Ice plate edge strip
By designing raised structures and sensor systems on the ice skate edge strips, the system can collect and buffer information about ice hockey impacts, solving the problem of the single function of the ice skate edge strips and improving the safety and information collection capabilities of the ice hockey training venue.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-31
AI Technical Summary
The existing ice skates have limited functionality, failing to effectively reduce the chance of the puck being passed out of the training area and lacking information collection capabilities.
Design an ice board edge strip comprising a raised structure with a fixed strip and a movable strip on the raised section. The movable strip is connected to a movable impact seat. Upon impact, a sensor is triggered to generate a signal, which is then reset by an elastic element. Power is provided by a power supply and a light strip to achieve information acquisition and impact buffering.
It effectively reduces the chance of the ice hockey puck going off the training field, collects information on the location of the ice hockey puck impact, and communicates with other devices through sensors to enhance the stability of the ice board's edge strips and the impact cushioning effect.
Smart Images

Figure CN224056617U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sporting goods, and in particular to an ice skate edge strip. Background Technology
[0002] Ice boards, also known as ice hockey training flooring, have seen increased demand from users due to the widespread use of ice hockey training rinks. Ice hockey sidings are embedded around the perimeter of the ice board used in training rinks to prevent the puck from traveling towards the edges during impacts, effectively reducing the chance of the puck going off the rink. However, currently, most ice board sidings are directly injection molded as a single piece, without any other internal components, resulting in a limited function. Utility Model Content
[0003] The purpose of this invention is to provide an ice board edge strip that solves one or more of the aforementioned problems in the prior art.
[0004] This utility model proposes an ice board edge strip, including an edge strip body.
[0005] One side of the edge strip body is connected to the ice plate through the connecting edge;
[0006] The other side of the side strip body has a protrusion. Several fixed strips are located on the inner end face of the protrusion, and one or more movable strips are located between two adjacent fixed strips. Movable impact seats are installed on the protrusion corresponding to the movable strips. The two sides of the movable impact seats are connected to a back plate inside the protrusion via elastic elements. Trigger strips are embedded in the movable impact seats, and sensors are installed on the back plate corresponding to the trigger strips. When the puck impacts a movable strip, it pushes the movable strip inward, thereby causing the movable impact seat and its embedded trigger strip to move inward. When the trigger strip impacts the sensor, the sensor generates a corresponding signal to acquire and store the impact position of the puck on the side strip and other information. If the sensor is connected to other devices, the generated signal can be transmitted to those devices. After the impact, under the elastic force of the elastic element, the movable impact seat will drive its trigger strip and corresponding movable strip to move outward and reset. Furthermore, this structural design effectively buffers impacts, effectively reducing damage caused by the collision between the puck and the side strip.
[0007] In some embodiments, the protrusion and the edge strip body are integrally injection molded.
[0008] In some embodiments, the outer end face of the protrusion is inclined, and the angle between the outer end face and the horizontal plane is α°, where α is greater than 0 and less than 90°. This design allows the protrusion to form a triangular-like structure, thereby enhancing the stability of the ice plate edge strip.
[0009] In some embodiments, a power supply component is embedded within the protrusion, and conductive spring pins are provided on the other two end faces of the protrusion. The conductive spring pins are connected to the power supply component, which may be a battery, to provide power to sensors or similar devices mounted on the edge strip of the ice plate.
[0010] In some implementations...
[0011] The sensor is a pressure-sensitive sensor;
[0012] The elastic element is a spring or a sheet spring.
[0013] In some embodiments, the fixed strip and the movable strip are made of EVA material, and the trigger strip is made of rubber.
[0014] In some embodiments, the top of the protrusion is provided with a cover plate, and a cavity is provided inside the protrusion on the lower side of the cover plate. The cavity is equipped with an LED strip, which is connected to a sensor. The LED strip can emit corresponding light when the sensor generates a corresponding signal, so as to observe the position of the puck hitting the edge of the ice board in a timely and intuitive manner.
[0015] In some embodiments, the protrusion has a pre-drilled hole corresponding to the cavity.
[0016] In some embodiments, the cover plate is transparent or semi-transparent, allowing the light generated by the light strip to pass through and dissipate.
[0017] In some embodiments, the protrusion has an opening corresponding to the movable impact seat, and a first surrounding plate is provided inwardly at the edge of the opening. The outer surrounding plate of the movable impact seat has auxiliary protrusions on at least its top and bottom sides facing the direction of the first surrounding plate, with one side of each auxiliary protrusion corresponding to the first surrounding plate. This structure, combined with the back plate design, can constrain and guide the range of motion of the movable impact seat, effectively enhancing the stability of the movable impact seat during its movement. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the ice plate edge strip in some embodiments of this utility model;
[0019] Figure 2 This is a side view of the ice plate edge strip in some embodiments of this utility model;
[0020] Figure 3 for Figure 2 Schematic diagram of the cross-sectional structure of the middle BB section;
[0021] Figure 4 for Figure 3 Enlarged view of section Aa;
[0022] Figure 5 for Figure 2 Schematic diagram of the cross-sectional structure of HH. Detailed Implementation
[0023] Combination Figures 1 to 5 The content shown in this embodiment discloses an ice board edge strip including an edge strip body 1.
[0024] One side of the edge strip body 1 is connected to the ice plate. The connection between the edge strip and the ice plate can be formed using existing connection mechanisms, locking mechanisms, etc.
[0025] On the other side of the side strip body 1, there is a protrusion. Several fixed strips 2 are located on the inner end face of the protrusion. One or more movable strips 3 are located between two adjacent fixed strips 2. A movable impact seat 13 is provided on the protrusion corresponding to the movable strip 3. The two sides of the movable impact seat 13 are connected to the back plate 15 inside the protrusion via elastic elements 12. A trigger strip 16 is embedded in the movable impact seat 13, and a sensor 14 is provided on the back plate corresponding to the trigger strip 16. When the puck hits the movable strip 3, it pushes the movable strip 3 inward, thereby causing the movable impact seat 13 and the embedded trigger strip 16 to move inward. When the trigger strip 16 hits the sensor 14, the sensor 14 generates a corresponding signal to acquire and store the impact position of the puck on the side strip of the ice board and other information. If the sensor is connected to other devices, the generated signal can be transmitted to the connected devices. After the impact, under the elastic force of the elastic element 12, the movable impact seat 13 will drive the trigger strip 16 and the corresponding movable strip 3 to move outward and reset.
[0026] The aforementioned protrusions can be manufactured by integral injection molding with the edge strip body 1.
[0027] The outer end face 5 of the aforementioned protrusion is inclined, and the angle between the outer end face 5 and the horizontal plane is a°, where a is greater than 0 and less than 90°.
[0028] The power supply component 11 can be directly embedded in the aforementioned protrusion. Conductive spring pins are provided on the end faces 6 on both sides of the protrusion, and the conductive spring pins on the two end faces 6 are male and female respectively. For example, a male conductive spring pin 7 is provided on one end face, and a female conductive spring pin 10 is provided on the other end face. The male conductive spring pin 7 and the female conductive spring pin 10 can be directly mounted on the movable plate 9, and then the movable plate 9 can be fixed to the corresponding end faces by welding, screw connection, or other methods.
[0029] The aforementioned sensor 14 can be a pressure-sensitive sensor.
[0030] The aforementioned elastic element 12 can be a spring or a spring sheet. When the elastic element 12 is a spring, a conical spring can be selected.
[0031] The fixed strip 2 and the movable strip 3 can be made of EVA material, and the trigger strip 16 can be made of rubber.
[0032] The top of the aforementioned protrusion is equipped with a cover plate 4, and a cavity 17 is located inside the protrusion on the lower side of the cover plate 4. A light strip 18 is installed in the cavity 17 and is connected to a sensor 14. When the sensor 14 generates a corresponding signal, it can generate a trigger signal to control the light strip 18 to illuminate, indicating the position where the puck impacts the ice board's edge strip. Generally, the light strip 18 can be directly installed on the cavity wall at the bottom of the cavity 17, effectively ensuring the stability of the light strip 18 during installation and use. The cover plate 4 can be transparent or semi-transparent to allow the light generated by the light strip 18 to diffuse. The cover plate 4 can be connected to the protrusion by snap-fit or other means, or it can be directly injection molded into the protrusion.
[0033] A pre-drilled hole 8 can be provided on the protrusion corresponding to the cavity 17. The pre-drilled hole 8 can be in a one-to-one correspondence with the conductive spring pin, and the corresponding pre-drilled hole 8 and conductive spring pin can be provided on the same end face 6 of the protrusion.
[0034] The aforementioned protrusions have openings corresponding to the movable impact seat 13. The edges of the openings are provided with a first enclosure plate. The two ends of the back plate 15 in the lateral direction can be connected to the first enclosure plate. The top and bottom of the outer enclosure plate of the movable impact seat 13 are provided with auxiliary protrusions facing the direction of the first enclosure plate. One side of the auxiliary protrusion is provided with the first enclosure plate. In the normal state, the inner side of the auxiliary protrusion is in contact with the first enclosure plate. The setting of the auxiliary protrusion can effectively limit the outward movement space of the movable impact seat 13 and play a limiting role. At this time, the setting of the back plate 15 and the elastic element 12 can also effectively limit the inward movement space of the movable impact seat 13. With this design, the stability of the movement of the movable impact seat 13 can be effectively guaranteed.
[0035] All of the above-mentioned undisclosed matters can be directly implemented using existing technologies, so they will not be elaborated here.
[0036] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several similar modifications and improvements can be made without departing from the inventive concept of the present utility model, and these should also be considered within the protection scope of the present utility model.
Claims
1. An ice skating rink edge strip comprising an edge strip body, characterized in that, one side of the edge strip body is connected with a connecting edge for connecting the ice skating rink; the other side of the edge strip body is provided with a protrusion, and a plurality of fixed strips are arranged at the inner side end face of the protrusion, one or more movable strips are arranged between two adjacent fixed strips, a movable impact seat is arranged on the protrusion corresponding to the movable strips, the movable impact seat is connected with a back plate at the inner side of the protrusion through elastic members, a trigger strip is embedded on the movable impact seat, and a sensor is arranged on the back plate corresponding to the trigger strip.
2. The ice panel edging of claim 1, wherein, The protrusion and the edge strip body are integrally injection molded.
3. The ice panel edging of claim 1, wherein, The outer side end face of the protrusion is inclined, and the included angle between the outer side end face and the horizontal plane is a°, wherein a is greater than 0 and less than 90.
4. The ice border strip of claim 3, wherein The protrusion is embedded with a power supply member, and conductive spring pins are arranged on the end faces of the other two sides of the protrusion.
5. The ice skating rink edge strip according to claim 1, characterized in that, the sensor is a pressure-sensitive sensor; the elastic member is a spring or a spring sheet.
6. The ice panel edging of claim 1, wherein, The materials of the fixed strips and the movable strips are EVA, and the material of the trigger strip is rubber.
7. The ice panel edging strip of any one of claims 1-6, wherein, A cover plate is arranged on the top of the protrusion, a cavity is arranged in the protrusion below the lower side of the cover plate, a lamp strip is arranged in the cavity, and the lamp strip is connected with the sensor.
8. The ice panel edging of claim 7, wherein, A reserved hole is arranged on the protrusion corresponding to the cavity.
9. The ice panel edging of claim 7, wherein, The cover plate is transparent or translucent.
10. The ice panel edging strip of any one of claims 1-6, wherein, An opening is arranged on the protrusion corresponding to the movable impact seat, a first surrounding plate is arranged inwardly at the edge of the opening, and an auxiliary protrusion is arranged on at least the top and the bottom of the outer side surrounding plate of the movable impact seat and directed to the direction where the first surrounding plate is located, and one side of the auxiliary protrusion is arranged corresponding to the first surrounding plate.