WO2019157611A1 - 高尔夫球冷却盒 - Google Patents

高尔夫球冷却盒 Download PDF

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Publication number
WO2019157611A1
WO2019157611A1 PCT/CN2018/076595 CN2018076595W WO2019157611A1 WO 2019157611 A1 WO2019157611 A1 WO 2019157611A1 CN 2018076595 W CN2018076595 W CN 2018076595W WO 2019157611 A1 WO2019157611 A1 WO 2019157611A1
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Prior art keywords
cooling
golf ball
refrigerating
module
base
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PCT/CN2018/076595
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English (en)
French (fr)
Inventor
郭光纮
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东莞市宏纶运动用品有限公司
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Application filed by 东莞市宏纶运动用品有限公司 filed Critical 东莞市宏纶运动用品有限公司
Priority to PCT/CN2018/076595 priority Critical patent/WO2019157611A1/zh
Publication of WO2019157611A1 publication Critical patent/WO2019157611A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B47/00Devices for handling or treating balls, e.g. for holding or carrying balls

Definitions

  • the present application relates to a cooling box, and more particularly to a golf ball cooling box for golf ball cooling.
  • these structural layers are composed of polymers.
  • the structural layer composed of polymers will begin to soften when exposed to excessive high temperatures. When it is too low, it will begin to harden. It can be seen that the temperature has a certain influence on the structure of the golf ball, and the hardened or softened golf ball affects the distance and rotation rate of the golf ball, and the golfer needs to spend it. More force hits the hardened or softened golf ball, and wastes the strength of the hitting force instead of honing the ball, which makes the golfer feel frustrated.
  • the present application designs a golf ball cooling box in order to improve the lack of the prior art, thereby enhancing the industrial use and utilization.
  • a golf ball cooling box including a main body, a partition, a cooling module, and a control module.
  • the main body is composed of a box body and an outer cover, and the outer cover covers the top of the box body, so that the inside of the box body forms a sealed space.
  • the cooling base is disposed in the sealed space and fits with the cooling cover having the compression spring structure to form a sealed refrigeration space
  • the sealed refrigeration space provides golf ball placement and fits the shape of the golf ball
  • the cross-sectional shape of the cooling base and the cooling cover are semicircular In the shape, when the cooling base and the refrigerating cover are sealed, a closed refrigerating space having a circular cross-sectional shape is formed to closely contact the entire golf ball, thereby minimizing the closed refrigerating space.
  • the cooling module is disposed under the cooling base and cools the cooling base, thereby cooling the golf ball and, due to the structure of the compression spring, the cooling cover is free to press the cooling base to achieve the cooling effect, and the cooling base and the cooling cover are tight when sealed. The entire golf ball is attached, thereby increasing the cooling efficiency of the cooling module.
  • the control module is adjacent to the cooling module and electrically connected to the cooling module to control the operation of the cooling module.
  • the refrigerating base and the refrigerating cover are designed to be in close contact with the golf ball according to the shape of the golf ball, so that the sealed refrigerating space is minimized to conform to the shape of the golf ball, thereby improving the cooling effect of the golf ball and saving electric energy.
  • the method further comprises two temperature sensors disposed in the closed refrigerating space.
  • the two temperature sensors sense that the ambient temperature of the closed refrigerating space is lower than the temperature range, the two temperature sensors transmit a stop signal to the control module, and the control module follows the stop signal. Let the cooling module stop working.
  • the temperature ranges from 3 to 6 degrees.
  • the cooling module includes a heat sink having a plurality of holes, a cooling chip, and the cooling chip is electrically connected to the control module, and the top surface of the cooling chip is a cold end surface and the bottom surface of the cooling chip is a hot end surface, and the hot end surface generates heat.
  • a heat sink having a plurality of holes adheres under the bottom surface of the cooling chip to dissipate heat, and a top surface of the cooling chip is adjacent to the cooling base and absorbs ambient heat between the cooling chip and the cooling base to form cold air.
  • the cooling module further comprises a fan disposed under the heat sink having a plurality of holes and electrically connected to the control module, the fan sucking air outside the golf ball cooling box, and then taking the hot air out to the heat sink to blow Scattered.
  • a fixing device is disposed between the top surface of the fan and the heat sink having a plurality of holes, so that a space between the heat sink having a plurality of holes and the fan is provided.
  • the cooling chip and the heat sink having a plurality of holes have a heat insulating sheet to prevent heat from the bottom surface of the cooling chip from being transmitted to the cooling base.
  • the heat sink having a plurality of holes and the cooling chip are adhered via the heat dissipating glue.
  • the power module further electrically connected to the control module is located in the sealed space and adjacent to the control module.
  • the golf ball cooling cartridge of the present application can have one or more of the following advantages:
  • the golf ball cooling case of the present application has a cooling base and a refrigerating cover to place a golf ball, and cools the cooling base through the cooling module to cool the golf ball.
  • the golf ball cooling box of the present application maintains the temperature of the closed refrigerating space between 3 and 6 degrees without hardening the golf ball.
  • FIG. 1 is a structural view of a first embodiment of a golf ball cooling case according to the present application.
  • FIG. 2 is a cross-sectional view of a first embodiment of a golf ball cooling case in accordance with the present application.
  • FIG. 3 is a block diagram of a second embodiment of a golf ball cooling cartridge in accordance with the present application.
  • FIG 4 is a structural view of a second embodiment of a golf ball cooling case according to the present application.
  • the golf ball cooling box of the present application includes a main body 10, a partition 20, a cooling module 30, and a control module 40.
  • the main body 10 is composed of a casing 11 and an outer cover 12, and the outer cover 12 covers the top of the casing 11, so that the inside of the casing 11 forms a sealed space.
  • the refrigerating base 20 is disposed in the sealed space 111 and is engaged with the refrigerating cover 21 having a compression spring structure to form a closed refrigerating space.
  • the closed refrigerating space provides the golf ball 50 to be placed and conforms to the shape of the golf ball 50, and the refrigerating cover 21 has a compression spring structure.
  • the cross-sectional shape of the cooling base 20 and the refrigerating cover 21 are all semi-circular, and the refrigerating base 20 and the refrigerating cover 21 are sealed to form a closed refrigerating space having a circular cross-sectional shape so as to be in close contact with the entire golf ball 50. This minimizes the closed cooling space.
  • the cooling module 30 is disposed under the cooling base 20 and includes a cooling chip 31, a heat sink 32 having a plurality of holes 321, and a fan 33.
  • the top surface of the cooling chip 31 is a cold end surface and the bottom surface of the cooling chip 31 is a hot end surface.
  • the heat radiating fins 32 having a plurality of holes 321 are adhered to the bottom surface of the cooling chip 31 through the heat dissipating adhesive to dissipate heat.
  • the top surface of the refrigerating chip 31 is adjacent to the refrigerating base 20, and the fan 33 is disposed at a large amount. Below the heat sink 32 of the hole 321 and sucking the air outside the cooling box of the golf ball, the hot air is taken out to the heat sink 32 to be blown off, and the cooling chip 31 and the heat sink 32 having the plurality of holes 321 are also disposed.
  • the heat insulating sheet 34 prevents the heat transfer from the bottom surface of the cooling chip 31 to the cooling base 20, and the cooling cover 21 freely presses the cooling base 20 due to the action of the compression spring structure of the cooling cover 21, thereby enhancing the effect of cooling the golf ball 50.
  • the control module 40 is adjacent to the cooling module 30 and is electrically connected to the cooling chip 31 and the fan 33 to control its operation. In addition to this, the power module 60 provides power to the control module 40 so that the entire cooling process is not interrupted.
  • the materials of the cooling base 20 and the cooling cover 21 are all metal.
  • the materials of the cooling base 20 and the cooling cover 21 are all aluminum. Since the thermal conductivity of the metal is high, the cooling of the golf ball 50 is enhanced.
  • the cooling base 20 and the refrigerating cover 21 are designed to be in close contact with the golf ball 50 according to the shape of the golf ball 50, so that the sealed refrigerating space is minimized to conform to the shape of the golf ball 50, thereby improving the cooling effect of the golf ball 50. And save energy.
  • the cooling base 20 and the refrigerating cover 21 are in close contact with the entire golf ball 50 when sealed, the cooling efficiency of the cooling module 30 is improved.
  • the operation principle of the refrigerating chip 31 will be described first to have a more complete understanding of the golf ball cooling box of the present application.
  • the bottom surface of the refrigerating chip 31 starts to absorb the temperature of the top surface of the refrigerating chip 31, and the top surface of the refrigerating chip 31 starts to cool down to form a cold end surface and cools the surrounding air.
  • the bottom surface of the refrigerating chip 31 is The heat generating end face is heated to absorb the temperature of the cooling chip 31 to form a hot end face.
  • the heat sink 32 having the plurality of holes 321 located below the bottom surface of the refrigerating chip 31 starts to dissipate heat to the bottom surface of the refrigerating chip 31, and has a plurality of holes 321 for heat dissipation.
  • the sheet 32 thus starts to heat up, and the heat sink 32 having the plurality of holes 321 is cooled by the operation of the fan 33, so that the fins 32 having the plurality of holes 321 can be continuously cooled.
  • the process of controlling the cooling chip 31 and the fan 33 by the control module 40 is as follows: when the control module 40 applies a control signal to the cooling chip 31 and the fan 33, the top surface of the cooling chip 31 absorbs the ambient heat between the cooling chip 31 and the cooling base 20 to form a cold. The air, in turn, directly cools the golf ball 50 in the closed refrigerating space, the bottom surface of the refrigerating chip 31 starts to generate heat, and the fin 32 having the plurality of holes 321 under the cooling chip 31 starts to dissipate heat, and at the same time, the fan 33 starts to operate. The air outside the golf ball cooling box is sucked, and the hot air is taken out to the heat sink 32 to be blown off.
  • FIG. 3 and 4 are block diagrams of a second embodiment of a golf ball cooling case according to the present application and a structural view of a second embodiment of the golf ball cooling case according to the present application.
  • the configurations of the components having the same reference numerals are similar to those described above, and the similarities thereof will not be described herein.
  • the two temperature sensors 70 are disposed in the closed refrigerating space.
  • the temperature sensor 70 transmits a stop signal to the control.
  • the control module 40 does not apply a control signal to the cooling chip 31 and the fan 33 according to the stop signal, and stops the cooling chip 31 and the fan 33.
  • the temperature of the sealed refrigerating space does not decrease, and the temperature of the golf ball 50 is therefore No longer lowered.
  • the temperature range is between 3 and 6 degrees, which is a temperature at which the structural layer of the golf ball 50 is maintained at an optimum state, allowing the golfer to feel smooth when playing the golf ball 50 using the golf club.
  • a fixing device 80 is disposed between the top surface of the fan 33 and the heat sink 32 having a plurality of holes 321, so that there is a space between the heat sink 32 having the plurality of holes 321 and the fan 33, and if the heat sink 33 is too The operation of the fan 33 is affected in the near future. Further, the holder 80 supports the fin 32 having the plurality of holes 321 without dropping it, so that the operation of the fan 33 is smoother.
  • the golf ball cooling box of the present application utilizes the cooling chip 31 to absorb the ambient heat between the cooling ball and the cooling base 20 to form cold air, directly cools the cooling base 20, thereby cooling the golf ball 50, and additionally has a temperature sensor 70. Assisting in controlling the temperature between 3 and 6 degrees maintains the structural layer of the golf ball 50 in an optimal state, and the golfer feels smooth without feeling uncomfortable when using the golf club to shoot the golf ball 50.
  • the golf ball cooling box of the present application has the advantages described above to maintain the structural layer of the golf ball 50 in an optimal state, allowing the golfer to easily use the golf club to shoot the golf ball 50.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

一种高尔夫球冷却盒,包括主体(10)、制冷底座(20)、冷却模块(30)及控制模块(40)。主体(10)由盒体(11)及外盖(12)组成,外盖(12)覆盖盒体(10)的顶部,使得盒体(10)的内部形成密封空间。制冷底座(20)设置于密封空间并和具有压簧结构的制冷盖(21)契合,以形成密闭制冷空间,密闭制冷空间提供高尔夫球放置并与所述高尔夫球的形状契合。冷却模块(30)设置于制冷底座(20)下并对其进行降温,进而对高尔夫球冷却。控制模块(40)设置于冷却模块(30)的邻近处并电性连接于冷却模块(30),以控制冷却模块(30)的运行。

Description

高尔夫球冷却盒 技术领域
本申请涉及一种冷却盒,尤其涉及一种用于高尔夫球冷却的高尔夫球冷却盒。
背景技术
随着科技的进步,新颖材料的发现,高尔夫球的结构层越来越复杂,通常这些结构层都是由聚合物所构成,由聚合物组成的结构层遇到过度高温时会开始软化,遇到过度低温则会开始硬化,由此可见,温度对高尔夫球的结构具有一定的影响力,且硬化或软化的高尔夫球会影响其被击出的距离及旋转率,高尔夫球运动者则需耗费较多的力气击出硬化或软化的高尔夫球,而浪费力气在击出的力道而非磨练球技,让高尔夫球运动员产生挫败感。
综观前所述,本申请设计一种高尔夫球冷却盒,以期针对现有技术的缺失加以改善,进而增进产业上的实施利用。
发明的公开
鉴于上述问题,本申请的目的在于提供一种高尔夫球冷却盒,用以解决已知技术中所面临的问题。
基于上述目的,本申请提供一种高尔夫球冷却盒,其包括主体、隔板、冷却模块及控制模块。主体由盒体及外盖组成,外盖覆盖盒体的顶部,使得盒体的内部形成密封空间。制冷底座设置于密封空间并和具有压簧结构的制冷盖契合以形成密闭制冷空间,密闭制冷空间提供高尔夫球放置并与高尔夫球的形状契合,且制冷底座和制冷盖的截面形状皆为半圆形,制冷底座和制冷盖密闭时形成截面形状为圆形的密闭制冷空间,以紧贴整个高尔夫球,从而让密闭制冷空间最小化。冷却模块设置于制冷底座下并对制冷底座进行降温,进而对高尔夫球冷却且由于压簧结构的作用,制冷盖自由压住制冷底座 而达到降温效果,且由于制冷底座和制冷盖于密闭时紧贴整个高尔夫球,因而提高冷却模块的冷却效率。控制模块邻近于冷却模块并电性连接于冷却模块,以控制冷却模块的运行。
优选地,制冷底座和制冷盖为依照高尔夫球的形状设计而紧贴于高尔夫球,使密闭制冷空间最小化到符合高尔夫球的形状,进而提升高尔夫球的制冷效果及节省电能。
优选地,更包括设置于密闭制冷空间的两个温度传感器,当两个温度传感器感知密闭制冷空间的环境温度低于温度范围时,两个温度传感器传送停止讯号给控制模块,控制模块依照停止讯号让冷却模块停止运作。
优选地,温度范围为3度到6度之间。
优选地,冷却模块包括具有多个孔洞的散热片、制冷芯片,制冷芯片与控制模块电性连接,且制冷芯片的顶面为冷端面及制冷芯片的底面为热端面,所述热端面发出热空气,具有多个孔洞的散热片黏附于制冷芯片的底面之下以散热,制冷芯片的顶面邻近所述制冷底座并吸收其和所述制冷底座间的环境热量而形成冷空气。
优选地,冷却模块更包括风扇,风扇设置于具有多个孔洞的散热片之下并电性链接于控制模块,风扇吸入所述高尔夫球冷却盒外的空气,进而将热空气带出至散热片吹散。
优选地,风扇的顶面和具有多个孔洞的散热片之间具有固定器,让具有多个孔洞的散热片与风扇之间有一间隔。
优选地,制冷芯片和具有多个孔洞的散热片之间具有隔热片,防止制冷芯片的底面的热传至制冷底座。
优选地,具有多个孔洞的散热片与制冷芯片经由散热胶黏附。
优选地,更包括与控制模块电性连接的电源模块,其位于密封空间且邻近于控制模块。
如上所述,本申请的高尔夫球冷却盒可具有下述优点中的一个或多个:
(1)本申请的高尔夫球冷却盒具有制冷底座和制冷盖以放置高尔夫球,透过冷却模块对制冷底座降温而对高尔夫球冷却。
(2)本申请的高尔夫球冷却盒维持密闭制冷空间的温度于3度到6度之间,而未让高尔夫球硬化。
附图的简要说明
图1为根据本申请的高尔夫球冷却盒的第一实施例的结构图。
图2为根据本申请的高尔夫球冷却盒的第一实施例的剖面图。
图3为根据本申请的高尔夫球冷却盒的第二实施例的方块图。
图4为根据本申请的高尔夫球冷却盒的第二实施例的结构图。
附图标记说明
10:主体;11:盒体;12:外盖;20制冷底座;21制冷盖;30:冷却模块;31:制冷芯片;32:散热片;33:风扇;34:隔热片;40:控制模块;50:高尔夫球;60:电源模块;70:温度传感器;80:固定器;111:密封空间;321:孔洞
实现本发明的最佳方式
为了了解本申请的特征、内容与优点以及其所能达到的功效,将本申请配合图,并以实施例的表达形式详细说明如下,而其中所使用的图,其主旨仅为示意和辅助说明书之用,未必为本申请实施例的真实比例与精准配置,因此不应就所附的图的比例与配置关系解读、局限本申请于实际实施上的权利范围。
本申请的优点、特征以及达到的技术方法将参照示例性实施例和所附图进行更详细地描述而更容易理解,且本申请可以以不同形式来实现,因此不应被理解为仅限于在此所陈述的实施例,相反地,对所属技术领域技术人员而言,所提供的实施例将使本揭露更加透彻与全面且完整地传达本申请的范畴,且本申请将仅为所附加的权利要求书所定义。
参照图1及图2,其为根据本申请的高尔夫球冷却盒的第一实施例的结构图及根据本申请的高尔夫球冷却盒的第一实施例的剖面图。如图1、图2所示,本申请的高尔夫球冷却盒包括主体10、隔板20、冷却模块30及控制模块40。主体10由盒体11及外盖12组成,外盖12覆盖盒体11的顶部,使得盒体11的内部形成密封空间。制冷底座20设置于密封空间111并和具有压簧结构的制冷盖21契合以形成密闭制冷空间,密闭制冷空间提供高尔夫球50放置并与高尔夫球50的形状契合,而制冷盖21具有压簧结构而能自由 活动,且制冷底座20和制冷盖21的截面形状皆为半圆形,制冷底座20和制冷盖21密闭时形成截面形状为圆形的密闭制冷空间,以紧贴整个高尔夫球50,从而让密闭制冷空间最小化。冷却模块30设置于制冷底座20下并包括制冷芯片31、具有多个孔洞321的散热片32及风扇33,制冷芯片31的顶面为冷端面及制冷芯片31的底面为热端面,所述热端面发出热空气,具有多个孔洞321的散热片32透过散热胶黏附于制冷芯片31的底面之下以散热,制冷芯片31的顶面邻近于所述制冷底座20,风扇33设置于具有多个孔洞321的散热片32之下,并吸入高尔夫球冷却盒外的空气,进而将热空气带出至散热片32吹散,还有位于制冷芯片31和具有多个孔洞321的散热片32之间的隔热片34,防止制冷芯片31的底面的热传输到制冷底座20,且由于制冷盖21的压簧结构的作用,制冷盖21自由压住制冷底座20,增进冷却高尔夫球50的效果。控制模块40邻近于冷却模块30,并电性连接于制冷芯片31及风扇33以控制其运作。除此之外,还有电源模块60提供电能给控制模块40,让整个冷却流程不会中断。
值得一提的是,制冷底座20和制冷盖21的材料皆为金属,优选地,制冷底座20和制冷盖21的材料皆为铝,由于金属的导热系数较高,因而增进冷却高尔夫球50的速率,再者,制冷底座20和制冷盖21为依照高尔夫球50的形状设计而紧贴于高尔夫球50,使密闭制冷空间最小化到符合高尔夫球50的形状,进而提升高尔夫球50的制冷效果及节省电能。另外,由于制冷底座20和制冷盖21于密闭时紧贴整个高尔夫球50,因而提高冷却模块30的冷却效率。
于此,先说明制冷芯片31的运作原理,以对本申请的高尔夫球冷却盒有更完整的理解。当施加电流给制冷芯片31时,制冷芯片31的底面开始吸收制冷芯片31的顶面的温度,制冷芯片31的顶面开始降温而形成冷端面并对其周围空气降温,制冷芯片31的底面因为吸收制冷芯片31的温度而开始发热形成热端面,此时,位于制冷芯片31的底面之下的具有多个孔洞321的散热片32开始对制冷芯片31的底面散热,具有多个孔洞321的散热片32因而开始升温,再透过风扇33的运转对具有多个孔洞321的散热片32降温,让具有多个孔洞321的散热片32能持续散热。
详细说明控制模块40控制制冷芯片31及风扇33的过程如下:当控制模 块40施加控制讯号给制冷芯片31及风扇33,制冷芯片31的顶面吸收其和制冷底座20间的环境热量以形成冷空气,进而直接对密闭制冷空间内的高尔夫球50冷却,制冷芯片31的底面开始发热,而位于制冷芯片31之下的具有多个孔洞321的散热片32开始散热,同时,风扇33开始运行并吸入高尔夫球冷却盒外的空气,进而将热空气带出至散热片32吹散。
参阅图3及图4,其为根据本申请的高尔夫球冷却盒的第二实施例的方块图及根据本申请的高尔夫球冷却盒的第二实施例的结构图。在本实施例中,对于标号相同的组件,其配置与前述类似,其相似之处在此便不再加以赘述。
如图3和图4所示,更包括设置于密闭制冷空间的两个温度传感器70,当两个温度传感器70感知密闭制冷空间的环境温度低于温度范围时,温度传感器70传送停止讯号给控制模块40,控制模块40依照停止讯号而未施加控制讯号给制冷芯片31及风扇33,让制冷芯片31及风扇33停止运作,此时,密闭制冷空间的温度不再下降,高尔夫球50的温度因此不再降低。再者,温度范围为3度到6度之间,其为让高尔夫球50的结构层维持在最佳状态的温度,让高尔夫球运动员使用高尔夫球杆打出高尔夫球50时感到流畅。
除此之外,风扇33的顶面和具有多个孔洞321的散热片32之间具有固定器80,让具有多个孔洞321的散热片32与风扇33之间有一间隔,散热片33如果太近会影响风扇33的运转,此外,固定器80支撑具有多个孔洞321的散热片32而不让其掉落,让风扇33的运转更加顺畅。
综上所述,本申请的高尔夫球冷却盒利用制冷芯片31吸收其和制冷底座20间的环境热量以形成冷空气,直接对制冷底座20降温,进而冷却高尔夫球50,另外具有温度传感器70,协助控制温度在3度到6度之间,让高尔夫球50的结构层维持在最佳状态,高尔夫球运动员使用高尔夫球杆打出高尔夫球50时感到流畅而未感到不适。总而言之,本申请的高尔夫球冷却盒具有如上述的优点,让高尔夫球50的结构层维持在最佳状态,让高尔夫球运动员轻松地使用高尔夫球杆打出高尔夫球50。
以上所述的实施例仅为说明本申请的技术构思和特点,其目的在于使熟悉此项技术的人员能够了解本申请的内容并据以实施,当不能用以限定本申请的权利要求,即大凡依本申请所揭示的精神所作的均等变化或修饰,仍应涵盖在本申请的权利要求内。

Claims (10)

  1. 一种高尔夫球冷却盒,其特征在于,其包括:
    主体,由盒体及外盖组成,所述外盖覆盖所述盒体的顶部,使得所述盒体的内部形成密封空间;
    制冷底座,设置于所述密封空间并和具有压簧结构的制冷盖契合以形成密闭制冷空间,所述密闭制冷空间提供高尔夫球放置并与所述高尔夫球的形状契合,且所述制冷底座和所述制冷盖的截面形状皆为半圆形,所述制冷底座和所述制冷盖密闭时形成截面形状为圆形的所述密闭制冷空间,以紧贴整个所述高尔夫球,从而让所述密闭制冷空间最小化;
    冷却模块,设置于所述制冷底座下并对所述制冷底座进行降温,进而对所述高尔夫球冷却,而由于所述制冷底座和所述制冷盖于密闭时紧贴整个所述高尔夫球,因而提高所述冷却模块的冷却效率;以及
    控制模块,邻近于所述冷却模块并电性连接于所述冷却模块,以控制所述冷却模块的运行。
  2. 根据权利要求1所述的高尔夫球冷却盒,其特征在于,所述制冷底座和所述制冷盖为依照所述高尔夫球的形状设计而紧贴于所述高尔夫球。
  3. 根据权利要求1所述的高尔夫球冷却盒,其特征在于,更包括设置于所述密闭制冷空间的两个温度传感器,当两个所述温度传感器感知所述密闭制冷空间的环境温度低于温度范围时,两个所述温度传感器传送停止讯号给控制模块,所述控制模块依照所述停止讯号让所述冷却模块停止运作。
  4. 根据权利要求3所述的高尔夫球冷却盒,其特征在于,所述温度范围为3度到6度之间。
  5. 根据权利要求1所述的高尔夫球冷却盒,其特征在于,所述冷却模块包括具有多个孔洞的散热片、制冷芯片,所述制冷芯片与所述控制模块电性连接,且所述制冷芯片的顶面为冷端面及所述制冷芯片的底面为热端 面,所述热端面发出热空气,具有所述多个孔洞的所述散热片黏附于所述制冷芯片的底面之下以散热,所述制冷芯片的顶面邻近所述制冷底座并吸收其和所述制冷底座间的环境热量而形成冷空气。
  6. 根据权利要求5所述的高尔夫球冷却盒,其特征在于,所述冷却模块更包括风扇,所述风扇设置于具有所述多个孔洞的所述散热片之下并电性链接于所述控制模块,所述风扇吸入所述高尔夫球冷却盒外的空气,进而将所述热空气带出至所述散热片吹散。
  7. 根据权利要求6所述的高尔夫球冷却盒,其特征在于,所述风扇的顶面和具有所述多个孔洞的所述散热片之间具有固定器,让具有所述多个孔洞的所述散热片与所述风扇之间有一间隔。
  8. 根据权利要求5所述的高尔夫球冷却盒,其特征在于,所述制冷芯片和具有所述多个孔洞的所述散热片之间具有隔热片。
  9. 根据权利要求5所述的高尔夫球冷却盒,其特征在于,具有所述多个孔洞的所述散热片与所述制冷芯片经由散热胶黏附。
  10. 根据权利要求1所述的高尔夫球冷却盒,其特征在于,更包括与所述控制模块电性连接的电源模块,其位于所述密封空间且邻近于所述控制模块。
PCT/CN2018/076595 2018-02-13 2018-02-13 高尔夫球冷却盒 WO2019157611A1 (zh)

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