The invention relates generally to a tool sharpening technique and, more particularly, to an improved process for honing edges of a cutting tool.
Cutting edge honing is the process of slightly rounding off the cutting edges of a cutting tool or tool bit. Newly ground cutting tools often have cutting edges that are very sharp, which tend to rapidly wear and/or weaken at the tips leading to breaking of the tool. Thus, the cutting edges are “honed” or slightly rounded off by creating a rounded edge having a very small radius on the cutting edges, such that these problems are reduced and greater stability of the tool at low rotation speeds is enabled, without significantly reducing the effectiveness of the cutting tool.
Known cutting edge honing methods include: extrude honing, in which a putty loaded with granular abrasive is used; Burlytic™ systems, an electro-chemical deburring method using a power source and an electrolyte solution; and brushing and tumbling techniques. However, disadvantages exits with these known honing methods. Most of these methods are either time consuming and expensive, difficult to perform and control, or fail to ensure consistent and repeatable results resulting in cutting edges which are not evenly smooth.
Accordingly, an improved cutting edge honing process is desired.
It is therefore an object of this invention to provide an improved cutting edge honing process.
In a first aspect, the present invention provides a method of honing cutting edges of a rotary cutting tool comprising: inserting the cutting tool into a liquid bath having an abrasive media therein such that at least the cutting edges are immersed; and providing a relative displacement of the cutting tool and the liquid bath such that the abrasive media flows over the cutting edges.
In a second aspect, the present invention provides a cutting tool honing system comprising: a liquid bath within which a cutting tool is receivable, the bath including an abrasive granular media therein; and a cutting tool holder adapted for engaging the cutting tool, the cutting tool holder being operable to rotate the cutting tool about a central axis thereof and to displace the cutting tool within the bath, wherein a flow of the abrasive granular media relative to cutting edges of the cutting tool hones said cutting edges.
In a third aspect, the present invention provides a cutting edge honing process comprising: providing a cutting tool having at least one cutting edge; inserting the cutting tool into a liquid abrasive media bath such that at least the cutting edge is immersed; rotating the cutting tool within the abrasive media bath; and providing a relative displacement of the cutting tool and the liquid abrasive media bath flow.
Further details of these and other aspects of the present invention will be apparent from the detailed description and figures included below.
Reference is now made to the accompanying figures depicting aspects of the present invention, in which:
a is a cross-section of a cutting tool;
b is a detailed view of a cutting edge of the cutting tool of
a is a top plan view of a cutting tool in a cutting edge honing bath in accordance with the present invention;
b is a more detailed top plan view of the cutting tool of
Referring to
The cutting tool honing system and process of the present invention is depicted generally in
The abrasive media 22 preferably comprises very small abrasive granules within a liquid mixture including water and soap. However, other abrasive media mixtures can be employed provided the abrasive granules are small, such that a relative fine honing of the cutting edges 12 is enabled, and thus creating a very small and smooth radius along the full length of the cutting edges 12.
As seen in
As seen in
The cutting edge honing process of the present invention is both time and cost effective, and requires significantly less operator skill and setup time than known honing processes. Further, the present cutting edge honing process provides reliable and repeatable edge honing which is easily controllable by adjusting easily varied parameters such as cutting tool rotation speed, and abrasive media flow speed and direction. The cutting edge honing process of the present application is also easily applicable to cutting tools of different types, such as end mills, inserts and helical milling cutters for example.
Referring to
The above description is meant to be exemplary only, and one skilled in the art will recognize that changes may be made to the embodiments described without department from the scope of the invention disclosed. For example, the abrasive media mixture may be composed of different sizes and varieties of abrasive particles, within a liquid with may be water or any other suitable liquid which can be readily circulated in the bath as necessary. Further, shapes and configurations of abrasive media baths other than that described and depicted can be used. Various relative flow circulation and cutting tool displacement patterns may also be employed to hone the cutting edges of the cutting tool immersed in the abrasive media bath. One skilled in the art will also understand that the length of time required in the abrasive media bath, along with the specific flow velocity, cutting tool rotational speed and other operational characteristics of the system, will depend on the cutting tool material and type, and the amount of cutting edge honing required for the particular tool application. Still other modifications which fall within the scope of the present invention will be apparent to those skilled in the art, in light of a review of this disclosure, and such modifications are intended to fall within the appended claims.
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