CN118080987A - Processing equipment of metal product for fire control - Google Patents

Processing equipment of metal product for fire control Download PDF

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Publication number
CN118080987A
CN118080987A CN202410460817.0A CN202410460817A CN118080987A CN 118080987 A CN118080987 A CN 118080987A CN 202410460817 A CN202410460817 A CN 202410460817A CN 118080987 A CN118080987 A CN 118080987A
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China
Prior art keywords
plate
real
limiting
vibration frequency
temperature
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CN202410460817.0A
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Chinese (zh)
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朱锁根
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Taixing Ruizhining Metal Products Co ltd
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Taixing Ruizhining Metal Products Co ltd
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Priority to CN202410460817.0A priority Critical patent/CN118080987A/en
Publication of CN118080987A publication Critical patent/CN118080987A/en
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Abstract

The invention relates to the technical field of fire-fighting metal product processing, and discloses processing equipment of a fire-fighting metal product, which comprises a metal processing mechanism, wherein the metal processing mechanism comprises a base, two sides of the top of the base are provided with limiting mechanisms, each limiting mechanism comprises a supporting plate, the side surface of each supporting plate is provided with an electric control hydraulic column, the side surface of each supporting plate is provided with a processing structure, and the middle position of the top of the base is provided with a placing plate; the invention is beneficial to ensuring that the hydraulic oil in the hydraulic main board is in a circulating state by arranging the judging system, thereby accelerating the cooling efficiency of the limiting plate.

Description

Processing equipment of metal product for fire control
Technical Field
The invention relates to the technical field of fire-fighting metal product processing, in particular to processing equipment for a fire-fighting metal product.
Background
The processing equipment is one of the devices for manufacturing the metal products for fire protection, wherein the common processing equipment mainly comprises an electric control cutting device, a power source, a limiting device, a cooling system, a device control system and other mechanisms, and the specific flow of the processing equipment for manufacturing the metal products for fire protection is as follows: the method comprises the steps of preparing, checking whether each mechanism can work normally, placing a metal workpiece on the surface of a limiting plate after checking, fixing, and controlling an electric control cutting device to cut the metal workpiece under the driving of a device control system and a power source after fixing;
the common limiting device mainly comprises a limiting plate, an electric control displacement device, a fixing bolt, a control system and other mechanisms, and the specific process of limiting the metal workpiece by the limiting device is as follows: under the action of the electric control displacement device, the limiting plate is driven to extrude the metal workpiece, and limiting operation is carried out;
The limiting plate is fixed on the surface of the electric control displacement device through the fixing bolt, the electric control cutting device cuts the metal workpiece, the electric control cutting device applies certain external force to the metal workpiece, so that vibration force is generated on the surface of the metal workpiece, the generated vibration force is conveyed to the surface of the bolt through the limiting plate, loosening phenomenon can occur between the bolt and the limiting plate, unstable friction can occur when the loosened bolt is stressed, abrasion condition can occur between the bolt and the limiting plate easily after long time, the limiting plate cannot completely limit the metal workpiece, displacement condition can occur in the cutting process, invalidity of the metal workpiece is caused, certain economic loss is caused, and in the prior art, when the bolt is abraded and loosened, people can know that certain manpower can be wasted in the process mainly through manual maintenance.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention provides processing equipment of a fire-fighting metal product, which aims to solve the problems in the prior art.
The invention provides the following technical scheme: the processing equipment of the metal product for fire protection comprises a metal processing mechanism, wherein the metal processing mechanism comprises a base, two sides of the top of the base are provided with limiting mechanisms, each limiting mechanism comprises a supporting plate, the side surface of each supporting plate is provided with an electric control hydraulic column, the side surface of each supporting plate is provided with a processing structure, and the middle position of the top of the base is provided with a placing plate;
The device is characterized in that a control device is arranged in front of the base, a judging system is arranged in the control device, a cutting device is arranged at the top of the back of the base, a partition board is arranged on the side face of the base, and a wireless communication device is arranged in the control device and used for sending wireless signals to workers for early warning information transmission.
Further, automatically controlled hydraulic pressure post has the connection extension board in the position welding of keeping away from the backup pad, the extrusion board is installed to the inner wall of connection extension board side, the outer wall activity of extrusion board has cup jointed hydraulic motherboard, and first spring is installed to the junction of hydraulic motherboard and extrusion board, and hydraulic motherboard and extrusion board can form sealed space, are equipped with hydraulic oil in the sealed space that hydraulic motherboard and extrusion board formed, and hydraulic motherboard's side-mounting is in the draw-in groove offered at limiting plate outer wall, it has the bolt fastening in the side of limiting plate to connect the extension board through threaded connection.
Further, the hole is offered in the position that is close to the hydraulic motherboard to connect the extension board inner wall, the shell is installed to the side-mounting at connection extension board top, and vibration acceleration sensor, temperature-sensing ware are installed to the inner wall of shell, and vibration acceleration sensor monitors the produced vibration frequency W of limiting plate and carries to judging system, and vibration acceleration sensor monitors temperature data U on limiting plate surface and carries to judging system.
Further, the processing structure comprises an annular cabin, a hollow column is installed on the inner wall of the annular cabin, a conveying pipe is fixedly connected with the side face of the hollow column in a penetrating manner, a hydraulic main board is fixedly connected with the conveying pipe in a penetrating manner at a position far away from the hollow column, hydraulic oil in the hollow column is conveyed to the inside of the vibration acceleration sensor through the conveying pipe, a circular plate is movably sleeved on the inner wall of the hollow column, a third spring is installed on the side face of the circular plate, an extrusion rod is installed on the side face of the circular plate at a position close to the third spring, a pressure sensor is arranged on the side face of the extrusion rod, a second spring is installed on the middle position of the side face of the hollow column, and a miniature electric control lifting column is installed on the side face of the second spring.
Furthermore, the hydraulic oil in the hollow column drives the circular plate and the extrusion rod to contact the pressure sensor, and the pressure sensor generates real-time pressure data I and transmits the real-time pressure data I to the judging system.
Further, the bottom of hollow post runs through fixedly connected with U type pipe, and U type pipe runs through fixedly connected with holding vessel in the position of keeping away from hollow post, and miniature water pump is installed to the position that the U type pipe is being close to the holding vessel, and the cooling cabin is installed to miniature water pump's side, and the venthole has been seted up to the bottom of cooling cabin, and wind power conveyor is installed to the intermediate position at cooling cabin top, and the filter is installed at the position that is close to wind power conveyor at cooling cabin top, and air cooling device is installed at the position that is close to wind power conveyor to the cooling cabin inner wall.
Further, the judging system comprises a control module, a temperature comparison unit, a vibration frequency comparison unit, a pressure comparison unit, a monitoring unit and an execution unit, wherein the control module performs data operation processing through a processor, and the control module controls the temperature comparison unit, the vibration frequency comparison unit and the pressure comparison unit;
The monitoring unit receives real-time vibration frequency W acquired by the vibration acceleration sensor and transmits the real-time vibration frequency W to the vibration frequency comparison unit, the monitoring unit receives real-time temperature data U acquired by the temperature sensor and transmits the real-time temperature data U to the temperature comparison unit, and the monitoring unit receives real-time pressure data I acquired by the pressure sensor and transmits the real-time pressure data I to the pressure comparison unit;
the temperature comparison unit compares the real-time temperature data U with a rated temperature range set by a worker, when the real-time temperature data U is larger than the rated temperature range, the phenomenon that the temperature generated on the surface of the limiting plate is too high can be judged, the control module produces a first execution instruction and conveys the first execution instruction to the execution unit, and the execution unit drives the processing structure to input quantitative current after receiving the first execution instruction, so that the temperature cooling efficiency of the limiting plate is accelerated;
The vibration frequency comparison unit compares the real-time vibration frequency W with a rated vibration frequency range set by a worker, when the real-time vibration frequency W is not in the rated vibration frequency range, the control module judges that the limiting phenomenon is incomplete between the limiting plate and the metal workpiece, the control module compares the real-time pressure data I with the rated pressure data range set by the worker, when the real-time pressure data I is in the rated pressure data range, the control module judges that the phenomenon that the vibration frequency of the limiting plate and the metal workpiece is too high is caused by the phenomenon that the limiting plate is not incomplete with the limiting plate, the control module sends a second execution instruction to the execution unit, the second execution instruction controls the wireless communication device to remotely perform early warning information to the worker so as to remind the worker to arrive at the site for checking;
When the real-time pressure data I is not in the rated pressure data range, the control module judges that the phenomenon of incomplete limiting occurs between the limiting plate and the connecting support plate, the control module sends a third execution instruction to the execution unit, the third execution instruction controls the processing structure to temporarily limit and fix the connecting position of the connecting support plate and the limiting plate, and controls the wireless communication device to remotely perform early warning information to staff, and the staff is reminded to arrive at the site for checking.
The invention has the technical effects and advantages that:
1. According to the invention, the judging system is arranged, so that when the judging system judges that the temperature of the limiting plate is too high, the miniature water pump inputs current, hydraulic oil is driven to be conveyed into the storage tank through the hydraulic main board and the hollow column to perform cooling operation under the action of the U-shaped pipe and the conveying pipe, cooled cooling liquid is conveyed into the hydraulic main board again to perform cooling operation on the limiting plate again, and the hydraulic oil in the hydraulic main board is ensured to be in a circulating state, so that the cooling efficiency of the limiting plate is accelerated.
2. The invention is beneficial to the judgment system to judge that the limiting plate and the connecting support plate are in an incomplete limiting state by arranging the processing structure and the judging system, the miniature electric control lifting column inputs current, the second spring drives the circular plate to move towards the direction of the conveying pipe, hydraulic oil in the hollow column is driven to be conveyed into the hydraulic main board through the conveying pipe, and the extruding plate is driven to move towards the direction far away from the first spring, so that the extruding plate is tightly attached to the outer wall of the connecting support plate and the clamping groove, and meanwhile, a certain extrusion force is applied to the outer wall of the connecting support plate and the clamping groove, so that the functions of the temporary limiting plate and the connecting support plate are achieved, and the phenomenon of overlarge abrasion between the bolt and the limiting plate is avoided, thereby causing certain economic loss.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present invention.
Fig. 2 is a schematic diagram of the whole structure of the limiting mechanism of the present invention.
Fig. 3 is a schematic diagram of the overall structure of the limiting plate according to the present invention.
Fig. 4 is a schematic view of the overall structure of the connecting support plate of the present invention.
Fig. 5 is a schematic cross-sectional view of the overall structure of the hydraulic main board of the present invention.
Fig. 6 is a schematic diagram of the overall structure of the electric control hydraulic column of the present invention.
FIG. 7 is a schematic cross-sectional view of the overall structure of the hollow column of the present invention.
FIG. 8 is a schematic cross-sectional view of the overall structure of the cooling module of the present invention.
Fig. 9 is a schematic overall flow chart of the judging system of the present invention.
The reference numerals are: 1. a metal working mechanism; 101. a base; 102. a control device; 103. a partition plate; 104. a cutting device; 105. placing a plate; 2. a limiting mechanism; 201. a support plate; 202. an electric control hydraulic column; 203. connecting a support plate; 204. a limiting plate; 205. a clamping groove; 206. a hole; 207. a housing; 208. a bolt; 209. a vibration acceleration sensor; 210. a temperature sensor; 211. a hydraulic main board; 212. an extrusion plate; 213. a first spring; 3. a processing structure; 301. an annular chamber; 302. a U-shaped tube; 303. a delivery tube; 304. a cooling cabin; 305. a hollow column; 306. a circular plate; 307. an extrusion rod; 308. a pressure sensor; 309. miniature electric control lifting column; 310. a second spring; 311. a storage tank; 312. a filter plate; 313. an air cooling device; 314. a wind power transmission device; 315. a micro water pump; 316. and an air outlet hole.
Detailed Description
The embodiments of the present invention will be clearly and completely described below with reference to the drawings in the present invention, and the configurations of the structures described in the following embodiments are merely examples, and the processing equipment for fire-fighting metal products according to the present invention is not limited to the structures described in the following embodiments, and all other embodiments obtained by a person skilled in the art without any inventive effort are within the scope of the present invention.
Referring to fig. 1, 6 and 9, the present invention provides a processing device for fire-fighting metal products, comprising a metal processing mechanism 1, wherein the metal processing mechanism 1 comprises a base 101, two sides of the top of the base 101 are provided with a limiting mechanism 2, the limiting mechanism 2 comprises a supporting plate 201, the side surface of the supporting plate 201 is provided with an electric control hydraulic column 202, the side surface of the supporting plate 201 is provided with a processing structure 3, and the middle position of the top of the base 101 is provided with a placing plate 105;
The front of the base 101 is provided with a control device 102, the inside of the control device 102 is provided with a judging system, the top of the back of the base 101 is provided with a cutting device 104, the side surface of the base 101 is provided with a baffle 103, and the inside of the control device 102 is provided with a wireless communication device for transmitting wireless signals to staff for early warning information transmission.
In the embodiment of the present application, the specific workflow of the embodiment of the present application is: after the limiting mechanism 2 completes the limiting of the metal processing original, the cutting device 104 performs cutting operation on the metal workpiece.
Referring to fig. 1 to 5, the invention provides a processing device for fire-fighting metal products, comprising an electric control hydraulic column 202, wherein a connecting support plate 203 is welded on the position, far away from the support plate 201, of the electric control hydraulic column 202, an extrusion plate 212 is arranged on the inner wall of the side surface of the connecting support plate 203, a hydraulic main plate 211 is movably sleeved on the outer wall of the extrusion plate 212, a first spring 213 is arranged at the joint of the hydraulic main plate 211 and the extrusion plate 212, a sealing space can be formed between the hydraulic main plate 211 and the extrusion plate 212, hydraulic oil is arranged in the sealing space formed by the hydraulic main plate 211 and the extrusion plate 212, the side surface of the hydraulic main plate 211 is arranged in a clamping groove 205 formed on the outer wall of the limiting plate 204, and the connecting support plate 203 is fixed on the side surface of the limiting plate 204 through a bolt 208 in a threaded connection manner;
The hole 206 is formed in the inner wall of the connecting support plate 203 at a position close to the hydraulic main plate 211, the shell 207 is installed on the side face of the top of the connecting support plate 203, the vibration acceleration sensor 209 and the temperature sensor 210 are installed on the inner wall of the shell 207, the vibration acceleration sensor 209 monitors the vibration frequency W generated by the limiting plate 204 and transmits the vibration frequency W to the judging system, and the vibration acceleration sensor 209 monitors the temperature data U on the surface of the limiting plate 204 and transmits the temperature data U to the judging system.
In the embodiment of the present application, the specific workflow of the embodiment of the present application is: the electric control hydraulic column 202 inputs current, drive limiting plate 204 contacts the metal machined part, carry out spacing operation, after the spacing completion of metal machined part, cutting device 104 carries out cutting operation to the metal machined part, when wearing and tearing appear between the screw groove of bolt 208 and limiting plate 204, thereby when leading to connecting extension board 203 and limiting plate 204 to appear being connected incomplete phenomenon, first spring 213 under compression state is under the effect of compression spring force, drive extrusion plate 212 is in tensile state, the inside accommodation space of hydraulic mainboard 211 increases, consequently, the inside hydraulic oil of hollow column 305 is led to carrying to the inside of hydraulic mainboard 211 through conveyer pipe 303, the inside hydraulic oil content of hollow column 305 relatively reduces, the limit state of connecting extension board 203 and limiting plate 204 is judged in real time through the change of the pressure data I that miniature automatically controlled elevating column 309 gathered, judge the system receives the vibration frequency W that vibration acceleration sensor 209 monitoring limiting plate 204 produced, judge whether limiting plate 204 normally carries out spacing operation, judge whether the system receives temperature data U on the monitoring limiting plate 204 surface of temperature that the limiting plate 204, whether the inside of hydraulic pressure oil of hydraulic column 211 causes the influence to limit mechanism 2, thereby inside hydraulic oil can cause the influence to the inside of hydraulic pressure device 204 to the inside of hydraulic column 204, the inside of electric control elevating column 204 is avoided because of cooling down.
Referring to fig. 6 to 8, the invention provides a processing device for fire-fighting metal products, which comprises a processing structure 3, wherein the processing structure 3 comprises an annular cabin 301, a hollow column 305 is installed on the inner wall of the annular cabin 301, a conveying pipe 303 is fixedly connected with the side surface of the hollow column 305 in a penetrating manner, a hydraulic main board 211 is fixedly connected with the conveying pipe 303 in a penetrating manner at a position far away from the hollow column 305, hydraulic oil in the hollow column 305 is conveyed into a vibration acceleration sensor 209 through the conveying pipe 303, a circular plate 306 is movably sleeved on the inner wall of the hollow column 305, a third spring is installed on the side surface of the circular plate 306, a pressing rod 307 is installed on the side surface of the circular plate 306 at a position close to the third spring, a pressure sensor 308 is arranged on the side surface of the pressing rod 307, a second spring 310 is installed at the middle position of the side surface of the hollow column 305, and a miniature electric control lifting column 309 is installed on the side surface of the second spring 310;
The hydraulic oil in the hollow column 305 drives the circular plate 306 and the extrusion rod 307 to contact the pressure sensor 308, and the pressure sensor 308 generates real-time pressure data I and transmits the real-time pressure data I to the judging system;
The bottom of hollow post 305 runs through fixedly connected with U type pipe 302, U type pipe 302 runs through fixedly connected with holding vessel 311 in the position of keeping away from hollow post 305, miniature water pump 315 is installed to U type pipe 302 in the position that is close to holding vessel 311, cooling cabin 304 is installed to miniature water pump 315's side, venthole 316 has been seted up to cooling cabin 304's bottom, wind power conveyor 314 is installed to cooling cabin 304 top intermediate position, cooling cabin 304 top is installed at the position that is close to wind power conveyor 314 and is filtered board 312, air cooling device 313 is installed at the position that is close to wind power conveyor 314 to cooling cabin 304 inner wall.
The wind power transmission device 314 inputs current, drives air outside the cooling cabin 304 to be transmitted into the cooling cabin 304 and is discharged through the air outlet hole 316, and in the air transmission process, the air cooling device 313 inputs current to cool the air, thereby accelerating the cooling efficiency of hydraulic oil inside the storage tank 311.
In the embodiment of the present application, the specific workflow of the embodiment of the present application is: when the judgment system judges that the limiting plate 204 and the connecting support plate 203 are in an incomplete limiting state, the miniature electric control lifting column 309 inputs current, the second spring 310 drives the circular plate 306 to move towards the direction of the conveying pipe 303, hydraulic oil in the hollow column 305 is driven to be conveyed into the hydraulic main plate 211 through the conveying pipe 303, the extruding plate 212 is driven to move towards a direction away from the first spring 213, so that the extruding plate 212 is tightly attached to the outer walls of the connecting support plate 203 and the clamping groove 205, and meanwhile, a certain extrusion force is applied to the outer walls of the connecting support plate 203 and the clamping groove 205, so that the functions of the temporary limiting plate 204 and the connecting support plate 203 are achieved, and the phenomenon of overlarge abrasion between the bolts 208 and the limiting plate 204 is avoided, so that certain economic loss is caused;
When the judgment system judges that the temperature of the limiting plate 204 is too high, the micro water pump 315 inputs current to drive hydraulic oil to be conveyed to the storage tank 311 for cooling operation through the hydraulic main plate 211 and the hollow column 305 under the action of the U-shaped pipe 302 and the conveying pipe 303, and cooled cooling liquid is conveyed to the inside of the hydraulic main plate 211 to cool the limiting plate 204 again, so that the hydraulic oil in the hydraulic main plate 211 is ensured to be in a circulating state, and the cooling efficiency of the limiting plate 204 is accelerated.
Referring to fig. 9, the invention provides a processing device for fire-fighting metal products, which comprises a judging system, wherein the judging system comprises a control module, a temperature comparison unit, a vibration frequency comparison unit, a pressure comparison unit, a monitoring unit and an execution unit, the control module performs data operation processing through a processor, and the control module controls the temperature comparison unit, the vibration frequency comparison unit and the pressure comparison unit;
The monitoring unit receives the real-time vibration frequency W acquired by the vibration acceleration sensor 209 and transmits the real-time vibration frequency W to the vibration frequency comparison unit, the monitoring unit receives the real-time temperature data U acquired by the temperature sensor 210 and transmits the real-time temperature data U to the temperature comparison unit, and the monitoring unit receives the real-time pressure data I acquired by the pressure sensor 308 and transmits the real-time pressure data I to the pressure comparison unit;
The temperature comparison unit compares the real-time temperature data U with a rated temperature range set by a worker, when the real-time temperature data U is larger than the rated temperature range, the phenomenon that the temperature generated on the surface of the limiting plate 204 is too high can be judged, the control module produces a first execution instruction and conveys the first execution instruction to the execution unit, and after the execution unit receives the first execution instruction, the processing structure 3 is driven to input quantitative current, so that the temperature cooling efficiency of the limiting plate 204 is accelerated;
The vibration frequency comparison unit compares the real-time vibration frequency W with a rated vibration frequency range set by a worker, when the real-time vibration frequency W is not in the rated vibration frequency range, the control module judges that the limiting plate 204 and the metal workpiece are in a limiting incomplete phenomenon, the control module compares the real-time pressure data I with the rated pressure data range set by the worker, when the real-time pressure data I is in the rated pressure data range, the control module judges that the limiting plate 204 and the metal workpiece are in an excessive vibration frequency phenomenon and are caused by the limiting incomplete phenomenon which is not caused between the limiting plate 204 and the connecting support plate 203, the control module sends a second execution instruction to the execution unit, and the second execution instruction controls the wireless communication device to remotely perform early warning information to the worker so as to remind the worker to arrive at the site for checking;
When the real-time pressure data I is not in the rated pressure data range, the control module judges that the phenomenon of incomplete limiting occurs between the limiting plate 204 and the connecting support plate 203, the control module sends a third execution instruction to the execution unit, the third execution instruction controls the processing structure 3 to perform temporary limiting and fixing processing on the joint of the connecting support plate 203 and the limiting plate 204, controls the wireless communication device, and remotely performs early warning information to staff to remind the staff to arrive at the site for checking.
The specific working flow of the application is as follows:
step one, after the limiting mechanism 2 limits the metal processing original, the cutting device 104 performs cutting operation on the metal workpiece;
Step two, the electric control hydraulic column 202 inputs current, the limit plate 204 is driven to contact with a metal workpiece, limit operation is carried out, after the metal workpiece is limited, the cutting device 104 carries out cutting operation on the metal workpiece, when abrasion occurs between the bolt 208 and a thread groove of the limit plate 204, and therefore, when the incomplete connection phenomenon occurs between the connection support plate 203 and the limit plate 204, the first spring 213 in a compressed state drives the extrusion plate 212 to be in a stretching state under the action of a compression spring force, the containing space in the hydraulic main plate 211 is increased, so that hydraulic oil in the hollow column 305 is conveyed into the hydraulic main plate 211 through the conveying pipe 303, the content of the hydraulic oil in the hollow column 305 is relatively reduced, the limit state of the connection support plate 203 and the limit plate 204 is judged in real time through the change of pressure data I acquired by the miniature electric control lifting column 309, the judgment system monitors the vibration frequency W generated by the limit plate 204 when the judgment system receives the vibration acceleration sensor 209, whether the limit plate 204 normally carries out limit operation or not is judged, the judgment system receives the temperature data U on the surface of the limit plate 204, and whether the temperature generated by the metal workpiece has influence on the limit mechanism 2 is caused or not is real time, the influence on the inside the hydraulic oil in the main plate 211 can be avoided, and the influence on the inside the electronic control hydraulic plate 204 due to the cooling operation is avoided, and the limit operation is avoided;
Step three, when the judgment system judges that the limiting plate 204 and the connecting support plate 203 are in an incomplete limiting state, the miniature electric control lifting column 309 inputs current, the second spring 310 drives the circular plate 306 to move towards the direction of the conveying pipe 303, hydraulic oil in the hollow column 305 is driven to be conveyed into the hydraulic main plate 211 through the conveying pipe 303, the extruding plate 212 is driven to move towards the direction far away from the first spring 213, so that the extruding plate 212 is tightly attached to the outer walls of the connecting support plate 203 and the clamping groove 205, and meanwhile, certain extrusion force is applied to the outer walls of the connecting support plate 203 and the clamping groove 205, so that the functions of the temporary limiting plate 204 and the connecting support plate 203 are achieved, the phenomenon of overlarge abrasion between the bolts 208 and the limiting plate 204 is avoided, and certain economic loss is caused;
When the judgment system judges that the temperature of the limiting plate 204 is too high, the micro water pump 315 inputs current to drive hydraulic oil to be conveyed to the storage tank 311 for cooling operation through the hydraulic main plate 211 and the hollow column 305 under the action of the U-shaped pipe 302 and the conveying pipe 303, and cooled cooling liquid is conveyed to the inside of the hydraulic main plate 211 to cool the limiting plate 204 again, so that the hydraulic oil in the hydraulic main plate 211 is ensured to be in a circulating state, and the cooling efficiency of the limiting plate 204 is accelerated.
In the drawings of the disclosed embodiments, only the structures related to the embodiments of the present disclosure are referred to, and other structures can refer to the common design, so that the same embodiment and different embodiments of the present disclosure can be combined with each other under the condition of no conflict;
the foregoing description of the preferred embodiments of the invention is not intended to limit the invention to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and principles of the invention are intended to be included within the scope of the invention.

Claims (7)

1. The utility model provides a processing equipment of metal product for fire control, includes metal processing agency (1), its characterized in that: the metal processing mechanism (1) comprises a base (101), wherein limiting mechanisms (2) are arranged on two sides of the top of the base (101), each limiting mechanism (2) comprises a supporting plate (201), an electric control hydraulic column (202) is arranged on the side surface of each supporting plate (201), a processing structure (3) is arranged on the side surface of each supporting plate (201), and a placing plate (105) is arranged in the middle of the top of the base (101);
The intelligent early warning system is characterized in that a control device (102) is arranged in front of the base (101), a judging system is arranged in the control device (102), a cutting device (104) is arranged at the top of the back of the base (101), a partition plate (103) is arranged on the side face of the base (101), and a wireless communication device is arranged in the control device (102) and used for sending wireless signals to workers for early warning information transmission.
2. The processing apparatus for fire-fighting metallic products according to claim 1, characterized in that: the electric control hydraulic column (202) is welded at a position far away from the supporting plate (201) and is provided with a connecting support plate (203), an extrusion plate (212) is installed on the inner wall of the side face of the connecting support plate (203), a hydraulic main plate (211) is movably sleeved on the outer wall of the extrusion plate (212), a first spring (213) is installed at the joint of the hydraulic main plate (211) and the extrusion plate (212), a sealing space can be formed between the hydraulic main plate (211) and the extrusion plate (212), hydraulic oil is arranged in the sealing space formed between the hydraulic main plate (211) and the extrusion plate (212), the side face of the hydraulic main plate (211) is installed in a clamping groove (205) formed in the outer wall of the limiting plate (204), and the connecting support plate (203) is fixed on the side face of the limiting plate (204) through bolts (208) in threaded connection.
3. The processing apparatus for fire-fighting metal products according to claim 2, wherein: the inner wall of the connecting support plate (203) is provided with a hole (206) at a position close to the hydraulic main plate (211), a shell (207) is installed on the side face of the top of the connecting support plate (203), a vibration acceleration sensor (209) and a temperature sensor (210) are installed on the inner wall of the shell (207), the vibration acceleration sensor (209) monitors vibration frequency W generated by the limiting plate (204) and conveys the vibration frequency W to a judging system, and the vibration acceleration sensor (209) monitors temperature data U on the surface of the limiting plate (204) and conveys the temperature data U to the judging system.
4. The processing apparatus for fire-fighting metallic products according to claim 1, characterized in that: the processing structure (3) comprises an annular cabin (301), a hollow column (305) is installed on the inner wall of the annular cabin (301), a conveying pipe (303) is fixedly connected to the side face of the hollow column (305) in a penetrating mode, a hydraulic main board (211) is fixedly connected to the conveying pipe (303) in a penetrating mode at a position far away from the hollow column (305), hydraulic oil in the hollow column (305) is conveyed to the inside of a vibration acceleration sensor (209) through the conveying pipe (303), a circular plate (306) is movably sleeved on the inner wall of the hollow column (305), a third spring is installed on the side face of the circular plate (306), a pressing rod (307) is installed on the side face of the circular plate (306) at a position close to the third spring, a pressure sensor (308) is arranged on the side face of the pressing rod (307), a second spring (310) is installed at the middle position of the side face of the hollow column (305), and a miniature electric control lifting column (309) is installed on the side face of the second spring.
5. The processing apparatus for fire-fighting metal products according to claim 4, wherein: the hydraulic oil in the hollow column (305) drives the circular plate (306) and the extrusion rod (307) to contact the pressure sensor (308), and the pressure sensor (308) generates real-time pressure data I and transmits the real-time pressure data I to the judging system.
6. The processing apparatus for fire-fighting metal products according to claim 4, wherein: the bottom of hollow post (305) runs through fixedly connected with U type pipe (302), U type pipe (302) runs through fixedly connected with holding vessel (311) in the position of keeping away from hollow post (305), miniature water pump (315) are installed in the position that is close to holding vessel (311) in U type pipe (302), cooling cabin (304) are installed to the side-mounting of miniature water pump (315), venthole (316) have been seted up to the bottom of cooling cabin (304), wind power conveyor (314) are installed at the intermediate position at cooling cabin (304) top, filter (312) are installed at the position that is close to wind power conveyor (314) at cooling cabin (304) top, air cooling device (313) are installed at the position that is close to wind power conveyor (314) in cooling cabin (304) inner wall.
7. A processing apparatus for fire-fighting metal products according to any one of claims 3 and 5, characterized in that: the judging system comprises a control module, a temperature comparison unit, a vibration frequency comparison unit, a pressure comparison unit, a monitoring unit and an execution unit, wherein the control module performs data operation processing through a processor, and the control module controls the temperature comparison unit, the vibration frequency comparison unit and the pressure comparison unit;
The monitoring unit receives real-time vibration frequency W acquired by the vibration acceleration sensor (209) and transmits the real-time vibration frequency W to the vibration frequency comparison unit, the monitoring unit receives real-time temperature data U acquired by the temperature sensor (210) and transmits the real-time temperature data U to the temperature comparison unit, and the monitoring unit receives real-time pressure data I acquired by the pressure sensor (308) and transmits the real-time pressure data I to the pressure comparison unit;
the temperature comparison unit compares the real-time temperature data U with a rated temperature range set by a worker, when the real-time temperature data U is larger than the rated temperature range, the phenomenon that the temperature generated on the surface of the limiting plate (204) is too high can be judged, the control module produces a first execution instruction and conveys the first execution instruction to the execution unit, and the execution unit drives the processing structure (3) to input quantitative current after receiving the first execution instruction, so that the temperature cooling efficiency of the limiting plate (204) is accelerated;
The vibration frequency comparison unit compares the real-time vibration frequency W with a rated vibration frequency range set by a worker, when the real-time vibration frequency W is not in the rated vibration frequency range, the control module judges that the limiting plate (204) and the metal workpiece are not completely limited, the control module compares the real-time pressure data I with the rated pressure data range set by the worker, when the real-time pressure data I is in the rated pressure data range, the control module judges that the limiting plate (204) and the metal workpiece are excessively high in vibration frequency and are not caused by the limiting non-completely limited phenomenon between the limiting plate (204) and the connecting support plate (203), the control module sends a second execution instruction to the execution unit, the second execution instruction controls the wireless communication device to remotely perform early warning information to the worker so as to remind the worker to arrive at the site for checking;
When the real-time pressure data I is not in the rated pressure data range, the control module judges that the phenomenon of incomplete limiting occurs between the limiting plate (204) and the connecting support plate (203), the control module sends a third execution instruction to the execution unit, the third execution instruction controls the processing structure (3) to carry out temporary limiting and fixing processing on the joint of the connecting support plate (203) and the limiting plate (204), controls the wireless communication device, carries out early warning information to a worker remotely, and reminds the worker to arrive at the site for checking.
CN202410460817.0A 2024-04-17 2024-04-17 Processing equipment of metal product for fire control Pending CN118080987A (en)

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CN109129529A (en) * 2018-09-13 2019-01-04 湖南机电职业技术学院 A kind of automated machine grip device and clamping method
CN114905306A (en) * 2022-03-28 2022-08-16 加西贝拉压缩机有限公司 Workpiece clamp with self-checking function and clamp control method
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CN217952819U (en) * 2022-07-21 2022-12-02 山西溢源恒瑞新材料有限公司 Heat absorption device for cooling graphite electrode
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CN117878568A (en) * 2024-03-11 2024-04-12 泰兴市东盛通讯器材有限公司 High-stability antenna device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108303240A (en) * 2017-12-20 2018-07-20 华东交通大学 A kind of bolt looseness detection of rail joint union piece and warning device
CN109129529A (en) * 2018-09-13 2019-01-04 湖南机电职业技术学院 A kind of automated machine grip device and clamping method
CN114905306A (en) * 2022-03-28 2022-08-16 加西贝拉压缩机有限公司 Workpiece clamp with self-checking function and clamp control method
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