CN210986275U - Visual online monitoring mounting structure of large-scale instrument - Google Patents

Visual online monitoring mounting structure of large-scale instrument Download PDF

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Publication number
CN210986275U
CN210986275U CN202020118952.4U CN202020118952U CN210986275U CN 210986275 U CN210986275 U CN 210986275U CN 202020118952 U CN202020118952 U CN 202020118952U CN 210986275 U CN210986275 U CN 210986275U
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linking arm
lifter plate
plate
rotary column
online monitoring
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CN202020118952.4U
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金扣英
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Nanjing Jiarong Electronic Technology Co ltd
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Nanjing Jiarong Electronic Technology Co ltd
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Abstract

The utility model discloses a visual on-line monitoring mounting structure of large-scale instrument, comprising a base plate. The utility model discloses a monitoring probe, including a bottom plate, a top lift plate, a split structure, a connecting rod, a bottom plate, a top lift plate, a supporting section of thick bamboo, be provided with in the supporting section of thick bamboo and be used for driving a lift plate along vertical movement's height-adjusting mechanism, the upper surface middle part of top lift plate rotates the one end of connecting the rotary column, the vertical one end bottom surface up and fixed connection linking arm of the other end of rotary column, and the other end level of linking arm extends and is connected with the install bin through split structure, and the internal perisporium upper. The utility model discloses, can go up and down the appointed altitude position with the lifting plate in the certain limit to the monitor body has a better field of vision when monitoring on-the-spot large-scale tool equipment, and when overhauing, can drop the monitor body, improves the practicality.

Description

Visual online monitoring mounting structure of large-scale instrument
Technical Field
The utility model relates to a mine engineering security protection technical field specifically is a visual on-line monitoring mounting structure of large-scale instrument.
Background
The mining work is an engineering technology for performing resource mining work in a mine on the basis of mineral resources. The ground engineering mainly comprises mining mechanical equipment and facilities such as a factory, a derrick, a winch, a forced draught fan ventilator and the like, and the underground engineering comprises a roadway engineering, a chamber engineering and a part of installation engineering.
Since a lot of large tool equipment is needed in mine engineering, and parts on the tool equipment are expensive, if a lawless person steals, a light person causes certain economic loss, and a heavy person may delay construction period, no mounting structure is specially used for mounting the monitoring probe at present.
Therefore, a visual online monitoring and mounting structure for a large tool is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a visual on-line monitoring mounting structure of large-scale instrument, realize the real time monitoring to the appointed region of mine with the help of the monitor probe body to realize carrying out visual monitoring to the large-scale instrument in the mine, the real time picture is transmitted to the relevant display device of the person on duty, improve the security; the steering positioning effect of the rotary column is achieved by means of the locking bolt, so that the direction can be adjusted according to the field monitoring environment, the top lifting plate can be lifted to the specified height position within a certain range, the monitoring probe body can have a better visual field when large-scale tool equipment on the monitoring site is monitored, and the monitoring probe body can be lowered during maintenance, and the practicability is improved.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a visual on-line monitoring mounting structure of large-scale instrument, includes the bottom plate, the upper surface middle part fixedly connected with supporting cylinder of bottom plate, and supporting cylinder takes shape to be hollow structure, be provided with a lifter plate directly over the top surface of supporting cylinder, and be provided with in the supporting cylinder and be used for driving a lifter plate along vertical movement's heightening mechanism, the upper surface middle part of top lifter plate rotates the one end of connecting the rotary column, and the vertical one end bottom surface up of fixed connection linking arm of the other end of rotary column, and the other end level of linking arm extends and is connected with the install bin through split structural connection, and is used for fixed plate lapped extension board at the internal perisporium upper portion fixedly connected with of install bin, the bottom surface middle part of fixed plate is hung and is.
The real-time monitoring of the designated area of the mine is realized by means of the monitoring probe body, so that the large tools in the mine can be visually monitored, real-time pictures are transmitted to the relevant display equipment of the operators on duty, and the safety is improved.
Preferably, the installation box is made of toughened glass transparent materials, and the top of the installation box is provided with an opening and an access door.
Through adopting above-mentioned technical scheme, the monitoring of monitor body can be guaranteed to the install bin that is the transparent material of toughened glass, and the access door is convenient takes out the monitor body and overhauls, maintains the operation such as.
Preferably, be provided with the stop gear who is used for fixing a position the rotary column on the top lifter plate, stop gear includes the lantern ring of fixed connection in top lifter plate upper surface center, and the lantern ring is coaxial and contactless each other with the rotary column, the screw that supplies locking bolt threaded connection that a plurality of equipartitions were arranged is seted up to the global of the lantern ring.
Through adopting above-mentioned technical scheme, realize turning to the location effect to the rotary column with the help of locking bolt to in the adjustment direction of on-the-spot monitoring environment, when using, screw locking bolt in order to guarantee the location of rotary column, improve the stability of monitor body.
Preferably, the split structure includes that the linking arm keeps away from two slots of seting up on a post terminal surface, and the top of slot is opened and is cut the upper surface of linking arm, and the bottom of slot is opened and is cut the lower part of linking arm, does not cut the lower surface of linking arm promptly, and at the bottom surface outside reason fixedly connected with dog of two slots simultaneously, the installation box is shaped towards a side of linking arm and is used for inserting the inserted bar that connects in the linking arm.
The simple and easy dismouting between linking arm and install bin has been realized, can directly take off the install bin when overhauing and maintaining like this and carry together with the monitor body, send and repair the in-process install bin and can also play the guard action to the monitor body, improve the practicality.
Preferably, the circumferential surface of the bottom plate is provided with a plurality of through holes for the insertion nails to penetrate through, and the insertion nails are arranged in an annular and equidistant manner.
The plug pins are inserted into the ground of the mine, so that the stability of the whole device is further improved, and the plug pins are more suitable for the installation requirement of severe geological environment.
Preferably, heightening mechanism is including rotating the lead screw one end of connecting in a support section of thick bamboo bottom surface center, and the other end of lead screw is vertical to extend up, threaded connection has end lifter plate on the lead screw, and the both sides of end lifter plate all set up the symmetry be used for the slide bar to run through gliding perforation, and the both ends of slide bar respectively fixed connection in the interior top surface and the interior bottom surface of a support section of thick bamboo, the last fixed surface of end lifter plate is connected with the bracing piece one end that a plurality of equipartitions were arranged, and the other end of bracing piece is vertical to be worn out and fixed connection in the bottom surface of a lifter plate from a support section of thick bamboo top surface, still is provided with the power unit that is.
The screw rod sliding block structure is formed by the screw rod and the bottom lifting plate, so that the top lifting plate can be lifted to a specified height position within a certain range, the monitoring probe body can have a better visual field when large-scale tool equipment on a monitoring site is monitored, and the monitoring probe body can be lowered during maintenance, and the practicability is improved.
Preferably, the power mechanism comprises a bevel gear fixedly sleeved at the lower part of the screw rod, one side of the bevel gear is engaged and connected with a main bevel gear, the main bevel gear is fixedly connected with one end of a rotating shaft, and the other end of the rotating shaft penetrates through the supporting cylinder and is fixedly connected with a turntable.
Through adopting above-mentioned technical scheme, make the staff realize the rotation process of lead screw through the carousel, simplified the actual operation degree of difficulty greatly.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model realizes real-time monitoring of the designated area of the mine by means of the monitoring probe body, thereby realizing visual monitoring of large tools in the mine, transmitting real-time pictures to relevant display equipment of operators on duty, and improving safety; the steering positioning effect of the rotary column is realized by means of the locking bolt, so that the direction can be conveniently adjusted according to the field monitoring environment, and when the monitoring probe is used, the locking bolt is screwed to ensure the positioning of the rotary column and improve the stability of the monitoring probe body; the screw rod sliding block structure is formed by the screw rod and the bottom lifting plate, so that the top lifting plate can be lifted to a specified height position within a certain range, the monitoring probe body can have a better visual field when large-scale tool equipment on a monitoring site is monitored, and the monitoring probe body can be lowered during maintenance, and the practicability is improved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a top view of the present invention;
fig. 3 is a structural view of the clock slot of the present invention.
In the figure: 1. a base plate; 2. a support cylinder; 3. a top lifter plate; 4. a collar; 5. turning the column; 6. a connecting arm; 7. installing a box; 8. a monitoring probe body; 9. a slot; 10. a stopper; 11. locking the bolt; 12. a fixing plate; 13. a screw rod; 14. a slide bar; 15. a bottom lifter plate; 16. a rotating shaft; 17. a support bar; 18. a bevel gear; 19. and inserting the nail.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 to 3, the present invention provides a technical solution:
the utility model provides a visual on-line monitoring mounting structure of large-scale instrument, as shown in figure 1, including bottom plate 1, the upper surface middle part fixedly connected with support section of thick bamboo 2 of bottom plate 1, and support section of thick bamboo 2 takes shape to be hollow structure, be provided with a lifter plate 3 directly over the top surface of a support section of thick bamboo 2, and be provided with in a support section of thick bamboo 2 and be used for driving a lifter plate 3 along the mechanism of heightening of vertical removal, the upper surface middle part of a lifter plate 3 rotates the one end of connecting rotary column 5, and the vertical one end bottom surface up and fixed connection linking arm 6 of the other end of rotary column 5, and the other end level of linking arm 6 extends and is connected with install bin 7 through split structural connection, and is used for the lapped extension board of fixed plate 12 at the internal perisporium upper portion fixedly connected with of install bin 7.
By adopting the technical scheme, the real-time monitoring of the designated area of the mine is realized by means of the monitoring probe body 8, so that the large tools in the mine can be visually monitored, real-time pictures are transmitted to the relevant display equipment of the operators on duty, and the safety is improved.
As shown in fig. 1, the installation box 7 is made of transparent toughened glass, and has an opening at the top and an access door.
Through adopting above-mentioned technical scheme, be the monitoring that 8 of monitor probe body can be guaranteed to install bin 7 of toughened glass transparent material, and the access door conveniently takes out monitor probe body 8 and overhauls, maintains operations such as.
As shown in fig. 3, be provided with the stop gear who is used for fixing a position rotary column 5 on the top lifter plate 3, stop gear includes lantern ring 4 of fixed connection in top lifter plate 3 upper surface center, and lantern ring 4 and rotary column 5 are coaxial and mutual contactless, the screw that supplies locking bolt 11 threaded connection that a plurality of equipartitions were arranged is seted up to lantern ring 4 global.
Through adopting above-mentioned technical scheme, realize turning to the location effect to rotary column 5 with the help of locking bolt 11 to in the adjustment direction of on-the-spot monitoring environment, when using, screw locking bolt 11 in order to guarantee the location of rotary column 5, improve monitor body 8's stability.
As shown in fig. 2 and 3, the splitting structure includes two slots 9 formed on an end surface of the connecting arm 6 far from the rotating column 5, the top of each slot 9 cuts out the upper surface of the connecting arm 6, the bottom of each slot 9 cuts out the lower part of the connecting arm 6, that is, the lower surface of the connecting arm 6 is not cut out, meanwhile, stop blocks 10 are fixedly connected to the outer side edges of the bottom surfaces of the two slots 9, and the mounting box 7 forms an insertion rod for being inserted into the connecting arm 6 towards one side surface of the connecting arm 6.
Through adopting above-mentioned technical scheme, realized the simple and easy dismouting between linking arm 6 and install bin 7, can directly take off install bin 7 when overhauing and maintaining like this and carry together with monitor probe body 8, send and repair in-process install bin 7 and can also play the guard action to monitor probe body 8, improve the practicality.
As shown in fig. 1, the circumferential surface of the bottom plate 1 is provided with a plurality of through holes for the insertion nails 19 to penetrate through, and the insertion nails 19 are annularly and equidistantly arranged.
Through adopting above-mentioned technical scheme, insert the mine ground with the help of inserting nail 19 to can further improve the stability of whole device, be applicable to comparatively abominable geological environment's installation demand more.
As shown in fig. 1, the height-adjusting mechanism includes one end of a screw rod 13 rotatably connected to the center of the inner bottom surface of the support cylinder 2, the other end of the screw rod 13 vertically extends upward, a bottom lifting plate 15 is connected to the screw rod 13 in a threaded manner, two sides of the bottom lifting plate 15 are provided with symmetrical through holes for the sliding rod 14 to slide through, two ends of the sliding rod 14 are respectively and fixedly connected to the inner top surface and the inner bottom surface of the support cylinder 2, one end of a plurality of uniformly distributed support rods 17 is fixedly connected to the upper surface of the bottom lifting plate 15, the other end of the support rod 17 vertically penetrates out of the top surface of the support cylinder 2 and is fixedly connected to the bottom surface of the top lifting plate 3, and a power mechanism for driving the screw rod 13 to pass is further.
Through adopting above-mentioned technical scheme, form the lead screw slider structure with the help of lead screw 13 and end lifter plate 15 to can go up and down appointed high position with a lifter plate 3 in the certain limit, so that monitor probe body 8 has a better field of vision when monitoring on-the-spot large-scale tool equipment, and when overhauing, can drop monitor probe body 8, improve the practicality.
As shown in fig. 1, the power mechanism includes a bevel gear 18 fixedly sleeved on the lower portion of the screw rod 13, one side of the bevel gear 18 is engaged with a main bevel gear, the main bevel gear is fixedly connected with one end of a rotating shaft 16, and the other end of the rotating shaft 16 penetrates through the supporting cylinder 2 and is fixedly connected with a turntable.
Through adopting above-mentioned technical scheme, make the staff realize the rotation process of lead screw 13 through the carousel, simplified the actual operation degree of difficulty greatly.
The working principle is as follows: the real-time monitoring of the designated area of the mine is realized by means of the monitoring probe body 8, so that the large tools in the mine can be visually monitored, real-time pictures are transmitted to relevant display equipment of operators on duty, and the safety is improved; the steering positioning effect of the rotary column 5 is realized by the locking bolt 11, so that the direction can be adjusted according to the field monitoring environment, and when the steering positioning device is used, the locking bolt 11 is screwed to ensure the positioning of the rotary column 5, so that the stability of the monitoring probe body 8 is improved; the lead screw slider structure is formed by the lead screw 13 and the bottom lifting plate 15, so that the top lifting plate 3 can be lifted to a specified height position within a certain range, the monitoring probe body 8 has a better visual field when large-scale tool equipment on a monitoring site is monitored, and the monitoring probe body 8 can be lowered during maintenance, and the practicability is improved.
The present invention relates to circuits, electronic components and modules, all of which are known in the art, and can be implemented by those skilled in the art without redundancy, and the present invention also does not relate to improvements in software and methods.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a visual on-line monitoring mounting structure of large-scale instrument, includes bottom plate (1), its characterized in that: the utility model discloses a probe fixing device, including a bottom plate (1), an upper surface middle part fixedly connected with supporting cylinder (2), and supporting cylinder (2) shaping is hollow structure, be provided with top lifter plate (3) directly over the top surface of supporting cylinder (2), and be provided with in supporting cylinder (2) and be used for driving a lifter plate (3) along vertical movement's heightening mechanism, the upper surface middle part of top lifter plate (3) rotates the one end of connecting rotary column (5), and the vertical one end bottom surface up and fixed connection linking arm (6) of the other end of rotary column (5), and the other end level of linking arm (6) extends and is connected with install bin (7) through split structure, and be used for fixed plate (12) lapped extension board at the internal perisporium upper portion fixedly connected with of install bin (7), the bottom surface middle part of fixed plate (12) is hung and is installed monitor probe body (8).
2. The large tool visualization online monitoring installation structure of claim 1, wherein: the installation box (7) is made of toughened glass transparent materials, and the top of the installation box is provided with an opening and an access door.
3. The large tool visualization online monitoring installation structure of claim 1, wherein: be provided with on top lifter plate (3) and be used for carrying out the stop gear who fixes a position rotary column (5), stop gear includes lantern ring (4) of fixed connection in top lifter plate (3) upper surface center, and lantern ring (4) and rotary column (5) are coaxial and each other contactless, the screw that supplies locking bolt (11) threaded connection that a plurality of equipartitions were arranged is seted up global to the lantern ring (4).
4. The large tool visualization online monitoring installation structure of claim 1, wherein: the split structure includes that linking arm (6) keep away from two slots (9) of seting up on changeing post (5) a terminal surface, and the top of slot (9) is opened and is cut out the upper surface of linking arm (6), and the bottom of slot (9) is opened and is cut the lower part of linking arm (6), does not cut out the lower surface of linking arm (6) promptly, simultaneously at bottom surface outside edge fixedly connected with dog (10) of two slots (9), install bin (7) are formed towards a side of linking arm (6) and are used for inserting the inserted bar that connects in linking arm (6).
5. The large tool visualization online monitoring installation structure of claim 1, wherein: the perforation that a plurality of confessions inserted nail (19) and run through is seted up to the global of bottom plate (1), and a plurality of inserted nails (19) are annular equidistance and arrange.
6. The large tool visualization online monitoring installation structure of claim 1, wherein: heightening mechanism is including rotating lead screw (13) one end of connecting in a support section of thick bamboo (2) bottom surface center, and the vertical upwards extension of the other end of lead screw (13), threaded connection has end lifter plate (15) on lead screw (13), and the both sides of end lifter plate (15) all set up the symmetry be used for slide bar (14) to run through gliding perforation, and the both ends of slide bar (14) fixed connection respectively in the interior top surface and the interior bottom surface of a support section of thick bamboo (2), the last fixed surface of end lifter plate (15) is connected with bracing piece (17) one end that a plurality of equipartitions were arranged, and the other end of bracing piece (17) is vertical to be worn out and fixed connection in the bottom surface of top lifter plate (3) from a support section of thick bamboo (2) top surface, still is provided with the power unit that is used for driving lead screw (13) autobiog.
7. The large tool visualization online monitoring installation structure of claim 6, wherein: the power mechanism comprises a bevel gear (18) fixedly sleeved on the lower portion of the screw rod (13), one side of the bevel gear (18) is connected with a main bevel gear in a meshed mode, the main bevel gear is fixedly connected with one end of a rotating shaft (16), and the other end of the rotating shaft (16) penetrates through the supporting cylinder (2) and is fixedly connected with a rotating disc.
CN202020118952.4U 2020-01-19 2020-01-19 Visual online monitoring mounting structure of large-scale instrument Active CN210986275U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112032510A (en) * 2020-07-28 2020-12-04 安徽汉腾北斗智能装备有限公司 Bridge monitoring devices based on big dipper satellite
CN112594507A (en) * 2021-03-04 2021-04-02 烟台慧博特产业研究院有限公司 Land planning area measurement device
CN116412335A (en) * 2023-03-13 2023-07-11 南京龙盾智能科技有限公司 Air quality monitoring device with height adjusting system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112032510A (en) * 2020-07-28 2020-12-04 安徽汉腾北斗智能装备有限公司 Bridge monitoring devices based on big dipper satellite
CN112594507A (en) * 2021-03-04 2021-04-02 烟台慧博特产业研究院有限公司 Land planning area measurement device
CN116412335A (en) * 2023-03-13 2023-07-11 南京龙盾智能科技有限公司 Air quality monitoring device with height adjusting system
CN116412335B (en) * 2023-03-13 2023-11-10 南京龙盾智能科技有限公司 Air quality monitoring device with height adjusting system

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