The present disclosure relates to a cutting insert cooling device capable of spraying cooling water toward a cutting insert.
Generally, a cutting insert is coupled to a cutting tool mounted on a machine tool and is used for machining a workpiece made of iron, non-ferrous metal, non-metal material, and the like.
When the heat-resistant alloy (Ti-, Ni-, Co-based alloy) is used as the workpiece, unlike the common steel, cast iron or stainless steel, there occurs a problem of high heat and high melting in the cutting insert, which reduces the life of the cutting insert.
In order to solve such a problem, in the related art, a cutting tool is disclosed in Korean Patent Publication No. 10-2011-0117681, which includes, as shown in
However, the related cutting tool has a problem that, when the coolant conveying member is integrally provided with the head, the entire cutting tool needs to be replaced when the coolant conveying member is out of order, which leads to an excessive replacement cost. In addition, when the coolant conveying member is mounted to the head part using a single screw, there is a problem that the coolant conveying member may be rotated about the screw at the head, and since the screw needs to be detached in a completely loosened state, there is a problem that the screw may be lost and mounting takes a long time. In addition, when the coolant conveying member is mounted to the head part using two screws, since the two screws need to be detached in a completely loosened state, there is a problem that the screws may be lost and mounting takes a long time.
The technical objective of the present disclosure is to provide a cutting insert cooling device capable of easily mounting a spraying member to a cutting tool while preventing the rotation thereof and eliminating the risk of losing a screw.
Another technical objective of the present disclosure is to provide a cutting insert cooling device capable of maintaining cooling water finally ejected from the spraying member in a straightforward state toward a cutting edge of the cutting insert.
Another technical objective of the present disclosure is to provide a cutting insert cooling device capable of supplying the cooling water finally ejected from the spraying member to a main cutting edge and a sub-cutting edge of the cutting insert, respectively.
Still another technical objective of the present disclosure is to provide a cutting insert cooling device capable of securing sealing between a cooling water guide flow path part of the cutting tool, and a cooling water spouting flow path part of the spraying member.
In order to achieve the above object, the cutting insert cooling device according to the embodiment of the present disclosure, capable of spraying the cooling water toward the cutting insert coupled to the head part of the cutting tool, includes: a cooling water guide flow path part formed in the head part, a spraying member in which a cooling water spouting flow path part is formed to spray, toward the cutting insert, the cooling water that is guided through the cooling water guide flow path part, and an attaching and detaching unit that slides the spraying member to the head part so as to attach and detach the same.
The attaching and detaching unit may include a guide groove elongated in the head part, and a protrusion slider slidably connected to the guide groove, in which the guide groove may have a wedge shape that gradually increases in width as a depth thereof increases, and the protrusion slider may have a wedge shape that gradually increases in width along a direction of protruding so as to correspond to the shape of the guide groove.
The guide groove may be placed perpendicularly to a longitudinal direction of the cooling water spouting flow path part.
The attaching and detaching unit may further include a screw locking groove recessed in one side of the spraying member and having a fixing rib protruding on an inner peripheral surface thereof, and a screw coupled to the head part and locked into the screw locking groove when the spraying member is slid in a direction of being mounted, in which, while the screw is loosely screwed to the head part, when the spraying member is slid in a mounting direction thereof so that the screw is locked in the screw locking groove, the attaching and detaching unit may connect the fixing rib to the head part by tightening the screw.
The cooling water spouting flow path part may include a cooling water inlet having a single flow path connected to the cooling water guide flow path part, and a nozzle part in fluid communication with the cooling water inlet and including first and second cooling water spouting path parts for ejecting the cooling water.
The cutting insert may include a corner cutting edge positioned at a distal end of the head part, a main cutting edge positioned on one side with reference to the corner cutting edge, and a sub-cutting edge positioned on the other side with reference to the corner cutting edge, in which the cooling water passed through the first cooling water spouting path part may be ejected toward the main cutting edge and the cooling water passed through the second cooling water spouting path part may be ejected toward the sub-cutting edge.
The shortest distance between the nozzle and the corner cutting edge may be set to 7 mm or less.
The cutting insert may have a rhombus shape with first and second diagonal lengths different from each other, in which the first diagonal length may be longer than the second diagonal length, the cooling water spouting flow path part may be formed in a direction of the first diagonal length, and the spraying member may be slid in the direction of the second diagonal length to be attached to and detached from the head part.
The cooling water spouting flow path part may include a cooling water inlet having a single flow path connected to the cooling water guide flow path part, and a nozzle part in fluid communication with the cooling water inlet and including first and second cooling water spouting path parts for ejecting the cooling water, in which a position of the screw may be set such that, when the spraying member is mounted on the cutting tool and the screw locking groove is locked with the screw, the cooling water passed through the first cooling water spouting path part of the spraying member is ejected toward a main cutting edge of the cutting insert, and the cooling water passed through the second cooling water spouting path part is ejected toward a sub-cutting edge of the cutting insert.
The cutting insert cooling device according to an embodiment of the present disclosure described above may further include a sealing member provided between the cooling water guide flow path part and the cooling water spouting flow path part.
As described above, the cutting insert cooling device according to an embodiment of the present disclosure may have the following effects.
According to an embodiment of the present disclosure, a technical configuration is provided, which includes a head part, a spraying member, and an attaching and detaching unit, in which the attaching and detaching unit slides the spraying member on the head part to attach to and detach from the same, so that without requiring the screw as the main component for the attachment and detachment purposes, it is possible to easily mount the spraying member to the cutting tool while preventing the rotation thereof and eliminating the risk of losing a screw, unlike the related art that uses the screw as the main component.
Further, according to the embodiment of the present disclosure, the distance between the end of the nozzle part of the spraying member and the corner cutting edge of the cutting insert is set to 7 mm or less, so that the distance is relatively shorter compared to the related techniques. Accordingly, it is possible to maintain the cooling water finally ejected from the spraying member in a straightforward state toward the cutting edge of the cutting insert, and thus improve the cooling efficiency for the cutting insert.
Further, according to the embodiment of the present disclosure, the nozzle part includes the first and second cooling water spouting path parts, so that the cooling water finally ejected from the spraying member can be respectively supplied to the main cutting edge and the sub-cutting edge of the cutting insert that are directly involved in cutting, thereby further improving the cooling efficiency for the cutting insert.
Further, according to the embodiment of the present disclosure, the sealing member is provided between the cooling water guide flow path part and the cooling water spouting flow path part. Accordingly, with the tight contact provided by the sealing member, it is possible to prevent the leakage of the cooling water between the flow path parts.
Hereinafter, preferred embodiments of the present disclosure will be described in detail with reference to the accompanying drawings, which will be readily apparent to those skilled in the art to which the present disclosure pertains. However, the description proposed herein is just a preferable example for the purpose of illustrations only, and not intended to limit the scope of the disclosure, and accordingly, it should be understood that other equivalents and modifications could be made thereto without departing from the scope of the disclosure.
The cutting insert cooling device 100 according to an embodiment of the present disclosure is a cutting insert cooling device capable of spraying cooling water toward a cutting insert 10 coupled to a head part 110 of a cutting tool T, and includes a cooling water guide flow path part 111, a spraying member 120, and an attaching and detaching unit 130, as shown in
The cooling water guide flow path part 111 is a component provided to guide the external cooling water to the spraying member 120, and may be formed in the head part 110 as shown in
Furthermore, the head part 110 may include a planar portion 112 and a seat groove 113, as shown in
As illustrated in
For example, as illustrated in
Furthermore, as shown in
In addition, the shortest distance between the nozzle part 121b and the corner cutting edge 11 may be set to approximately 7 mm or less. Therefore, due to this relatively shorter distance compared to the related techniques, the cooling water finally ejected from the spraying member 120 can be maintained in the straightforward state toward the cutting edge 11 of the cutting insert 10, which can increase the cooling efficiency for the cutting insert 10.
In addition, as shown in
In addition, in the manufacturing process of the spraying member 120, after the cooling water spouting flow path part 121 is formed in the spraying member 120, a stopper 150 may be further provided in the spraying member to block the end of the cooling water spouting flow path part 121.
As shown in
For example, the attaching and detaching unit 130 may include a guide groove 131 and a protrusion slider 132, as shown in
In particular, the guide groove 131 may have a wedge shape that gradually increases in width as the depth thereof increases, and the protrusion slider 132 may have a wedge shape that gradually increases in width along its protruding direction to correspond to the shape of the guide groove 131. Therefore, this wedge shape can prevent the phenomenon such as upward separation of the spraying member 120 and the like.
In addition, as shown in
Furthermore, the attaching and detaching unit 130 may further include a screw locking groove 133 and a screw 134, as shown in
In particular, while the screw 134 is loosely screwed to the planar portion 112, when the spraying member 120 is slid in a mounting direction thereof so that the screw 134 is locked into the screw locking groove 133, the screw 134 can be tightened such that the fixing rib 133a can be connected to the planar portion 112. Therefore, unlike the related art in which the screw is completely unscrewed in order to achieve attachment and detachment, the attachment and detachment can be achieved in a state in which the screw 134 is loosely coupled, and accordingly, it is possible to easily mount the spraying member 120 to the cutting tool T without the risk of losing a screw 134.
Meanwhile, the positions of the screw locking groove 133 and the screw 134 may be determined such that the screw locking groove 133 is locked with the screw 134 at a position corresponding to where a front end of the protrusion slider 132 is locked with an end of the guide groove 131. Therefore, when the front end of the protrusion slider 132 is locked with the end of the guide groove 131, that is, when the spraying member 120 is moved until the protrusion slider 132 is completely slid into the guide groove 131, the screw locking groove 133 can be accurately positioned in the screw 134, thus facilitating the assembly. Alternatively, the position of the screw 134 may be set such that, when the screw locking groove 133 is locked with the screw 134 at the time of mounting the spraying member 120 to the cutting tool, as shown in
In addition, as shown in
In this particular case, the cooling water flow path part 121 may be formed in the direction of the first diagonal length A1, and the spraying member 120 may be slid in the direction of the second diagonal length A2 to be attached to or detached from the head part 110. Therefore, by the structure that slides in the direction of the second diagonal length A2, which is relatively shorter in length, the sliding distance can be minimized, and the attachment and detachment time can be further reduced.
In addition, as shown in
The present disclosure has been described in detail. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the disclosure, are given by way of illustration only, since various changes and modifications within the scope of the disclosure will become apparent to those skilled in the art from this detailed description.
The present disclosure relates to a cutting insert cooling device capable of spraying cooling water toward a cutting insert, and thus has industrial applicability.
Number | Date | Country | Kind |
---|---|---|---|
10-2017-0060453 | May 2017 | KR | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/KR2018/002958 | 3/14/2018 | WO | 00 |