Giant six-legged polar research vehicle with tracked feet
10913502 ยท 2021-02-09
Assignee
- TAIYUAN UNIVERSITY OF SCIENCE AND TECHNOLOGY (Taiyuan, CN)
- Taiyuan University of Technology (Taiyuan, CN)
- Polar Research Institute of China (SHANGHAI, CN)
Inventors
- Fuqiang Zhao (Shanxi, CN)
- Pengyang Du (Shanxi, CN)
- Qingxue Huang (Shanxi, CN)
- Baoyu Chang (Shanxi, CN)
- Yinke Dou (Shanxi, CN)
- Bo Sun (Shanghai, CN)
- Tie Wang (Shanxi, CN)
- JINGXUE GUO (SHANGHAI, CN)
Cpc classification
B62D11/20
PERFORMING OPERATIONS; TRANSPORTING
F05B2240/941
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E10/728
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B62D55/104
PERFORMING OPERATIONS; TRANSPORTING
B62D55/0655
PERFORMING OPERATIONS; TRANSPORTING
B62D57/022
PERFORMING OPERATIONS; TRANSPORTING
B62D55/065
PERFORMING OPERATIONS; TRANSPORTING
B62D55/062
PERFORMING OPERATIONS; TRANSPORTING
B62D11/04
PERFORMING OPERATIONS; TRANSPORTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B62D57/02
PERFORMING OPERATIONS; TRANSPORTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D55/104
PERFORMING OPERATIONS; TRANSPORTING
B62D55/065
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A giant six-legged polar research vehicle with tracked feet, including a platform, six legs arranged at six ends of the platform and six tracked feet arranged below the six legs. A monitoring device is arranged on a top cover. Six power compartments each having a steering device are arranged at six ends of a chassis in the platform. Each leg includes a main traveling device with an upper end and a lower end respectively connected to the steering device and a tracked foot, an auxiliary traveling device with an upper end and a lower end respectively connected to the chassis and the main traveling device, and a connecting device arranged on the main traveling device. The tracked foot includes a main flipping mechanism, an auxiliary flipping mechanism, a tracked foot slewing device, a crawler, a sliding plate and a suspension.
Claims
1. A six-legged polar research vehicle with tracked feet, comprising: a platform, six legs separately arranged at six ends of the platform, and six tracked feet arranged below the six legs; wherein the platform comprises a top cover, a chassis, a photovoltaic power generator, a monitoring device, a wind generator set, six power compartments and six steering devices; the monitoring device and the wind generator set are arranged on the top cover; the photovoltaic power generator is arranged on an outer side of the top cover; the top cover is fixed on the chassis; the six power compartments are separately arranged at six ends of the chassis; each power compartment is provided with a steering device therein; movable baffles are arranged on outer sides of the power compartments; each of the six legs comprises a main traveling device, an auxiliary traveling device and a connecting device; an upper end of the main traveling device is connected to the steering device of the platform, and a lower end of the main traveling device is connected to an tracked foot; an upper end of the auxiliary traveling device is connected to the chassis, and a lower end of the auxiliary traveling device is connected to the main traveling device; the connecting device is arranged on the main traveling device; each of the six tracked feet comprises a main flipping mechanism, an auxiliary flipping mechanism, a tracked foot slewing device, a crawler, a sliding plate and a suspension; the main flipping mechanism is arranged at a front side of the lower end of the main traveling device; the auxiliary flipping mechanism is arranged at a rear side of the lower end of the main traveling device; the tracked foot slewing device is arranged above a middle of the crawler; the sliding plate is arranged under the crawler; a middle of the sliding plate is connected to the crawler; the suspension is arranged on an upper portion of the sliding plate; and an upper end of the suspension is connected to the crawler.
2. The six-legged polar research vehicle of claim 1, wherein the main traveling device comprises an upper leg, a middle leg, a damping device, a lower leg, a wind power generator compartment, wind power generator, two upper leg hydraulic pushrods and a middle leg hydraulic pushrod; an upper end of the upper leg is connected to the steering device; a lower end of the upper leg is connected to a middle portion of the middle leg; one end of the damping device is connected to a lower end of the middle leg; and the other end of the damping device is connected to an upper end of the lower leg; a lower end of the lower leg is connected to the tracked foot slewing device; a middle portion of the lower leg is provided with the wind power generator compartment; the wind power generator is arranged in the wind power generator compartment; the two upper leg hydraulic pushrods are uniformly arranged at opposite sides of the upper leg; one end of each upper leg hydraulic pushrod is connected to the steering device, and the other end of each upper leg hydraulic pushrod is connected to a middle portion of the upper leg; one end of the middle leg hydraulic pushrod is connected to the middle portion of the upper leg, and the other end of the middle leg hydraulic pushrod is connected to an upper end of the middle leg.
3. The six-legged polar research vehicle of claim 1, wherein the auxiliary traveling device comprises two extensible auxiliary rods and auxiliary rod bases uniformly arranged on opposite sides of the main traveling device; a bottom of each auxiliary rod base is fixed between two adjacent power compartments; each auxiliary rod base is connected to one end of each extensible auxiliary rod, and the other end of each extensible auxiliary rod is connected to a top of the wind power generator compartment.
4. The six-legged polar research vehicle of claim 1, wherein the connecting device comprises a extensible tapered connecting rod and a extensible bar-type connecting rod; an upper end of the retractable tapered connecting rod and an upper end of the extensible bar-type connecting rod are connected to the wind power generator compartment, respectively.
5. The six-legged polar research vehicle of claim 1, wherein the main flipping mechanism comprises two main connecting levers in parallel with each other, two main rocker in parallel with each other and a flipping hydraulic pushrod; one end of the main connecting lever is connected to the lower end of the lower leg, and the other end of the main connecting lever is connected to an upper end of the main rocker; a lower end of the main rocker is connected to the tracked foot slewing device; one end of the flipping hydraulic pushrod is connected to the upper end of the main rocker, and the other end of the flipping hydraulic pushrod is connected to the middle of the lower leg.
6. The six-legged polar research vehicle of claim 1, wherein the auxiliary flipping mechanism comprises two auxiliary connecting rods in parallel with each other and two auxiliary rockers in parallel with each other; one end of each auxiliary connecting rod is connected to the lower end of the lower leg, and the other end of each auxiliary connecting rod is connected to an upper end of each auxiliary rocker; and a lower end of each auxiliary rocker is connected to the tracked foot slewing device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE NUMERALS
(11) 1, platform; 2, leg; 3, tracked foot; 101, photovoltaic power generator; 102, top cover; 103, monitoring device; 104, wind generator set; 105, movable baffle; 106, power compartment; 107, chassis; 108, internal combustion engine power device; 109, power battery pack; 110, oil tank; 111, steering device; 201, main traveling device; 202, auxiliary traveling device; 203, connecting device; 20101, wind power generator; 20102, wind power generator compartment; 20103, lower leg; 20104, damping device; 20105, middle leg; 20106, middle leg hydraulic pushrod; 20107, upper leg; 20108 and 20109, upper leg hydraulic pushrods; 2011 and 2012, extensible auxiliary rods; 20203 and 2024, auxiliary rod bases; 20301, extensible bar-type connecting rod; 20302, extensible tapered connecting rod; 20303, locking pin; 20304, lockable taper hole; 301, main flipping mechanism; 302, auxiliary flipping mechanism; 303, tracked foot slewing device; 304, crawler; 305, sliding plate; 306, suspension; 30101, 30104, main connecting lever; 30102, 30103, main rocker; 30105, flipping hydraulic pushrod; 30201, 30202, auxiliary connecting rod; 30203, 30204, auxiliary rocker.
DETAILED DESCRIPTION OF EXAMPLES
(12) The embodiments of the present invention will be described in detail below.
(13) As shown in
(14) As shown in
(15) As shown in
(16) As shown in
(17) The main traveling device 201 specifically includes an upper leg 20107, a middle leg 20105, a damping device 20104, a lower leg 20103, a wind power generator compartment 20102, a wind power generator 20101, two upper leg hydraulic pushrods 20108 and 20109 with same structure and a middle leg hydraulic pushrod 20106. An upper end of the upper leg 20107 is connected to the steering device 111. A lower end of the upper leg 20107 is connected to a middle portion of the middle leg 20105. One end of the damping device 20104 is connected to a lower end of the middle leg 20105, and the other end of the damping device 20104 is connected to an upper end of the lower leg 20103. A lower end of the lower leg 20103 is connected to the tracked foot slewing device 303. A middle portion of the lower leg 20103 is provided with the wind power generator compartment 20102. The wind power generator 20101 is arranged in the wind power generator compartment 20102. The two upper leg hydraulic pushrods 20109 are uniformly arranged at opposite sides of the upper leg 20107. One end of each upper leg hydraulic pushrod 20109 is connected to the steering device 111, and the other end of each upper leg hydraulic pushrod 20109 is connected to a middle portion of the upper leg 20107. One end of the middle leg hydraulic pushrod 20106 is connected to the middle portion of the upper leg 20107, and the other end of the middle leg hydraulic pushrod 20106 is connected to an upper end of the middle leg 20105.
(18) The auxiliary traveling device 202 includes two extensible auxiliary rods 2011, 20202 and auxiliary rod bases 20203, 20204 uniformly arranged on opposite sides of the main traveling device 201. Bottoms of auxiliary rod bases 20203, 20204 are fixed between two adjacent power compartments. The auxiliary rod bases 20203, 20204 are separately connected to one end of the extensible auxiliary rods 20201, 20202, and the other end of each extensible auxiliary rod 20201, 20202 is connected to a top of the wind power generator compartment 20102.
(19) The connecting device 203 includes a extensible tapered connecting rod 20302 and a extensible bar-type connecting rod 20301. An upper end of the retractable tapered connecting rod 20302 is connected to the wind power generator compartment 20102. An upper end of the extensible bar-type connecting rod 20301 is connected to the wind power generator compartment 20102.
(20) As shown in
(21) The main flipping mechanism 301 includes two main connecting levers 30101, 30104 in parallel with each other, two main rocker 30102, 30103 in parallel with each other and a flipping hydraulic pushrod 30105. One end of the main connecting lever 30101, 30104 is connected to the lower end of the lower leg 20103, and the other end of the main connecting lever 30101, 30104 is connected to an upper end of the main rocker 30102, 30103. A lower end of the main rocker 30102, 30103 is connected to the tracked foot slewing device 303. One end of the flipping hydraulic pushrod 30105 is connected to the upper end of the main rocker 30102, 30103, and the other end of the flipping hydraulic pushrod 30105 is connected to the middle of the lower leg 20103.
(22) The auxiliary flipping mechanism 302 includes two auxiliary connecting rods 30201, 30202 in parallel with each other and two auxiliary rockers 30203, 30204 in parallel with each other. One end of each auxiliary connecting rod 30201, 30202 is connected to the lower end of the lower leg 20103, and the other end of each auxiliary connecting rod 30201, 30202 is connected to an upper end of each auxiliary rocker 30203, 30204. A lower end of each auxiliary rocker 30203, 30204 is connected to the tracked foot slewing device 303.
(23) The six-legged polar research vehicle with tracked feet can achieve traveling, obstacles crossing and platform lowering.
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