Bionic pectoral fin propelling device based on planetary gear train
09771135 ยท 2017-09-26
Assignee
Inventors
- Shuyan Wang (Jiangsu, CN)
- Xinguo Wang (Jiangsu, CN)
- Yongmei Zhu (Jiangsu, CN)
- Jian ZHANG (Jiangsu, CN)
- Wenxian TANG (Jiangsu, CN)
Cpc classification
B63G8/001
PERFORMING OPERATIONS; TRANSPORTING
B63H1/32
PERFORMING OPERATIONS; TRANSPORTING
B63H1/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B63G8/00
PERFORMING OPERATIONS; TRANSPORTING
B63H1/32
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A bionic pectoral fin propelling device based on a planetary gear train, including a frame, a power source (1), a propelling part (2), left and right maneuvering parts (3), a fixed support plate (4), a movable support plate (5), a left pectoral fin (6), a right pectoral fin (7), a fish body (8), and a tail fin (9). The fixed support plate (4) and the movable support plate (5) are installed on the frame parallel to each other; the fixed support plate (4) is located in front of the movable support plate (5); and the left and right maneuvering parts (3) are located between the fixed support plate (4) and the movable support plate (5). The present invention solves the problem that the two pectoral fins are not synchronized, realizes variable speed propelling and left/right maneuvering, facilitates increasing the bearing capacity of the propelling device, and is particularly suitable in limited space applications.
Claims
1. A bionic pectoral fin propelling device based on a planetary gear train, comprising a frame, a power source (1), a propelling part (2), left and right maneuvering parts (3), a fixed support plate (4), a movable support plate (5), a left pectoral fin (6), a right pectoral fin (7), a fish body (8), and a tail fin (9), the fixed support plate (4) and the movable support plate (5) being installed on the frame parallel to each other; the fixed support plate (4) being located in front of the movable support plate (5); and the left and right maneuvering parts (3) being located between the fixed support plate (4) and the movable support plate (5), wherein the propelling part (2) comprises a drive servo motor (201), a coupler (202), a transmission shaft (203), a planetary carrier (205), a double-disc planetary gear (208), a sun gear (212), a double-end stud (214), a left pectoral fin connecting rod (216), a right pectoral fin connecting rod (217), a left swinging block (218), a left swinging block fixing rod (219), a right swinging block (220), and a right swinging block fixing rod (221); the drive servo motor (201) is fixed on the fixed support plate (4), an output shaft of the drive servo motor (201) is connected to one end of the transmission shaft (203) through the coupler (202), and the other end of the transmission shaft (203) is connected to the planetary carrier (205); an output shaft of the planetary carrier (205) is connected to the central part of the double-disc planetary gear (208) through a bearing; the planetary gear (208) comprises an upper disc and a lower disc that are in parallel with each other, an outer gear of the lower disc is engaged with an inner gear of the sun gear (212), and a plurality of equally spaced threaded holes is provided on the periphery of a reference circle of the upper disc; the sun gear (212) is fixed on the frame and is located in front of the fixed support plate (4); one end of the double-end stud (214) is installed in one of the threaded holes of the upper disc, and the other end of the double-end stud (214) is hinged to the left pectoral fin connecting rod (216) and the right pectoral fin connecting rod (217); one end of the left swinging block fixing rod (219) and one end of the right swinging block fixing rod (221) are installed on the left and right sides of the movable support plate (5) respectively, the left swinging block (218) and the right swinging block (220) are fixed on the other end of the left swinging block fixing rod (219) and the other end of the right swinging block fixing rod (221) respectively, and the left pectoral fin connecting rod (216) and the right pectoral fin connecting rod (217) pass through the left swinging block (218) and the right swinging block (220), and are hinged to the left swinging block (218) and the right swinging block (220), respectively; the left and right maneuvering parts (3) comprise an upper dovetail guide rail (301), an upper slide block (302), a lower dovetail guide rail (303), a lower slide block (304), a rack (305), and a forward and reverse servo motor (307) provided with a gear on a motor shaft; the upper dovetail guide rail (301) and the lower dovetail guide rail (303) are respectively fixed on an upper end and a lower end of a front end surface of the movable support plate (5), the upper slide block (302) and the lower slide block (304) are respectively fixedly installed on an upper end and a lower end of a rear end surface of the fixed support plate (4), and the upper dovetail guide rail (301) and the lower dovetail guide rail (303) are respectively in sliding fit with the upper slide block (302) and the lower slide block (304); the rack (305) is fixed on a central position of the front end surface of the movable support plate (5); the forward and reverse servo motor (307) is fixed on the rear end surface of the fixed support plate (4), and a motor gear engaged with the rack (305) is installed on an output shaft of the forward and reverse servo motor (307).
2. The bionic pectoral fin propelling device based on a planetary gear train according to claim 1, wherein the central parts of the two disc gears in the double-disc planetary gear (208) are fixedly connected to each other.
3. The bionic pectoral fin propelling device based on a planetary gear train according to claim 1, wherein the bearing between the output shaft of the planetary carrier (205) and the double-disc planetary gear (208) comprises a first deep-groove ball bearing (206) and a second deep-groove ball bearing (207), the second deep-groove ball bearing (207) and the first deep-groove ball bearing (206) contact each other and are installed in the front-back direction, and a rear end of the first deep-groove ball bearing (206) is limited by a shaft shoulder of the planetary carrier (205).
4. The bionic pectoral fin propelling device based on a planetary gear train according to claim 3, further comprising a sleeve (209) and a baffle plate (210), wherein a front end of the second deep-groove ball bearing (207) is limited by the sleeve (209), and an upper end of the sleeve (209) is pressed by the baffle plate (210).
5. The bionic pectoral fin propelling device based on a planetary gear train according to claim 4, further comprising a first nut (211), wherein the baffle plate (210) is tightly pressed on the sleeve (209) by using the first nut (211), and a gap remains between the baffle plate (210) and the double-disc planetary gear (208).
6. The bionic pectoral fin propelling device based on a planetary gear train according to claim 1, further comprising a key (204), wherein the transmission shaft (203) is connected to the planetary carrier (205) through the key (204).
7. The bionic pectoral fin propelling device based on a planetary gear train according to claim 1, further comprising a sun gear support pillar (213), wherein the sun gear (212) is fixedly connected to the frame through the sun gear support pillar (213).
8. The bionic pectoral fin propelling device based on a planetary gear train according to claim 1, wherein the double-end stud (214) comprises a butt end and a tip end, the butt end of the double-end stud (214) is connected to the double-disc planetary gear (208), and the left pectoral fin connecting rod (216) and the right pectoral fin connecting rod (217) are hinged at the tip end of the double-end stud (214).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(7) In order to make the objectives and technical solutions of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention are clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. It is obvious that the described embodiments are merely some rather than all embodiments of the present invention. Based on the described embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
(8) One of ordinary skill in the art can understand that unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. It will be further understood that terms, such as those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art, and will not be interpreted in an idealized or overly formal sense unless expressly so defined herein.
(9) The term and/or in the present invention means that either or both elements may be present.
(10) The terms inner and outer in the present invention respectively refer to, relative to the device itself, the direction toward the interior of the device and the opposite direction, and are not intended to particularly limit the device and mechanism of the present invention.
(11) The terms left and right in the present invention respectively refer to, when a reader is facing the drawing, the left side of the reader and the right side of the reader, and are not intended to particularly limit the device and mechanism of the present invention.
(12) The term connection in the present invention may refer to direct connection between components or indirection connection between components by means of other components.
(13) The terms front and back in the present invention respectively refer to the traveling direction of a propelling device in operation and the opposite direction.
(14) As shown in
(15) Referring to
(16) As for the double-disc planetary gear 208, the radius of the reference circle of the double-disc planetary gear 208 is half of the radius of a reference circle of the sun gear 212; 12 threaded holes are drilled on the reference circle of the upper disc of the double-disc planetary gear 208, and the threaded holes are equally spaced; by selecting different threaded holes, the double-end stud 214 may have different motion paths, and the motion path of the double-end stud 214 is to perform reciprocating motion along the diameter of the sun gear 212 where the double-end stud 214 is located, thereby resulting in different swinging amplitudes.
(17) As shown in
(18) The specific working process is as follows.
(19) When the robot fish is linearly propelled, the servo motor 201 is connected to the transmission shaft 203 through the coupler 202 to drive the planetary carrier 205 to rotate, the double-disc planetary gear 208 installed on the planetary carrier 205 is engaged with the fixed sun gear 212 to achieve planetary motion, the double-end stud 214 arranged on the reference circle of the planetary gear performs reciprocating motion along the diameter of the sun gear 212 where the double-end stud 214 is located, the double-end stud 214 drives the left pectoral fin connecting rod 216 and the right pectoral fin connecting rod 217 that respectively pass through the left swinging block 218 and the right swinging block 220 and are hinged to the double-end stud 214 to perform reciprocating swinging, such that the left pectoral fin 6 and the right pectoral fin 7 flap up and down, and the robot fish is enabled to move forward.
(20) When the robot fish requires left and right maneuvering in the advancing process, the forward and reverse servo motor 307 located on the inner side of the fixed support plate 4 receives a signal and starts rotation. When the robot fish needs to turn left, the forward and reverse servo motor 307 rotates forwardly, the gear on the shaft of the motor 307 is engaged with the rack 305, thereby driving the movable support plate 5 fixedly connected to the rack 305 to move leftward, as shown in
(21) The implementations of the present invention are specifically described in detail above, but they are not to be construed as limiting the scope of the present invention. It should be noted that several modifications and improvements can be made by one of ordinary skill in the art without departing from the concept of the present invention. All these modifications and improvements are within the protection scope of the present invention.