CN209823037U - Slide removes recognition device - Google Patents

Slide removes recognition device Download PDF

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Publication number
CN209823037U
CN209823037U CN201920754763.3U CN201920754763U CN209823037U CN 209823037 U CN209823037 U CN 209823037U CN 201920754763 U CN201920754763 U CN 201920754763U CN 209823037 U CN209823037 U CN 209823037U
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China
Prior art keywords
slide
slide rail
recognition device
rail
mechanical
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CN201920754763.3U
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Chinese (zh)
Inventor
唐山
顾樟杰
魏鑫华
朱一帆
葛瀛龙
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Hangzhou Mubiao Information Technology Co Ltd
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Hangzhou Mubiao Information Technology Co Ltd
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Abstract

The utility model belongs to the technical field of supervisory equipment, concretely relates to slide removes recognition device, including circular telegram slide rail and sliding connection in the current collection arm of circular telegram slide rail, mechanical slide rail and sliding connection in the actuating mechanism of mechanical slide rail, circular telegram slide rail is connected in order to acquire the electric energy with the power electricity, actuating mechanism is connected with the power consumption load, actuating mechanism has the current collection arm link with current collection arm looks adaptation in order to acquire the electric energy of circular telegram slide rail and transmit to the power consumption load. The utility model discloses a power direct power supply gives the power supply slide rail, collects the electric energy that acquires the power supply slide rail through current collecting arm, current collecting arm link and comes for the power consumption load power supply on gliding actuating mechanism on the slide rail, simple structure, and low cost can effectively reduce the circuit ageing, improves control recognition device.

Description

Slide removes recognition device
Technical Field
The utility model belongs to the technical field of supervisory equipment, concretely relates to slide removes recognition device.
Background
In real life, there are many practical situations in which a plurality of identical devices are required to provide the same function, such as a monitoring system in a parking lot, a plurality of cameras are required to be arranged to monitor as many areas as possible, in the prior art, the power supply of the cameras requires complicated wiring arrangement according to the installation position, and if the monitoring area of the cameras is to be changed, the cameras need to be removed and replaced or new wiring needs to be added, or a slide rail design is adopted, for example, a multi-camera monitoring system is disclosed in patent document CN204810428U, and includes: a camera; a processor; the storage is connected with the processor and used for storing data; the mobile unit, the mobile unit includes the mount table, the slide rail assembly, drive arrangement and power supply unit, power supply unit and drive arrangement electric connection, the slide rail assembly sets up the slide rail in the spout including the spout of fixed setting and slidable, be provided with the tooth on the slide rail, the last gear with tooth meshing that is provided with of drive arrangement, drive arrangement passes through gear and slide rail assembly power connection, the mount table sets up on the slide rail, the mount table is including a rotatable rotation platform, the camera sets up on rotating the platform. However, in the above scheme, the power supply of the camera still needs to be carried with the wires to move, the requirements on the quality and arrangement of the wires are relatively high, and the circuit is fast in aging.
In view of the above technical problems, it is desirable to improve.
SUMMERY OF THE UTILITY MODEL
Based on the above-mentioned not enough that exists among the prior art, the utility model provides a slide removes recognition device.
In order to achieve the purpose of the utility model, the utility model adopts the following technical scheme:
the utility model provides a slide removes recognition device, includes circular telegram slide rail and sliding connection in circular telegram slide rail's collection electric arm, mechanical slide rail and sliding connection in mechanical slide rail's actuating mechanism, circular telegram slide rail is connected in order to obtain the electric energy with the power electricity, actuating mechanism is connected with the power consumption load, actuating mechanism has the collection electric arm link of the looks adaptation with collection electric arm in order to obtain the electric energy of circular telegram slide rail and transmit to the power consumption load.
As a preferred scheme, the slide moving recognition device further comprises a mounting plate, wherein the mounting plate is used for fixing the electrified slide rail and the mechanical slide rail; the electrified sliding rail further comprises a hanging bracket, and the hanging bracket is used for hanging the electrified sliding rail on the mounting plate.
As a preferred scheme, the electrified slide rail comprises a conductive guide rail and an insulating protective shell, the conductive guide rail is used for being communicated with a power supply to obtain electric energy, and the insulating protective shell is sleeved on the conductive guide rail.
As preferred scheme, machinery slide rail includes slide rail and sliding connection's slider on the slide rail, the slide rail has the polished rod, the polished rod is used for butt joint extension slide rail, the slider is used for being connected with actuating mechanism, have the pulley in the slider, the pulley is used for with slide rail sliding fit.
Preferably, the driving mechanism is provided with an adjustable sliding block, and the adjustable sliding block is connected with the sliding block.
Preferably, the driving mechanism further comprises a driving member, and the driving member is used for driving the driving mechanism to slide along the mechanical sliding rail.
Preferably, the driving member comprises a motor and a roller driven by the motor, and the roller is used for being in friction fit with an abutting object to generate a driving force to drive the driving mechanism to slide along the mechanical sliding rail.
Preferably, the driving mechanism further comprises a fixing bracket for fixing the electric load.
Preferably, the center of gravity of the power load and the center of gravity of the roller are located on the same straight line.
Preferably, the electric load comprises one or more cameras.
Preferably, the conductive rail is a metal rail.
Compared with the prior art, the utility model, beneficial effect is: the utility model discloses a power direct power supply gives the power supply slide rail, collects the electric energy that acquires the power supply slide rail through current collecting arm, current collecting arm link and comes for the power consumption load power supply on gliding actuating mechanism on the slide rail, simple structure, and low cost can effectively reduce the circuit ageing, improves control recognition device.
Drawings
Fig. 1 is a schematic view of an overall structure of a slide movement recognition device according to a first embodiment of the present invention;
fig. 2 is a schematic view of an electrified slide rail part of a slide rail movement recognition device according to a first embodiment of the present invention;
fig. 3 is a schematic view of a mechanical slide rail portion of a slide movement recognition device according to a first embodiment of the present invention;
fig. 4 is a schematic view of a driving mechanism part of a slide movement recognition device according to a first embodiment of the present invention;
fig. 5 is a schematic view of the slide track movement recognition device according to the first embodiment of the present invention after a camera load is added;
wherein: 1. energizing the slide rail; 2. a mechanical slide rail; 3. a drive mechanism; 4. a camera; 101. a hanger; 102. an insulating protective case; 103. a conductive rail; 104. a current collecting arm; 201. a slide rail; 202. a slider; 203. mounting a plate; 301. a current collecting arm connecting frame; 302. a motor; 303. fixing a bracket; 304. a roller; 305. an adjustable slide block.
Detailed Description
In order to more clearly illustrate the embodiments of the present invention, the following description will explain embodiments of the present invention with reference to the accompanying drawings. It is obvious that the drawings in the following description are only examples of the invention, and that for a person skilled in the art, other drawings and embodiments can be obtained from these drawings without inventive effort.
The first embodiment is as follows:
as shown in fig. 1 to 5, the slide rail movement recognition device of the present embodiment is used for supplying power to an actual application where a plurality of same devices are needed to provide the same function, and the whole device is installed by using a splicing technique, and includes an electrified slide rail 1 fixed on an installation board 203, a mechanical slide rail 2, and a driving mechanism 3, where the driving mechanism 3 can slide along the mechanical slide rail 2, and the driving mechanism 3 is electrically connected to an electric load and obtains electric energy through a current collection arm 104 and a current collection arm connection frame 301 via the electrified slide rail 1.
Specifically, the electrified slide rail 1 comprises a conductive guide rail 103 and an insulating protective shell 102, a current collecting arm 104 is connected to the conductive guide rail 103 in a sliding manner, the conductive guide rail 103 is directly electrically connected with a power supply to obtain electric energy, the power supply can be commercial power or other alternating current/direct current power supplies, the conductive guide rail 103 can be made of conductive metal such as a copper guide rail and a silver guide rail, or other non-metal conductive materials such as conductive plastics, conductive rubber, graphene and the like; the current collecting arm 104 is matched with the conductive guide rail 103 in a sliding manner to collect electric energy on the conductive guide rail 103, in order to realize that the current collecting arm 104 can slide on the conductive guide rail 103, the current collecting arm 104 is connected with the sliding block 202 through a small bracket, a copper sheet is pressed into the current collecting arm 104 through a spring of the current collecting arm 104 in a tightly attached manner, and the side sliding position of the current collecting arm 104 is embedded to ensure that current of the conductive guide rail can smoothly flow into the current collecting arm 104 to supply power to an electric load; the insulating protective shell 102 is matched with the conductive guide rail 103 to protect the conductive guide rail 103, electric shock is avoided, the service life of the internal conductive guide rail 103 is prolonged, and the insulating protective shell 102 can be made of insulating materials such as plastics and glass; for example, the conductive guide rail 103 is made of a copper clamping piece, the power supply is prevented from running off by clamping the copper clamping piece, the green insulating rubber sleeve is wrapped outside the conductive guide rail, and the joint is embedded by a black plastic shell so as to prevent the electric shock caused by mistaken touch. The mechanical slide rail 2 comprises a slide rail 201 and a slide block 202 connected on the slide rail 201 in a sliding manner, and the slide block 202 is matched with the slide rail 201; the sliding rail 201 is a 1-meter sliding rail of LGD6 with small mass and high transmission efficiency, the sliding block 202 is an LGB6 sliding block, a linear polished rod is embedded outside an LGD6 guide rail and is in butt joint with the linear polished rod to be capable of infinitely extending, the polished rod is two 1.5 meters and four 3 meters, the polished rod with the length of 1.5 meters is embedded outside two sliding rails with the length of 1 meter, the rest 0.5 meter is embedded outside the other sliding rail with the length of 1 meter, and the rest 1-meter guide rails are all embedded in the polished rod with the length of 3 meters, so that the sliding rail can be infinitely extended without gaps, the phenomenon of derailment can be prevented, and the sliding rail 201 can be seamlessly; a through hole is reserved at every 80mm of the lower side of the sliding rail 201, the sliding rail can be tightly matched with the mounting plate 203 through the through hole, the linear translation effect is achieved, and side bending and gaps cannot be generated. The inside of the sliding block 202 is provided with 6 pulleys, the pulleys are fixed inside the sliding block 202 through bearings and fixing screws, the pulleys only have one rotational degree of freedom, the stability of the pulleys can be ensured by the 6 pulleys, and the pulleys are matched with a polished rod embedded outside the guide rail, so that the sliding block 202 can stably and horizontally move on the sliding rail 201; preferably, limit switches are added at two ends of the sliding rail 201 to prevent the sliding block 202 from derailing.
The electrified slide rail 1 and the mechanical slide rail 2 are fixed at a position to be installed through the installation plate 203, the shape and length of the conductive guide rail 103 and the slide rail 201 are matched with the environment of the position to be installed, for example, the conductive guide rail 103 and the slide rail 201 can be bent in an arc shape at the corner position, or a circulating track is arranged at the position needing circulating action; the mounting plate 203 can be made of a stainless steel plate, is relatively corrosion-resistant and long in service life, and can also be made of other materials such as a 5mm non-aluminum plate, plastic, aluminum alloy and the like, wherein the surface of the aluminum plate is smooth and clean, has higher plasticity, toughness and mechanical strength, is low in manufacturing cost and is suitable for processing; the electrified slide rail 1 is hoisted on the mounting plate 203 through the hanger 101, one hanger 101 is horizontally matched and connected with the insulating protective shell 102 every 400mm to install the electrified slide rail 1, the conductive guide rail 103 is isolated from being contacted with the mounting plate 203, the installation mode is preferably horizontal installation, the current collection arm 104 slides more stably, and the change can also be made according to the actual use environment, for example, the slope environment electrified slide rail 1 can be designed into an inclined type matched with the slope angle, and the like.
The drive mechanism 3 includes a current collecting arm connecting bracket 301 fitted to the current collecting arm 104, an adjustable slider 305, and a fixing bracket 303. The current collecting arm connecting frame 301 is connected with the current collecting arm 104 to obtain the electric energy on the electrified sliding rail 1. The adjustable sliding block 305 is connected with the sliding block 202, so that the driving mechanism 3 can move on the adjustable sliding block 305 in other directions besides the sliding direction of the sliding rail 201, for example, the spherical sliding block 202 enables the driving device to also move annularly, and the adjustable sliding block 305 moving perpendicular to the sliding rail 201 enables the driving device to also move perpendicular to the sliding rail 201; preferably, the adjustable slider 305 can be omitted, and the structure is simplified. The fixing support 303 is used for fixing an electric load, the electric load can be fixed below the fixing support 303, the electric load is electrically connected with the collecting arm connecting frame 301 to obtain electric energy, and the fixing support 303 can provide support and support for wire type electric connection; preferably, the fixing bracket 303 may be omitted, and the electric load may be directly fixed to the collector arm connecting bracket 301 or may be fixed by being hoisted, thereby simplifying the structure. The driving mechanism 3 further has a driving element for driving the driving mechanism 3 to slide along the mechanical slide rail 2, and includes a motor 302 and a roller 304 driven by the motor 302, the motor 302 and the roller 304 may be fixed or fixed on the current collecting arm connecting frame 301 through a fixing bracket 303, the roller 304 abuts against and cooperates with the guide rail or the mounting plate 203 or other objects that can abut against and cooperate, the motor 302 electrically connects with the current collecting arm connecting frame 301 to obtain electric energy to drive the roller 304 to rotate, thereby driving the driving mechanism 3 to slide along the slide rail 201; preferably, the driving member can be replaced by other structures that can drive the driving mechanism 3 to slide along the sliding rail 201, such as the matching of the motor 302 and a plurality of gears and racks; preferably, the driving member can be omitted, and the structure is simplified. Specifically, the motor 302 adopts a 57-step motor, the step angle of the 57-step motor is 1.8 degrees, the static moment is 2.5N.m, and the voltage is 4.7v and the current is 3.5A. 2.5N.m static moment can provide power conveniently; the gyro wheel 304 adopts the V type gyro wheel that the diameter is 40mm, and it is fixed that V type gyro wheel side leaves the screw hole and passes through the flat key laminating of set screw and 57 step motor, makes the motor can rotate with V type gyro wheel synchronization, and the motor shaft can pass V type gyro wheel inboard completely to prevent that V type gyro wheel from deviating from the motor shaft, its both sides roughness of V type gyro wheel is great, can carry out mild slip on mounting panel 302.
The utility model discloses a power direct power supply gives conductive guide rail 103, through current collection arm 104, current collection arm link 301 collects the electric energy of acquireing conductive guide rail 103 and comes to supply power for the power consumption load on the gliding actuating mechanism 3 on slide rail 201, the power consumption load includes one or more combination formula camera 4, cooperate software and hardware control monitoring discernment such as singlechip to need the information of control discernment, specifically, through switching power supply switching voltage for 9-42v supply power for actuating mechanism, the switching is 5v for the singlechip power supply, the switching 12v supplies power for camera 4, the installation direction of camera 4 should be located same side with gyro wheel 304, greatly reduce because of camera 4 weight to the fatigue damage of weighing parts such as mounting panel 203; preferably, in order to facilitate the movement control of the camera 4, the electric load further comprises a photoelectric switch arranged on the fixed support 303, a target position point is selected on a moving path of the camera 4 to set a baffle plate to be matched with the photoelectric switch, and when the camera 4 moves to the target position point, the baffle plate covers the photoelectric switch to trigger the control to stop the movement of the camera 4; preferably, the center of gravity of the power load and the center of gravity of the roller 304 are located on the same straight line, and the power load can be provided with other functional loads such as a buzzer, an emergency light and ultrasonic feedback according to actual needs, so that the functionality of the device is improved. The utility model discloses a track recognition device, simple structure, low cost can effectively reduce the circuit ageing, improves control recognition device.
It should be noted that the above embodiments can be freely combined as necessary. The foregoing has been a detailed description of the preferred embodiments and principles of the present invention, and it will be apparent to those skilled in the art that variations may be made in the specific embodiments based on the concepts of the present invention, and such variations are considered as within the scope of the present invention.

Claims (10)

1. The utility model provides a slide removes recognition device which characterized in that, includes circular telegram slide rail and sliding connection in circular telegram slide rail's collection electric arm, mechanical slide rail and sliding connection in mechanical slide rail's actuating mechanism, circular telegram slide rail is connected with the power electricity and is in order to obtain the electric energy, actuating mechanism is connected with the power consumption load, actuating mechanism has the collection electric arm link of the looks adaptation with collection electric arm in order to obtain the electric energy of circular telegram slide rail and transmit to the power consumption load.
2. The slide movement recognition device of claim 1, further comprising a mounting plate for securing the powered slide and the mechanical slide; the electrified sliding rail further comprises a hanging bracket, and the hanging bracket is used for hanging the electrified sliding rail on the mounting plate.
3. The slide motion recognition device of claim 2, wherein the powered track comprises a conductive track and an insulating protective housing, the conductive track is configured to be connected to a power source for obtaining power, and the insulating protective housing is disposed on the conductive track.
4. The slide movement recognition device of claim 3, wherein the mechanical slide comprises a slide rail and a slide block slidably coupled to the slide rail, the slide rail having a polished rod for engaging the elongated slide rail, the slide block for coupling to the drive mechanism, the slide block having a pulley therein for slidably engaging the slide rail.
5. The slide movement recognition device of claim 4, wherein the drive mechanism has an adjustable slide, the adjustable slide being coupled to the slide.
6. The slide movement recognition device of claim 5, wherein the drive mechanism further comprises a drive member for driving the drive mechanism to slide along the mechanical slide.
7. The slide movement identification device of claim 6 wherein the drive member comprises a motor and a motor-driven roller, the roller being configured to frictionally engage with the abutment to generate a driving force to drive the drive mechanism to slide along the mechanical slide.
8. The slide movement recognition device of claim 7, wherein the drive mechanism further comprises a mounting bracket for mounting an electrical load.
9. The apparatus according to claim 8, wherein the center of gravity of the electric load and the center of gravity of the roller are located on the same line.
10. A slide movement recognition device according to any one of claims 1 to 9, wherein the electrical load comprises one or more cameras.
CN201920754763.3U 2019-03-26 2019-05-24 Slide removes recognition device Active CN209823037U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201920390138 2019-03-26
CN2019203901385 2019-03-26

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CN209823037U true CN209823037U (en) 2019-12-20

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CN201920754763.3U Active CN209823037U (en) 2019-03-26 2019-05-24 Slide removes recognition device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114094408A (en) * 2021-10-09 2022-02-25 浙江时空道宇科技有限公司 Guide rail power supply structure for microsatellite, satellite cabin plate and assembly method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114094408A (en) * 2021-10-09 2022-02-25 浙江时空道宇科技有限公司 Guide rail power supply structure for microsatellite, satellite cabin plate and assembly method

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