X-shaped stand column ice skate blade support

By designing an X-shaped upright ice skate support, the contact area and support points between the ice skate and the ice surface are increased, solving the problem of insufficient stability of existing ice skates when turning, reducing sideslipping, and improving the athlete's control and safety.

CN223887365UActive Publication Date: 2026-02-10CHANG CHUN BAI NING DUN SPORT EQUIPMEN COMPONENTS CO LTD
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Patent Information

Application Number
CN202423317249.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-10
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing ice skates have insufficient contact area between the uprights and the ice surface when turning, resulting in insufficient stability, easy side slipping, and potential safety hazards.

Method used

Design an X-shaped pillar ice skate support, including pillar group I and pillar group II. The pillars of pillar group I and pillar group II, as well as the X-shaped pillars, constitute eight support points between the support blade tube and the ice skate. The tilt angle of the pillars is optimized to increase the contact area and stability.

Benefits of technology

By increasing support points and optimizing the angle of the support columns, the contact area between the skates and the ice surface was increased, reducing sideslip and improving the athlete's control and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an X-shaped stand column ice skate blade support, which belongs to the field of sports equipment and comprises a stand column group I, a stand column group II and a support blade tube. Eight fulcrums are formed between the ice skate blade and the skate due to the design of the upright post group I and the upright post group II, so that the number of upright posts between the skate blade and the skate blade is increased, the original supporting strength is maintained, and the thickness of the upright posts can be reduced; after the thickness of the stand column is reduced, elastic deformation of the blade pipe during sliding is effectively promoted, the contact area between the blade of the ice blade and the ice surface is increased, the stability of the ice blade is improved through the improvement, and the sideslip phenomenon is reduced; through the design of inclination angles of the second stand column and the third stand column, continuous contact between the middle arc of the ice skate blade and the ice surface is ensured through a force transmission mechanism of the two stand columns in the skating process of an athlete, and the problem that the middle arc of a traditional blade pipe is not in sufficient contact with the ice surface is solved; the contact area between the blade of the ice skate blade and the ice surface is kept in an ideal state, so that athletes can control the ice skate blade conveniently, and sideslip is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of sports equipment, and specifically relates to an ice skate support for ice sports. Background Technology

[0002] Ice sports have developed rapidly in my country, with both professional competitions and grassroots activities experiencing rapid growth; consequently, the demand for ice sports equipment is constantly increasing and upgrading. Ice skates are one of the most important pieces of equipment in ice sports.

[0003] Currently available ice skates use two pillars and four support points between the blade and the skate, and the pillars are perpendicular to the blade. This results in the blade deforming during turns, which cannot make better contact with the ice surface, cannot achieve the maximum contact area, and cannot provide the force required for turning, leading to insufficient stability during turns.

[0004] This situation can cause sideslipping, which can lead to accidental injuries to athletes.

[0005] Therefore, there is an urgent need for a technology to solve the above problems. Utility Model Content

[0006] The technical problem to be solved by this utility model is to provide a device that addresses the problems existing in the background art.

[0007] An X-shaped upright ice skate support, characterized in that it includes upright assembly I, upright assembly II, and support blade tube;

[0008] The column assembly I, column assembly II, and support tube are integrally molded, and each column assembly includes a column and an X-shaped column;

[0009] The column assembly I includes a first column, an X-shaped column I, and a second column; wherein the first column and the second column are respectively arranged on both sides of the X-shaped column I;

[0010] The column group II includes a third column, an X-shaped column II, and a fourth column; wherein the third column and the fourth column are respectively arranged on both sides of the X-shaped column II;

[0011] The second column includes a vertical section and an inclined section, and the third column includes a vertical section and an inclined section.

[0012] The intersection of the extended lines of the second and third inclined sections of the support column is located at the geometric center of the ice skate blade.

[0013] The upper two branches of the X-shaped column I are connected to the first column and the second column respectively, and the lower two branches are connected to the support blade tube.

[0014] The upper two branches of the X-shaped column II are connected to the third and fourth columns respectively, and the lower two branches are connected to the support blade tube.

[0015] The height of column group II is higher than the height of column group I.

[0016] The columns on column group I and column group II, along with the X-shaped columns, constitute eight support points between the support tube and the ice skate.

[0017] The length of the support blade tube is 16.5 inches to 19 inches, the angle between the second column inclined section and the support blade tube is 26° to 36°, and the angle between the third column inclined section and the support blade tube is 122° to 123°.

[0018] Through the above design, the design of the support column group I and support column group II creates eight support points between the skate and the skate, increasing the number of support columns between the skate and the skate. This not only maintains the original support strength but also reduces the thickness of the support columns. After reducing the thickness of the support columns, this application effectively promotes the elastic deformation of the blade tube during skating, increasing the contact area between the blade edge and the ice surface. This improvement enhances the stability of the skate and reduces sideslip. Through the design of the tilt angle of the second and third support columns, the force transmission mechanism of the two support columns ensures continuous contact between the middle arc of the skate blade and the ice surface during skating. This solves the problem of insufficient contact between the middle arc of the traditional blade tube and the ice surface. The contact area between the blade edge and the ice surface is maintained in an ideal state, which facilitates the athlete's control and reduces sideslip. Attached Figure Description

[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the present invention;

[0022] In the diagram: 3-Support blade, 101-First column, 102-X-type column I, 103-Second column, 1032-Second column inclined section, 201-Third column, 2012-Third column inclined section, 202-X-type column II, 203-Fourth column, 9-Ice blade. Detailed Implementation

[0023] This application will be further described in conjunction with the accompanying drawings, wherein... Figure 2 The dashed line in the middle is the extension of the second pillar tilt segment 1032 and the third pillar tilt segment 2012, and the extensions intersect at the geometric center of the ice skate blade 9;

[0024] An X-shaped upright ice skate support, characterized in that it includes an upright assembly I, an upright assembly II, and a support blade tube 3;

[0025] The column assembly I, column assembly II, and support tube 3 are integrally molded, and each column assembly includes a column and an X-shaped column;

[0026] The column assembly I includes a first column 101, an X-shaped column I 102, and a second column 103; wherein the first column 101 and the second column 103 are respectively arranged on both sides of the X-shaped column I 102;

[0027] The column group II includes a third column 201, an X-shaped column II 202, and a fourth column 203; wherein the third column 201 and the fourth column 203 are respectively arranged on both sides of the X-shaped column II 202;

[0028] The second column 103 includes a vertical section and an inclined section 1032, and the third column 201 includes a vertical section and an inclined section 2012.

[0029] The intersection of the extensions of the second inclined column segment 1032 and the third inclined column segment 2012 is located at the geometric center of the ice skate blade 9.

[0030] The upper two branches of the X-shaped column I102 are connected to the first column 101 and the second column 103 respectively, and the lower two branches are connected to the support blade tube 3.

[0031] The upper two branches of the X-shaped column II 202 are connected to the third column 201 and the fourth column 203 respectively, and the lower two branches are connected to the support blade tube 3.

[0032] The height of column group II is higher than the height of column group I.

[0033] The columns on column group I and column group II, along with the X-shaped columns, constitute eight support points between the support tube 3 and the ice skate.

[0034] The length of the support blade tube 3 is 16.5 inches to 19 inches, the angle between the second column inclined section 1032 and the support blade tube 3 is 26° to 36°, and the angle between the third column inclined section 2012 and the support blade tube 3 is 122° to 123°.

[0035] The length of the support blade tube 3 ranges from 16.5 inches to 19 inches. When the length of the support blade tube 3 is 16.5 inches, the angle between the second column inclined section 1032 and the support blade tube 3 is 26°, and the angle between the third column inclined section 2012 and the support blade tube 3 is 122°. When the length of the support blade tube 3 is 16.5 inches, the angle between the second column inclined section 1032 and the support blade tube 3 is 36°, and the angle between the third column inclined section 2012 and the support blade tube 3 is 123°.

[0036] Ice skates have a curved blade. As the skater completes a stroke, this curved shape deforms due to the skater's movement and comes into contact with the ice. Traditionally, the support pillars of ice skate racks are perpendicular to the blade tube. This application, through the design of the tilt angles of the second and third pillar tilt sections 1032 and 2012, ensures that the intersection of the extended lines of these two pillars is located at the geometric center of the ice skate blade. During skating, the force transmission mechanism of these two pillars ensures continuous and complete contact between the central arc of the ice skate blade and the ice surface, solving the problem of insufficient contact between the central arc of the blade tube and the ice surface in traditional skates. Therefore, the contact area between the ice skate blade and the ice surface is maintained at an ideal state.

Claims

1. An X-shaped upright ice skate support, characterized in that: Includes column assembly I, column assembly II, and support blade (3); The column group I, column group II and support blade (3) are integrally molded, and each column group includes a column and an X-shaped column; The column assembly I includes a first column (101), an X-shaped column I (102), and a second column (103); wherein the first column (101) and the second column (103) are respectively arranged on both sides of the X-shaped column I (102); The column group II includes a third column (201), an X-shaped column II (202), and a fourth column (203); wherein the third column (201) and the fourth column (203) are respectively arranged on both sides of the X-shaped column II (202); The second column (103) includes a vertical section and an inclined section (1032), and the third column (201) includes a vertical section and an inclined section (2012). The intersection of the extensions of the second inclined column segment (1032) and the third inclined column segment (2012) is located at the geometric center of the ice skate blade.

2. The X-shaped upright ice skate support according to claim 1, characterized in that: The upper two branches of the X-shaped column I (102) are connected to the first column (101) and the second column (103) respectively, and the lower two branches are connected to the support knife tube (3).

3. The X-shaped upright ice skate support according to claim 1, characterized in that: The upper two branches of the X-shaped column II (202) are connected to the third column (201) and the fourth column (203) respectively, and the lower two branches are connected to the support knife tube (3).

4. The X-shaped upright ice skate support according to claim 1, characterized in that: The height of column group II is higher than the height of column group I.

5. The X-shaped upright ice skate support according to claim 1, characterized in that: The columns on column group I and column group II, along with the X-shaped columns, constitute eight support points between the support tube (3) and the ice skate.

6. The X-shaped upright ice skate support according to claim 1, characterized in that: The length of the support blade tube (3) is 16.5 inches to 19 inches, the angle between the second column inclined section (1032) and the support blade tube (3) is 26° to 36°, and the angle between the third column inclined section (2012) and the support blade tube (3) is 122° to 123°.