CN210461270U - XiLin bottle cooling and lubricating hydraulic means - Google Patents

XiLin bottle cooling and lubricating hydraulic means Download PDF

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Publication number
CN210461270U
CN210461270U CN201921322388.1U CN201921322388U CN210461270U CN 210461270 U CN210461270 U CN 210461270U CN 201921322388 U CN201921322388 U CN 201921322388U CN 210461270 U CN210461270 U CN 210461270U
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China
Prior art keywords
oil
cavity
cooler
hydraulic pump
oil return
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CN201921322388.1U
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Chinese (zh)
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卢勇兴
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Zhejiang Saiteng Automation Equipment Co Ltd
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Zhejiang Saiteng Automation Equipment Co Ltd
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Abstract

The utility model discloses a xiLin bottle cooling and lubrication hydraulic means. The hydraulic pump comprises an oil tank, a hydraulic pump is arranged in the oil tank, a motor, a cooler and an oil line integrated block are arranged on the oil tank, the motor is used for driving the hydraulic pump to work, a liquid outlet of the hydraulic pump is connected with an inlet of the cooler through a pipeline, an outlet of the cooler is connected with an oil inlet of the oil line integrated block through a pipeline, an overflow valve and an electromagnetic valve are arranged on the oil line integrated block, the overflow valve is communicated with an oil inlet of the oil line integrated block, an electromagnetic valve control oil outlet and a pressure stabilizing oil outlet are arranged on the oil line integrated block, an oil outlet of the overflow valve is communicated with an oil inlet and a pressure stabilizing oil outlet of the electromagnetic valve. The utility model discloses a clear hydraulic oil carries out cooling and lubrication to die wheel, mold core, and whole process is automatic goes on, and control cooling temperature that can be better lubricates in the refrigerated.

Description

XiLin bottle cooling and lubricating hydraulic means
Technical Field
The utility model relates to a xiLin bottle system bottle technical field especially relates to a xiLin bottle cooling and lubrication hydraulic means.
Background
The penicillin bottle cooling and lubricating hydraulic device is used for cooling, lubricating and washing the mold wheel and the mold core when the penicillin bottle making machine forms a bottle mouth, the glass temperature is about 700-800 degrees during forming of the penicillin bottle, the mold wheel and the mold core are directly contacted with a high-temperature glass tube during forming of the bottle mouth, and the optimal working temperature of the mold wheel and the mold core is about 200 degrees. In the traditional cooling mode, the die wheel is used for blowing air, and the die core is used for cooling water through the inside of the die core. In the prior art, the surface of a mould wheel and a mould core is lubricated by manual oiling or oiling in other modes, the surfaces of the mould wheel and the mould core are subjected to high temperature for a long time to generate surface coking, the coking is easily clamped into a bottle mouth of a penicillin bottle to generate a bottle mouth black spot, and the small black spot of the bottle mouth is one of the major defects of the penicillin bottle.
Disclosure of Invention
The utility model provides a solve above-mentioned technical problem, provide a xiLin bottle cooling and lubrication hydraulic means, it carries out cooling and lubrication to die wheel, mold core through clear hydraulic oil, and whole process is automatic goes on, and the control cooling temperature that can be better lubricates in the refrigerated.
In order to solve the problem, the utility model discloses a following technical scheme realizes:
the utility model discloses a xiLin bottle cooling and lubrication hydraulic means, the fuel tank comprises a fuel tank, be equipped with the hydraulic pump in the oil tank, be equipped with motor, cooler and oil circuit manifold block on the oil tank, the motor is used for driving hydraulic pump work, the liquid outlet of hydraulic pump passes through the access connection of pipeline with the cooler, the export of cooler is passed through the pipeline and is connected with the oil inlet of oil circuit manifold block, be equipped with overflow valve and solenoid valve on the oil circuit manifold block, the oil inlet intercommunication of overflow valve and oil circuit manifold block, be equipped with solenoid valve control oil-out and steady voltage oil-out on the oil circuit manifold block, the oil-out of overflow valve and the oil inlet of solenoid valve, steady voltage oil-out intercommunication, the oil-out and.
In this scheme, during operation, the motor drives the hydraulic pump and sends clear hydraulic oil to the cooler, and the cooler sends refrigerated hydraulic oil to the oil circuit manifold block, and the oil circuit manifold block sends hydraulic oil to the overflow valve, and the overflow valve divides the hydraulic oil of pressure stability into two ways and produces oil, and first way communicates the solenoid valve control oil-out through the solenoid valve, and the steady voltage oil-out is directly communicated to the second way, and solenoid valve control oil-out passes through the pipeline and is connected with the nozzle who aims at mould wheel, mold core, and the steady voltage oil-out passes through inside the tube coupling to the mold core. The first path is subjected to timing and quantitative oil injection lubrication, flushing and cooling of the mold wheel and the mold core through the electromagnetic valve after each penicillin bottle forming is finished, so that the temperature of the mold wheel and the mold core is controlled at the optimal working temperature; the second path is directly communicated with the interior of the mold core and then flows out, and the mold core is cooled. The hydraulic oil is used for cooling the die wheel and the die core, so that the cooling temperature can be better controlled, and the lubricating is carried out while the cooling is carried out.
As preferred, the oil tank includes the box, be equipped with mutually independent main cavity, the first cavity of oil return and oil return second cavity in the box, the hydraulic pump is located the main cavity, be equipped with the oil return opening on the box, the oil return opening passes through oil return filter and the first cavity intercommunication of oil return, the first cavity of oil return is through first filter screen and oil return second cavity intercommunication, the oil return second cavity passes through second filter screen and main cavity intercommunication.
The oil sprayed on the die wheel and the die core and the oil communicated with the interior of the die core are recovered by the oil collecting device and then conveyed to the oil return opening, and the oil is filtered by the oil return filter, the first filter screen and the second filter screen and then returns to the main cavity for the next circulation.
Preferably, the oil return port is located above the oil return first cavity.
Preferably, a liquid level meter is arranged on the outer side of the box body and used for detecting the liquid level of oil in the main cavity.
Preferably, the liquid level meter is a digital display type liquid level meter.
Preferably, an oil inlet filter is arranged at the bottom of the main cavity and is connected with a liquid inlet of the hydraulic pump through a pipeline. The oil inlet filter is used for filtering oil entering the hydraulic pump.
Preferably, the cooler is a fin aluminum alloy cooler. The fin type aluminum alloy cooler with high cooling power can better keep the cooling temperature at about 50 ℃.
Preferably, the hydraulic pump is a gear pump. Because the flow of the oil is smaller and the oil temperature is higher, the gear pump with small flow is selected to reduce the temperature generated when the gear pump works.
Preferably, the overflow valve is a superposition overflow valve.
The utility model has the advantages that: (1) the die wheel and the die core are cooled and lubricated by clean hydraulic oil, the whole process is automatically carried out, the cooling temperature can be better controlled, and the die wheel and the die core are lubricated while being cooled. (2) The recovered oil is recycled after being filtered, so that the cost is saved.
Drawings
FIG. 1 is a schematic structural view of an embodiment;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a cross-sectional view A-A of FIG. 2;
FIG. 4 is a front view of FIG. 1;
fig. 5 is a sectional view B-B of fig. 4.
In the figure: 1. the oil tank, 2, the hydraulic pump, 3, the motor, 4, the cooler, 5, the oil circuit integrated package, 6, the import, 7, the export, 8, the overflow valve, 9, the solenoid valve, 10, solenoid valve control oil-out, 11, steady voltage oil-out, 12, the box, 13, the main cavity, 14, the first cavity of oil return, 15, the second cavity of oil return, 16, the oil return filter, 17, first filter screen, 18, the second filter screen, 19, the level gauge, 20, the oil feed filter, 21, the oil return port.
Detailed Description
The technical solution of the present invention is further specifically described below by way of examples and with reference to the accompanying drawings.
Example (b): the penicillin bottle cooling and lubricating hydraulic device of the embodiment, as shown in fig. 1, 2 and 3, fig. 4, as shown in fig. 5, including oil tank 1, oil tank 1 includes box 12, be equipped with mutually independent main cavity 13 in the box 12, first cavity 14 and the second cavity 15 of returning oil all are located the main cavity 13 right side, 15 rear sides of second cavity 15 of returning oil are adjacent with the first cavity 14 front side of returning oil, first cavity 14 left sides of returning oil are adjacent with main cavity 13, hydraulic pump 2 is located main cavity 13, be equipped with oil return opening 21 on the box 12, oil return opening 21 is located the first cavity 14 top of returning oil, oil return opening 21 is through returning oil filter 16 and first cavity 14 intercommunication of returning oil, first cavity 14 of returning oil is through first filter screen 17 and second cavity 16 intercommunication of returning oil, second cavity 16 of returning oil is through second filter screen 18 and main cavity 13 intercommunication.
The hydraulic pump 2 and the oil inlet filter 20 are arranged in the main cavity 13, the oil inlet filter 20 is located at the bottom of the main cavity 13, the oil inlet filter 20 is connected with a liquid inlet of the hydraulic pump 2 through a pipeline, the box 12 is provided with the motor 3, the cooler 4 and the oil circuit integrated block 5, the motor 3 is used for driving the hydraulic pump 2 to work, a liquid outlet of the hydraulic pump 2 is connected with an inlet 6 of the cooler 4 through a pipeline, an outlet 7 of the cooler 4 is connected with an oil inlet of the oil circuit integrated block 5 through a pipeline, the oil circuit integrated block 5 is provided with the overflow valve 8 and the electromagnetic valve 9, the overflow valve 8 is communicated with an oil inlet of the oil circuit integrated block 5, the oil circuit integrated block 5 is provided with the electromagnetic valve control oil outlet 10 and the pressure stabilizing oil outlet 11, an oil outlet of the.
In this scheme, in operation, the oil feed filter is used for filtering the oil that gets into the hydraulic pump, the motor drives the hydraulic pump and sends clear hydraulic oil to the cooler, the oil circuit integrated package is sent refrigerated hydraulic oil to the cooler, the oil circuit integrated package sends hydraulic oil to the overflow valve, the overflow valve divides the stable pressure's hydraulic oil into two tunnel oil outlets, first pass communicates the solenoid valve control oil-out through the solenoid valve, the steady voltage oil-out is directly communicated to the second way, solenoid valve control oil-out passes through the pipeline and aims at the die wheel, the nozzle connection of mold core, the steady voltage oil-out passes through inside the tube coupling to the mold. The first path is controlled by a PLC controller through an electromagnetic valve, and after each penicillin bottle forming is finished, oil is sprayed and lubricated regularly and quantitatively, a mold wheel and a mold core are washed and cooled, so that the temperatures of the mold wheel and the mold core are controlled at the optimal working temperature; the second path is directly communicated with the interior of the mold core and then flows out, and the mold core is cooled. The hydraulic oil is used for cooling the die wheel and the die core, so that the cooling temperature can be better controlled, and the lubricating is carried out while the cooling is carried out.
The oil sprayed on the die wheel and the die core and the oil communicated with the interior of the die core are recovered by the oil collecting device and then conveyed to the oil return opening, and the oil is filtered by the oil return filter, the first filter screen and the second filter screen and then returns to the main cavity for the next circulation.
A liquid level meter 19 is arranged outside the box body 12, and the liquid level meter 19 is used for detecting the liquid level of the oil in the main cavity 13. The gauge 19 is a digital display gauge.
The cooler 4 is a fin-type aluminum alloy cooler. The fin type aluminum alloy cooler with high cooling power can better keep the cooling temperature at about 50 ℃. The cooler is provided with a cooling fan.
The hydraulic pump 2 is a gear pump. Because the flow of the oil is smaller and the oil temperature is higher, the gear pump with small flow is selected to reduce the temperature generated when the gear pump works.
The overflow valve 8 is a stacked overflow valve.

Claims (9)

1. The utility model provides a xiLin bottle cooling lubrication hydraulic means, its characterized in that, includes oil tank (1), be equipped with hydraulic pump (2) in oil tank (1), be equipped with motor (3), cooler (4) and oil circuit manifold block (5) on oil tank (1), motor (3) are used for driving hydraulic pump (2) work, the liquid outlet of hydraulic pump (2) passes through the access connection of pipeline with cooler (4), the export of cooler (4) is connected with the oil inlet of oil circuit manifold block (5) through the pipeline, be equipped with overflow valve (8) and solenoid valve (9) on the oil circuit manifold block (5), overflow valve (8) and the oil inlet intercommunication of oil circuit manifold block (5), be equipped with solenoid valve control oil-out (10) and steady voltage oil-out (11) on oil circuit manifold block (5), the oil-out of overflow valve (8) and the oil inlet of solenoid valve (9), The pressure stabilizing oil outlet (11) is communicated, and the oil outlet of the electromagnetic valve (9) is communicated with the electromagnetic valve control oil outlet (10).
2. The penicillin bottle cooling and lubricating hydraulic device according to claim 1, wherein the oil tank (1) comprises a tank body (12), a main cavity body (13), an oil return first cavity (14) and an oil return second cavity (15) which are independent of each other are arranged in the tank body (12), the hydraulic pump (2) is located in the main cavity body (13), an oil return opening (21) is formed in the tank body (12), the oil return opening (21) is communicated with the oil return first cavity (14) through an oil return filter (16), the oil return first cavity (14) is communicated with the oil return second cavity (15) through a first filter screen (17), and the oil return second cavity (15) is communicated with the main cavity body (13) through a second filter screen (18).
3. The penicillin bottle cooling and lubricating hydraulic device according to claim 2, wherein the oil return port (21) is located above the oil return first cavity (14).
4. The penicillin bottle cooling and lubricating hydraulic device as claimed in claim 2 or 3, wherein a liquid level meter (19) is arranged outside the box body (12), and the liquid level meter (19) is used for detecting the liquid level of oil in the main cavity body (13).
5. The penicillin bottle cooling and lubricating hydraulic device as claimed in claim 4, wherein said level meter (19) is a digital display type level meter.
6. The penicillin bottle cooling and lubricating hydraulic device as claimed in claim 2 or 3, wherein an oil inlet filter (20) is arranged at the bottom of the main cavity (13), and the oil inlet filter (20) is connected with a liquid inlet of the hydraulic pump (2) through a pipeline.
7. The penicillin bottle cooling and lubricating hydraulic device according to claim 1, 2 or 3, wherein the cooler (4) is a finned aluminum alloy cooler.
8. The penicillin bottle cooling and lubricating hydraulic device according to the claim 1, 2 or 3, characterized in that the hydraulic pump (2) is a gear pump.
9. The penicillin bottle cooling and lubricating hydraulic device according to the claim 1, 2 or 3, wherein the overflow valve (8) is a superposition overflow valve.
CN201921322388.1U 2019-08-15 2019-08-15 XiLin bottle cooling and lubricating hydraulic means Active CN210461270U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921322388.1U CN210461270U (en) 2019-08-15 2019-08-15 XiLin bottle cooling and lubricating hydraulic means

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921322388.1U CN210461270U (en) 2019-08-15 2019-08-15 XiLin bottle cooling and lubricating hydraulic means

Publications (1)

Publication Number Publication Date
CN210461270U true CN210461270U (en) 2020-05-05

Family

ID=70451549

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921322388.1U Active CN210461270U (en) 2019-08-15 2019-08-15 XiLin bottle cooling and lubricating hydraulic means

Country Status (1)

Country Link
CN (1) CN210461270U (en)

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