CN214505914U - Automatic plugging device of rectangular electric connector - Google Patents
Automatic plugging device of rectangular electric connector Download PDFInfo
- Publication number
- CN214505914U CN214505914U CN202120823495.3U CN202120823495U CN214505914U CN 214505914 U CN214505914 U CN 214505914U CN 202120823495 U CN202120823495 U CN 202120823495U CN 214505914 U CN214505914 U CN 214505914U
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- plug
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- electric connector
- sliding
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Abstract
The utility model discloses an automatic plug device of rectangle electric connector, include: a plug provided with a signal wire of a dynamic control system; one end of the sliding component is arranged on the plug, and the plug slides on the sliding component to realize switching connection between the simulator and other devices; the plug is movably installed on the lever frame, the bottom of the lever frame is provided with a sliding rod, the sliding rod is provided with a swing rod, the swing rod is connected with the motor through the intermediate component, and the motor drives the swing rod to pull the sliding rod to move back and forth through the intermediate component. The movement of the motor is controlled, the motor drives the swing rod to pull the sliding rod to move back and forth through the intermediate component, so that the plug mounted on the lever frame slides on the sliding component, the switching connection of the simulator and other devices is realized, the problem that the simulator equipment needs to be manually disconnected by an operator on site is solved, the equipment control system is connected to other devices at the same time, the problem of low working efficiency is solved, and the situation that the potential safety hazard exists in the site operation of the operator is avoided.
Description
Technical Field
The utility model relates to an automatic plug device of rectangle electric connector belongs to electric connector plug technical field.
Background
In an electrical control system, the same electrical control signal needs to be connected among different devices according to needs, and the connection occasion is not suitable for personnel operation, for example, in a certain device control system, the control system needs to be connected to simulator equipment during normal debugging and testing, when the system works normally, the device control system is connected to other devices, generally, after the device inspection is completed, an operator needs to manually disconnect the simulator equipment on the site, and meanwhile, the device control system is connected to other devices, so that the operation not only reduces the working efficiency of the device system, but also has certain potential safety hazard for the site operator.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides an automatic plug device of rectangle electric connector.
The utility model discloses a following technical scheme can realize.
The utility model provides a pair of rectangle electric connector's automatic plug device, include: a plug provided with a signal wire of a dynamic control system;
one end of the sliding component is arranged on the plug, and the plug slides on the sliding component to realize switching connection between the simulator and other devices;
the plug is movably installed on the lever frame, the bottom of the lever frame is provided with a sliding rod, the sliding rod is provided with a swing rod, the swing rod is connected with the motor through the intermediate component, and the motor drives the swing rod to pull the sliding rod to move back and forth through the intermediate component.
The plug is characterized by further comprising a mounting seat, wherein the two side edges of the lever frame are hinged with the mounting seat, and the two outer sides of the plug are hinged with the two sides of the lever frame.
Two outer sides of the plug are hinged to hinge holes in two sides of the lever frame through rotating shafts, so that the plug can be supplemented with vertical displacement on the hinge holes during movement.
The motor is a linear motor which generates linear motion, the intermediate component comprises a swinging block and a swinging disc which are fixed on a linear motion rod of the motor, and a supporting column which is arranged at the bottom of the swinging disc and is hinged with the swinging disc to play a role of a supporting point, the swinging block is fixed with the swinging disc, and the swinging disc is hinged with the swinging block through a rotating shaft; after the motor drives the swing block to do left-right linear motion, the swing disc enables the swing rod to pull the sliding rod to move backwards and forwards by taking the supporting column as a rotating point, so that the plug installed on the lever frame slides on the sliding assembly, and the switching connection of the simulator and other devices is realized.
The motor is a motor which generates rotary motion, the intermediate component comprises a swinging block fixed on a motor rotating shaft, a swinging disc and a support which is fixed at the bottom of the swinging disc and plays a limiting role, the swinging block is fixed with the swinging disc, and the swinging disc is hinged with the swinging block through a rotating shaft; when the motor rotates around the front by taking the left shaft and the right shaft as axes, the swing disc drives the swing rod to pull the slide rod to move forwards, and when the motor rotates around the rear by taking the left shaft and the right shaft as axes, the swing disc drives the swing rod to pull the slide rod to rotate backwards, so that the effect of limiting the position in place is achieved under the limiting effect of the support.
The lever frame is provided with a sliding rod hole for the sliding rod to slide up and down, two ends of the sliding rod penetrate through the sliding rod hole, and vibration generated when the sliding rod is pulled back and forth by the swinging rod can obtain sliding position compensation on the sliding rod hole.
The sliding assembly comprises a cylindrical guide rail and a linear bearing, the cylindrical guide rail is in linear sliding sleeve fit with the linear bearing, two ends of the cylindrical guide rail are fixedly connected with the simulator and other devices respectively, the linear bearing is fixed on the plug, and when the lever frame is driven by the sliding rod to move back and forth, the plug is connected with the simulator and other devices in a switching mode.
The operating rod is installed at the top of the lever frame, and manual operation is convenient to be carried out on the lever frame through the operating rod.
A microswitch is arranged at the top of the plug; the micro switch corresponds to the operating rod in front and back; the microswitch is connected with a power circuit of the motor in series, and when the lever frame enables the plug to be switched to the place with the simulator or other devices, the microswitch disconnects the circuit of the motor to stop the motor.
The motor also comprises a standby battery arranged on the inner side of the motor, and the standby battery supplies electric energy to the micro switch and the motor.
The swing rod is fixed to the outer portion of the hand lever in a threaded manner, and the plum blossom-shaped handle is fixed to the outer portion of the hand lever in a sleeved manner, so that the hand lever is pulled by the plum blossom-shaped handle to drive the swing rod to move back and forth.
Still include the dustcoat, on manual lever and action bars run through out the dustcoat, correspond respectively on the dustcoat and be equipped with the operation through-hole that supplies manual lever and action bars to carry out the operation.
The beneficial effects of the utility model reside in that: the other end of the sliding assembly is fixed, the movement of the motor is controlled, the motor drives the swing rod to pull the sliding rod to move back and forth through the middle assembly, so that the plug installed on the lever frame slides on the sliding assembly, the switching connection of the simulator and other devices is realized, the problem that the simulator equipment needs to be manually disconnected by an operator on site due to the fact that the motor is controlled to move is solved, meanwhile, the problem that the equipment control system is connected to other devices, the working efficiency is low, and the situation that the potential safety hazard exists in site operation of the operator is avoided.
Drawings
Fig. 1 is a schematic view of the internal structure of the present invention;
fig. 2 is a schematic diagram of the external structure of the present invention.
In the figure: 1-a motor; 2-manual lever; 3-swinging the block; 4-swinging the plate; 5-oscillating bar; 6-a slide bar; 7-a lever frame; 8-a cylindrical guide rail; 9-a plug; 10-a microswitch; 11-a mounting seat; 12-a pillar; 13-a backup battery; 14-a lever; 15-plum blossom handle; 16-a linear bearing; 17-a housing; 61-a slide bar hole; 71-hinge hole.
Detailed Description
The technical solution of the present invention is further described below, but the scope of the claimed invention is not limited to the described.
See fig. 1-2.
The utility model discloses an automatic plug device of rectangle electric connector, include: a plug 9 provided with a signal wire of a dynamic control system;
one end of the sliding component is arranged on the plug 9, and the plug 9 slides on the sliding component to realize switching connection between the simulator and other devices;
the plug 9 is movably installed on the lever frame 7, the bottom of the lever frame 7 is provided with the slide rod 6, the slide rod 6 is provided with the swing rod 5, the swing rod 5 is connected with the motor 1 through the intermediate component, and the motor 1 drives the swing rod 5 to pull the slide rod 6 to move back and forth through the intermediate component.
The other end of the sliding assembly is fixed, the movement of the motor 1 is controlled, the motor 1 drives the swing rod 5 to pull the sliding rod 6 to move back and forth through the middle assembly, so that the plug 9 installed on the lever frame 7 slides on the sliding assembly, the switching connection of the simulator and other devices is realized when the plug 9 is switched, the problem that the simulator equipment needs to be manually disconnected by an operator on site due to the fact that the motor 1 is controlled to move is solved, meanwhile, the problem that the equipment control system is connected to other devices and the working efficiency is low is solved, and the situation that the potential safety hazard exists in site operation of the operator is avoided.
Still include mount pad 11, lever frame 7 both sides limit articulates there are mount pad 11, and two outsides of plug 9 articulate in lever frame 7 both sides.
The two outer sides of the plug 9 are hinged on the hinge holes 71 at the two sides of the lever frame 7 through the rotating shaft, so that the plug 9 is supplemented with the up-and-down displacement on the hinge holes 71 during the movement.
The motor 1 is a linear motor which generates linear motion, the intermediate component comprises a swinging block 3 fixed on a linear motion rod of the motor 1, a swinging disc 4 and a support post 12 which is arranged at the bottom of the swinging disc 4 and plays a role of a supporting point in a hinged mode, the swinging block 5 is fixed with the swinging disc 4, and the swinging disc 4 is hinged with the swinging block 3 through a rotating shaft; firstly, the support post 12 is fixed, after the motor 1 drives the swing block 3 to do left-right linear motion, the swing disc 4 uses the support post 12 as a rotation point to enable the swing rod 5 to pull the slide rod 6 to move backwards and forwards, so that the plug 9 installed on the lever frame 7 slides on the sliding assembly, and the switching connection of the plug 9 with a simulator and other devices is realized.
The motor 1 is a motor which generates rotary motion, the intermediate component comprises a swinging block 3 fixed on a rotating shaft of the motor 1, a swinging disc 4 and a support 12 fixed at the bottom of the swinging disc 4 and having a limiting effect, the swinging rod 5 is fixed with the swinging disc 4, and the swinging disc 4 is hinged with the swinging block 3 through a rotating shaft; when the motor 1 rotates around the front by taking the left shaft and the right shaft as axes, the swing disc 4 drives the swing rod 5 to pull the slide rod 6 to move forwards, and when the motor 1 rotates around the rear by taking the left shaft and the right shaft as axes, the swing disc 4 drives the swing rod 5 to pull the slide rod 6 to rotate backwards, so that the effect of limiting the position in place is achieved under the limiting effect of the strut 12.
The lever frame 7 is provided with a slide rod hole 61 for the slide rod 6 to slide up and down, two ends of the slide rod 6 penetrate through the slide rod hole 61, and the vibration generated when the slide rod 6 is pulled back and forth by the swing rod 5 can obtain the slide position compensation on the slide rod hole 61.
The sliding assembly comprises a cylindrical guide rail 8 and a linear bearing 16, the cylindrical guide rail 8 is in linear sliding sleeve fit with the linear bearing 16, two ends of the cylindrical guide rail 8 are fixedly connected with the simulator and other devices respectively, the linear bearing 16 is fixed on the top of the plug 9, and when the lever frame 7 is driven by the sliding rod 6 to move back and forth, the plug 9 is connected with the simulator and other devices in a switching mode.
An operating rod 14 is installed at the top of the lever frame 7, and manual operation of the lever frame 7 is facilitated through the operating rod 14.
A microswitch 10 is arranged at the top of the plug 9; the micro switch 10 corresponds to the operating rod 14 in front and back; the microswitch 10 is connected with the power circuit of the motor 1 in series, and when the lever frame 7 enables the plug 9 and the simulator or other devices to be switched in place, the microswitch 10 disconnects the circuit of the motor 1, so that the motor 1 stops.
The motor also comprises a standby battery 13 arranged on the inner side of the motor 1, and the standby battery 13 supplies electric energy to the micro switch 10 and the motor 1.
The hand-operated handle 2 is screwed and fixed with the swing rod 5, and the sleeved plum blossom-shaped handle 15 is fixed outside the hand-operated handle 2, so that the hand-operated handle 2 is pulled by the plum blossom-shaped handle 15 to drive the swing rod 5 to move back and forth.
The manual operation device further comprises an outer cover 17, the manual operation rod 2 and the operation rod 14 penetrate through the outer cover 17, and operation through holes for the manual operation rod 2 and the operation rod 14 to operate are correspondingly formed in the outer cover 17.
A method for plugging and unplugging a rectangular electric connector uses an automatic plugging and unplugging device of the rectangular electric connector, and comprises the following steps:
the method comprises the following steps: the manual lever 2 and the swing rod 5 are loosened and separated;
step two: the control motor 1 drives the swing rod 5 to pull the slide rod 6 to move back and forth, and when the lever bracket 7 enables the plug 9 and the simulator or other devices to be switched in place, the microswitch 10 disconnects the circuit of the motor 1, so that the motor 1 stops;
or, the quincuncial handle 15 is held to enable the manual lever 2 and the swing rod 5 to be screwed and fixed, and the quincuncial handle 15 and the operating rod 14 are held to drive the lever frame 7 to enable the plug 9 and the simulator or other devices to be switched in place.
Claims (10)
1. An automatic plugging device of a rectangular electric connector is characterized by comprising: a plug (9) provided with a signal wire of a dynamic control system;
one end of the sliding component is arranged on the plug (9), and the plug (9) slides on the sliding component to realize switching connection between the simulator and other devices;
the plug (9) is movably mounted on the lever frame (7), the bottom of the lever frame (7) is provided with the sliding rod (6), the sliding rod (6) is provided with the swinging rod (5), the swinging rod (5) is connected with the motor (1) through the intermediate component, and the motor (1) drives the swinging rod (5) to pull the sliding rod (6) to move through the intermediate component.
2. The automatic plugging device of rectangular electric connector according to claim 1, wherein: the plug is characterized by further comprising a mounting seat (11), wherein the mounting seat (11) is hinged to two side edges of the lever frame (7), and two outer sides of the plug (9) are hinged to two sides of the lever frame (7); the two outer sides of the plug (9) are hinged to the hinge holes (71) on the two sides of the lever frame (7) through rotating shafts, so that the plug (9) can be supplemented with up-and-down displacement on the hinge holes (71) during movement.
3. The automatic plugging device of the rectangular electric connector according to claim 2, wherein: the motor (1) is a linear motor which generates linear motion, the intermediate component comprises a swing block (3) fixed on a linear motion rod of the motor (1), a swing disc (4) and a support column (12) which is installed at the bottom of the swing disc (4) and plays a role of a supporting point, the swing block (5) is fixed with the swing disc (4), and the swing disc (4) is hinged with the swing block (3) through a rotating shaft.
4. The automatic plugging device of the rectangular electric connector according to claim 2, wherein: the motor (1) is a motor which generates rotary motion, the intermediate component comprises a swing block (3) fixed on a rotating shaft of the motor (1), a swing disc (4) and a support column (12) fixed at the bottom of the swing disc (4) and playing a limiting role, the swing rod (5) is fixed with the swing disc (4), and the swing disc (4) is hinged with the swing block (3) through a rotating shaft.
5. The automatic plugging device of the rectangular electric connector according to claim 2, wherein: the lever frame (7) is provided with a sliding rod hole (61) for the sliding rod (6) to slide up and down, and two ends of the sliding rod (6) penetrate through the sliding rod hole (61).
6. The automatic plugging device of rectangular electric connector according to claim 1, wherein: the sliding assembly comprises a cylindrical guide rail (8) and a linear bearing (16), the cylindrical guide rail (8) is in linear sliding sleeve fit with the linear bearing (16), two ends of the cylindrical guide rail (8) are fixedly connected with the simulator and other devices respectively, the linear bearing (16) is fixed on the plug (9), and when the lever frame (7) is driven by the sliding rod (6) to move back and forth, the plug (9) is connected with the simulator and other devices in a switching mode.
7. The automatic plugging device of rectangular electric connector according to claim 6, wherein: and the top of the lever frame (7) is provided with an operating rod (14).
8. The automatic plugging device of rectangular electric connector according to claim 7, wherein: a microswitch (10) is arranged at the top of the plug (9); the micro switch (10) corresponds to the operating rod (14) in front and back; the microswitch (10) is connected in series with a power circuit of the motor (1).
9. The automatic plugging device of rectangular electric connector according to claim 8, wherein: also comprises a backup battery (13) arranged at the inner side of the motor (1).
10. The automatic plugging device of rectangular electric connector according to claim 9, wherein: the hand-operated type electric water heater also comprises a housing (17), and the hand-operated lever (2) and the operating lever (14) penetrate through the housing (17).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120823495.3U CN214505914U (en) | 2021-04-21 | 2021-04-21 | Automatic plugging device of rectangular electric connector |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120823495.3U CN214505914U (en) | 2021-04-21 | 2021-04-21 | Automatic plugging device of rectangular electric connector |
Publications (1)
Publication Number | Publication Date |
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CN214505914U true CN214505914U (en) | 2021-10-26 |
Family
ID=78203869
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120823495.3U Active CN214505914U (en) | 2021-04-21 | 2021-04-21 | Automatic plugging device of rectangular electric connector |
Country Status (1)
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CN (1) | CN214505914U (en) |
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2021
- 2021-04-21 CN CN202120823495.3U patent/CN214505914U/en active Active
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