CN213754707U - A computer monitoring device for logistics transportation management - Google Patents
A computer monitoring device for logistics transportation management Download PDFInfo
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- CN213754707U CN213754707U CN202120127280.8U CN202120127280U CN213754707U CN 213754707 U CN213754707 U CN 213754707U CN 202120127280 U CN202120127280 U CN 202120127280U CN 213754707 U CN213754707 U CN 213754707U
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Abstract
The utility model discloses a computer monitoring device for logistics transportation management relates to supervisory equipment, has solved the technical problem that current logistics transportation management monitoring device installation was adjusted inconveniently, monitoring range is little, easily receive the environmental impact. The device comprises a camera, a computer, a first mounting box body and a second mounting box body; the camera is arranged in the first installation box body; the other end of the first installation box body is provided with a window, a first motor and a second motor are installed in the second installation box body, the driving end of the first motor penetrates through the lower end of the second installation box body, the driving end of the first motor is hinged with the first installation box body, and a flexible supporting and hanging pipe is installed below the second installation box body; and the driving end of the second motor penetrates through the upper end of the second mounting box body. The utility model discloses the debugging is convenient, strong adaptability, application scope are wider, have realized the upper and lower horizontal hunting of camera, have improved monitoring range greatly.
Description
Technical Field
The utility model relates to a supervisory equipment, more specifically say, it relates to a computer monitoring device for logistics transportation management.
Background
The existing logistics transportation management monitoring device is mainly composed of a camera and a mounting structure thereof. The camera is directly exposed and installed in the environment through the U-shaped supporting and hanging frame. After the camera is installed, the angle of the camera needs to be adjusted through the locking bolts on the two sides of the U-shaped supporting and hanging frame. In addition, in the adjusting process, a specially-assigned person needs to observe and command before the computer, so that the adjusting time is long and the adjustment is inconvenient. And after the camera is installed, the camera can only swing left and right for monitoring, so that the problem of small monitoring range is caused. And the direct exposed installation mode easily makes the camera receive the influence of moisture, dust in the environment, leads to the camera to receive damp or the laying dust, influences the use of camera.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is not enough to prior art, a computer monitoring device for commodity circulation transportation management is provided, solved current commodity circulation transportation management monitoring device installation adjust inconvenient, monitoring range is little, easily receive environmental impact's problem.
The technical scheme of the utility model lies in: a computer monitoring device for logistics transportation management comprises a camera and a computer electrically connected with the camera; the device also comprises a first mounting box body and a second mounting box body; one end of the first mounting box body is detachably provided with a box body rear cover, one side of the box body rear cover is provided with a supporting plate, and the camera is arranged on the supporting plate; the other end of the first installation box body is provided with a window, toughened glass corresponding to the window is inserted into the first installation box body, one side, far away from the window, of the toughened glass is provided with a jacking assembly, and a lens of the camera is inserted into the jacking assembly; a first motor and a second motor are installed in the second installation box body, the driving end of the first motor penetrates through the lower end of the second installation box body, the driving end of the first motor is hinged with the first installation box body, and a flexible supporting and hanging pipe is installed below the second installation box body; the driving end of the second motor penetrates through the upper end of the second mounting box body, and a connecting disc is fixedly mounted at the driving end of the second motor.
The further improvement is that the jacking assembly comprises a positioning ring and a silica gel ring; the holding ring passes through fixing bolt and installs in first mounting box, just the terminal surface top of holding ring is tightly on toughened glass's terminal surface, the silica gel ring is pegged graft in the holding ring, just the silica gel ring is connected with holding ring interference fit, the camera lens of camera is pegged graft in the silica gel ring.
Furthermore, the rear cover of the box body is provided with a threaded hole, a threading connector is screwed in the threaded hole, a lead of the camera penetrates through the threading connector and extends to the outer side of the first installation box body, and sealing media are filled in the threading connector.
Furthermore, the sealing medium is an explosion-proof stuffing box made of epoxy resin or brass nickel-plated material.
Further, the flexible supporting and hanging pipe is a corrugated hose.
Furthermore, the first motor is a linear motor; the second motor is a stepping motor.
Advantageous effects
The utility model has the advantages that: the camera is installed in the first installation box body through the box body rear cover, and a window made of strip toughened glass is arranged at the front end of the first installation box body, so that the closed installation and the monitoring function of the camera are realized. Because the camera is installed in a closed mode, the monitoring device cannot be influenced by moisture or dust in the environment, the adaptability is strong, and the application range of the monitoring device is greatly improved. The second installation box body is installed to the top of first installation box body, and installs two motors in the second installation box body, is used for realizing the vertical and horizontal hunting to the camera respectively, has improved monitoring range greatly. In addition, when the camera is installed and debugged or monitored in the later period, the monitoring angle of the camera can be directly adjusted through the motor, manual field adjustment is not needed, the operation is simple, the debugging is convenient, and the practicability of the camera is improved.
Drawings
Fig. 1 is a schematic view of the internal structure of the monitoring device according to the present invention;
fig. 2 is a schematic diagram of a left side structure of the monitoring device of the present invention.
Wherein: the camera is 1-a camera, 2-a first installation box body, 3-a second installation box body, 4-a box body rear cover, 5-a support plate, 6-a window, 7-toughened glass, 8-a first motor, 9-a second motor, 10-a flexible supporting and hanging pipe, 11-a connecting disc, 12-a positioning ring, 13-a silica gel ring, 14-a threading connector and 15-a sealing medium.
Detailed Description
The present invention will be further described with reference to the following examples, which are not intended to limit the scope of the present invention, but are intended to be covered by the appended claims in any way.
Referring to fig. 1-2, the utility model discloses a computer monitoring device for logistics transportation management, including camera 1 to and the computer with camera 1 electric connection. The computer monitoring device for logistics transportation management also comprises a first installation box body 2 and a second installation box body 3. A box rear cover 4 is detachably mounted at one end of the first mounting box 2. Lid 4 is connected with first installation box 2 through the bolt behind the box, realizes the installation of lid 4 behind the box. Lid 4 is equipped with the location arch in one side that is close to camera 1 behind the box, and the location arch is pegged graft in first installation box 2 to lid 4 is fixed a position behind the box, the installation of being convenient for. A supporting plate 5 is installed on one side of the box body rear cover 4, and the camera 1 is installed on the supporting plate 5. When dismantling, dismantle lid 4 behind the box and take off, can take off camera 1 simultaneously, be convenient for to the maintenance of camera 1.
The rear cover 4 of the box body is provided with a threaded hole, a threading connector 14 is screwed in the threaded hole, a lead of the camera 1 penetrates through the threading connector 14 and extends to the outer side of the first mounting box body 2, and a sealing medium 15 is filled in the threading connector 14.
Preferably, the sealing medium 15 is an explosion-proof stuffing box made of epoxy resin or brass nickel-plated material.
The window 6 has been seted up to the other end of first installation box 2, and 2 interpolations in the first installation box have with the toughened glass 7 that the window 6 corresponds, and one side that the window 6 was kept away from to toughened glass 7 is equipped with the tight subassembly in top, and the camera lens of camera 1 is pegged graft in the tight subassembly in top. Specifically, the jacking assembly comprises a positioning ring 12 and a silica gel ring 13; the holding ring 12 is installed in the first installation box 2 through fixing bolt, and the terminal surface top of holding ring 12 is tight on toughened glass 7's terminal surface, and silica gel ring 13 is pegged graft in holding ring 12, and silica gel ring 13 is connected with holding ring 12 interference fit, and the camera lens of camera 1 is pegged graft in silica gel ring.
A first motor 8 and a second motor 9 are arranged in the second mounting box body 3. The driving end of the first motor 8 penetrates through the lower end of the second mounting box body 3, and the driving end of the first motor 8 is hinged with the first mounting box body 2. Wherein the first motor 8 is a linear motor. A flexible supporting and hanging pipe 10 is arranged below the second mounting box body 3. The flexible pipe 10 is a corrugated hose. Corrugated hoses are flexible and have relatively low deformability, such as stainless steel corrugated hoses. Therefore, when first motor 8 promoted first installation box 2 luffing motion, the bellows can change and carry out deformation according to the interval between two installation boxes, but also pulls the location to first installation box 2 simultaneously. In addition, the wires of the two motors can enter the first installation box body 2 through the corrugated hose and penetrate out through the threading connector 14, so that all the wires of the monitoring device are bundled, and the arrangement of the wires is convenient. The driving end of the second motor 9 penetrates through the upper end of the second mounting box body 3, and a connecting disc 11 is fixedly mounted at the driving end of the second motor 9. When the monitoring device is installed, the connection disc 11 is installed on the ceiling of an application place, and the monitoring device is installed and fixed. Wherein the second motor 9 is a stepper motor. The first motor 8 and the second motor 9 of the embodiment are electrically connected with a computer, so that monitoring personnel can control the monitoring direction of the camera 1 through the computer. And the debugging does not need personnel to debug manually on site, so that the debugging convenience of the monitoring device is improved.
The utility model discloses a theory of operation is: after the monitoring device is installed, when the monitoring device is debugged or monitored, if the monitoring device needs to swing up and down, the first motor 8 is started, and the driving end of the first motor 8 is contracted upwards or extended downwards. As the driving end of the first motor 8 is hinged with the first installation box body 2, and a flexible supporting and hanging pipe 10 is arranged between the second installation box body 3 and the first installation box body 2. Therefore, the first installation box body 2 and the camera 1 can swing up and down by pushing the first installation box body 2 by the first motor 8 and pulling and positioning the first installation box body 2 by the flexible supporting and hanging pipe 10. If the monitoring device needs to swing left and right, the second motor 9 is started. Because the driving end of the second motor 9 is fixedly connected with the ceiling through the connecting disc 11, when the second motor 9 works, the driving end is fixed, and the second motor 9 and the two mounting boxes rotate, so that the left-right swinging of the camera 1 is realized.
The above is only the preferred embodiment of the present invention, and it should be noted that for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which will not affect the utility model and the utility of the patent.
Claims (6)
1. A computer monitoring device for logistics transportation management comprises a camera (1) and a computer electrically connected with the camera (1); the device is characterized by also comprising a first mounting box body (2) and a second mounting box body (3); a box body rear cover (4) is detachably arranged at one end of the first installation box body (2), a supporting plate (5) is arranged on one side of the box body rear cover (4), and the camera (1) is arranged on the supporting plate (5); a window (6) is formed in the other end of the first installation box body (2), toughened glass (7) corresponding to the window (6) is inserted into the first installation box body (2), a jacking assembly is arranged on one side, away from the window (6), of the toughened glass (7), and a lens of the camera (1) is inserted into the jacking assembly; a first motor (8) and a second motor (9) are installed in the second installation box body (3), the driving end of the first motor (8) penetrates through the lower end of the second installation box body (3), the driving end of the first motor (8) is hinged with the first installation box body (2), and a flexible supporting and hanging pipe (10) is installed below the second installation box body (3); the driving end of the second motor (9) penetrates through the upper end of the second mounting box body (3), and a connecting disc (11) is fixedly mounted at the driving end of the second motor (9).
2. The computer monitoring device for logistics transportation management of claim 1, wherein the jacking assembly comprises a positioning ring (12) and a silicone ring (13); the utility model discloses a set up the camera, including camera, holding ring (12) and camera lens, the holding ring (12) is installed in first installation box (2) through fixing bolt, just the terminal surface top of holding ring (12) is tight on the terminal surface of toughened glass (7), silica gel ring (13) are pegged graft in holding ring (12), just silica gel ring (13) are connected with holding ring (12) interference fit, the camera lens of camera (1) is pegged graft in silica gel ring.
3. The computer monitoring device for logistics transportation management of claim 1, wherein the box body rear cover (4) is provided with a threaded hole, a threading joint (14) is screwed in the threaded hole, the lead of the camera (1) passes through the threading joint (14) and extends to the outer side of the first mounting box body (2), and the threading joint (14) is filled with a sealing medium (15).
4. The computerized monitoring device for logistics transportation management of claim 3, wherein the sealing medium (15) is an epoxy resin or brass nickel plating explosion-proof stuffing box.
5. A computerized monitoring device for logistics transportation management of claim 1, characterized in that the flexible supporting and hanging pipe (10) is a corrugated hose.
6. A computerized monitoring device for logistics transportation management according to claim 1, characterized in that the first motor (8) is a linear motor; the second motor (9) is a stepping motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120127280.8U CN213754707U (en) | 2021-01-18 | 2021-01-18 | A computer monitoring device for logistics transportation management |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120127280.8U CN213754707U (en) | 2021-01-18 | 2021-01-18 | A computer monitoring device for logistics transportation management |
Publications (1)
Publication Number | Publication Date |
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CN213754707U true CN213754707U (en) | 2021-07-20 |
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Family Applications (1)
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CN202120127280.8U Active CN213754707U (en) | 2021-01-18 | 2021-01-18 | A computer monitoring device for logistics transportation management |
Country Status (1)
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CN (1) | CN213754707U (en) |
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2021
- 2021-01-18 CN CN202120127280.8U patent/CN213754707U/en active Active
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