Novel diamond circular saw blade
Technical Field
The utility model relates to the field of saw blades, in particular to a novel diamond circular saw blade.
Background
The diamond saw blade is a cutting tool and is widely applied to processing of hard and brittle materials such as concrete, refractory materials, stone materials, ceramics and the like. The diamond saw blade mainly comprises two parts; a base body and a cutter head. The base is the main support portion for the bonded bit. The tool bit is a part which is cut in the using process, the tool bit can be continuously consumed in the using process, the base body can not be used, and the tool bit can cut because the tool bit contains diamond which is the hardest substance and rubs and cuts a processed object in the tool bit. And the diamond particles are wrapped inside the tool bit by metal.
However, the existing saw blade often only comprises a cutting groove with one depth, which is not beneficial to improving the structural strength of the saw blade while ensuring the depth of the cutting groove. Therefore, how to develop a novel diamond circular saw blade is a problem to be solved by those skilled in the art.
Disclosure of utility model
The utility model aims to provide a novel diamond circular saw blade, which solves the problem that the existing saw blade often only comprises a cutting groove with one depth, and is not beneficial to improving the structural strength of the saw blade while ensuring the depth of the cutting groove.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the utility model relates to a novel diamond circular saw blade, which comprises a saw blade body, wherein the saw blade body comprises a mounting area and a working area, and the working area is arranged at the edge of the mounting area; the working area comprises a main cutting groove and an auxiliary cutting area, the main cutting groove and the auxiliary cutting area are alternately arranged, a plurality of auxiliary cutting grooves are arranged in the auxiliary cutting area, and the depth of each auxiliary cutting groove is smaller than that of the main cutting groove.
Further, the arrangement layout of the cutting grooves of the working area on the front side of the saw blade body is the same as that of the cutting grooves of the working area on the back side of the saw blade body.
Further, the main cutting groove on the front surface of the saw blade body corresponds to the auxiliary cutting area on the back surface of the saw blade body.
Further, a mounting hole is formed in the middle of the mounting area, and a lightening hole is formed in the edge of the mounting area.
Further, the surface of the installation area is sprayed with protective paint.
Further, the main cutting groove is obliquely arranged, a guide inclined plane is arranged at the edge of the main cutting groove, and the outermost end of the main cutting groove is communicated with the external connection.
Further, the auxiliary cutting region includes a first auxiliary cutting groove, a second auxiliary cutting groove, a third auxiliary cutting groove, a fourth auxiliary cutting groove, a fifth auxiliary cutting groove, and a sixth auxiliary cutting groove.
Further, the fourth auxiliary cutting groove is obliquely arranged in the auxiliary cutting area, the fourth auxiliary cutting groove penetrates through the auxiliary cutting area, the first auxiliary cutting groove, the second auxiliary cutting groove and the third auxiliary cutting groove are located on the outer side of the fourth auxiliary cutting groove, and the fifth auxiliary cutting groove and the sixth auxiliary cutting groove are located on the inner side of the fourth auxiliary cutting groove.
Further, the first auxiliary cutting groove is communicated with the adjacent main cutting groove; the fifth auxiliary cutting flute communicates with an adjacent main cutting flute.
Compared with the prior art, the utility model has the beneficial technical effects that:
The auxiliary cutting areas are inserted between the main cutting grooves, so that the structural strength and the safety of the saw blade are improved while the cutting performance is not affected; the auxiliary cutting areas of the novel diamond circular saw blade are internally provided with a plurality of auxiliary cutting grooves, and the depth of each auxiliary cutting groove is smaller than that of the main cutting groove, so that the effects of auxiliary cutting and auxiliary chip removal are achieved; the novel diamond circular saw blade is provided with the lightening holes in the installation area, so that the weight of the saw blade is conveniently lightened, and materials are saved. In general, the novel diamond circular saw blade disclosed by the utility model is ingenious in design, high in safety and practical in function, and the problem that the existing saw blade only comprises a cutting groove with one depth, so that the structural strength of the saw blade is not beneficial to being improved while the depth of the cutting groove is ensured is effectively solved.
Drawings
The utility model is further described with reference to the following description of the drawings:
FIG. 1 is a schematic diagram of the front structure of a novel diamond circular saw blade according to the present utility model;
FIG. 2 is a schematic view of the back surface structure of the novel diamond circular saw blade of the present utility model;
FIG. 3 is an enlarged view of the point A in FIG. 1;
Fig. 4 is a sectional view of B-B in fig. 1.
Reference numerals illustrate: 1. a saw blade body; 2. an installation area; 201. a mounting hole; 202. a lightening hole; 3. a working area; 301. a main cutting groove; 302. an auxiliary cutting zone; 303. a first auxiliary cutting groove; 304. a second auxiliary cutting groove; 305. a third auxiliary cutting groove; 306. a fourth auxiliary cutting groove; 307. a fifth auxiliary cutting groove; 308. and a sixth auxiliary cutting groove.
Detailed Description
As shown in fig. 1 to 4, a novel diamond circular saw blade includes a blade body 1. The blade body 1 comprises a mounting area 2 and a working area 3, said working area 3 being arranged at the edge of the mounting area 2.
The working area 3 comprises a main cutting groove 301 and an auxiliary cutting area 302, the main cutting groove 301 and the auxiliary cutting area 302 are alternately arranged, a plurality of auxiliary cutting grooves are arranged in the auxiliary cutting area 302, and the depth of each auxiliary cutting groove is smaller than that of the main cutting groove 301.
The arrangement of the cutting grooves of the working area 3 on the front side of the saw blade body 1 is the same as that of the cutting grooves of the working area 3 on the back side of the saw blade body 1. But the main cutting slot 301 in the front side of the blade body 1 corresponds to the auxiliary cutting zone 302 in the back side of the blade body 1.
The middle position of the installation area 2 is provided with an installation hole 201, and the edge position of the installation area 2 is provided with a lightening hole 202, which is used for saving materials and lightening the weight of the saw blade body 1.
The surface of the installation area 2 is sprayed with protective paint.
Specifically, the main cutting groove 301 is obliquely disposed, a guiding inclined plane is disposed at an edge of the main cutting groove 301, and an outermost end of the main cutting groove 301 is communicated with the external connection.
The auxiliary cutting area 302 includes a first auxiliary cutting groove 303, a second auxiliary cutting groove 304, a third auxiliary cutting groove 305, a fourth auxiliary cutting groove 306, a fifth auxiliary cutting groove 307, and a sixth auxiliary cutting groove 308.
The fourth auxiliary cutting groove 306 is disposed in the auxiliary cutting area 302 in an inclined manner, the fourth auxiliary cutting groove 306 penetrates the auxiliary cutting area 302, the first auxiliary cutting groove 303, the second auxiliary cutting groove 304 and the third auxiliary cutting groove 305 are located at the outer side of the fourth auxiliary cutting groove 306, and the fifth auxiliary cutting groove 307 and the sixth auxiliary cutting groove 308 are located at the inner side of the fourth auxiliary cutting groove 306.
The first auxiliary cutting groove 303 communicates with the adjacent main cutting groove 301; the fifth auxiliary cutting groove 307 communicates with the adjacent main cutting groove 301.
The direction of rotation of the blade body 1 is marked in fig. 1 and 2. The inclination direction of the main cutting groove 301 is the same as the inclination direction of the first, second, third, fourth, fifth and sixth auxiliary cutting grooves 303, 304, 305, 306, 307, 308.
The above embodiments are only illustrative of the preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model, and various modifications and improvements made by those skilled in the art to the technical solutions of the present utility model should fall within the protection scope defined by the claims of the present utility model without departing from the design spirit of the present utility model.