CN210732163U - Grinding machine with grinding fluid separator - Google Patents

Grinding machine with grinding fluid separator Download PDF

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Publication number
CN210732163U
CN210732163U CN201921827891.2U CN201921827891U CN210732163U CN 210732163 U CN210732163 U CN 210732163U CN 201921827891 U CN201921827891 U CN 201921827891U CN 210732163 U CN210732163 U CN 210732163U
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China
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grinding
waste
grinding fluid
discharge
receiving plate
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CN201921827891.2U
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Chinese (zh)
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邬超
李志光
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Shenzhen Xiongxing Industry Co Ltd
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Shenzhen Xiongxing Industry Co Ltd
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Abstract

The utility model relates to a grinding machine with grinding fluid separator, include the support and set up in the workstation of support one side, the support is provided with the waste tank, the waste tank rotates and is connected with the helical blade who promotes iron fillings, waste tank lateral wall sets up the first discharge gate that supplies iron fillings to discharge, waste tank below intercommunication has the waste liquid case, a plurality of filtration pores have been seted up to the waste tank bottom, the waste tank passes through filtration pore intercommunication with the waste liquid case, waste liquid case intercommunication has the separator box, the separator box inner wall is provided with the flitch and the flitch that connect of accepting iron fillings, the second discharge gate that supplies iron fillings to discharge is seted up to the lateral wall that the flitch belongs to, the separator box slides and is provided with the push rod, the push rod is connected with the electro-magnet that is used for adsorbing iron fillings, the electro-magnet removes between connecing flitch top and the. The utility model has the advantages that: the utility model discloses can separate grinding fluid and iron fillings.

Description

Grinding machine with grinding fluid separator
Technical Field
The utility model belongs to grinding machine equipment field especially relates to a grinding machine with grinding fluid separator.
Background
A grinding machine is a machine tool that uses a grinding tool to grind a workpiece to obtain a desired shape, size, and precision finish. When a cutting tool cuts a workpiece, cutting, scratching and scratching are carried out between a grinding wheel and the workpiece, a large amount of grinding heat is generated, in the grinding process, due to the fact that the cut metal is thin, about 60% -90% of heat is transmitted into the workpiece, only less than 10% of heat is taken away by grinding, a large amount of grinding heat is generated, the temperature of a grinding area can reach about 400-1000 ℃, materials can deform and burn at high temperature, the grinding wheel can be seriously worn, and the grinding quality is reduced. In general, grinding fluid is used during grinding, so that a large amount of grinding heat is taken away, and the temperature of a grinding area is reduced.
In the prior art, the grinding fluid and the scrap iron after processing fall into a waste tank together, the grinding fluid is inconvenient to recover, and the grinding fluid is large in consumption and easy to cause large waste.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a grinding machine with grinding fluid separator can separate grinding fluid and iron fillings.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
a grinding machine with a grinding fluid separation device comprises a support and a workbench arranged on one side of the support, wherein the support is provided with a waste tank, the waste tank is rotatably connected with a helical blade for pushing scrap iron, a first discharge hole for discharging scrap iron is formed in the side wall of the waste tank, a waste liquid box is communicated below the waste tank, a plurality of filter holes are formed in the bottom of the waste tank, the waste tank is communicated with the waste liquid box through the filter holes, the waste liquid box is communicated with a separation box, a material receiving plate and a material discharging plate for receiving the scrap iron are arranged on the inner wall of the separation box, a second discharge hole for discharging the scrap iron is formed in the side wall of the material discharging plate, a push rod is arranged on the separation box in a sliding manner, the push rod is connected with an electromagnet for absorbing the scrap iron, the electromagnet is positioned in the separation box, and the electromagnet moves between the position above the material receiving plate and, and a liquid outlet for the grinding liquid to flow out is formed in the bottom of the separation box.
By adopting the technical scheme, when the grinding machine works, scrap iron and grinding fluid on the workbench drop into the waste material groove together, the helical blade rotates to push the scrap iron and the grinding fluid to one end of the waste material groove close to the first discharge port together, the scrap iron is discharged from the first discharge port under the pushing of the helical blade, the grinding fluid and some scrap iron with smaller volume drop into the waste material box through the filter hole, the grinding fluid and the scrap iron slide to the material receiving plate along the bottom surface of the waste material box, the grinding fluid flows to the bottom of the separating box from the material receiving plate and flows to the fluid outlet, the push rod is pushed to enable the electromagnet to be positioned right above the material receiving plate, the electromagnet generates magnetism after being electrified and adsorbs the scrap iron to the surface of the electromagnet, after the grinding machine stops working, the push rod is pushed to enable the electromagnet to be positioned right above the material discharging plate and cuts off the power of the electromagnet, the electromagnet loses magnetism, thereby realizing the separation of the grinding fluid and the scrap iron.
The utility model discloses further set up to: the material receiving plate is obliquely arranged, and the height of one end, close to the waste liquid tank, of the material receiving plate is higher than the height of one end, far away from the waste liquid tank, of the material receiving plate.
Through adopting above-mentioned technical scheme, when the grinding fluid flow direction connect the flitch on, the grinding fluid flows to the bottom that connects the flitch along connecing the flitch surface, can make the grinding fluid more smooth from connecing the flitch to flow to the separator box bottom.
The utility model discloses further set up to: go out the flitch and be the slope setting, it keeps away from to go out the flitch highly be higher than of second discharge gate one end go out the flitch and be close to the height of second discharge gate one end.
Through adopting above-mentioned technical scheme, after iron fillings drop to the play flitch, iron fillings slide to second discharge gate department along a play flitch, and the iron fillings are fallen in the smooth clearance of being convenient for.
The utility model discloses further set up to: the electromagnetic switch is characterized in that a baffle is vertically arranged at one end, close to the material receiving plate, of the material discharging plate, the top of the baffle is higher than the bottom of the material receiving plate, and the top of the baffle is lower than the bottom of the electromagnet.
Through adopting above-mentioned technical scheme, the setting of baffle can prevent to connect the grinding fluid on the flitch to flow to the play flitch because of the velocity of flow is too fast.
The utility model discloses further set up to: the waste material groove is communicated with a discharge hopper through the first discharge hole, and one end of the discharge hopper, which is far away from the first discharge hole, is connected with a material collecting box.
Through adopting above-mentioned technical scheme, iron fillings are promoted to first discharge gate after, slide to the case that gathers materials along a hopper in, the case that gathers materials is provided with and does benefit to the collection of iron fillings.
The utility model discloses further set up to: the one end that goes out the hopper and keep away from first discharge gate is provided with the spout, the case that gathers materials be provided with the slider that the spout corresponds, the slider with spout sliding connection.
Through adopting above-mentioned technical scheme, slide the slider to the spout in, can accomplish the installation of the workbin that gathers materials, the detachable connection of hopper and the workbin that gathers materials can be realized out in setting up of spout and slider, and the convenience is cleared up the iron fillings in the workbin that gathers materials, provides certain convenience.
The utility model discloses further set up to: the height of the liquid outlet is higher than that of the bottom surface of the separation box and lower than that of the bottom of the discharge plate.
Through adopting above-mentioned technical scheme, when there are some iron fillings not attracted by the electro-magnet after the circular telegram, this part iron fillings can drop to the separator bottom portion, so set up, can prevent that the iron fillings of separator bottom portion from flowing out from the liquid outlet.
The utility model discloses further set up to: the support is provided with a protection plate.
Through adopting above-mentioned technical scheme, the setting of guard plate can prevent that iron fillings on the workstation from dropping to the floor.
To sum up, the utility model discloses a beneficial technological effect does:
1. when the grinding machine works, the scrap iron and the grinding fluid on the workbench fall into the waste material groove together, the helical blade rotates to push the scrap iron and the grinding fluid to one end of the waste material groove close to the first discharge hole together, under the push of the helical blade, the scrap iron is discharged from the first discharge hole, the grinding fluid and some scrap iron with smaller volume drop into the waste liquid box through the filter hole, the grinding fluid and the scrap iron slide to the material receiving plate along the bottom surface of the waste liquid box, the grinding fluid flows to the bottom of the separation box from the material receiving plate, and flows to the liquid outlet, the push rod is pushed to enable the electromagnet to be positioned right above the material receiving plate, the electromagnet generates magnetism after being electrified, iron scraps are adsorbed to the surface of the electromagnet, the push rod is pushed to enable the electromagnet to be positioned right above the discharging plate after the grinding machine stops working, and with the electro-magnet outage, the electro-magnet loses magnetism, and the iron fillings on electro-magnet surface drop to the play flitch on to realize the separation of grinding fluid and iron fillings.
2. The discharging plate is obliquely arranged, so that the scrap iron can slide to the second discharging hole along the discharging plate, and the scrap iron is convenient to clean; iron fillings are promoted to first discharge gate after, slide to the case that gathers materials along a hopper in, the case that gathers materials is provided with and does benefit to the collection of iron fillings.
Drawings
FIG. 1 is a schematic view of a grinding machine with a grinding fluid separation device;
FIG. 2 is a schematic view of a collection hopper and separator box of a grinding machine with a grinding fluid separator;
fig. 3 is a sectional view of a grinding machine with a grinding fluid separating device.
In the figure, 1, a bracket; 2. a work table; 3. a waste chute; 4. a helical blade; 5. a first discharge port; 6. a waste liquid tank; 7. a filtration pore; 8. a separation tank; 9. a material receiving plate; 10. a discharge plate; 11. a second discharge port; 12. a push rod; 13. an electromagnet; 14. a liquid outlet; 15. a baffle plate; 16. a discharge hopper; 17. a material collecting box; 18. a chute; 19. a slider; 20. a protection plate; 21. and a feeding port.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, for the utility model discloses a grinding machine with grinding fluid separator, including support 1 and the workstation 2 that sets up in support 1 one side, workstation 2 is used for carrying out cutting process to the work piece, is provided with waste material groove 3 on the support 1, is provided with helical blade 4 that is used for promoting the iron fillings to remove in the waste material groove 3. The scrap chute 3 is communicated with a discharge hopper 16, and the discharge hopper 16 is communicated with a material collecting box 17 for collecting scrap iron. And a waste liquid box 6 is arranged below the waste material groove 3, the waste material groove 3 is communicated with the waste liquid box 6, and the waste liquid box 6 is communicated with a separation box 8 for separating grinding liquid and scrap iron.
The length direction of the helical blade 4 is the same as the opening direction of the waste trough 3, the helical blade 4 is arranged in the waste trough and is rotationally connected with the side wall of the waste trough 3, and the helical blade 4 is driven by a motor (not shown). The lateral wall of workstation 2 is kept away from to waste material groove 3 has seted up first discharge gate 5, and first discharge gate 5 is located one side of helical blade 4. Go out hopper 16 fixed connection in one side of support 1, and first discharge gate 5 and go out hopper 16 intercommunication, the case 17 that gathers materials communicates with a hopper 16, and goes out hopper 16 and be the slope setting. Iron fillings and grinding fluid on workstation 2 drop to in the waste material groove 3, are promoted by helical blade 4 afterwards, and iron fillings are promoted to first discharge gate 5 department to along 16 landing of play hopper to in the workbin 17.
The two opposite side walls of the discharge hopper 16 are provided with sliding chutes 18, the tops of the two opposite side walls of the material collecting box 17 are fixedly connected with sliding blocks 19 corresponding to the sliding chutes 18, and the sliding blocks 19 can slide along the length direction of the sliding chutes 18. The slide block 19 and the chute 18 are arranged, so that the discharge hopper 16 is detachably connected with the material collecting box 17, and scrap iron in the material collecting box 17 can be conveniently cleaned.
Referring to fig. 3, support 1 bottom fixedly connected with waste liquid case 6, waste liquid case 6 is located waste material groove 3 below, and the vertical filtration pore 7 of having seted up in waste material groove 3 bottom, just cross filtration pore 7 and communicate with waste liquid case 6 inside and waste material groove 3 respectively.
The separation box 8 is fixedly connected to one side of the support 1, which is far away from the workbench 2 (refer to fig. 1), and the separation box 8 is communicated with the waste liquid box 6 through a feeding port 21. On the relative both sides wall of separator box 8 respectively fixedly connected with accept flitch 9 and the play flitch 10 of iron fillings, connect flitch 9 to connect on the lateral wall of seting up pan feeding mouth 21, and pan feeding mouth 21 is located and connects flitch 9 top. The side wall opposite to the receiving plate 9 is provided with a second discharge hole 11 for discharging scrap iron, and the second discharge hole 11 is positioned above the discharge plate 10. A liquid outlet 14 for grinding liquid to flow out is formed in the bottom of the side wall of the separation box 8, and the liquid outlet 14 is higher than the bottom of the separation box 8 and lower than the bottom of the discharge plate 10.
Connect flitch 9 to be the slope setting, connect the height that the height of flitch 9 is close to the one end of waste liquid case 6 is higher than the height that connects flitch 9 to keep away from waste liquid case 6 one end. Go out flitch 10 and also be the slope setting, go out flitch 10 and keep away from the height that 11 one end of second discharge gate highly is higher than the height that goes out flitch 10 and be close to 11 one end of second discharge gate.
The top of the separation box 8 is provided with a push rod 12, the push rod 12 penetrates through the top of the separation box 8 and is in sliding connection with the top of the separation box 8, and the push rod 12 can slide relative to the material receiving plate 9 and the material discharging plate 10. One end of a push rod 12 extends out of the top of the separation box 8, the other end of the push rod 12 extends into the separation box 8, the push rod 12 located in the separation box 8 is connected with a spherical electromagnet 13, and the bottom of the electromagnet 13 is higher than the tops of the material receiving plate 9 and the material discharging plate 10. And the electromagnet 13 is connected with a power supply, and the electromagnet 13 generates magnetism after being electrified and can adsorb scrap iron.
A part of tiny iron chips and grinding fluid drop to the bottom of the waste liquid tank 6 through the filter holes 7, slide to the feed inlet 21 along the bottom surface of the waste liquid tank 6, together slide along the receiving plate 9, the grinding fluid drops to the bottom of the separating tank 8 from the receiving plate 9 and flows out from the liquid outlet 14, and the iron chips on the receiving plate 9 are adsorbed by the electromagnet 13 after being electrified.
Go out the one end fixedly connected with baffle 15 that flitch 10 kept away from second discharge gate 11, baffle 15 is vertical setting, and the height at baffle 15 top is higher than the height that connects flitch 9 bottom, and is less than the height of electro-magnet 13 bottom.
Referring to fig. 1, the outside fixedly connected with guard plate 20 of support 1, guard plate 20 extend the setting along the length direction of support 1, and the setting of guard plate 20 can prevent that iron fillings on the workstation 2 from dropping to the floor, plays certain guard action.
The implementation principle of the embodiment is as follows: when the grinding machine works, the scrap iron and the grinding fluid on the workbench 2 fall into the waste material groove 3 together, the spiral blade 4 rotates to push the scrap iron and the grinding fluid to one end of the waste material groove 3 close to the first discharge port 5 together, the scrap iron is discharged to the discharge hopper 16 from the first discharge port 5 under the pushing of the spiral blade 4, the scrap iron falls into the collection box 17 along the discharge hopper 16, the grinding fluid and some scrap iron with smaller volume fall into the waste material box 6 through the filter hole 7, the grinding fluid and the scrap iron slide into the separation box 8 along the bottom surface of the waste material box 6 and then slide along the material receiving plate 9, the grinding fluid flows to the bottom of the separation box 8 along the material receiving plate 9 and flows to the liquid outlet 14, meanwhile, the electromagnet 13 is positioned right above the material receiving plate 9 and energizes the electromagnet 13, the electromagnet 13 generates magnetism, the scrap iron on the material receiving plate 9 is attracted by magnetic force, after the grinding machine stops working, promote push rod 12, make electro-magnet 13 be located directly over ejection of compact board 10 to stop the circular telegram to electro-magnet 13, electro-magnet 13 loses magnetism, and iron fillings lose the appeal and drop on ejection of compact board 10, and iron fillings realize the separation of grinding fluid and iron fillings along ejection of compact board 10 landing to second discharge gate 11.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. A grinding machine with a grinding fluid separation device comprises a support (1) and a workbench (2) arranged on one side of the support (1); the method is characterized in that: the support (1) is provided with a waste tank (3), the waste tank (3) is rotatably connected with a helical blade (4) for pushing scrap iron, a first discharge hole (5) for discharging scrap iron is formed in the side wall of the waste tank (3), a waste liquid box (6) is communicated below the waste tank (3), a plurality of filter holes (7) are formed in the bottom of the waste tank (3), the waste tank (3) is communicated with the waste liquid box (6) through the filter holes (7), the waste liquid box (6) is communicated with a separation box (8), a material receiving plate (9) and a material discharging plate (10) for receiving the scrap iron are arranged on the inner wall of the separation box (8), a second discharge hole (11) for discharging the scrap iron is formed in the side wall where the material discharging plate (10) is located, a push rod (12) is slidably arranged on the separation box (8), and the push rod (12) is connected with an electromagnet (13) for adsorbing the scrap iron, the electromagnet (13) is positioned in the separation box (8), the electromagnet (13) moves above the material receiving plate (9) and above the material discharging plate (10), and a liquid outlet (14) for grinding liquid to flow out is formed in the bottom of the separation box (8).
2. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: the material receiving plate (9) is obliquely arranged, and the height of one end, close to the waste liquid tank (6), of the material receiving plate (9) is higher than the height of one end, far away from the waste liquid tank (6), of the material receiving plate (9).
3. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: go out flitch (10) and be the slope setting, it keeps away from to go out flitch (10) the height of second discharge gate (11) one end is higher than it is close to go out flitch (10) the height of second discharge gate (11) one end.
4. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: the material receiving plate is characterized in that a baffle (15) is vertically arranged at one end, close to the material receiving plate (9), of the material discharging plate (10), the height of the top of the baffle (15) is higher than that of the bottom of the material receiving plate (9), and the height of the top of the baffle (15) is lower than that of the bottom of the electromagnet (13).
5. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: the waste material groove (3) is communicated with a discharge hopper (16) through the first discharge hole (5), and one end, far away from the first discharge hole (5), of the discharge hopper (16) is connected with a material collecting box (17).
6. A grinding machine with a grinding fluid separating device as defined in claim 5, characterized in that: go out hopper (16) and keep away from the one end of first discharge gate (5) is provided with spout (18), gather materials case (17) be provided with slider (19) that spout (18) correspond, slider (19) with spout (18) sliding connection.
7. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: the height of the liquid outlet (14) is higher than that of the bottom surface of the separation box (8) and lower than that of the bottom of the discharge plate (10).
8. A grinding machine with a grinding fluid separating device as defined in claim 1, wherein: the support (1) is provided with a protection plate (20).
CN201921827891.2U 2019-10-25 2019-10-25 Grinding machine with grinding fluid separator Active CN210732163U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921827891.2U CN210732163U (en) 2019-10-25 2019-10-25 Grinding machine with grinding fluid separator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921827891.2U CN210732163U (en) 2019-10-25 2019-10-25 Grinding machine with grinding fluid separator

Publications (1)

Publication Number Publication Date
CN210732163U true CN210732163U (en) 2020-06-12

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CN201921827891.2U Active CN210732163U (en) 2019-10-25 2019-10-25 Grinding machine with grinding fluid separator

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113927484A (en) * 2021-11-04 2022-01-14 浙江翎天科技有限公司 Grinding machine grinding fluid circulation decontamination system of recycling
CN114713371A (en) * 2022-04-14 2022-07-08 徐州百惠模具制造有限公司 Hardware mould processing waste screening treatment device and treatment method
CN114770241A (en) * 2022-04-07 2022-07-22 安徽孺子牛轴承有限公司 Machining equipment for reducing roughness of inner diameter of bearing

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113927484A (en) * 2021-11-04 2022-01-14 浙江翎天科技有限公司 Grinding machine grinding fluid circulation decontamination system of recycling
CN114770241A (en) * 2022-04-07 2022-07-22 安徽孺子牛轴承有限公司 Machining equipment for reducing roughness of inner diameter of bearing
CN114770241B (en) * 2022-04-07 2024-02-06 安徽孺子牛轴承有限公司 Machining equipment for reducing roughness of inner diameter of bearing
CN114713371A (en) * 2022-04-14 2022-07-08 徐州百惠模具制造有限公司 Hardware mould processing waste screening treatment device and treatment method
CN114713371B (en) * 2022-04-14 2022-10-25 徐州百惠模具制造有限公司 Hardware mould processing waste screening treatment device and treatment method

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