TIRE PATTERN STRUCTURE

20190366776 ยท 2019-12-05

    Inventors

    Cpc classification

    International classification

    Abstract

    A tire pattern structure including a tread pattern and a sidewall pattern is formed by uniformly distributed patterns in the circumferential direction of a tire. The tread pattern is formed by two long spoon-shaped pattern blocks symmetrical with respect to the center of the tire tread and the axial direction of the tire. A spoon-shaped pattern block group is across the center of the tire tread and each interlaced and mapped sideway along the center of the tire tread formed by upper and lower long spoon-shaped pattern block groups. The two spoon-shaped patterns are coupled from a head block to a handle block and bent at the tire shoulder to couple the sidewall pattern formed by the upper and lower sidewall pattern blocks which are formed by a quadrilateral block of two protrusions and three recessed blocks to overcome rough terrains and provide excellent mud and water removing performance.

    Claims

    1. A tire pattern structure, comprising a tread pattern and a sidewall pattern, and the tire pattern being formed by a plurality of uniformly distributed patterns arranged in the circumferential direction of a tire, characterized in that the tread pattern is formed by two long spoon-shaped pattern blocks disposed along the center of the tire tread and symmetrically arranged with respect to the axial direction of the tire, and a spoon-shaped pattern block group is disposed across the center of the tire tread, and each spoon-shaped pattern block group is interlaced and mapped sideway along the center of the tire tread, and each spoon-shaped pattern block group is formed by upper and lower long spoon-shaped pattern block groups, and the two spoon-shaped pattern blocks have the same spoon shape of the center of the tread, and the length of the spoon block coupled to the handle block of the lower spoon-shaped pattern block is smaller than the length of the spoon block coupled to the handle block of the upper spoon-shaped pattern block, and the two spoon-shaped pattern blocks at the tire shoulders are bent to the sidewall and coupled to the sidewall patterns of the upper and lower sidewall pattern block groups in a step form respectively, and the upper and lower sidewall pattern blocks include a quadrilateral block of two protrusions, and the quadrilateral block of the first protrusion has an end coupled by the first and second recessed blocks and the tread pattern and the other end coupled to an end of the quadrilateral block of the second protrusion by the central recessed block, and the other end of the quadrilateral block of the second protrusion is coupled to the sidewall by a gradually inclined arc recessed block.

    2. The tire pattern structure of claim 1, wherein the tread pattern has a width TW equal to 4050% of the width W of the tire pattern.

    3. The tire pattern structure of claim 1, wherein the recessed block in the sidewall pattern has a length YW equal to 1535% of the width SW of the sidewall pattern, the protrusion block in the sidewall pattern has a length ZW equal to 1535% of the width SW of the sidewall pattern.

    4. The tire pattern structure of claims 3, wherein the recessed block of the sidewall pattern has a length YW equal to 90110% of the length ZW of the protrusion block.

    5. The tire pattern structure of claim 1, wherein the sidewall pattern has a width DW equal to 4060% of the width of the spoon-shaped pattern block.

    6. The tire pattern structure of claim 5, wherein the spoon-shaped pattern block includes a bridge recessed pattern with a width BW equal to 515% of the width TW of the tread pattern.

    7. The tire pattern structure of claim 1, wherein the spoon-shaped pattern block includes a head block and a handle block, and the center of the head block has two parallel slots, and the center of the handle block has a slot, and the slot of the head block has a length AW equal to 3060% of the length CW of the slot of the handle block.

    8. The tire pattern structure of claim 5, wherein the sidewall pattern in the tread pattern has a width DW equal to 80120% of the width EW of adjacent sidewall patterns.

    9. The tire pattern structure of claim 1, wherein the tread pattern has a groove depth A equal to 5080% of the depth B and a step difference C is equal to 200400% of the groove depth B.

    10. The tire pattern structure of claim 1, wherein the tread pattern and the sidewall pattern coupled to the recessed pattern at the shoulder has a long step difference LD equal to 120150% of the a short step difference SD.

    11. The tire pattern structure of claim 1, wherein the first protrusion block of the sidewall pattern arranged in the axial direction of the tire has a width W2 equal to 110130% of the width W1 of the second recessed pattern arranged in the axial direction of the tire, and the central recessed block arranged in the axial direction of the tire has a width W3 equal to 9098% of the width W1 of the second recessed pattern arranged in the axial direction of the tire, and the second protrusion block arranged in the axial direction of the tire has a width W4 equal to 105120% of the width W1 of the second recessed pattern arranged in the axial direction of the tire.

    12. The tire pattern structure of claim 1, wherein area of the tread pattern is equal to 2540% of the total area of the tire pattern, and the front bridge in the tread pattern has an area equal to 2050% of the area of the spoon-shaped pattern block, and the rear bridge in the tread pattern has an area equal to 3050% of the area of the spoon-shaped pattern block.

    13. The tire pattern structure of claim 1, wherein the spoon pattern of the tread pattern is arranged with an angle A of 515, an angle B of 05, an angle C of 520, an angle D of 2040, an angle E of 8595, an angle F of 1030, an angle G of 525, an angle H of 015, an angle I of 015, and a round corner R of 100-1500 mm.

    Description

    BRIEF DESCRIPTION OF THE DRAWINGS

    [0015] FIG. 1 is an developed view of a tire pattern structure in accordance with a preferred embodiment of the present invention;

    [0016] FIG. 2 is a cross-sectional view of a tire pattern structure in accordance with a preferred embodiment of the present invention;

    [0017] FIG. 3 is a partial enlarged view of a tire pattern structure in accordance with a preferred embodiment of the present invention;

    [0018] FIG. 4 is a partial perspective view of a tire pattern structure in accordance with a preferred embodiment of the present invention; and

    [0019] FIG. 5 is a partial front view of a tire pattern structure in accordance with a preferred embodiment of the present invention.

    DESCRIPTION OF THE PREFERRED EMBODIMENTS

    [0020] The technical characteristics, contents, advantages and effects of the present invention will be apparent with the detailed description of a preferred embodiment accompanied with related drawings as follows. The drawings are provided for the illustration, and same numerals are used to represent respective elements in the preferred embodiments. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive. Same numerals are used for representing same respective elements in the drawings.

    [0021] With reference to FIGS. 1 to 3 for a tire pattern structure of the present invention, the tire pattern (10) comprises a tread pattern (20) and a sidewall pattern (30), and the tire pattern (10) is formed by arranging and combining a plurality of uniformly distributed patterns along the circumferential direction of the tire, characterized in that the tread pattern (20) is formed by an upper spoon-shaped pattern (21) and a lower spoon-shaped pattern (22) along the center of the tire tread and with respect to the axial direction of a tire, and the long spoon-shaped pattern block group is across the center of the tire tread, and each spoon-shaped pattern block group is interlaced and mapped sideway along the center of the tire tread, wherein each spoon-shaped pattern block group is formed by an upper spoon-shaped pattern (21) and a lower spoon-shaped pattern (22), and the two spoon-shaped pattern blocks at the center of the tread have a head block (211) (221) of the same shape, and the lower spoon-shaped pattern (22) has a handle block (222) with a length smaller than the length of the handle block (212) of the upper spoon-shaped pattern (21), and the upper spoon-shaped pattern (21) and the lower spoon-shaped pattern (22) are bent at the tire shoulder (40) to the sidewall to couple a sidewall pattern (30) formed by the upper and lower sidewall pattern blocks (31), (32), and both of the upper sidewall pattern (31) and lower sidewall pattern (32) formed by a quadrilateral block of two protrusions, and the upper sidewall pattern (31) has an end coupled from a first protrusion (311) to the tread pattern (20) by a first recessed block (313) and a second recessed block (314) and the other end coupled to an end of a second protrusion block (312) by a center recession block (315), and the other end of the second protrusion block (312) is coupled to the sidewall by a gradually inclined arc recession block (316) and another lower sidewall pattern (32) has an end coupled from a first protrusion (321) to the tread pattern (20) by a first recession block (323) and a second recession block (324) and the other end coupled to an end of a second protrusion block (322) by a center recession block (325).

    [0022] In the tire pattern (10) of the present invention as shown in FIG. 1, the tread pattern (20) has a width TW equal to 4050% of the total width W of the whole tire pattern, wherein a too-small area of the tread pattern (20) may cause insufficient grip easily, and a too-large area of the tread pattern (20) may reduce the effect of removing mud easily.

    [0023] In the tire pattern (10) of the present invention as shown in FIG, 1, each recession of the sidewall pattern (30) includes a first recession (313) (323), a second recession (314) (324), a center recession (315) (325) and an arc recession (316), and each recession has a width equal to 2050% of the total width SW [(WTW)/2] of the sidewall pattern (30), and the portion left by deducting each recession from the sidewall pattern (30) is equal to 1535% of the total width SW of the first protrusion (311) (321) and the second protrusion (312) (322). If the width of the recession is too large, the protection of the sidewall will be poor. If the width of the recession is too large, the tire will be heavy.

    [0024] In FIG. 1, the area of the front bridge is equal to 2050% of the spoon-shaped pattern block, and the area of the rear bridge (which is the area of the handle block) is equal to 3050% of the spoon-shaped pattern block, and the width BW of the bridge (215) (225) is equal to 5%-15% of the total width TW. A too-small width may cause a poor effect of removing mud and water, and a too-large width may affect the effect of handling.

    [0025] In FIG. 1, the tread pattern (20) comprises a head block (211) (221) and a handle block (212) (222), and the middle of the head block (211) (221) has two parallel head block slots (213) (223), and the middle of the handle block (212) (222) has a handle block slot (214) (224), wherein the head block slot (213) (223) has a length AW equal to 3060% of the length CW of the handle block slot (214) (224), so as to adjust the elasticity of the pattern block and improve the rigidity.

    [0026] In FIG. 1, the sidewall pattern (30) has a width DW, the width DW of the sidewall pattern (30) is 80120% of the adjacent groove width EW. A too-small width will affect the anti-piercing ability, and a too-large width will result in a heavy tire. In FIG. 2, both of the tread pattern (20) and the sidewall pattern (30) are coupled to at the shoulder (40), wherein the long step difference LD of the first recession pattern (323) of the lower sidewall pattern (32) is equal to 120150% of the short step difference SD of the first recession pattern (313) of the upper sidewall pattern (31). The design with these two step differences can improve the climbing ability of the tire.

    [0027] With reference to FIG. 2 for a cross-sectional view of a tire pattern (10) in accordance with the present invention, the center position of the tread has a groove depth A, and the mid-point position between the center of the tire and the shoulder has a groove depth B, wherein the groove depth A of the tread pattern (20) is equal to 5080% of the groove depth B, and the step difference C is equal to 200400% of the groove depth B, and the vertical step difference with respect to the height of the sidewall pattern block and the sideway interlaced mapping design can improve the climbing ability of the tire, practically good for climbing rocky land.

    [0028] In FIG. 2, the first protrusion block pattern (321) of the sidewall pattern (30) has a width W2 in the axial direction of the tire is equal to 110130% of the width W1 of the second recession block pattern (324) in the axial direction of the tire, and the center recession block pattern (325) has a width W3 in the axial direction of the tire equal to 9098% of the width W1 of the second recession block pattern (324) in the axial direction of the tire, and the second protrusion block pattern (322) has a width W4 in the axial direction of the tire equal to 105120% of the width W1 of the second recession block pattern (324) in the axial direction of the tire, and each width is formed into a stairway form, so as to provide a good anti-piercing effect.

    [0029] With reference to FIG. 3 for the enlarged view of a lower spoon-shaped pattern (22) in accordance with the present invention, the tread pattern (20) has a spoon pattern (212) configured with an angle A of 515, an angle B of 05, an angle C of 520, an angle D of 2040, an angle E of 8595, an angle F of 1030, an angle G of 525, an angle H of 015, an angle I of 015, and a round corner R of 1001500 mm, and the ranges of these angles give the best effect. If the angle is smaller than the predetermined value, then the forward resistance will be too large, particularly in the sandy land. If the angle is larger than the predetermined value, then the effect of removing mud will be reduced.

    [0030] In summation of the description above, the tire pattern structure of the present invention is reasonably configured with the pattern block of the tire pattern and their related mud removing channel, and comprised of the tread pattern and the sidewall pattern, and alternatively arranged along the circumferential direction and the axial direction of the tire sequentially to improve the handling and climbing ability significantly and also enhance the rigidity and support of the tire while improving the safety and service life. The invention provides a useful off-the-road tire.