Snowboard waxing device

By using a spiral conveyor mechanism and spray coating technology, the inconvenience of manually adding wax blocks and the problem of uneven coating in ski waxing devices have been solved. This has enabled automated and uniform wax coating and adaptive treatment, improving the efficiency and applicability of ski waxing.

CN223464997UActive Publication Date: 2025-10-24JINAN DATIAN MOULD CO LTD
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Patent Information

Application Number
CN202422627857.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-10-24
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Existing ski waxing equipment requires frequent manual addition of wax blocks, resulting in uneven wax application and wasting manpower, making it difficult to achieve efficient automation and uniform coating.

Method used

The spiral conveyor connects the hopper and the wax melting hopper, and combines the pump body and nozzle to realize the quantitative delivery and spray coating of wax blocks. It includes waxing, heating, cooling, wax scraping and polishing mechanisms, and is suitable for different models of skis.

Benefits of technology

Reduce manpower consumption, improve the accuracy and timeliness of wax block supply, ensure uniform and efficient wax application, and adapt to the automated waxing process of different ski models.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223464997U_ABST
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Abstract

The utility model relates to the technical field of fluid coating, in particular to a snowboard waxing device which comprises a conveying mechanism capable of supporting and conveying a snowboard. A waxing mechanism used for spraying wax liquid to the snowboard, a heating mechanism used for heating the snowboard and the waxing liquid on the snowboard, a cooling mechanism used for conveying cold air to the snowboard, a wax scraping mechanism used for scraping redundant wax liquid on the surface of the snowboard and a polishing mechanism used for polishing a waxing layer on the snowboard are sequentially arranged above the conveying mechanism in the conveying direction. The waxing mechanism comprises a spiral conveyor, a stock bin, a wax melting bin and a spray head, the feeding end of the spiral conveying mechanism is arranged in the stock bin, and the discharging end of the spiral conveying mechanism is arranged in the wax melting bin; a heating piece is arranged on the wax melting bin; the lower part of the wax melting bin is communicated with the spray head.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fluid coating technical field especially a ski waxing device. BACKGROUND

[0002] The bottom surface of the ski is generally coated with a wax layer, which is used to reduce the friction between the ski and the snow, and can also protect the ski and reduce wear caused by contact between the ski and the snow. However, after long-term use of the ski, the wax layer on the bottom surface of the ski is prone to wear and tear, and the remaining wax layer needs to be removed and then the wax layer needs to be coated again.

[0003] In the related technical solution, a device for processing the surface coating of winter sports equipment (such as a ski) is provided. In the device, a brush roller is used to remove the remaining wax, a wax roller is used to reapply wax to the ski, and then the wax and the ski are heated to combine them. Finally, the wax layer is cooled and polished.

[0004] However, in the above technical solution, the wax needs to be melted in advance and then supplied to the wax roller. This arrangement requires a certain amount of wax to be supplied to the wax melting bin every certain period of time, which requires manual labor. In addition, the wax roller needs to be in contact with the ski to apply the wax, which can cause uneven application of the wax. SUMMARY

[0005] The utility model provides a ski waxing device, which can at least solve one of the above technical problems.

[0006] To solve the above technical problems, one or more embodiments of the utility model provide a ski waxing device, which includes a conveying mechanism capable of supporting and conveying a ski. The conveying mechanism is provided with, in sequence along the conveying direction, an upper waxing mechanism for spraying wax onto the ski, a heating mechanism for heating the ski and the wax on the ski, a cooling mechanism for conveying cold air to the ski, a wax scraping mechanism for scraping excess wax on the surface of the ski, and a polishing mechanism for polishing the wax layer on the ski. The upper waxing mechanism includes a screw conveyor, a bin, a wax melting bin, and a spray head. The feed end of the screw conveyor is arranged in the bin, and the discharge end is arranged in the wax melting bin. The wax melting bin is provided with a heating element, and the lower part of the wax melting bin is communicated with the spray head. A pump body is arranged between the two.

[0007] The above one or more technical solutions have the following advantages:

[0008] The wax feeding mechanism comprises a material bin, a wax melting bin and a spray head, a spiral conveying mechanism is arranged between the material bin and the wax melting bin, the feeding end of the spiral conveying mechanism is arranged in the material bin, and the discharging end is arranged in the wax melting bin. The setting mode facilitates the intermittent quantitative feeding of the wax blocks to the wax melting bin by the spiral conveying mechanism. Compared with the manual feeding mode of the wax blocks to the wax melting bin, the setting mode can reduce the labor consumption and improve the accuracy and timeliness of the wax block supply.

[0009] In the scheme, the wax melting bin is communicated with the spray head, and a pump body is arranged between the wax melting bin and the spray head. The setting mode facilitates the formation of the wax liquid into a spray, and the spraying process on the snowboard is more uniform. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 It is a whole structure front view schematic diagram in the embodiment 1 of the utility model;

[0011] Figure 2 It is a structure schematic diagram after removing the underframe in the embodiment 1 of the utility model;

[0012] Figure 3 It is a sectional view of the wax feeding mechanism in the embodiment 1 of the utility model;

[0013] Figure 4 It is a structure schematic diagram after removing the underframe in the embodiment 2 of the utility model.

[0014] In the drawing, 1, bearing frame; 2, wax removing mechanism; 3, conveying mechanism; 4, rack; 5, polishing mechanism; 6, wax scraping mechanism; 7, cooling mechanism; 8, heating mechanism; 9, wax feeding mechanism; 10, supporting leg; 11, underframe; 12, semiconductor refrigerator; 121, refrigeration end; 122, heat dissipation end; 13, partition plate;

[0015] 21, first air cylinder; 22, brush roller; 51, fifth air cylinder; 52, polishing wheel; 61, fourth air cylinder; 62, scraper; 71, refrigerator; 72, air pump; 73, third air cylinder; 74, air nozzle; 75, first fan; 81, second air cylinder; 82, heating pipe; 83, second fan; 84, second air nozzle; 91, driving motor; 92, material bin; 920, containing cavity; 93, spiral conveying mechanism; 930, spiral blade shaft; 931, barrel; 94, wax melting bin; 941, wax melting cavity; 942, discharging port; 95, pump body; 96, spray head. DETAILED DESCRIPTION

[0016] In order to clearly illustrate the technical features of the scheme, the utility model is described in detail below through specific implementation modes and in combination with its drawings.

[0017] In the related technical solution, the ski board comprises a substantially flat body segment and curved segments arranged at both ends of the flat segment, and the curved segments are upwardly curved. In use, the skier steps on the upper surface of the ski board, and the lower surface (i.e. the bottom surface) of the ski board is in contact with the snow. The bottom surface of the ski board is coated with a wax layer to reduce friction and provide protection for the ski board.

[0018] After the ski board is used for a long time, the wax layer is damaged and incomplete, which affects use. At this time, the ski board needs to be turned over, i.e. the bottom surface of the ski board faces upward, and then the excess wax layer is removed by using a device, and then the waxing process is performed again.

[0019] Embodiment 1

[0020] Referring to Figures 1-3 The embodiment provides a ski board waxing device, which comprises a conveying mechanism 3 capable of supporting and conveying the ski board. Above the conveying mechanism 3 in the conveying direction, there are, in sequence, an upper waxing mechanism 9 for spraying wax liquid to the ski board, a heating mechanism 8 for heating the ski board and the wax liquid on the ski board, a cooling mechanism 7 for conveying cold air to the ski board, a wax scraping mechanism 6 for scraping the excess wax liquid on the surface of the ski board, and a polishing mechanism 5 for polishing the wax layer on the ski board. The upper waxing mechanism 9 comprises a screw conveying mechanism, a material bin 92, a wax melting bin 94 and a spray head 96. The feeding end of the screw conveying mechanism 93 is arranged in the material bin 92, and the discharging end is arranged in the wax melting bin 94. The wax melting bin 94 is provided with a heating member, and the lower part of the wax melting bin 94 is in communication with the spray head 96.

[0021] In the embodiment, a protective cover and a rack 4 are further included. The rack 4 is arranged across the conveying mechanism 3, and the upper waxing mechanism 9, the heating mechanism 8, the cooling mechanism 7, the wax scraping mechanism 6 and the polishing mechanism 5 are mounted on the rack 4. The conveying mechanism 3 is mounted on a base frame 11, and the lower part of the base frame 11 is provided with supporting legs 10.

[0022] In the embodiment, the conveying mechanism 3 adopts a screw nut mechanism (not shown in the figure), which comprises a screw and a nut seat. The nut seat can drive the ski board to move. The conveying mechanism further comprises a bearing frame 1 capable of clamping the ski board. The bearing frame 1 is fixed to the nut seat, and the bearing frame 1 can fix the ski board by means of a vacuum suction cup (not shown in the figure).

[0023] As an alternative structure arrangement, the conveying mechanism 3 here can adopt a belt conveying line or a chain conveying line. When the belt conveying line is adopted, the belt conveying line comprises two synchronous pulleys, and the two synchronous pulleys are connected by a synchronous belt.

[0024] In the case where the conveying mechanism adopts a conveying line, the bearing frame 1 comprises a support plate. The support plate can be fixed to the upper surface of the belt or chain in the conveying mechanism 3 by means of buckle connection or bolt connection. The support plate is provided with a locking member for fixing the ski board to the support plate.

[0025] The locking members here can be locking bolts arranged on both sides of the support plate along the width direction of the support plate. The support plate is fixed with bolt seats, and the locking bolts are arranged on the bolt seats. After the snowboard is arranged between the bolt seats, the snowboard can be fixed or released by screwing the bolts.

[0026] In this embodiment, the heating mechanism 8, the polishing mechanism 5 and the wax scraping mechanism 6 can be vertically lifted and positioned. This arrangement enables the waxing device in this embodiment to adapt to snowboards of different sizes and shape specifications.

[0027] Specifically, the melting wax bin 94 is provided with an electric heating pipe 82 and / or an electric heating sheet. The electric heating pipe 82 and / or the electric heating sheet can heat the wax blocks in the melting wax bin 94, so that the solid wax blocks form a wax liquid, and then the wax liquid can be sprayed to the bottom surface of the snowboard by the spray head 96.

[0028] As a specific structure, referring to Figure 2 and Figure 3 , the bin 92, the melting wax bin 94 and the spray head 96 are arranged in sequence from top to bottom. At this time, the screw conveying mechanism 93 is vertically arranged, the upper end of the screw conveying mechanism 93 is the feeding end, and the lower end is the discharging end. The upper end of the screw conveying mechanism 93 is arranged in the bin 92, and the lower end is arranged in the melting wax bin 94. Specifically, in order to realize the driving of the screw conveying mechanism 93, a driving motor 91 is installed at the upper end of the bin 92. The output shaft of the driving motor 91 penetrates into the bin 92 downward, and the driving shaft and the screw blade shaft 930 are fixed through a shaft coupling. Specifically, the spray head 96 is a fan-shaped spray head 96.

[0029] More specifically, the screw conveying mechanism 93 includes a cylinder 931 connected between the upper end of the melting wax bin 94 and the lower end of the bin 92, and the screw blade shaft penetrates through the cylinder 931. When the bin 92, the melting wax bin 94 and the spray head 96 are arranged in the up-down direction, the space occupation of the waxing mechanism 9 in the horizontal direction can be reduced, the space above the conveying mechanism 3 can be fully utilized, and the structure of the whole device is more compact, which is convenient for miniaturization.

[0030] In this embodiment, the melting wax bin 94 and the spray head 96 are connected by a pipeline, and the pipeline is provided with a pump body 95. More specifically, the bin 92 here is in the form of a funnel, that is, the inner cavity of the bin 92 is a containing cavity 920, and the cross-sectional area of the containing cavity 920 gradually decreases in the direction from top to bottom.

[0031] Specifically, the inside of the melting wax bin 94 forms a melting wax cavity 941, and the bottom of the melting wax bin 941 is provided with a discharging port 942 communicating with the melting wax cavity 941. The discharging port communicates with the pipeline.

[0032] In some other structural arrangements, the height of the wax melting bin 94 is not particularly required in relation to the height of the material bin 92. For example, the bottom end of the wax melting bin 94 is at the same height as the bottom end of the material bin 92, and the wax melting bin 94 and the material bin 92 are arranged in sequence along the first direction. The bottom end of the wax melting bin 94 and the bottom end of the material bin 92 are connected by the screw conveying mechanism 93. The conveying direction of the screw conveying mechanism 93 can be arranged horizontally or at an angle of less than 30 degrees to the horizontal plane.

[0033] In this embodiment, the wax removing mechanism 2 is arranged on the wax applying mechanism 9 near the feeding direction of the conveying mechanism 3. The wax removing mechanism 2 includes a brush roller 22 that can be vertically lifted.

[0034] Specifically, the wax removing mechanism 2 further includes a first cylinder 21 arranged vertically. The upper end of the first cylinder 21 is fixed to the rack 4, and the lower end of the first cylinder 21 is rotatably connected to the brush roller 22 through a mounting seat. The brush roller 22 includes a roller body, and the outer ring of the roller body is provided with bristles. Specifically, a motor is arranged on the mounting seat, and the motor drives the roller body to rotate.

[0035] In this embodiment, the heating mechanism 8 includes a plurality of horizontally arranged heating pipes 82. The extension direction of the heating pipes 82 is perpendicular to the conveying direction of the conveying mechanism 3.

[0036] Specifically, the heating mechanism 8 further includes a second cylinder 81. The upper end of the second cylinder 81 is fixed to the rack 4, and the lower end of the second cylinder 81 is provided with the heating pipes 82 through a mounting plate. The heating pipes 82 are quartz pipes. The plurality of heating pipes 82 can be arranged side by side along the first direction. By adjusting the distance between the heating pipes 82 and the upper surface of the conveying mechanism 3, the temperature of the ski base and the temperature of the wax layer can be adjusted.

[0037] In use, after the wax liquid is sprayed on the ski base by the nozzle 96 below the wax applying mechanism 9, the wax liquid is only attached to the surface of the ski, without penetrating into the ski. When the ski moves to the position below the heating mechanism 8 along the conveying direction, the heating pipes 82 simultaneously heat the ski and the wax liquid on the ski base. At this time, the surface of the ski can accept the penetration of the wax liquid, so that the wax liquid is closely combined with the ski.

[0038] In this embodiment, the cooling mechanism 7 is arranged on the side of the heating mechanism 8 away from the feeding direction of the conveying mechanism 3. Thus, the cooling mechanism 7 can cool the wax liquid above the conveying mechanism 3, so as to form a solid wax layer.

[0039] Specifically, the cooling mechanism 7 includes a refrigerating device 71. The outlet of the refrigerating device 71 is communicated with an air pump 72, and the air pump 72 is communicated with an air nozzle 74. In order to realize the lifting of the air nozzle 74, the cooling mechanism 7 further includes a third cylinder 73. The upper end of the third cylinder 73 is fixed to the rack 4, and the lower end of the third cylinder 73 is fixed to the air nozzle 74 through a mounting plate.

[0040] In the embodiment, the wax scraping mechanism 6 comprises a scraper 62, which is parallel to the width direction of the conveying mechanism 3 and has an angle greater than zero with the vertical plane. Specifically, the wax scraping mechanism 6 further comprises a fourth cylinder 61, the upper end of which is fixed to the frame 4 and the lower end of which is fixed to the scraper 62 through a mounting plate.

[0041] In the embodiment, the number of the scraper 62 can be one, two or three, which is set by those skilled in the art as needed.

[0042] As one specific structure, the number of the scraper 62 is two, and the two scrapers 62 are arranged in a V shape and abut at the lower ends. In other structures, the lower ends of the two scrapers 62 can have a gap. When the snowboard moves along the conveying direction, the scraper 62 can scrape the excess wax on the bottom surface of the snowboard, thereby forming a smooth wax layer.

[0043] In the embodiment, a partition plate is arranged between the heating mechanism and the cooling mechanism. The partition plate can separate the airflow and reduce the mutual influence between the cooling mechanism 7 and the heating mechanism 8.

[0044] Specifically, the polishing mechanism 5 comprises a polishing wheel 52 and a fifth cylinder 51, the upper end of which is fixed to the frame and the lower end of which is rotatably connected to the polishing wheel 52 through a mounting seat. More specifically, the mounting seat of the polishing mechanism 5 is provided with a motor (not shown in the figure) for driving the polishing wheel 52 to rotate.

[0045] Working principle: In use, the snowboard is installed on the conveying mechanism 3, and the conveying mechanism 3 is used to gradually convey the snowboard along the conveying direction.

[0046] First, the wax layer remaining on the surface of the snowboard is removed by the wax removing mechanism 2, and then the wax is sprayed on the bottom surface of the snowboard by the wax applying mechanism 9. The heating mechanism 8 heats the snowboard and the wax on the surface of the snowboard, so that the wax penetrates into the snowboard.

[0047] Subsequently, the bottom surface of the snowboard is moved to the cooling mechanism 7 for cooling to form a wax layer. The snowboard continues to move to the wax scraping mechanism 6 and the polishing mechanism 5 for smoothing treatment.

[0048] Embodiment 2

[0049] The structure of the embodiment is basically the same as that of embodiment 1, and also provides a snowboard waxing device. Compared with the embodiment, the difference lies in that:

[0050] For example, Figure 4As shown, the embodiment is provided with a semiconductor refrigerator 12 shared by the heating mechanism 8 and the cooling mechanism 7 on the partition plate 13, which includes a hot end 122 and a refrigeration end 121, wherein the hot end 122 is towards the side of the waxing mechanism 9, and the refrigeration end 121 is towards the side of the wax scraping mechanism 6. The semiconductor refrigerator 12 is embedded in the mounting port in the middle of the partition plate 13.

[0051] Specifically, the hot end 122 supplies hot air to the second air nozzle 84 through the second fan 83 and the corresponding gas pipeline, so as to heat the ski and the wax liquid on the surface of the ski. The refrigeration end 121 supplies cold air to the air nozzle 74 through the first fan 75 and the corresponding gas pipeline, so as to cool the ski and the wax liquid.

[0052] The above specific embodiments cannot be regarded as the limitation of the protection scope of the utility model, and any alternative improvement or transformation made by the skilled in the art to the embodiment of the utility model falls within the protection scope of the utility model.

[0053] The unexplained part of the utility model is the known technology of the skilled in the art.

Claims

1. A ski waxing device, characterized in that, The conveying mechanism is capable of supporting and conveying the snowboard, and a waxing mechanism for spraying wax liquid on the snowboard, a heating mechanism for heating the snowboard and the wax liquid on the snowboard, a cooling mechanism for conveying cold air to the snowboard, a wax scraping mechanism for scraping the excess wax liquid on the snowboard, and a polishing mechanism for polishing the wax layer on the snowboard are sequentially arranged above the conveying mechanism along the conveying direction. The waxing mechanism comprises a screw conveyor, a hopper, a wax melting bin and a spray head, the feeding end of the screw conveyor is arranged in the hopper, and the discharging end is arranged in the wax melting bin; the wax melting bin is provided with a heating element; the lower part of the wax melting bin is communicated with the spray head, and a pump body is arranged between the two. The heating mechanism, the wax scraping mechanism and the polishing mechanism are capable of lifting and positioning.

2. Ski waxing device according to claim 1, characterized in that A brush roller is arranged on the side of the waxing mechanism close to the feeding direction of the conveying mechanism, and the brush roller is capable of lifting and positioning.

3. Ski waxing device according to claim 1, characterized in that The wax melting bin and the spray head are communicated through a pipeline, and a pump body is arranged in the pipeline.

4. The ski waxing device of claim 1, wherein, The heating mechanism comprises a plurality of heating pipes which are horizontally and vertically arranged along the conveying direction of the conveying mechanism.

5. The ski waxing device of claim 1, wherein, The wax scraping mechanism comprises a scraper which is parallel to the width direction of the conveying mechanism, and the angle between the scraper and the vertical plane is greater than zero, and the number of the scrapers is 1 to 3.

6. The ski waxing device of claim 1, wherein, The conveying mechanism adopts a lead screw nut mechanism, the lead screw nut mechanism comprises a lead screw and a nut seat, and the nut seat is capable of driving the snowboard to move.

7. The ski waxing device of claim 1, wherein, A bearing frame capable of clamping the snowboard is further arranged, the bearing frame is fixed to the nut seat, and the bearing frame is capable of fixing the snowboard through a vacuum suction cup.

8. Ski waxing device according to claim 7, characterized in that A partition plate is arranged between the heating mechanism and the cooling mechanism.

9. The ski waxing device of claim 1, wherein, And / or, a semiconductor refrigerator shared by the heating mechanism and the cooling mechanism is embedded and installed on the partition plate, the refrigeration end of the semiconductor refrigerator faces the side of the wax scraping mechanism, the hot end of the semiconductor refrigerator faces the side of the waxing mechanism, the refrigeration end supplies cold air to the snowboard through a first fan, and the hot end supplies hot air to the snowboard through a second fan. A machine frame which crosses the conveying mechanism is further arranged, and the machine frame is provided with the waxing mechanism, the heating mechanism, the cooling mechanism, the wax scraping mechanism and the polishing mechanism.

10. The ski waxing device of claim 1, wherein, ​