CN217951924U - Mesh punching machine lubricating system - Google Patents
Mesh punching machine lubricating system Download PDFInfo
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- CN217951924U CN217951924U CN202221883725.6U CN202221883725U CN217951924U CN 217951924 U CN217951924 U CN 217951924U CN 202221883725 U CN202221883725 U CN 202221883725U CN 217951924 U CN217951924 U CN 217951924U
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Abstract
The utility model discloses a towards net machine lubricating system, including top rest and main shaft bearing frame, the oil groove is led to the frame is installed to the lathe bed entablature below the main shaft bearing frame, the below that the oil groove was led to the frame is provided with the top rest and leads the oil groove, the top rest is led the oil groove and is installed the surface at the top rest, the below of returning the oil tank is linked together with the oil pump through returning oil pipe, the top of oil pump is linked together through the inside oil groove of supplying oil pipe and oil separator and top rest. The lubricating system of the net punching machine has the advantages that through the matching among the oil pump, the oil supply pipe, the oil distributor, the rack oil guide groove, the upper tool rest oil guide groove, the inner oil return groove, the oil return tank and the oil return pipe, after the oil pump is started, lubricating oil can be respectively supplied to the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat through the oil supply pipe and the oil distributor; the whole process is sealed without leakage, side leakage and splashing overflow; timing, quantitative, accurate oil supply and automatic circulation.
Description
Technical Field
The utility model relates to a towards net machine technical field specifically is a towards net machine lubricating system.
Background
At present, the lubricating method of the net punching machine is mainly to coat and extrude butter or manual oil on an open type lubricating part regularly, and a small part of the lubricating part is automatically and regularly oiled by an oil pump, but the lubricating oil is disposable, and no recycling facility exists. This approach has the following disadvantages:
1. the environment is not protected, the oil pollution is serious, and oil stains can be seen everywhere in a workshop after the equipment is used for a period of time, so that the production environment is seriously polluted.
2. The sliding parts are not lubricated fully or thoroughly, and many sliding parts are only contacted with lubricating oil on the outer surface or the surface and are easy to damage due to insufficient lubrication.
3. The oil can not be added regularly, quantitatively and automatically.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a towards net machine lubricating system to solve the equipment that proposes among the above-mentioned background art and use visible greasy dirt everywhere in the workshop on the machine after a period, seriously pollute the production environment, a lot of sliding part only outside or surface have contact lubricating oil, damage and can not be regularly because of lubricated insufficient and quantitative, the problem of automatic oiling easily.
In order to achieve the above object, the utility model provides a following technical scheme: the lubricating system of the net punching machine comprises an upper tool rest and a main shaft bearing seat, wherein a frame oil guide groove is mounted on an upper beam of a machine body below the main shaft bearing seat, an upper tool rest oil guide groove is arranged below the frame oil guide groove, the upper tool rest oil guide groove is mounted on the surface of the upper tool rest, an inner oil return groove is arranged below the upper tool rest oil guide groove, the inner oil return groove is mounted at the end face of two ends of the upper tool rest, oil return boxes are arranged on two sides of the inner oil return groove, the lower side of each oil return box is communicated with an oil pump through an oil return pipe, and the upper side of the oil pump is communicated with the inner oil groove of the upper tool rest through an oil supply pipe and an oil distributor.
Preferably, an oil supply hole is formed in the outer side edge of the spindle bearing seat.
Preferably, the slide block parts at two ends of the upper tool rest and the large bearing part of the middle crankshaft are respectively provided with an oil supply hole.
Preferably, the oil guide groove of the frame is arranged in a V shape and is inversely arranged on the upper beam of the lathe bed below the bearing seat of the main shaft.
Preferably, the upper tool rest oil guide groove is U-shaped, is arranged on the upper tool rest and is lower than the rack oil guide groove.
Preferably, the inner oil return groove is arranged in a zigzag shape, the middle of the inner oil return groove is provided with a square notch, and the inner oil return groove is inserted and installed on the end surfaces of the two ends of the upper tool rest and is positioned below the oil guide groove of the upper tool rest.
Compared with the prior art, the beneficial effects of the utility model are that: this towards net machine lubricating system:
through the cooperation between the oil pump, the oil supply pipe, the oil separator, the frame oil guide groove, the upper tool rest oil guide groove, the internal oil return groove, the oil return tank and the oil return pipe, after the oil pump is started, lubricating oil can be respectively supplied to the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat through the oil supply pipe and the oil separator, the lubricating oil starts to overflow and flow back after entering the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat for full lubrication, and the returned lubricating oil flows back to the oil tank of the oil pump through the frame oil guide groove, the upper tool rest oil guide groove, the internal oil return groove, the oil return tank and the oil return pipe in sequence and is filtered and recycled; the whole process is sealed without leakage, side leakage and splashing overflow; timing, quantitative, accurate oil supply and automatic circulation.
Drawings
Fig. 1 is a schematic structural view of a lubricating system of a net punching machine of the present invention;
fig. 2 is a left side view structural schematic diagram of the lubricating system of the net punching machine of the present invention;
fig. 3 is a right side perspective view of the lubricating system of the net punching machine of the present invention;
fig. 4 is a left side perspective view of the lubricating system of the net punching machine of the present invention;
fig. 5 is a front view of the lubricating system of the net punching machine of the present invention in a use state;
fig. 6 is a left side perspective view of the use state of the lubricating system of the net punching machine of the present invention;
fig. 7 is a right side perspective view of the use state of the lubricating system of the net punching machine of the present invention.
In the figure: 1. the oil return device comprises an inner oil return groove, 2, an oil return tank, 3, a rack oil guide groove, 4, an upper tool rest oil guide groove, 5, an oil pump, 6, an oil return pipe, 7, an oil supply pipe, 8, an oil distributor, 24, a main shaft bearing seat, 30 and an upper tool rest.
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. 1-5, the present invention provides a technical solution: a lubricating system of a net punching machine comprises an upper tool rest 30 and a main shaft bearing seat 24, wherein a machine frame oil guide groove 3 is installed on an upper beam of a machine body below the main shaft bearing seat 24, an upper tool rest oil guide groove 4 is arranged below the machine frame oil guide groove 3, the upper tool rest oil guide groove 4 is installed on the surface of the upper tool rest 30, an inner oil return groove 1 is arranged below the upper tool rest oil guide groove 4, the inner oil return groove 1 is installed at the end surface of two ends of the upper tool rest 30, oil return boxes 2 are arranged on two sides of the inner oil return groove 1, the lower part of each oil return box 2 is communicated with an oil pump 5 through an oil return pipe 6, the upper part of each oil pump 5 is communicated with an inner oil groove of the upper tool rest 30 through an oil supply pipe 7 and an oil distributor 8, an oil supply hole is formed in the outer side edge of the main shaft bearing seat 24, lubricating oil enters into a bearing inside of the main tool rest through the hole and is fully lubricated with the bearing and then overflows and reflows, sliding block parts at two ends of the upper tool rest 30 and a large bearing part of a middle crankshaft are respectively provided with oil supply holes, lubricating oil enters the inside of the sliding part through the oil supply hole and is fully lubricated and then overflows and reflows, the rack oil guide groove 3 is arranged in a V shape, the upper beam of the machine body is inversely arranged below the main shaft bearing seat 24 and mainly recovers the lubricating oil overflowing and reflowing from the main shaft bearing seat 24, the upper cutter frame oil guide groove 4 is arranged in a U shape and is arranged on the upper cutter frame 30 and is lower than the rack oil guide groove 3, the upper cutter frame oil guide groove mainly recovers the lubricating oil overflowing and reflowing from the upper cutter frame sliding block and the crankshaft bearing, the inner oil return groove 1 is arranged in a Z shape, the middle of the inner oil return groove is provided with a square notch and is inserted and arranged on the end surfaces of two ends of the upper cutter frame 30 and is positioned below the upper cutter frame oil guide groove 4, and the inner oil return groove 1 is equivalent to further extend the lengths of the rack oil guide groove 3 and the upper cutter frame oil guide groove 4 and guides all the recovered lubricating oil into the oil return tank 2;
after the oil pump 5 is started, lubricating oil can be respectively supplied to the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat through the oil supply pipe 7 and the oil distributor 8 by matching the oil pump 5, the oil supply pipe 7, the oil distributor 8, the rack oil guide groove 3, the upper tool rest oil guide groove 4, the inner oil return groove 1, the oil return tank 2 and the oil return pipe 6. The lubricating oil enters the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat to be fully lubricated and then begins to overflow and flow back, and the returned lubricating oil flows back to the oil tank of the oil pump 5 through the rack oil guide groove 3, the upper tool rest oil guide groove 4, the inner oil return groove 1, the oil return tank 2 and the oil return pipe 6 in sequence and is filtered and then recycled; the whole process is sealed without leakage, side leakage and splashing overflow; timing, quantitative, accurate oil supply and automatic circulation.
Principle of operation
When the lubricating system of the net punching machine is required to be used, firstly, the lubricating system is assembled according to the figure, and the frame oil guide groove 3 is arranged in an inverted V shape and is arranged on an upper beam of a machine body below the main shaft bearing seat 24; the upper tool rest oil guide groove 4 is arranged in a U shape, is arranged on the upper tool rest 30 and is lower than the rack oil guide groove 3; the internal oil return groove 1 is shaped like a Chinese character 'ji', the middle part of the internal oil return groove is provided with a square notch, and the internal oil return groove is inserted and installed on the end surfaces of two ends of the upper tool rest 30 and is positioned below the oil guide groove 4 of the upper tool rest; the oil return box 6 is arranged on the lower beam of the lathe bed and is lower than the inner oil return groove 1; after the oil pump 5 is started, lubricating oil can be respectively supplied to the upper tool rest slide block, the crankshaft large bearing and the main shaft bearing seat through the oil supply pipe 7 and the oil distributor 8. The lubricating oil enters the upper tool rest sliding block, the crankshaft large bearing and the main shaft bearing seat to be fully lubricated and then begins to overflow and flow back, and the flowing back lubricating oil flows back to the oil tank of the oil pump 5 through the rack oil guide groove 3, the upper tool rest oil guide groove 4, the inner oil return groove 1, the oil return tank 2 and the oil return pipe 6, and is filtered and recycled.
Compared with the prior art, the oil supply device has the advantages of simple structure, stable oil supply and smooth oil return; the whole process is sealed without leakage, side leakage and splashing overflow; timing, quantitative, accurate oil supply and automatic circulation.
The oil return tank can be provided with a layering, filtering and purifying device so as to ensure the quality of the returned lubricating oil.
An oil housing can be additionally arranged beside all the lubricating parts, so that an oil supply and return path is more sealed, and the working environment of the lubricating parts is further improved.
An automatic oil supply device can be connected to the oil pump to automatically supply lubricating oil.
The oil supply system can be additionally provided with a constant temperature system, when the temperature of the sliding component is lower than the set temperature, the sliding component starts to be automatically heated, otherwise, the sliding component automatically cools to ensure the sliding motion precision and stability of the lubricating component.
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 (6)
1. A net punching machine lubricating system comprises an upper tool rest (30) and a main shaft bearing seat (24), and is characterized in that: the oil feeding device is characterized in that a rack oil guide groove (3) is mounted on an upper beam of the machine body below a main shaft bearing seat (24), an upper tool rest oil guide groove (4) is arranged below the rack oil guide groove (3), the upper tool rest oil guide groove (4) is mounted on the surface of an upper tool rest (30), an inner oil return groove (1) is arranged below the upper tool rest oil guide groove (4), the inner oil return groove (1) is mounted at the end faces of two ends of the upper tool rest (30), oil return boxes (2) are arranged on two sides of the inner oil return groove (1), the lower part of each oil return box (2) is communicated with an oil pump (5) through an oil return pipe (6), and the upper part of each oil pump (5) is communicated with an inner oil groove of the upper tool rest (30) through an oil supply pipe (7) and an oil distributor (8).
2. The net punching machine lubricating system according to claim 1, wherein: and an oil supply hole is formed in the outer side edge of the main shaft bearing seat (24).
3. The net punching machine lubricating system according to claim 1, wherein: oil supply holes are respectively formed in the sliding block parts at two ends of the upper tool rest (30) and the large bearing part of the middle crankshaft.
4. The net punching machine lubricating system according to claim 1, wherein: the oil guide groove (3) of the frame is arranged in a V shape and is inversely arranged on the upper beam of the lathe bed below the main shaft bearing seat (24).
5. The net punching machine lubricating system according to claim 1, wherein: the upper tool rest oil guide groove (4) is U-shaped, is arranged on the upper tool rest (30), and is lower than the rack oil guide groove (3).
6. The net punching machine lubricating system according to claim 1, wherein: the inner oil return groove (1) is arranged in a zigzag shape, the middle of the inner oil return groove is provided with a square notch, and the inner oil return groove is inserted and installed on the end surfaces of the two ends of the upper tool rest (30) and is positioned below the oil guide groove (4) of the upper tool rest.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221883725.6U CN217951924U (en) | 2022-07-21 | 2022-07-21 | Mesh punching machine lubricating system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221883725.6U CN217951924U (en) | 2022-07-21 | 2022-07-21 | Mesh punching machine lubricating system |
Publications (1)
Publication Number | Publication Date |
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CN217951924U true CN217951924U (en) | 2022-12-02 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221883725.6U Active CN217951924U (en) | 2022-07-21 | 2022-07-21 | Mesh punching machine lubricating system |
Country Status (1)
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CN (1) | CN217951924U (en) |
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2022
- 2022-07-21 CN CN202221883725.6U patent/CN217951924U/en active Active
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