RECLINER SHAFT FOR VEHICLE SEAT
20200290486 ยท 2020-09-17
Inventors
Cpc classification
B60N2/2252
PERFORMING OPERATIONS; TRANSPORTING
F16C2226/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60N2/225
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A recliner shaft includes first parts which are spaced apart from each other and form portions of a cylindrical shape, and second parts connecting the first parts and formed so as to form protrusions by protruding outward from the cylindrical shape. The second parts include a first spline protrusion and a second spline protrusion which have the same shape, and are disposed to be symmetrical with respect to a virtual straight line passing through a center of the cylindrical shape.
Claims
1. A recliner shaft, comprising: first parts which are spaced apart from each other and form portions of a cylindrical shape; and second parts connecting the first parts and formed so as to form protrusions by protruding outward from the cylindrical shape, the second parts comprising a first spline protrusion and a second spline protrusion which have the same shape, and are disposed to be symmetrical with respect to a virtual straight line passing through a center of the cylindrical shape.
2. The method of claim 1, wherein the second parts further comprise a third spline protrusion and a fourth spline protrusion which are disposed on the virtual straight line.
3. The method of claim 2, wherein the third spline protrusion and the fourth spline protrusion have the same shape.
4. The method of claim 2, wherein the third spline protrusion and the first spline protrusion have the same shape.
5. The method of claim 4, wherein the third spline protrusion and the fourth spline protrusion are spaced apart from each other and disposed at a predetermined angle along a circumferential direction of the cylindrical shape; and the fourth spline protrusion and the first spline protrusion are spaced apart from each other and disposed at an angle which is greater than the predetermined angle along the circumferential direction of the cylindrical shape.
6. The method of claim 5, wherein a length of an outer circumferential surface of the fourth spline protrusion is greater than a length of an outer circumferential surface of the third spline protrusion.
7. The method of claim 6, wherein the fourth spline protrusion comprises a first curved surface portion in contact with a virtual circle having a center as the center of the cylindrical shape, and a second curved surface portion having a center of curvature at a point outside the cylindrical shape and curved at a predetermined curvature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The above and other features of the inventive concept will become more apparent by describing in detail exemplary embodiments thereof with reference to the accompanying drawings, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028] Hereinafter, the inventive concept will be explained in detail with reference to the accompanying drawings.
[0029]
[0030] Referring to
[0031] The first parts I are spaced apart from each other so that the recliner shaft 100 has the cylindrical shape formed so as to be cut off in the middle. The second parts II are disposed between the first parts I to connect the first parts I. In addition, the second parts II are formed so as to form spline protrusions 300 by protruding outward from the cylindrical shape formed by the first parts I.
[0032] The second part II may transmit a rotational force by being caught in a spline groove of the recliner device 20. In other words, the second parts II are formed so as to be engaged with the spline grooves (not shown) formed in the recliner device 20 by taking the shape of the spline protrusions 300 protruding out of the cylindrical shape. The second parts II engaged in the spline grooves when the recliner shaft 100 rotates may transmit torque to the recliner device 20 (refers to
[0033] Referring to
[0034] The recliner shaft 100 has a shape in which a cross section of a specific shape is elongated in one direction. According to the figures, the second parts II and the first parts I extend in a straight line in a longitudinal direction of the recliner shaft 100. In the figures, both ends of the recliner shaft 100 are shown to have the same shape, but according to another embodiment, both ends may be formed to have different shapes.
[0035] A hollow is formed inside the recliner shaft 100. In other words, the recliner shaft 100 has a pipe shape with a hole in the center.
[0036] The hollow of the recliner shaft 100 may have a specific shape. For example, in the center of the hollow, a virtual circle having a certain radius may be drawn with respect to a center M1 of the body 200, and a hollow protrusion in which a portion of a circumference of the virtual circle a protrudes to the outside can be formed.
[0037] The hollow protrusion may have a virtual rectangular shape having a curvature at an edge as shown in the figures. In addition, according to another embodiment of the present invention, the hollow protrusions may be formed to have a virtual circular, semicircular or elliptic shape.
[0038]
[0039] Referring to
[0040] Hereinafter, for convenience of explanation, the spline protrusion in a left side in the figure is referred to as a first spline protrusion 301, and the spline protrusion in a right side in the figure is referred to as a second spline protrusion 302.
[0041] The spline protrusion in a lower side in the figure is referred to as a third spline protrusion 303, and the spline protrusion in an upper side in the figure is referred to as a fourth spline protrusion 304.
[0042] As described in the figure, the first spline protrusion 301 and the second spline protrusion 302 are formed to be symmetrical with respect to the center M1 of the body and the third spline protrusion 303. The fourth spline protrusion 302 and the spline protrusions 304 are formed to be symmetrical to each other.
[0043] Here, the first spline protrusion 301 and the second spline protrusion 302, the second spline protrusion 302 and the third spline protrusion 303, the third spline protrusion 303 and the fourth spline protrusion 304, the spline protrusion 304 and the first spline protrusion 301 are spaced apart from each other at the same 90 degree intervals with respect to the center M1 of the body 200. As described in the figure, the first spline protrusion 301 and the second spline protrusion 302 have the same shape, and the third spline protrusion 303 and the fourth spline protrusion 304 have the same shape, but according to another embodiment, the spline protrusions may have the same shape or all the spline protrusions may have different shapes.
[0044] The recliner shaft 100 may be divided into first parts I constituting portions of a cylindrical shape and second parts II connecting the first parts I for convenience of explanation.
[0045] For example, a portion forming the body 200 of the recliner shaft 100 may be referred to as the first part I, and a portion where the spline protrusion 300 is formed may be referred to as the second part II.
[0046] An inner circumferential surface connecting portion and an outer circumferential surface connecting portion are formed between the spline protrusion 300 and the body 200.
[0047] The inner circumferential surface connection portion connects an inner circumferential surface 310 of the spline protrusion 300 and an inner circumferential surface 210 of the body 200. The outer circumferential surface connecting portion connects an outer circumferential surface 320 of the spline protrusion 300 and an outer circumferential surface 220 of the body 200.
[0048] As shown, a curved surface portion 222 is formed at an end of the outer circumferential surface 320 of the spline protrusion 300. The curved surface portion 222 curves with a predetermined curvature with respect to a curvature center M2. An extended portion 224 extending toward the outer circumferential surface 220 of the body 200 is formed at one end of the curved surface portion 222. The curved surface portion 222 is formed so as to occupy a thickness of r at the spline protrusion 300.
[0049] The spline protrusions 300 may be formed to have a constant inclination. For example, as shown in the figure, both sides of the spline protrusion 302 may be inclined so as to have an angle of 1 with respect to each other.
[0050] As a specific example of the present invention, when a diameter of the outer circumferential surface 220 of the body 200 is 7.6, a diameter of the outer circumferential surface 320 of the spline protrusion 300 is 10.6. At this time, a width of the fourth spline protrusion 304 is 5.1 and a radius of the first curved portion is 0.5. The thickness r is 0.05 times the diameter of the outer peripheral surface 320 of the spline projection 300. The 1 is 26 degrees.
[0051]
[0052] Referring to
[0053] The recliner shaft according to the present embodiment has a shape in which a cross section of a specific shape is elongated in one direction like the recliner shaft shown in
[0054] A hollow is formed inside the recliner shaft 100. In other words, the recliner shaft 100 has a pipe shape with a hole in the center.
[0055] The hollow of the recliner shaft 100 may have a specific shape. For example, in the center of the hollow, a virtual circle having a certain radius may be drawn with respect to a center M1 of the body 200, and a hollow protrusion in which a portion of a circumference of the virtual circle a protrudes to the outside can be formed.
[0056] The hollow protrusion may have a virtual rectangular shape having a curvature at an edge as shown in the figures. In addition, according to another embodiment of the present invention, the hollow protrusions may be formed to have a virtual circular, semicircular or elliptic shape.
[0057]
[0058] According to the present embodiment, at least one of four spline protrusions may have a different shape. That is, as illustrated, the fourth spline protrusion 304 may be formed to be larger than the first, second and third spline protrusions. A length of an outer circumferential surface of the fourth spline protrusion 304 is formed to be larger than length of outer circumferential surfaces of the other spline protrusions.
[0059] Referring to
[0060] In this case, the first spline protrusion 301 and the second spline protrusion 302 are disposed to be symmetrical with respect to a virtual straight line passing through a center M1 of the cylinder shape. The third spline protrusion 303 and the fourth spline protrusion 304 are disposed on the virtual straight line. That is, a cross section of the recliner shaft is symmetrical to left and right in the figure.
[0061]
[0062] Referring to
[0063]
[0064] Referring to
[0065] A first extending portion 228 and a third curved portion 229 may be formed between the first curved surface portion 225 and the second curved surface portion 226. The first extending portion 228 is a plane connecting the second curved surface portion 226 and the third curved surface portion 229. The third curved surface portion 229 is formed to have a predetermined curvature with a point M4 as a center of curvature. Depth 22 of the recessed groove may be formed such that a distance between the outer circumferential surface 320 and the inner circumferential surface 310 of the spline protrusion is equal to a thickness of the cylindrical shape.
[0066] As a specific example of the present invention, when a diameter of the outer circumferential surface 320 of the fourth spline protrusion 320 is 10.6, the depth of the recessed groove is 0.8, the radius of the second curved surface 226 is 1, and the radius of the third curved surface 229 is 0.5. In this case, the angle 3 of the recessed groove is 120 [deg.]
[0067]
[0068] A spline protrusion 300 protruded from an outer circumferential surface of a recliner shaft 100 is engaged with a spline groove (not shown) of a recliner device 20 to transmit a rotational force of the recliner shaft 100 to the recliner device 20. At this time, since the spline protrusion 300 and a groove portion 400 are formed as described above, the recliner shaft 100 is formed in a hollow shape capable of reducing weight and material cost compared to conventional ones, and has enough strength capable of preventing a twist deformation.
[0069] The foregoing is illustrative of the inventive concept and is not to be construed as limiting thereof. Although a few exemplary embodiments of the inventive concept have been described, those skilled in the art will readily appreciate that many modifications are possible in the exemplary embodiments without materially departing from the novel teachings and advantages of the inventive concept. Accordingly, all such modifications are intended to be included within the scope of the inventive concept as defined in the claims. In the claims, means-plus-function clauses are intended to cover the structures described herein as performing the recited function and not only structural equivalents but also equivalent structures. Therefore, it is to be understood that the foregoing is illustrative of the inventive concept and is not to be construed as limited to the specific exemplary embodiments disclosed, and that modifications to the disclosed exemplary embodiments, as well as other exemplary embodiments, are intended to be included within the scope of the appended claims. The inventive concept is defined by the following claims, with equivalents of the claims to be included therein.