Unmanned Aerial Vehicle (UAV) Test Bench
20230052429 · 2023-02-16
Inventors
Cpc classification
B64C39/024
PERFORMING OPERATIONS; TRANSPORTING
B64F5/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An unmanned aerial vehicle (UAV) test bench, which falls within the technical field of UAV test, comprising a support component, a universal rotating component, a fixed component and a return component: the universal rotating component slides along the Z direction and is arranged on the support component, and one end of the universal rotating component can rotate in a universal way relative to the other end of the universal rotating component. The fixed component is connected to one end of the universal rotating component, and the fixed component is configured to fix the UAV. One end of the return component is connected to the support component, the other end is connected to the other end of the universal rotating component, and the return component is configured to drive the universal rotating component and the fixed component to reset.
Claims
1. An UAV test bench, which is characterized by comprising: a support component (1); a universal rotating component (2), which is sliding on the support component (1) along the Z direction, and one end of the universal rotating component (2) can rotate in a universal manner relative to the other end of the universal rotating component (2); a fixing component (3), which is connected to one end of the universal rotating component (2), and the fixing component (3) is configured to fix the UAV; a return component (4), one end of which is connected to the support component (1), and the other connected to the other end of the universal rotating component (2). The return component (4) is configured to drive the universal rotating component (2) and the fixed component (3) to reset.
2. The UAV test bench according to claim 1, which is characterized in that the support component (1) comprises a support frame (11), a first support plate (12), a second support plate (13) and a plurality of support columns (14), the first support plate (12) is fixedly connected to one end of the support frame (11), and the second support plate (13) is connected with the first support plate (12) through the support column (14), the first support plate (12) has a first through hole, the universal rotating component (2) is sliding on the first through hole, one end of the return component (4) is connected to the first support plate (12), and the second support plate (13) is configured to support the fixed component (3).
3. The UAV test bench according to claim 2, which is characterized in that the universal rotating component (2) comprises a universal joint (21), a limit sleeve (22) and a fixed shaft (23), the universal joint (21) comprises a first end (211) and a second end (212) capable of universal rotation relative to the first end (211), and the limit sleeve (22) is sleeved outside the universal joint (21) and fixedly connected to the first end (211), the fixed component (3) is connected to the second end (212) of the universal joint (21), one end of the fixed shaft (23) is connected to the first end (211) of the universal joint (21), and the other end of the return component (4) is connected to the fixed shaft (23).
4. The UAV test bench according to claim 3, which is characterized in that it further includes a bearing seat (5), a bearing (6) and a connecting shaft (7), the bearing (6) is installed in the shaft hole of the bearing seat (5), one end of the connecting shaft (7) is rotatably connected to the bearing seat (5) and in contact with the inner surface of the bearing (6), the other end of the connecting shaft (7) is fixedly connected to the other end of the fixed shaft (23), and the other end of the return component (4) is connected to the bearing seat (5).
5. The UAV test bench according to claim 4, which is characterized in that it further includes a first lifting ring (8) fixed on the bearing seat (5) and a second lifting ring (9) fixed on the support component (1), the return component (4) includes a spring, one end of the spring is hooked on the second lifting ring (9), and the other end of the spring is hooked on the first lifting ring (8).
6. The UAV test bench according to claim 3, which is characterized in that the UAV test bench further includes a linear bearing fixing seat (10) fixed on the first support plate (12) and a linear bearing (20) installed in the linear bearing fixing seat (10), and the fixing shaft (23) is threaded in the linear bearing (20).
7. The UAV test bench according to claim 6, which is characterized in that it further includes a limit ring (30) fixed in the middle of the fixing shaft (23), the size of the limit ring (30) in the horizontal direction is larger than the inner diameter of the linear bearing (20), and the fixing shaft (23) slides to the first limit along the Z direction, the limit ring (30) is butted with the linear bearing (20) or the linear bearing fixing seat (10).
8. The UAV test bench according to claim 2, which is characterized in that it further includes a roller (40) and a trailer jack (50) fixed on the roller (40), and the output end of the trailer jack (50) is connected to the other end of the support frame (11).
9. The UAV test bench according to claim 1, which is characterized in that the fixing component (3) comprises a connecting seat (31), a fixing plate (32) and a clamping part (33), the connecting seat (31) is fixedly connected to the universal rotating component (2) and is slidably connected to the support component (1), the fixing plate (32) is fixedly connected to the connecting seat (31), and the clamping part (33) is provided in two groups, and two groups of the clamping parts (33) are fixedly connected to both ends of the fixing plate (32), respectively.
10. The UAV test bench according to claim 9, which is characterized in that the clamping part (33) comprises an interconnected first clamping plate (331) and a second clamping plate (332), the top surface of the first clamping plate (331) is provided with a first arc groove, the bottom surface of the second clamping plate (332) is provided with a second arc groove, and the first arc groove and the second arc groove form an airfoil hole (330).
Description
BRIEF DESCRIPTION OF THE FIGURES
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024] In the figures, [0025] 1. Support component; 11. Support frame; 12. First support plate; 13. Second support plate; 14. Support column; [0026] 2. Universal rotating component; 21. Universal joint; 211. First end; 212. Second end; 22. Limit sleeve; 23. Fixing shaft; 24. First connector; [0027] 3. Fixing components; 31. Connecting seat; 32. Fixing plate; 33. Clamping component; 330. Airfoil hole; 331. First clamping plate; 332. Second clamping plate; 34. First reinforcing plate; [0028] 4. Return component; 5. Bearing seat; 6. Bearing; 7. Connecting shaft; 8. First lifting ring; 9. Second lifting ring; 10. Linear bearing fixing seat; 20. Linear bearing; 30. Limit ring; 40. Roller; 50. Trailer jack; 60. Second connector.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0029] In order to make clearer the technical issues solved, the technical solution adopted and the technical effect achieved by the application, the technical solution of the application is further described below in combination with the figures and through the description of the preferred embodiments. It can be understood that the preferred embodiments described here are only used to explain the application, not to limit the application. In addition, it should be noted that for the convenience of description, only some parts related to the application rather than all of them are shown in the figures.
[0030] In the description of the application, it should be noted that the orientation or position relationship indicated by the terms “center”, “upper”, “lower”, “left”, “right”, “vertical”, “horizontal”, “inner”, “outer” and so on is based on the orientation or position relationship shown in the figures, only for the convenience of describing the application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, or be constructed and operated in a specific direction, so it cannot be understood as a limitation of the application. In addition, the terms “first” and “second” are used only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0031] In the description of the application, it should be noted that unless otherwise specified and limited, the terms “installation”, “connect” and “connection” should be understood in a broad sense, for example, it can be fixedly connected or detachably connected. It can be mechanical connection or electrical connection. It can be directly connected, or indirectly connected through an intermediate medium, and it can be the connection between two elements. For those skilled in the art, the specific meaning of the above terms in the application can be understood in specific circumstances.
[0032] This application provides a UAV test bench, which can be used to fix the UAV, and the lifting test and pitching test of the UAV can be carried out on the UAV test bench, without multiple transfers of the UAV, thereby reducing the time required for intermediate transfers and improving the efficiency of the UAV test. It should be noted that the lifting test involves fixing the UAV, and then manipulating the lifting and lowering of the UAV, so as to observe or detect the condition of the UAV in the process. Similarly, the pitching test involves fixing the UAV, and then manipulating the UAV to perform the pitch action, so as to observe or detect the condition of the UAV in the process. Exemplarily, the UAV in this embodiment is V400 UAV.
[0033] As shown in
[0034] Among others, the support component 1 is used to support the fixing component 3. The universal rotating component 2 is slidably arranged on the support component 1 in the Z direction, that is, the universal rotating component 2 can slide up and down in the Z direction relative to the support component 1.
[0035] Moreover, one end of the universal rotating component 2 can rotate in a universal manner relative to the other end of the universal rotating component 2. Specifically, the top end of the universal rotating component 2 can rotate in a universal manner relative to the bottom end of the universal rotating component 2. It should be noted that the universal rotation in this embodiment means that one end of the universal rotating component 2 can rotate relative to the other end of the universal rotating component 2 with the numerous axes on the horizontal plane as the rotation center. The numerous axes include the X axis in the X direction, the Y axis in the Y direction and the axis between the X axis and the Y axis. However, one end of the universal rotating component 2 cannot rotate around the Z axis.
[0036] As shown in
[0037] Referring to
[0038] The UAV test bench provided in this embodiment, the universal rotating component 2 and the fixing component 3 slide on the support component 1 along the Z direction, so that the UAV test bench can meet the requirements of the UAV lifting test, and one end of the universal rotating component 2 can rotate in a universal manner relative to the other end of the universal rotating component 2, so that the UAV test bench can meet the requirements of the UAV pitching test, Thus, the UAV test bench provided in this embodiment can meet the requirements of the UAV lifting test and the pitching test at the same time, without the need to transfer the UAV for many times, thereby reducing the time required for intermediate transfer and improving the efficiency of the UAV test. As shown in
[0039] As shown in
[0040] Among others, the clamping parts 33 comprise an interconnected first clamping plate 331 and a second clamping plate 332, the first clamping plate 331 and the second clamping plate 332 match with each other to clamp the wing of the UAV, and the bottom end of the first clamping plate 331 is fixedly connected to the fixed plate 32. In some embodiments, the first clamping plate 331 is bolted to the second clamping plate 332, and the bottom end of the first clamping plate 331 is bolted to the fixing part 12.
[0041] Further, referring to
[0042] Please continue to refer to
[0043] In this application, a plurality of weight reduction holes are arranged on the fixing plate 32 to make the weight of the fixing plate 32 smaller and facilitate the driving of the fixing plate 32. A plurality of weight reduction holes are symmetrically arranged with the fixing seat 31 so that the symmetrical center could prevent the weight of one end of the fixing plate 32 from being greater than that of the other end, thereby preventing interference with the UAV test.
[0044] Referring to
[0045]
[0046] Further, the inner wall of the limit sleeve 22 is provided with a limit connical surface, which is used to limit the movement range of the second end 212 of the universal joint 21, and then limit the movement range of the fixing component 3, to prevent the fixing component 3 over-movement.
[0047] In this embodiment, as shown in
[0048] Further, the UAV test bench also comprises a first lifting ring 8 fixedly arranged on the bearing seat 5 and a second lifting ring 9 fixedly arranged on the bottom surface of the first support plate 12 of the support component 1. The return component 4 includes a spring, one end of which is hooked on the second lifting ring 9, and the other end of which is hooked on the first lifting ring 8. When the universal rotating component 2 slides forward in the Z direction driven by the UAV, the fixing shaft 23 drives the connecting shaft 7 and the bearing seat 5 to move forward in the Z direction. Since the support component 1 does not move, the spring is compressed and the elastic potential energy is stored. When the external force acting on the universal rotating component 2 disappears, under the action of the spring force, the bearing seat 5 is pushed to move in the negative direction of Z, and the universal rotating component 2 and the fixing component 3 are driven to move in the negative direction of Z, so as to realize the reset of the universal rotating component 2 and the fixing component 3. Among them, the original positions of the universal rotating component 2 and the fixing component 3 are the positions where the fixing component 3 shown in
[0049] In order to facilitate the sliding and rotating of the fixing shaft 23 on the first support plate 12, as shown in
[0050] Further, referring to
[0051] The above embodiment only expounds the basic principle and characteristics of the application. The application is not limited by the above embodiment. On the premise of not departing from the spirit and scope of the application, the application also has various changes and alternations, which fall within the breadth and scope of the application. The breadth and scope of the application is defined by the claims appended here and their equivalents.