CN219295692U - Flap electric mechanism testing device - Google Patents
Flap electric mechanism testing device Download PDFInfo
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- CN219295692U CN219295692U CN202320914913.9U CN202320914913U CN219295692U CN 219295692 U CN219295692 U CN 219295692U CN 202320914913 U CN202320914913 U CN 202320914913U CN 219295692 U CN219295692 U CN 219295692U
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- 238000012360 testing method Methods 0.000 title claims abstract description 46
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- 238000003466 welding Methods 0.000 claims abstract description 41
- 239000006247 magnetic powder Substances 0.000 claims abstract description 29
- 230000001681 protective effect Effects 0.000 claims description 8
- NIXOWILDQLNWCW-UHFFFAOYSA-N acrylic acid group Chemical group C(C=C)(=O)O NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 claims description 6
- 230000010354 integration Effects 0.000 abstract description 4
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- 229910001220 stainless steel Inorganic materials 0.000 abstract description 2
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- 230000008878 coupling Effects 0.000 description 9
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- 230000009471 action Effects 0.000 description 3
- 238000001514 detection method Methods 0.000 description 3
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Abstract
The utility model belongs to the technical field of test equipment, and discloses a flap electric mechanism testing device which comprises a front table top component, wherein a rear table top component and a tool component are respectively and fixedly arranged at two ends of the back surface of the front table top component, a control component is fixedly arranged at the top of the front surface of the front table top component, and a power supply component is fixedly arranged in the front table top component. The utility model designs a flap electric mechanism testing device with high integration level, which has the functions of voltage, current, torque, power and maximum torque of a friction clutch, adopts a frame formed by welding stainless steel square tubes, and a Q235 steel plate, so that the weight of the device is lighter on the premise of not damaging the stability of the device, and has electric mechanism testing equipment with high integration level, which is formed by integrating professional instruments such as a torque sensor, an ammeter, a voltmeter, a magnetic powder brake and the like, thereby reducing the number of times of mounting and dismounting required by motor testing, and realizing more professional and efficient test of a flap motor.
Description
Technical Field
The utility model belongs to the technical field of test equipment, and particularly relates to a flap electric mechanism test device.
Background
With the development of travel modes, more and more frequencies of airplane travel are used, so that a flap electric mechanism is generally used for more efficient take-off and landing, and can lift, so that the convenient detection of the flap electric mechanism becomes a requirement for ensuring the safety of the airplane.
The current flap electric mechanism is inconvenient to detect the current, voltage, torque and rotating speed of the motor due to the fact that the weight and the shape of the current flap electric mechanism are stable, and the requirement on the detecting time can be reduced, so that the flap electric mechanism testing device with higher practicability is needed to improve the detecting efficiency, the problems that the current flap electric mechanism is inconvenient to move due to the weight, more items to be detected, frequent disassembly is needed and the like are solved, and the ever-increasing frequency requirement of people and airplanes on trip is met.
Disclosure of Invention
(one) solving the technical problems
In order to solve the problems in the background technology, the utility model provides a flap electric mechanism testing device, which solves the defects that the current, voltage, torque and rotating speed of a motor are inconvenient to detect due to the fact that the existing flap electric mechanism is stable in weight and shape.
(II) technical scheme
In order to achieve the above purpose, the present utility model provides the following technical solutions: the flap electric mechanism testing device comprises a front table top component, wherein a rear table top component and a tooling component are respectively and fixedly arranged at two ends of the back surface of the front table top component, a control component is fixedly arranged at the top of the front surface of the front table top component, a power supply component is fixedly arranged in the front table top component, an electric appliance component is fixedly arranged in the rear table top component, and an interface component is fixedly arranged at the lower end of one side wall of the front table top component;
the front table top assembly comprises a front door, a front table top welding frame, a rear table top welding frame and a caster mounting plate, wherein the front table top welding frame, the rear table top welding frame and the caster mounting plate are welded, the bottom screw of the caster mounting plate is connected with a fool Ma Jiaolun, the front bottom plate and the rear bottom plate are welded in the front table top welding frame and the rear table top welding frame, the left drawer mounting plate and the right drawer mounting plate are welded in the front table top welding frame, the left side plate and the right side plate are welded at the two ends of the front table top welding frame respectively, the direct current power supply mounting plate is welded in the front upper part of the front bottom plate, the control console is welded at the top of the front table top welding frame, the front door, the rear door and the left door are connected at the two ends of the front table top welding frame and one end far away from the right drawer mounting plate in a hidden hinge mode respectively, the middle end screw of the left drawer mounting plate and the right drawer mounting plate is connected with a slide rail, the drawer is connected with the front table top welding frame screw, and the front table top welding frame is welded with the front edge of the control console.
Preferably, the back mesa subassembly includes work platen, torque sensor bottom plate and magnetic powder brake mounting panel, work platen and preceding mesa subassembly welding, magnetic powder brake mounting panel and torque sensor bottom plate pass through screw and work platen fixed connection, the both ends at work platen top are fixed mounting respectively has torque sensor interface and magnetic powder brake interface, the top fixed mounting of torque sensor interface has the sucking disc, the top fixedly connected with ya keli protection casing of sucking disc, the both sides of ya keli protection casing inner chamber are connected with left shaft coupling and right shaft coupling respectively, the one end fixedly connected with magnetic powder brake that the torque sensor interface was kept away from to the right shaft coupling, the top fixed mounting of the adjacent one end surface of left shaft coupling and right shaft coupling has torque sensor, the one end fixed mounting that the work platen top is close to the magnetic powder brake mounting panel has the magnetic powder brake interface, and ya keli protection casing and sucking disc are with screw connection, then put in left shaft coupling central position.
Preferably, the tool assembly comprises a motor mounting seat, a hexagonal T-shaped screw rod and a motor sliding plate, wherein the motor sliding plate is fixedly connected with the rear table top assembly through an inner hexagonal screw, the motor mounting seat is fixedly connected with the motor sliding plate through the hexagonal T-shaped screw rod, a piece to be detected is connected with the top screw of the motor mounting seat, the hexagonal T-shaped screw rod is clamped with a left coupler, and a gear shaft is fixedly arranged at the middle end of the motor mounting seat.
Preferably, the control assembly comprises a control panel, the control panel is fixedly connected with the front table top assembly, a handle is fixedly installed at one end of the front surface of the control panel, a torque controller is fixedly connected at one end, close to the handle, of the front upper end of the control panel, a torque rotating speed power meter is fixedly installed at one end, far away from the handle, of the torque controller, a three-phase ammeter is fixedly connected at one end, far away from the handle, of the torque rotating speed power meter, a direct-current power supply display control panel is fixedly installed at one end, close to the handle, of the front lower end of the control panel, a three-phase voltmeter is fixedly installed at one end, far away from the direct-current power supply display control panel, and the measured signals of a piece to be measured comprise current signals, voltage signals, rotating speed signals and torque signals, and alternating-current power supply currents and voltage signals are realized by being provided with a standard alternating-current power supply program-controlled alternating-current power supply and a three-phase display meter head torque rotating speed power meter and a three-phase ammeter; the direct-current voltage and current signals are realized by providing a standard direct-current power supply program-controlled direct-current power supply and a direct-current power supply display control panel; the torque and rotation speed signals form a hard connection structure with the magnetic powder brake and the output shaft of the piece to be tested through the torque sensor equipped with the torque and rotation speed sensor, and the loading moment of the magnetic powder brake is controlled through the torque controller, so that the torque and rotation speed test of the output shaft of the piece to be tested is realized.
Preferably, the power supply assembly comprises a programmable alternating current power supply, the programmable alternating current power supply is fixedly connected with the interior of the front table top assembly, the top of the programmable alternating current power supply is fixedly provided with a programmable direct current power supply, the electric mechanism testing equipment takes external three-phase alternating current 380V/50Hz as a working power supply, 380V is input into the host computer through a power interface, and the working power supply is provided for the internal alternating current power supply of the testing equipment after passing through a protective tube, an air switch, a sudden stop and a total power supply switch.
Preferably, the electrical assembly comprises a circuit breaker and a mounting plate, wherein the circuit breaker and the mounting plate are fixedly connected with the inside of the rear table top assembly, a relay is movably connected to the top of the circuit breaker and the mounting plate close to one end of the tool assembly, the relay is fixedly connected with the inside of the rear table top assembly, and the cooperation of the relay, the circuit breaker and the mounting plate is used for controlling logic on the whole operation panel.
Preferably, the interface assembly comprises an upper motor interface and a lower motor interface, the upper motor interface is connected with an upper motor of the tool assembly through an upper motor cable, the lower motor interface is connected with a lower motor of the tool assembly through a lower motor cable, and the two sides of the lower end of one side wall of the front table top assembly are fixedly provided with a ground wire and a power interface which are positioned below the upper motor interface and the lower motor interface respectively, so that the safety of the equipment during working is ensured through cooperation between the structures.
Preferably, the upper motor interface is connected with an upper motor of the piece to be tested (301) through an upper motor cable, and the lower motor interface is connected with a lower motor of the piece to be tested through a lower motor cable.
Preferably, the motor mounting seat has a U-shaped appearance.
Preferably, the programmable direct current power supply is connected into industrial power three-phase AC380V through a power cable to provide working power for the flap electric mechanism testing device.
(III) beneficial effects
Compared with the prior art, the utility model has the following beneficial effects:
the utility model designs a flap electric mechanism testing device with high integration level, which has the functions of voltage, current, torque, power and maximum torque of a friction clutch, a frame welded by stainless steel square tubes is adopted, a Q235 steel plate is lighter in weight on the premise of not damaging the stability of the frame, and electric mechanism testing equipment with high integration level is formed by integrating professional instruments such as a torque sensor, an ammeter, a voltmeter, a magnetic powder brake and the like, so that the number of times of mounting and dismounting required by motor testing is reduced, and the test of a flap motor is more professional and efficient;
three drawers with large capacity are arranged on the front surface, and things are stored in places; each door can be opened and disassembled, wiring and adjustment of current and voltage are facilitated, and the control panel is inclined at 20 degrees according to ergonomics; the operator can conveniently operate the equipment to detect and observe data; the detachable front edge is used for recording information and can be detached when needed; in order to enable measured data to be more accurate and reliable, the magnetic powder brake and the torque sensor are fixed on a magnetic powder brake mounting bottom plate, the motor tool is arranged on the sliding table, the sliding table is fixed on the frame by screws, the stability of the sliding table is improved, and the motor mounting seat and the sliding table are respectively adjusted in the horizontal direction and the vertical direction; the coupler and the gear shaft are customized for the motor to be tested, so that the universality is improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of a front table assembly of the present utility model;
FIG. 3 is a schematic view of the interior of the front table assembly of the present utility model;
FIG. 4 is an internal schematic view of the electrical component of the present utility model;
FIG. 5 is a schematic view of a front table assembly console of the present utility model;
FIG. 6 is a schematic view of a rear table assembly of the present utility model;
FIG. 7 is a schematic diagram of a tooling assembly of the present utility model;
FIG. 8 is a schematic view of a motor mount according to the present utility model;
FIG. 9 is a right side view of the flap motor mechanism testing apparatus of the present utility model;
FIG. 10 is a circuit diagram of the electric mechanism testing apparatus of the present utility model;
fig. 11 is a view of an operation panel in the control box of the present utility model.
In the figure: 1. a front table top assembly; 101. a front door; 102. a front bottom plate; 103. a direct current power supply mounting base plate; 104. a left drawer mounting plate; 105. a front table-board welding frame; 106. a left door; 107. a left side plate; 108. a leading edge; 109. a console; 110. a rear table-board welding frame; 111. a rear floor; 112. a rear door; 113. a right side plate; 114. a right drawer mounting plate; 115. a caster mounting plate; 116. fu Ma Jiaolun; 117. a drawer; 2. a rear deck assembly; 201. a torque sensor interface; 202. a suction cup; 203. a work platen; 204. a left coupling; 205. a torque sensor base plate; 206. a torque sensor; 207. acrylic protective cover; 208. a right coupling; 209. a magnetic powder brake; 210. a magnetic powder brake mounting plate; 211. a magnetic powder brake interface; 3. a tooling assembly; 301. a piece to be measured; 302. a gear shaft; 303. a motor mounting seat; 304. a hexagonal T-shaped screw; 305. a motor slide plate; 4. a control assembly; 401. a control panel; 402. a handle; 403. a direct current power supply display control panel; 404. a torque controller; 405. a torque, rotational speed and power meter; 406. a three-phase 115V ammeter; 407. a three-phase 115V voltmeter; 5. a power supply assembly; 501. a programmable alternating current power supply; 502. program controlled DC power supply; 6. an electrical component; 601. a relay; 602. a circuit breaker; 603. a mounting plate; 7. an interface assembly; 701. an upper motor interface; 702. a ground wire; 703. a power interface; 704. and a lower motor interface.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 to 11, the utility model provides a flap electric mechanism testing device, which comprises a front table top component 1, wherein two ends of the back surface of the front table top component 1 are respectively and fixedly provided with a rear table top component 2 and a tool component 3, the top of the front surface of the front table top component 1 is fixedly provided with a control component 4, the interior of the front table top component 1 is fixedly provided with a power supply component 5, the interior of the rear table top component 2 is fixedly provided with an electric appliance component 6, and the lower end of one side wall of the front table top component 1 is fixedly provided with an interface component 7;
the front table top assembly 1 comprises a front door 101, a front table top welding frame 105, a rear table top welding frame 110 and a caster mounting plate 115, wherein the front table top welding frame 105, the rear table top welding frame 110 and the caster mounting plate 115 are welded, the bottom end screw of the caster mounting plate 115 is connected with a front bottom plate 102 and a rear bottom plate 111, the front bottom plate 102 and the rear bottom plate 111 are welded inside the front table top welding frame 105 and the rear table top welding frame 110, a left drawer mounting plate 104 and a right drawer mounting plate 114 are welded inside the front table top welding frame 105 and the rear table top welding frame 110, a left side plate 107 and a right side plate 113 are respectively welded at two ends of the front table top welding frame 105, a direct current power supply mounting plate 103 positioned right above the front bottom plate 102 is welded at the top of the front table top welding frame 105, a control console 109 is welded at the front and rear ends of the front table top welding frame 105, one ends far away from the right drawer mounting plate 114 are respectively connected with the front door 101, the rear door 112 and the left door 106 in a blind hinge manner, the middle end screw of the left drawer 104 and the right drawer mounting plate 114 is connected with a slide rail, the drawer 117 is connected with the front welding frame 105, and the front table top welding frame 108 is welded at the front edge 109.
The scheme is adopted: through the cooperation of above-mentioned structure, and then promoted flap electric mechanism testing arrangement's practicality by a wide margin and improved detection efficiency by a wide margin.
As shown in fig. 6, the rear table top assembly 2 comprises a working table plate 203, a torque sensor bottom plate 205 and a magnetic powder brake mounting plate 210, the working table plate 203 is welded with the front table top assembly 1, the magnetic powder brake mounting plate 210 and the torque sensor bottom plate 205 are fixedly connected with the working table plate 203 through screws, a torque sensor interface 201 and a magnetic powder brake interface 211 are respectively and fixedly installed at two ends of the top of the working table plate 203, a sucker 202 is fixedly installed at the top of the torque sensor interface 201, an acrylic protective cover 207 is fixedly connected at the top of the sucker 202, a left coupler 204 and a right coupler 208 are respectively connected at two sides of an inner cavity of the acrylic protective cover 207, one end, far away from the torque sensor interface 201, of the right coupler 208 is fixedly connected with a magnetic powder brake 209, a torque sensor 206 is fixedly installed at the top of the outer surface of the adjacent end of the left coupler 204 and the right coupler 208, and one end, close to the magnetic powder brake mounting plate 210, of the top of the working table plate 203 is fixedly installed with a magnetic powder brake interface 211.
The scheme is adopted: through the cooperation of structures such as the torque sensor interface 201 and the magnetic powder brake interface 211, the screws on the left coupler 204 and the right coupler 208 are loosened, the output shaft of the torque sensor 206, the left coupler 204 and the right coupler 208 are aligned preliminarily, the screws are slightly tightened, whether the alignment is carried out or not is checked, the misalignment is realigned, the acrylic protective cover 207 and the sucker 202 are connected through the screws, and then the screws are placed in the centering position of the left coupler 204 of the coupler.
As shown in fig. 5 and 7, the tool assembly 3 includes a motor mounting seat 303, a hexagonal T-shaped screw 304 and a motor sliding plate 305, the motor sliding plate 305 is fixedly connected with the rear table top assembly 2 through an inner hexagon screw, the motor mounting seat 303 is fixedly connected with the motor sliding plate 305 through the hexagonal T-shaped screw 304, a piece 301 to be tested is connected with the top screw of the motor mounting seat 303, the hexagonal T-shaped screw 304 is clamped with the left coupling 204, a gear shaft 302 is fixedly mounted at the middle end of the motor mounting seat 303, the control assembly 4 includes a control panel 401, the control panel 401 is fixedly connected with the front table top assembly 1, a handle 402 is fixedly mounted at one end of the front surface of the control panel 401, a torque controller 404 is fixedly connected at one end of the upper end of the front surface of the control panel 401, which is close to the handle 402, a torque rotating speed power meter 405 is fixedly connected with a three-phase ammeter 406 at one end of the torque rotating speed power meter 405, a direct current power supply display control panel 403 is fixedly mounted at one end of the lower end of the front surface of the control panel 401, which is close to the handle 402, and a three-phase voltmeter 407 is fixedly mounted at one end of the control panel 401, which is far from the direct current power supply display control panel 403.
The scheme is adopted: through the cooperation of the structures of the control panel 401, the three-phase ammeter 406 and the like, the measured signals of the to-be-measured piece comprise current signals, voltage signals, rotating speed signals and torque signals, and the current and voltage signals of the alternating current power supply are realized by being provided with a standard alternating current power supply program-controlled alternating current power supply 501, a three-phase display meter head torque rotating speed power meter 405 and a three-phase ammeter 406; the direct-current voltage and current signals are realized by providing a standard direct-current power supply program-controlled direct-current power supply 502 and a direct-current power supply display control panel 403; the torque and rotation speed signals form a hard connection structure with the magnetic powder brake 209 and the output shaft of the to-be-tested piece 301 through the torque sensor 206 provided with the torque and rotation speed sensor, and the torque and rotation speed test of the output shaft of the to-be-tested piece is realized by controlling the loading torque of the magnetic powder brake 209 through the torque controller 404; through the cooperation of structures such as the piece 301 that awaits measuring and motor slide 305, and then played certain spacing effect to the activity of motor mount pad 303, and then so facilitated subsequent clearance fit to use.
As shown in fig. 3 and 4, the power supply assembly 5 includes a programmable AC power supply 501, the programmable AC power supply 501 is fixedly connected with the interior of the front table top assembly 1, a programmable dc power supply 502 is fixedly mounted at the top of the programmable AC power supply 501, the electrical appliance assembly 6 includes a circuit breaker 602 and a mounting plate 603, the circuit breaker 602 and the mounting plate 603 are fixedly connected with the interior of the rear table top assembly 2, a relay 601 is movably connected with one end of the top of the circuit breaker 602 and the mounting plate 603, which is close to the tool assembly 3, the relay 601 is fixedly connected with the interior of the rear table top assembly 2, and the programmable dc power supply 502 is connected with an industrial power three-phase AC380V through a power cable to provide a working power supply for the flap electric mechanism testing device.
The scheme is adopted: by the cooperation of the structure of the relay 601 and the mounting plate 603, the cooperation of the relay 601, the circuit breaker 602 and the mounting plate 603 will be used to control the logic on the whole operation panel; through the cooperation of the structure of the program-controlled alternating current power supply 501 and the program-controlled direct current power supply 502, the electric mechanism testing equipment takes external three-phase alternating current 380V/50Hz as a working power supply, 380V is input into a host through a power interface, the working power supply is provided for the alternating current power supply inside the testing equipment after passing through a protective tube, an air switch, an emergency stop and a total power switch, and the working power supply is provided for a direct current power supply, a torque rotating speed power meter and a torque controller through AC220V converted by a power supply module.
As shown in fig. 8 and 9, the interface assembly 7 includes an upper motor interface 701 and a lower motor interface 704, the upper motor interface 701 is connected with an upper motor of the tool assembly 3 through an upper motor cable, the lower motor interface 704 is connected with a lower motor of the tool assembly 3 through a lower motor cable, two sides of a lower end of a side wall of the front table top assembly 1 are respectively and fixedly provided with a ground wire 702 and a power interface 703 which are positioned below the upper motor interface 701 and the lower motor interface 704, the appearance of the motor mounting seat 303 is in a shape of a U, the upper motor interface 701 is connected with an upper motor of the workpiece 301 to be tested through an upper motor cable, and the lower motor interface 704 is connected with a lower motor of the workpiece 301 to be tested through a lower motor cable.
The scheme is adopted: through the U-shaped design of the motor mounting seat 303, the whole movement of the motor mounting seat 303 and the subsequent limiting and fixing of the piece 301 to be tested are facilitated; through the cooperation of structures such as upper motor interface 701 and lower motor interface 704, ground wire 702 is put through with the earth through the earth connection, is used for guaranteeing the safety of equipment during operation through the cooperation between the structure.
The working principle and the using flow of the utility model are as follows:
fixing the mounting surface of the to-be-detected piece 301 to the motor mounting seat 303, pushing the motor mounting seat 303 back and forth, adjusting the horizontal position of the motor mounting seat 303, tightening a screw for mounting the to-be-detected piece 301, fine-adjusting the vertical position of the to-be-detected piece 301, aligning the motor center with the center of an output shaft of the rotation torque sensor 206, screwing the screw for fixing the motor mounting seat 303 and the to-be-detected piece 301, checking again whether the two centers are aligned, if the checking finds that the motor mounting seat 303 and the screw for fixing the to-be-detected piece 301 are not aligned, re-aligning is needed, if the motor mounting is completed, the gear shaft cannot be mounted if the motor mounting seat is not aligned; the screws of the left coupler 204 and the right coupler 208 are loosened, then the gear shaft is inserted from the center of the motor, the coupler screws are tightened, the tool assembly 3 is installed, and the control panel is operated as shown in fig. 11.
The specific functions are as follows: the test device is mainly used for testing pulse left-turn, pulse right-turn, continuous left-turn, continuous right-turn, pulse left-turn, pulse right-turn, continuous left-turn, continuous right-turn and electromagnetic clutch test voltage and current of an upper motor, a lower motor, a double motor of a flap electric mechanism;
the using method comprises the following steps: aiming at flap motors of different types, firstly, adjusting the required rated voltage, when the running condition is tested, firstly, the motor is started by pressing a motor switch button, then the running button of the motor is pressed for testing, the testing condition is recorded, when the flap motor is closed, firstly, the running button is pressed, then the motor switch button is pressed, and when the testing is finished, if an emergency occurs, the emergency stop button is immediately pressed;
the motor switch button includes: starting/scram, upper motor, lower motor, double motor, scram button;
the operation button includes: pulse left turn, pulse right turn, continuous left turn, continuous right turn, electromagnetic clutch detection.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. A flap motor-driven mechanism testing device comprising a front table top assembly (1), characterized in that: the two ends of the back of the front table top component (1) are respectively and fixedly provided with a rear table top component (2) and a tool component (3), the top of the front surface of the front table top component (1) is fixedly provided with a control component (4), the interior of the front table top component (1) is fixedly provided with a power supply component (5), the interior of the rear table top component (2) is fixedly provided with an electric appliance component (6), and the lower end of one side wall of the front table top component (1) is fixedly provided with an interface component (7);
the front table top assembly (1) comprises a front door (101), a front table top welding frame (105), a rear table top welding frame (110) and a caster mounting plate (115), wherein the front table top welding frame (105), the rear table top welding frame (110) and the caster mounting plate (115) are welded, a bottom screw of the caster mounting plate (115) is connected with a Fu Ma Jiaolun (116), the front bottom plate (102) and a rear bottom plate (111) are welded in the front table top welding frame (105) and the rear table top welding frame (110), a left drawer mounting plate (104) and a right drawer mounting plate (114) are welded in the front table top welding frame (105), a left side plate (107) and a right side plate (113) are respectively welded at two ends of the front table top welding frame (105) and the rear table top welding frame (110), a direct current power supply mounting plate (103) positioned right above the front bottom plate (102) is welded in the front table top of the front table top welding frame (105), a left drawer mounting plate (114) and a right drawer mounting plate (114) are connected with a left side plate (114) and a right side plate (114) in a hidden door hinge, the front door (106) is connected with the left drawer mounting plate (114) and the right drawer mounting plate (114) respectively, the drawer (117) is connected with the front table-board welding frame (105) through screws, and the front edge (108) positioned in front of the console (109) is welded on the top of the front table-board welding frame (105).
2. The flap electric mechanism testing device of claim 1, wherein: the rear table top assembly (2) comprises a working table top (203), a torque sensor bottom plate (205) and a magnetic powder brake mounting plate (210), the working table top (203) is welded with the front table top assembly (1), the magnetic powder brake mounting plate (210) and the torque sensor bottom plate (205) are fixedly connected with the working table top (203) through screws, a torque sensor interface (201) and a magnetic powder brake interface (211) are respectively and fixedly mounted at two ends of the top of the working table top (203), a sucker (202) is fixedly mounted at the top of the torque sensor interface (201), an acrylic protective cover (207) is fixedly connected to the top of the sucker (202), a left coupler (204) and a right coupler (208) are respectively connected to two sides of an inner cavity of the acrylic protective cover (207), one end of the right coupler (208), which is far away from the torque sensor interface (201), a torque sensor (206) is fixedly mounted at the top of the outer surface of the adjacent end of the left coupler (204) and the right coupler (208), and one end of the magnetic powder brake (211) is fixedly mounted at the top of the working table top (203), which is close to the magnetic powder brake mounting plate (211).
3. The flap electric mechanism testing device of claim 1, wherein: the tool assembly (3) comprises a motor mounting seat (303), a hexagonal T-shaped screw (304) and a motor sliding plate (305), wherein the motor sliding plate (305) is fixedly connected with a rear table top assembly (2) through an inner hexagonal screw, the motor mounting seat (303) is fixedly connected with the motor sliding plate (305) through the hexagonal T-shaped screw (304), a piece (301) to be detected is connected with the top screw of the motor mounting seat (303), the hexagonal T-shaped screw (304) is clamped with a left coupler (204), and a gear shaft (302) is fixedly arranged at the middle end of the motor mounting seat (303).
4. The flap electric mechanism testing device of claim 1, wherein: control assembly (4) are including control panel (401), control panel (401) and preceding mesa subassembly (1) fixed connection, positive one end fixed mounting of control panel (401) has handle (402), the one end fixedly connected with torque controller (404) that control panel (401) openly upper end is close to handle (402), one end fixed mounting that handle (402) was kept away from to torque controller (404) has torque rotational speed power appearance (405), one end fixedly connected with three-phase ammeter (406) that handle (402) was kept away from to torque rotational speed power appearance (405), one end fixed mounting that control panel (401) openly lower extreme is close to handle (402) has DC power supply display control panel (403), one end fixed mounting that DC power supply display control panel (403) was kept away from to control panel (401) has three-phase voltmeter (407).
5. The flap electric mechanism testing device of claim 1, wherein: the power supply assembly (5) comprises a programmable alternating current power supply (501), the programmable alternating current power supply (501) is fixedly connected with the interior of the front table-board assembly (1), and a programmable direct current power supply (502) is fixedly arranged at the top of the programmable alternating current power supply (501).
6. The flap electric mechanism testing device of claim 1, wherein: the electric appliance assembly (6) comprises a circuit breaker (602) and a mounting plate (603), wherein the circuit breaker (602) and the mounting plate (603) are fixedly connected with the inside of the rear table-board assembly (2), one end of the top of the circuit breaker (602) and the top of the mounting plate (603), which is close to the tool assembly (3), is movably connected with a relay (601), and the relay (601) is fixedly connected with the inside of the rear table-board assembly (2).
7. The flap electric mechanism testing device of claim 1, wherein: the interface assembly (7) comprises an upper motor interface (701) and a lower motor interface (704), the upper motor interface (701) is connected with an upper motor of the tool assembly (3) through an upper motor cable, the lower motor interface (704) is connected with a lower motor of the tool assembly (3) through a lower motor cable, and two sides of the lower end of one side wall of the front table top assembly (1) are fixedly provided with a ground wire (702) and a power interface (703) which are positioned below the upper motor interface (701) and the lower motor interface (704) respectively.
8. The flap electric mechanism testing apparatus of claim 7, wherein: the upper motor interface (701) is connected with an upper motor of the to-be-detected piece (301) through an upper motor cable, and the lower motor interface (704) is connected with a lower motor of the to-be-detected piece (301) through a lower motor cable.
9. The flap electric mechanism testing device of claim 3, wherein: the appearance of the motor mounting seat (303) is U-shaped.
10. The flap electric mechanism testing apparatus of claim 5, wherein: the programmable direct current power supply (502) is connected into industrial power three-phase AC380V through a power cable to provide working power for the flap electric mechanism testing device.
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| CN202320914913.9U CN219295692U (en) | 2023-04-21 | 2023-04-21 | Flap electric mechanism testing device |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116466228A (en) * | 2023-04-21 | 2023-07-21 | 北京安达维尔航空设备有限公司 | A flap electric mechanism test equipment |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116466228A (en) * | 2023-04-21 | 2023-07-21 | 北京安达维尔航空设备有限公司 | A flap electric mechanism test equipment |
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