Control System for Oil Mist Spraying, Heating, and Cooling [Patent No.…
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Control systems for oil misting, heating, and cooling (SYSTEM FOR CONTROLLING OIL MIST SPRAYING, HEATING AND COOLING)
A control system for oil misting, heating, and cooling is disclosed. In one embodiment, a control system for spraying, heating, and cooling oil mist based on artificial intelligence, the control system for spraying, heating, and cooling oil mist includes: supplying oil from an oil reservoir to a mist generator to generate oil mist for a rolling mill bearing; and controlling a sensor in the oil reservoir to obtain oil density information, generating a first input signal based on the obtained information, inputting the generated first input signal into a pre-trained first convolutional neural network in the blockchain network, obtaining a first output signal based on the input result, and, based on the first output signal, adjusting a flow rate, wherein the flow rate adjustment method is a method of adjusting an air pressure, adjusting a temperature using a heater, and utilizing a flow regulating needle valve- to control a mist generator to generate an oil mist, move the generated oil mist to a spray nozzle by opening a baffle, and, based on the first output signal, adjust a pipe width of the spray nozzle to spray the oil mist, and store excess oil in the oil mist in an oil tank, detecting a change in the volume of oil in the stored oil tank through an oil level meter to generate a first learning signal, and, based on the generated first learning signal, training a first convolutional neural network, separating the oil in the oil tank through an oil separator, controlling an oil pump to move the oil to an oil reservoir, and controlling an air conditioning system to regulate heating of the mist generator and cooling of the oil tank.
Afterfilter assembly for oil mist collectors클릭하여 적용 (After-filter assembly of oil mist collector)
An afterfilter assembly of an oil mist collector according to the invention, comprising: a filter element (110) having a corrugated cylindrical shape with open upper and lower ends, which filters impurities in the inhaled oil mist; an upper gasket (112) and a lower gasket (114) attached to the upper and lower ends of said filter element (110), which prevent gas or water from leaking from the contact surface with said filter element (110); a first mesh member (120), in the form of a cylinder with open top and bottom, inserted into said filter member (110) to maintain the uprightness of said filter member (110); a cover member (132), made of the same material as said upper gasket (112) and lower gasket (114), wrapped around said filter member (110); and a second mesh member (130), wrapped around said cover member (132); an upper cover (140) in the form of a ring, integrally formed with flanged portions (142) along its perimeter, which rests on said upper gasket (112); a lower cover (150) of the same material and form as said upper cover (140), integrally formed with flanged portions (152) along its perimeter, which connects to a lower portion of said lower gasket (112); and a body (162) having a coiled spring shape, comprising a lower hook (164) integrally formed at a lower end of said body (162), an upper hook (166) integrally formed at an upper end of said body (162), a handle (168) provided between said upper hook (166) and said body (162), and a tie-in member (160) connecting said upper cover (140) and lower cover (150) to each other.
A control system for oil misting, heating, and cooling is disclosed. In one embodiment, a control system for spraying, heating, and cooling oil mist based on artificial intelligence, the control system for spraying, heating, and cooling oil mist includes: supplying oil from an oil reservoir to a mist generator to generate oil mist for a rolling mill bearing; and controlling a sensor in the oil reservoir to obtain oil density information, generating a first input signal based on the obtained information, inputting the generated first input signal into a pre-trained first convolutional neural network in the blockchain network, obtaining a first output signal based on the input result, and, based on the first output signal, adjusting a flow rate, wherein the flow rate adjustment method is a method of adjusting an air pressure, adjusting a temperature using a heater, and utilizing a flow regulating needle valve- to control a mist generator to generate an oil mist, move the generated oil mist to a spray nozzle by opening a baffle, and, based on the first output signal, adjust a pipe width of the spray nozzle to spray the oil mist, and store excess oil in the oil mist in an oil tank, detecting a change in the volume of oil in the stored oil tank through an oil level meter to generate a first learning signal, and, based on the generated first learning signal, training a first convolutional neural network, separating the oil in the oil tank through an oil separator, controlling an oil pump to move the oil to an oil reservoir, and controlling an air conditioning system to regulate heating of the mist generator and cooling of the oil tank.
Afterfilter assembly for oil mist collectors클릭하여 적용 (After-filter assembly of oil mist collector)
An afterfilter assembly of an oil mist collector according to the invention, comprising: a filter element (110) having a corrugated cylindrical shape with open upper and lower ends, which filters impurities in the inhaled oil mist; an upper gasket (112) and a lower gasket (114) attached to the upper and lower ends of said filter element (110), which prevent gas or water from leaking from the contact surface with said filter element (110); a first mesh member (120), in the form of a cylinder with open top and bottom, inserted into said filter member (110) to maintain the uprightness of said filter member (110); a cover member (132), made of the same material as said upper gasket (112) and lower gasket (114), wrapped around said filter member (110); and a second mesh member (130), wrapped around said cover member (132); an upper cover (140) in the form of a ring, integrally formed with flanged portions (142) along its perimeter, which rests on said upper gasket (112); a lower cover (150) of the same material and form as said upper cover (140), integrally formed with flanged portions (152) along its perimeter, which connects to a lower portion of said lower gasket (112); and a body (162) having a coiled spring shape, comprising a lower hook (164) integrally formed at a lower end of said body (162), an upper hook (166) integrally formed at an upper end of said body (162), a handle (168) provided between said upper hook (166) and said body (162), and a tie-in member (160) connecting said upper cover (140) and lower cover (150) to each other.
[이 게시물은 최고관리자님에 의해 2024-11-01 14:16:17 Technology에서 복사 됨]
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