Radial drill and sweeps cleaning device thereof
Technical Field
The utility model relates to a radial drill technical field, more specifically say, it relates to a radial drill and sweeps cleaning device thereof.
Background
The drilling machines are classified according to purposes and structures, and can be divided into upright drilling machines, bench drilling machines, multi-hole drilling machines, radial drilling machines, other special drilling machines and the like. The radial drilling machine is a hole processing device and can be used for processing various forms such as drilling, reaming, tapping, end face scraping and the like. Among various drilling machines, the radial drilling machine is convenient and flexible to operate, wide in application range, particularly suitable for hole machining of single-piece or batch production parts with large holes, and is a common machine tool in common machining workshops.
Radial drill during operation can produce iron fillings and useless coolant liquid, to the clearance of these indiscriminate iron fillings and useless coolant liquid scattered, let iron fillings constantly pile up at present mostly, then the workman will scattered indiscriminate iron fillings gathering clearance with the help of cleaning tool, this kind of clearance iron fillings mode is not only inefficient, and scattered indiscriminate iron fillings also stab the workman health very easily moreover.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a radial drill's sweeps cleaning device, the advantage lies in, the operator of being convenient for clears up the iron fillings in the useless coolant liquid.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides a radial drill's sweeps cleaning device, is including setting up the L shape collecting plate at the work piece fixed station periphery, the one end welding of collecting plate is on the work piece fixed station, the collecting plate forms the stock solution box that the longitudinal section is the U-shaped with work piece fixed station lateral wall, be equipped with the suction plate in the stock solution box, the suction plate is magnet, one side that the suction plate deviates from the stock solution box bottom is equipped with vertical carriage release lever, stock solution box lateral wall lower extreme is equipped with the fluid-discharge tube, the one end that the stock solution box was kept away from to the fluid-discharge tube is connected with the hydrops box, be equipped with the stop valve on the fluid-discharge tube, be equipped with the separator that makes iron fillings and the suction plate separation.
Through adopting above-mentioned technical scheme, when the useless coolant liquid on the work piece fixed station flows out from the work fixed station, flow to the peripheral collecting plate of work piece fixed station, in the stock solution box promptly, the operator only need remove the position of suction disc in the stock solution box through the carriage release lever, can be with on the iron fillings in the useless coolant liquid adsorb the suction disc, after the suction disc has adsorbed the sweeps in the stock solution box, open the stop valve and follow the interior discharge stock solution box of drain pipe with useless coolant liquid, be convenient for next accumulation of useless coolant liquid, the operator scrapes iron fillings from the suction disc through the separator, and then the clearance of the sweeps of being convenient for, and convenient for.
Preferably, the separating part comprises an annular push plate sleeved on the suction plate, the push plate is arranged at one end of the suction plate, and when the push plate moves on the suction plate, an opening for the moving rod to pass through is formed in the push plate.
Preferably, the push pedal is equipped with the ejector pad that longitudinal section is right triangle in the position that deviates from conflict in carriage release lever one side with the suction disc, a side and the push pedal of ejector pad are connected, and adjacent perpendicular side is contradicted with the suction disc, ejector pad quantity is two and sets up respectively in the both sides of push pedal moving direction.
Preferably, the liquid storage box is provided with a first non-woven fabric layer covering the opening of the liquid discharge pipe on the liquid discharge pipe.
Preferably, the upper end of the collecting plate is communicated with an overflow pipe, one end of the overflow pipe, which is far away from the collecting plate, is communicated with the liquid accumulation box, and the collecting plate is provided with a second non-woven fabric layer covering the opening of the overflow pipe on the overflow pipe.
Preferably, threaded connection has two regulation poles of contradicting with the suction disc upper end wall on the push pedal, two regulation poles are for open-ended central symmetry distribution, the position of adjusting pole and suction disc conflict inlays and is equipped with the ball.
Preferably, the upper end of the push plate is provided with an L-shaped handle which is convenient for a human hand to move the push plate.
Another object of the utility model is to provide a radial drill, including above-mentioned radial drill's sweeps cleaning device.
To sum up, the utility model discloses following beneficial effect has: when the useless coolant liquid on the work piece fixed station flows out from the work fixed station, flow to the peripheral collecting plate of work piece fixed station, in the stock solution box promptly, the operator only need remove the position of suction disc in the stock solution box through the carriage release lever, can be with on the iron fillings absorption suction disc in the useless coolant liquid, after the suction disc has adsorbed the sweeps in the stock solution box, open the stop valve and follow the intraductal discharge stock solution box of flowing back with useless coolant liquid, be convenient for next accumulation of useless coolant liquid, the operator scrapes iron fillings from the suction disc through the separator, and then the clearance of the sweeps of being convenient for, and convenient for.
Drawings
FIG. 1 is a schematic structural view of example 1;
FIG. 2 is an enlarged view of part A of FIG. 1;
FIG. 3 is a schematic structural view of a push block according to embodiment 1;
FIG. 4 is a schematic structural view for embodying an adjustment lever of embodiment 1;
fig. 5 is a schematic view of the structure of the first nonwoven fabric layer and the second nonwoven fabric layer used in example 1.
In the figure: 1. a workpiece fixing table; 11. a collection plate; 12. a liquid storage box; 121. a liquid discharge pipe; 122. a liquid accumulation box; 123. a stop valve; 13. sucking a plate; 131. a travel bar; 14. pushing the plate; 141. an opening; 15. a push block; 16. a first nonwoven layer; 17. an overflow pipe; 171. a second nonwoven layer; 18. adjusting a rod; 181. a ball bearing; 19. a handle.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example 1
A scrap cleaning device of a radial drilling machine is disclosed, as shown in figure 1 and figure 2, and comprises an L-shaped collecting plate 11 arranged at the periphery of a workpiece fixing table 1, one end of the collecting plate 11 is welded on the workpiece fixing table 1, the other end of the collecting plate is parallel to the side wall of the workpiece fixing table 1, at the moment, the collecting plate 11 and the side wall of the workpiece fixing table 1 form a liquid storage box 12 with a U-shaped longitudinal section, a suction plate 13 is arranged in the liquid storage box 12, namely, the suction plate 13 is arranged in the liquid storage box 12 and can move freely, the suction plate 13 is a magnet, scrap iron in waste cooling liquid can be adsorbed when the suction plate 13 moves, a vertical moving rod 131 is arranged at one side of the suction plate 13, which is far away from the bottom of the liquid storage box 12, a liquid discharge pipe 121 is arranged at the lower end of the side wall of the liquid storage box 12, namely, the liquid discharge pipe 121 is arranged at the lower end of the side wall, which is parallel to the workpiece fixing, the suction plate 13 is provided with a separating member for separating the iron pieces on the suction plate 13 from the suction plate 13. The scrap is only iron filings.
As shown in fig. 1 and 2, when the waste coolant on the workpiece fixing table 1 flows out from the work fixing table, the waste coolant flows to the collecting plate 11 around the workpiece fixing table 1, i.e. in the liquid storage box 12, an operator can adsorb iron filings in the waste coolant onto the suction plate 13 only by moving the position of the suction plate 13 in the liquid storage box 12 through the moving rod 131, after the suction plate 13 adsorbs the waste filings in the liquid storage box 12, the stop valve 123 is opened to discharge the waste coolant from the liquid storage box 12 in the liquid discharge pipe 121, so as to facilitate the next accumulation of the waste coolant, the operator takes out the suction plate 13 from the liquid storage box 12, and scrapes the iron filings from the suction plate 13 through the separating piece, thereby facilitating the cleaning of the waste filings, facilitating the operation, and facilitating the recovery of the waste filings after the waste filings are collected.
As shown in fig. 1 and 2, the separating member includes an annular push plate 14 sleeved on the suction plate 13, the push plate 14 is disposed at one end of the suction plate 13, when the push plate 14 moves on the suction plate 13, the lower end surface of the push plate 14 abuts against the lower end surface of the suction plate 13, and the two side walls of the push plate 14 abut against the side walls of the suction plate 13, so as to push the iron filings adsorbed by the suction plate 13 down from the suction plate 13, in the moving process of the push plate 14, the push plate 14 is provided with an opening 141 for the moving rod 131 to pass through, and in addition, when the iron filings are adsorbed on the upper end surface of the suction plate 13, the push plate 14 can be reversely mounted on the suction plate 13, when the iron filings move to the place with the moving rod 131, the push plate 14 slides out from the suction plate 13, and then the push; when the scraps are adsorbed to the two end walls in the length direction of the suction plate 13, the push plate 14 is slid down from the suction plate 13, and the scraps on the side wall of the suction plate 13 are pushed down by using one side wall of the push plate 14, and rubber sleeves are arranged at the two ends in the length direction of the suction plate 13, so that the scraps are prevented from being adhered to the two ends in the length direction of the suction plate 13 and not cleaned well. Annular push pedal 14 is located the one end of suction disc 13 in suction disc 13 course of operation, the operator is controlling and when reciprocating suction disc 13, the frictional force between push pedal 14 and the suction disc 13 makes push pedal 14 can not remove along suction disc 13, only when the operator applys the power along suction disc 13 length direction to push pedal 14, push pedal 14 just can remove along suction disc 13, and for the convenience of the removal of push pedal 14 on suction disc 13, make be equipped with the gliding slider in suction disc 13 top on the push pedal 14, the spout that supplies the slider to remove is seted up to suction disc 13 top.
As shown in fig. 1 and 2, in order to facilitate the operator to push the push plate 14, the upper end of the push plate 14 is provided with two L-shaped handles 19 for facilitating the human hand to move the push plate 14, the two handles 19 can be symmetrically arranged along the center of the opening 141, the gap between the two handles 19 facilitates the movement of the moving rod 131, and at the moment, the distance between the operator and the waste is increased, thereby protecting the operator.
As shown in fig. 3, the push plate 14 is provided with two push blocks 15 having right-angled triangle longitudinal sections at the position where the push block abuts against the side of the suction plate 13 away from the moving rod 131, one side of the push block 15 is connected with the push plate 14, the adjacent vertical side abuts against the suction plate 13, and the push blocks 15 are respectively arranged at two sides of the push plate 14 in the moving direction. The push plate 14 is arranged so that the push plate 14 pushes the waste chips down from the suction plate 13.
As shown in FIG. 5, in the liquid storage case 12, a first nonwoven fabric layer 16 is provided on the discharge pipe 121 so as to cover the opening of the discharge pipe 121. The first non-woven fabric layer 16 reduces the entering of the scraps into the liquid discharge pipe 121 and filters the waste cooling liquid, thereby facilitating the recycling of the cooling liquid.
As shown in fig. 1 and 5, when the cooling liquid in the collecting plate 11 is more and more, the upper end of the collecting plate 11 is communicated with an overflow pipe 17, the overflow pipe 17 is arranged at the upper end of the side wall of the collecting plate 11 parallel to the workpiece fixing table 1, one end of the overflow pipe 17 far away from the collecting plate 11 is communicated with the liquid accumulation box 122, and the collecting plate 11 is provided with a second non-woven fabric layer 171 covering the opening of the overflow pipe 17 on the overflow pipe 17. The provision of the second nonwoven layer 171 reduces the entry of waste into the overflow pipe 17.
As shown in fig. 2, in the process of using the long-term pushing plate 14, the side surface of the pushing plate 14 abutting against the lower end surface of the suction plate 13 is worn and further generates a gap, at this time, two adjusting rods 18 abutting against the upper end wall of the suction plate 13 are connected to the pushing plate 14 in a threaded manner, the two adjusting rods 18 are symmetrically distributed relative to the center of the opening 141, a ball 181 (as shown in fig. 4) is embedded in the position where the adjusting rods 18 abut against the suction plate 13, and the adjusting rods 18 are rotated to move the lower end surface of the pushing plate 14 toward the direction close to the suction plate 13 until the pushing plate 14 abuts against the lower end surface of the suction plate 13 again (as shown in fig.. Increasing the useful life of the push plate 14. When the sliding block is embedded into the sliding groove, a gap is formed between the lower end of the sliding block and the bottom of the sliding groove, so that when the position of the push plate 14 is adjusted by the adjusting rod 18, the sliding block can move back and forth in the sliding groove along the depth direction of the sliding groove, and the influence on the use of the adjusting rod 18 is reduced.
Example 2: a radial drill press comprising the above embodiment 1.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.