging bike riding-balance simulator (1), device for converting electric energy (3) and power-adjustable load (4) respectively, and be connected with mobile terminal (5) communication, the power loading parameter that ride parameter and power-adjustable load (4) that swinging bike riding-balance simulator (1) that receives described intelligent controlling device (2) transmits transmit, is forwarded to mobile terminal (5) after treatment in real time;
Device for converting electric energy (3), connect swinging bike riding-balance simulator (1), power-adjustable load (4) and intelligent controlling device (2) respectively, described device for converting electric energy (3) is intelligent controlling device (2) and power-adjustable load (4) power supply;
Power-adjustable load (4), connect intelligent controlling device (2) and device for converting electric energy (3) respectively, for consuming the electric energy that device for converting electric energy (3) produces, and send the power loading parameter of generation to intelligent controlling device (2);
Mobile terminal (5), is connected with intelligent controlling device (2), and sends by mobile terminal (5) instruction arranges power-adjustable load (4) power loading parameter to intelligent controlling device (2).
2. swinging cycling intelligent modelling system according to claim 1, is characterized in that, described intelligent controlling device (2) comprising:
Process chip, connecting sensor module, communication module, energy supply control module and power-adjustable load (4) respectively, for the power loading parameter of ride parameter and the power-adjustable load (4) of the swinging bike riding-balance simulator (1) of receiving sensor module transmission, mobile terminal (5) is forwarded in real time through communication module after process, and after the instruction sent by communication module mobile terminal receive (5), the power loading parameter of power-adjustable load (4) is set according to instruction;
Sensor assembly, respectively connection handling chip and swinging bike riding-balance simulator (1), for the parameter parameter of riding is sent to process chip of riding receiving that swinging bike riding-balance simulator (1) transmits;
Communication module, is connected with mobile terminal (5) with process chip respectively, for the data after treated chip process are sent to mobile terminal (5), and the instruction that mobile terminal (5) sends is sent to process chip;
Energy supply control module, is connected with device for converting electric energy (3) with process chip, power supply output module respectively, after receiving electric energy that device for converting electric energy (3) provides, be supplied to process chip and power supply to export simulation;
Power supply output module, is connected with energy supply control module, for providing electric energy for external loading.
3. swinging cycling intelligent modelling system according to claim 1, is characterized in that: described swinging bike riding-balance simulator (1) comprises the bascule (1-1) for placing front wheel (6) and is positioned at the drum apparatus (1-2) being used for placing bicycle rear (7) at bascule (1-1) rear; Described bascule (1-1) comprises base (1-1-1) and is rotationally connected with the revolving meber (1-1-2) on base (1-1-1), one end of described revolving meber (1-1-2) is rotationally connected with that base (1-1-1) is upper and the other end is in free state, described revolving meber (1-1-2) is provided with the slip stopping means (1-1-3) horizontally slipped for limiting front wheel (6), and described intelligent controlling device (2), device for converting electric energy (3), power-adjustable load (4) are fixedly arranged on drum apparatus (1-2).
4. swinging cycling intelligent modelling system according to claim 3, it is characterized in that: described base (1-1-1) is installed with gyroaxis (1-1-4), one end of described revolving meber (1-1-2) is installed with the swivel sleeve (1-1-5) matched with gyroaxis (1-1-4), and described swivel sleeve (1-1-5) coaxial rotation is placed on gyroaxis (1-1-4).
5. swinging cycling intelligent modelling system according to claim 4, is characterized in that: be also provided with floating bearing (1-1-6) between described gyroaxis (1-1-4) and swivel sleeve (1-1-5).
6. swinging cycling intelligent modelling system according to claim 4, is characterized in that: be connected with anti-loosing screw (1-1-7) between described gyroaxis (1-1-4) and swivel sleeve (1-1-5).
7. swinging cycling intelligent modelling system according to claim 3, is characterized in that: described base (1-1-1) is provided with the rotary caging device (1-1-8) for limiting revolving meber (1-1-2) angle of revolution.
8. the swinging cycling intelligent modelling system according to any one of claim 3-7, is characterized in that: the lower surface of described base (1-1-1) is installed with rubber cushion.
9. the swinging cycling intelligent modelling system according to any one of claim 3-7, it is characterized in that: described drum apparatus (1-2) comprises frame (1-2-1), be fixedly arranged on frame (1-2-1) rear and front end and two fixed axis (1-2-2) arranged along left and right horizontal direction and two cylinders (1-2-3) be rotationally connected with respectively on two fixed axis (1-2-2), arbitrary fixed axis (1-2-2) or two fixed axis (1-2-2) are equipped with stator, described cylinder (1-2-3) inwall is provided with the rotor matched with stator, described stators and rotators is all connected with device for converting electric energy (3).
CN201610081457.9A 2016-02-05 2016-02-05 Rotary type bicycle riding intelligent simulation system Pending CN105536227A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610081457.9A CN105536227A (en) 2016-02-05 2016-02-05 Rotary type bicycle riding intelligent simulation system

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Application Number Priority Date Filing Date Title
CN201610081457.9A CN105536227A (en) 2016-02-05 2016-02-05 Rotary type bicycle riding intelligent simulation system

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2195549A (en) * 1986-09-27 1988-04-13 Neill Sanders Beanland Bicycle learner and exerciser
CN101259322A (en) * 2008-02-29 2008-09-10 上海大学 Bicycle sport simulated system
EP2319592A1 (en) * 2009-11-04 2011-05-11 Tacx B.V. Bicycle trainings apparatus
CN104884137A (en) * 2012-12-12 2015-09-02 迈克尔·弗莱贝格 Cycling training device
US9155932B1 (en) * 2012-09-11 2015-10-13 Adam Paulsen Bicycle with resistance arm exercise
CN205494895U (en) * 2016-02-05 2016-08-24 徐峰 Rotation bicycle intelligent analog system that rides

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2195549A (en) * 1986-09-27 1988-04-13 Neill Sanders Beanland Bicycle learner and exerciser
CN101259322A (en) * 2008-02-29 2008-09-10 上海大学 Bicycle sport simulated system
EP2319592A1 (en) * 2009-11-04 2011-05-11 Tacx B.V. Bicycle trainings apparatus
US9155932B1 (en) * 2012-09-11 2015-10-13 Adam Paulsen Bicycle with resistance arm exercise
CN104884137A (en) * 2012-12-12 2015-09-02 迈克尔·弗莱贝格 Cycling training device
CN205494895U (en) * 2016-02-05 2016-08-24 徐峰 Rotation bicycle intelligent analog system that rides

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Application publication date: 20160504