CERAMIC CUTTING TEETH-DOVETAILED CUTTING DEVICE OF CUTTING-TYPE RICE MILLING MACHINE
20220355306 · 2022-11-10
Assignee
Inventors
Cpc classification
International classification
Abstract
The present invention relates to a ceramic cutting teeth-dovetailed cutting device of a cutting-type rice milling machine. In general, a cutting tool is used to cut outer bran of brown rice in a cutting-type rice milling machine. Here, the cutting tool is configured of a combined body in which cutting rings and spacer rings are alternately combined, and the cutting rings have a ring shape with a uniform thickness and have an outer circumference on which gear-shaped trapezoidal cutting teeth are formed to cut outer bran of brown rice by edge portions of the cutting teeth such that white rice is produced. More specifically, the invention relates to a cutting device used in a rice milling machine, the cutting device having a configuration in which a main cutting-device body is dovetailed with cutting teeth.
Claims
1. A cutting device (100) of a cutting-type rice milling machine, wherein the cutting device (100) has fitting grooves (12) in a length direction of the main cutting-device body (11) at equal intervals along an outer circumferential surface of the main cutting-device body (11), wherein the fitting grooves (12) are dovetailed with cutting teeth (15) and spacer members (15b), wherein the cutting teeth (15) are made of a sintered material, and the spacer members (15b) are made of a sintered material or the same material as a material of the main cutting-device body (11), wherein the fitting grooves (12) have a structure in which a width between both fitting side-surfaces (12b) is narrowed as both fitting side-surfaces are more extended from a fitting bottom (12b), and wherein the cutting teeth (15) have a shape of being narrowed from a bottom (15a) of each of the cutting teeth toward a cutting blade edge (18).
2. The cutting device of a cutting-type rice milling machine according to claim 1, wherein the spacer members (15b) are each narrowed from the bottom (15a) of each of the cutting teeth toward the cutting blade edge (18), and the spacer members (15b) are half a height of the cutting teeth (15).
3. The cutting device of a cutting-type rice milling machine according to claim 1, wherein the cutting teeth (15) and the spacer members (15b) are alternately fitted into the fitting grooves (12), and are arranged to form a circular shape or a helical shape along the outer circumferential surface of the main cutting-device body (11), respectively.
4. The cutting device of a cutting-type rice milling machine according to claim 1, wherein only the cutting teeth (15) are fitted into one or more fitting grooves (12).
5. The cutting device of a cutting-type rice milling machine according to claim 1, wherein the main cutting-device body (11) has a plurality of through-holes (14) in a cutting passage (13) in a direction toward an inner central portion.
6. A cutting device (100) of a cutting-type rice milling machine, wherein the cutting device (100) includes cutting rings (10) having fitting grooves (12) in a length direction of a main cutting-device body (11) at equal intervals along an outer circumferential surface of the entirely ring-shaped main cutting-device body (11), cutting teeth (15) being fitted into the fitting grooves (12), and spacer rings (20) having a uniform thickness disposed between the cutting rings (10), wherein the fitting grooves (12) have a structure in which a width between both fitting side-surfaces (12b) is narrowed as both fitting side-surfaces are more extended from a fitting bottom (12a), wherein the cutting teeth (15) have a shape of being narrowed from a bottom (15a) of each of the cutting teeth toward a cutting blade edge (18), and wherein the cutting teeth (15) are made of a sintered material.
7. The cutting device of a cutting-type rice milling machine according to claim 6, wherein the cutting teeth (15) are fitted into the fitting grooves (12) using an adhesive.
8. The cutting device of a cutting-type rice milling machine according to claim 6, wherein each of the spacer rings (20) has one or more fitting grooves (12), and the cutting teeth (15) are dovetailed into the fitting grooves (12).
9. The cutting device of a cutting-type rice milling machine according to claim 6, wherein each of the spacer rings (20) have a cutout portion (21).
10. The cutting device of a cutting-type rice milling machine according to claim 2, wherein the main cutting-device body (11) has a plurality of through-holes (14) in a cutting passage (13) in a direction toward an inner central portion.
11. The cutting device of a cutting-type rice milling machine according to claim 3, wherein the main cutting-device body (11) has a plurality of through-holes (14) in a cutting passage (13) in a direction toward an inner central portion.
12. The cutting device of a cutting-type rice milling machine according to claim 4, wherein the main cutting-device body (11) has a plurality of through-holes (14) in a cutting passage (13) in a direction toward an inner central portion.
13. The cutting device of a cutting-type rice milling machine according to claim 7, wherein each of the spacer rings (20) have a cutout portion (21).
14. The cutting device of a cutting-type rice milling machine according to claim 8, wherein each of the spacer rings (20) have a cutout portion (21).
Description
BRIEF DESCRIPTION OF DRAWINGS
[0029] The above and other objects, features and advantages of the present is invention will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which:
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REFERENCE SIGNS LIST
[0041] 11: main cutting-device body [0042] 12: multiple fitting grooves [0043] 12a: fitting bottom [0044] 12b: fitting side-surfaces [0045] 13: cutting passage [0046] 14: through-holes [0047] 15: cutting teeth [0048] 15a: bottom of cutting teeth [0049] 15b: spacer member [0050] 18: cutting blade edge [0051] 20: space ring [0052] 21: cutout portion [0053] 100: cutting device
BEST MODE
Mode for Invention
[0054] Hereafter, the function, configuration, and operation of a ceramic cutting teeth-dovetailed cutting device of a cutting-type rice milling machine according to the present invention are described in detail with reference to the accompanying drawings.
[0055] A cutting device (100) for rice milling of a first embodiment of the invention illustrated in
[0056] The entire main cutting-device body (11) according to the first embodiment has a pipe shape and has a shape formed by fitting the cutting teeth (15) made of a sintered material at equal intervals along an outer circumference of the main cutting-device body (11).
[0057] The main cutting-device body (11) has a through-hole at a central portion thereof and has multiple fitting grooves (12) at the outer circumference in a length direction of the pipe shape.
[0058] An external surface of the main cutting-device body (11) becomes a cutting passage (13), and the fitting grooves (12) are formed between the cutting passage (13) and the cutting passage (13). The cutting teeth (15) and spacer members (15b), which will described below, are alternately fitted into the fitting grooves (12).
[0059] The fitting groove (12) has fitting side-surfaces (12b) formed at both sides from a fitting bottom (12a) and has a structure in which a width between the fitting side-surfaces is narrowed from the fitting bottom (12a) toward the external surface of the main cutting-device body (11).
[0060] The entire cutting tooth (15) and the entire spacer member (15b) which are dovetailed into the fitting grooves have a structure of having a trapezoidal shape which is narrowed in a direction from a bottom (15a) of the cutting tooth (15) toward a cutting blade edge (18).
[0061] In other words, when the cutting teeth (15) and the spacer members (15b), which will be described below, are dovetailed into the fitting grooves (12), selecting this structure enables the cutting teeth (15) and the spacer members (15b) not to easily fall out even when the cutting device (100) rotates quickly.
[0062] On the other hand, the main cutting-device body (11) does not determine cutting performance, and thus, does not need to maintain a high hardness.
[0063] Therefore, the main cutting-device body can be made of general steel and also does not need to be subjected to additional heat treatment.
[0064] Next, a structure of the cutting teeth (15) which are dovetailed into the fitting grooves (12) of the main cutting-device body (11) will be described.
[0065] The cutting teeth (15) having a uniform thickness (t) have a trapezoidal shape, the thickness is the same thickness (t) at an undersurface and a top surface thereof, and the cutting teeth are made of a hard metal alloy or a ceramic material fora tool.
[0066] The bottom (15a) of the cutting tooth is dovetailed into the fitting groove (12) of the main cutting-device body (11), and the entire cutting tooth has a structure of having a trapezoidal shape which is narrowed in a direction from the bottom (15a) of the cutting tooth toward the cutting blade edge (18).
[0067] In other words, when the main cutting-device body (11) is dovetailed with the cutting teeth (15) as described above, selecting the trapezoidal structure of the cutting teeth (15) enables the cutting teeth not to fall out even when the cutting device (100) rotates at a high speed.
[0068] On the other hand, the cutting blade edge (18) of the cutting tooth (15) desirably has an angle of larger than 90° and smaller than 104°. When the cutting blade edge has an angle of smaller than 90°, it is difficult to dovetail the cutting teeth (15) with the main cutting-device body (11). When the cutting blade edge (18) has an angle of larger than 104°, shortcomings are as follows. Cutting resistance increases to cause an increase in energy consumption, and a cut surface of a rice grain is rough. A desirable angle of the cutting blade edge is from 95° to (100)°, the cutting teeth (15) can be more strongly fitted into the fitting grooves (12) using an adhesive.
[0069] Next, a structure of the spacer member (15b) which is dovetailed between the cutting tooth (15) and the cutting tooth (15) will be described. The spacer member (15b) has a shape approximately similar to a shape of a lower half of the cutting tooth (15).
[0070] In other words, the spacer member has a trapezoidal shape having a uniform thickness (t), the thickness is the same thickness (t) at an undersurface and a top surface thereof, and a material thereof is the same material as the material (hard metal alloy or ceramic material) of the cutting tooth or as the material of the main cutting-device body (11).
[0071] On the other hand, the cutting passage (13) of the main cutting-device body can have small through-holes (14) formed in a direction toward an inner central portion of the main cutting-device body. The through-holes (14) are formed in plurality as air holes.
[0072] When the spacer members (15b) are made of the same material as that of the main cutting-device body (11), the spacer members (15b) have the through-holes (14), and the through-holes (14) can be formed at positions of the main cutting-device body (11) which correspond to the through-holes of the spacer members.
[0073] On the other hand, the cutting teeth (15) can be arranged in various forms depending on a method of fitting the cutting teeth (15) and the spacer members (15b) into the fitting grooves (12) of the main cutting-device body (11).
[0074] In other words, when ‘a cutting tooth (15) and a spacer member (15b)’ are fitted into the fitting grooves (12) of the main cutting-device body (11) respectively, the cutting teeth (15) are opposed to each other and the spacer members (15b) are fitted in a position opposite to each other. At this time, as shown in
[0075] In addition, as illustrated in
[0076] A second embodiment of the invention relates to a cutting device (100) configured to include a main cutting-device body (11) in which cutting rings (10) and spacer rings (20) are alternately combined with each other, the cutting rings (10) being dovetailed with cutting teeth (15) which are dovetailed with the main body (11).
[0077] In other words, the second embodiment provides a structure in which a cutting tooth portion of a cutting ring in Patent Literature 1 is separately made of a ceramic material and is combined.
[0078] According to the second embodiment of the invention, as illustrated in
[0079] The entire main cutting-device body (11) has a ring shape and has a flat gear shape in which the cutting teeth (15) made of a sintered material are arranged at equal intervals along an outer circumference of the main cutting-device body (11).
[0080] The main cutting-device body (11) has a ring shape having a through-hole at a central portion thereof, having multiple fitting grooves (12) at the outer circumference thereof, and having a thickness (t).
[0081] An external surface of the main cutting-device body (11) becomes a cutting passage (13), and fitting grooves (12) are formed between the cutting passage (13) and the cutting passage (13). The cutting teeth (15), which will be described below, are fitted into the fitting grooves (12).
[0082] The fitting groove (12) has fitting side-surfaces (12b) formed at both sides from a fitting bottom (12a) and has a structure in which a width between the fitting side-surfaces is narrowed from the fitting bottom (12a) toward the external surface of the main cutting-device body (11).
[0083] The entire cutting tooth (15) and the entire spacer member (15b) which are dovetailed into the fitting grooves have a structure of having a trapezoidal shape which is narrowed in a direction from a bottom (15a) of the cutting tooth (15) toward a cutting blade edge (18) of the cutting tooth.
[0084] In other words, when the cutting teeth (15) and the spacer members (15b), which will be described below, are dovetailed into the fitting grooves (12), selecting this structure enables the cutting teeth (15) and the spacer members (15b) not to easily fall out even when the cutting device (100) rotates quickly.
[0085] On the other hand, the main cutting-device body (11) does not determine cutting performance, and thus, does not need to maintain a high hardness. Therefore, the main cutting-ring body can be made of general steel and also does not need to be subjected to additional heat treatment.
[0086] Next, a structure of the cutting teeth (15) which are dovetailed with the main cutting-ring body (10) will be described. The cutting teeth (15) have a trapezoidal shape having a uniform thickness (t), the thickness is the same thickness (t) at an undersurface and a top surface thereof, and the cutting teeth are made of a hard metal alloy or a ceramic material for a tool.
[0087] The bottom (15a) of the cutting tooth is dovetailed into the fitting groove (12) of the main cutting-device body (11), and the entire cutting tooth has a structure of having a trapezoidal shape which is narrowed in a direction from the bottom (15a) of the cutting tooth toward the cutting blade edge (18).
[0088] In other words, when the main cutting-device body (11) is dovetailed with the cutting teeth (15) as described above, selecting the trapezoidal structure of the cutting teeth (15) enables the cutting teeth not to fall out even when the cutting device (100) rotates at a high speed.
[0089] On the other hand, the cutting blade edge (18) of the cutting tooth (15) desirably has an angle of larger than 90° and smaller than 104°. When the cutting blade edge has an angle of smaller than 90°, it is difficult to dovetail the cutting teeth (15) with the main cutting-device body (11). When the cutting blade edge (18) has an angle of larger than 104°, shortcomings are as follows. Cutting resistance increases to cause an increase in energy consumption, and a cut surface of a rice grain is rough. A desirable angle of the cutting blade edge is from 95° to (100)°, the cutting teeth (15) can be more strongly fitted into the fitting grooves (12) using an adhesive.
[0090] Next, a structure of the space ring (20) which is dovetailed between the cutting tooth (15) and the cutting tooth 15 will be described. The spacer ring (20) has a ring shape having a uniform thickness and has a support shaft inserting hole penetrating the spacer ring at a center.
[0091] A cutout portion (21) is an open cutout portion (21) through which an inner circumferential surface and an outer circumferential surface of the spacer ring (20) communicate with each other, and the cutout portion is used as a passage through which air supplied from the outside is discharged when the cutting device (100) is assembled.
[0092] On the other hand, in the second embodiment illustrated in