TWI617490B - Portable bubble water bottle - Google Patents

Portable bubble water bottle Download PDF

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Publication number
TWI617490B
TWI617490B TW106127620A TW106127620A TWI617490B TW I617490 B TWI617490 B TW I617490B TW 106127620 A TW106127620 A TW 106127620A TW 106127620 A TW106127620 A TW 106127620A TW I617490 B TWI617490 B TW I617490B
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Taiwan
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gas
valve
air
bottle
portable
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TW106127620A
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Chinese (zh)
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TW201910218A (en
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岳造宇
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沃拓創意股份有限公司
岳造宇
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Publication of TW201910218A publication Critical patent/TW201910218A/en

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Abstract

一種可攜式氣泡水瓶包括有外瓶殼體、分隔槽體、底蓋與供氣裝置。分隔槽體的上下方分別定義出儲液空間與供氣空間,且分隔槽體上具有連接孔。供氣裝置設置於供氣空間中,包括氣瓶與控制氣閥。氣瓶係以氣瓶出氣口朝下之方式放置於供氣空間中。氣瓶之氣瓶出氣口,透過控制氣閥與分隔槽體之連接孔而連接至儲液空間。據此,本發明可大幅提高溶氣效果、增加氣泡水瓶使用時的安全性、輕鬆操作、分段溶氣、降低氣體逸散速度,並可達到客製效果。 A portable bubble water bottle comprises an outer bottle shell, a separation tank body, a bottom cover and a gas supply device. The upper and lower sides of the separation tank respectively define a liquid storage space and a gas supply space, and the separation tank body has a connection hole. The gas supply device is disposed in the gas supply space, including the gas cylinder and the control gas valve. The gas cylinder is placed in the air supply space with the gas cylinder outlet facing downward. The gas cylinder outlet of the gas cylinder is connected to the liquid storage space through the connection hole of the control gas valve and the separation tank body. Accordingly, the present invention can greatly improve the effect of dissolving gas, increase the safety of the use of the bubble water bottle, operate easily, dissolve the gas in sections, reduce the gas escape velocity, and achieve a customized effect.

Description

可攜式氣泡水瓶 Portable bubble water bottle

本發明係關於一種氣泡水瓶,特別關於一種可攜式氣泡水瓶。 The present invention relates to a bubble water bottle, and more particularly to a portable water bottle.

隨著飲用氣泡水的優點被提出後,越來越被大眾所接受,民眾除了可以直接購買氣泡水之外,業者也開發出氣泡水機,以令民眾可以在家裡自己製造氣泡水來飲用。 As the advantages of drinking sparkling water have been raised, it has become more and more accepted by the public. In addition to the direct purchase of bubble water, the industry has also developed a bubble water machine so that people can make their own bubble water at home.

請參照第1圖,第1圖係習知氣泡水機40的剖面示意圖。如第1圖所示,一般習知的氣泡水機40主要具有機台41、氣瓶42、杯體43以及導氣管44。氣瓶42填充有二氧化碳,並裝設於機台41之一側。在機台41的另一側則可置放杯體43,而杯體43與氣瓶42之間係由導氣管44連接。導氣管44係伸入於杯體43內,將氣瓶42內的二氧化碳氣體與杯體43內的水混合,即可製成氣泡水。最後,將杯體43由機台41上取下,即可直接飲用杯體43內的氣泡水,或倒入其他容器內飲用。 Please refer to Fig. 1, which is a schematic cross-sectional view of a conventional bubble water machine 40. As shown in Fig. 1, a conventional bubble water machine 40 mainly has a machine table 41, a gas cylinder 42, a cup body 43, and an air guide tube 44. The gas cylinder 42 is filled with carbon dioxide and is mounted on one side of the machine table 41. On the other side of the machine table 41, the cup body 43 can be placed, and the cup body 43 and the gas cylinder 42 are connected by an air guiding tube 44. The air guiding tube 44 is inserted into the cup body 43 to mix the carbon dioxide gas in the gas cylinder 42 with the water in the cup body 43 to form bubble water. Finally, the cup body 43 is removed from the machine table 41, and the bubble water in the cup body 43 can be directly consumed or poured into other containers for drinking.

由於氣泡水機40需要佔用一個固定的空間,因此也有業者推出較為便利的氣泡水瓶。請參照第2圖,第2圖係習知氣泡水瓶50的剖面示意圖。如第2圖所示,一般習知的氣泡水瓶50主要具有上蓋51、杯體52、導氣管53以及氣瓶54。上蓋51係連接於杯體52,且導氣管53係由上蓋51延伸至杯體52內。氣瓶54則連接於外露於上蓋51之導氣管53之一端,將氣瓶54內的二氧化碳氣體與杯體52內的水混合,即可製成氣泡水。 Since the bubble water machine 40 needs to occupy a fixed space, some manufacturers have introduced a relatively convenient bubble water bottle. Please refer to FIG. 2, which is a schematic cross-sectional view of a conventional bubble water bottle 50. As shown in FIG. 2, a conventional bubble water bottle 50 mainly has an upper cover 51, a cup body 52, an air guide tube 53, and a gas cylinder 54. The upper cover 51 is coupled to the cup 52, and the air guide 53 is extended from the upper cover 51 into the cup 52. The gas cylinder 54 is connected to one end of the air guiding tube 53 exposed to the upper cover 51, and carbon dioxide gas in the gas cylinder 54 is mixed with water in the cup body 52 to form bubble water.

然而,便利型的氣泡水瓶50在使用時,氣瓶54係外露使用。當使用者在使用氣泡水瓶50時不小心撞擊到氣瓶54,將可能導致氣瓶54與導氣管53之間的連接脫離。由於氣瓶54中係填充高壓氣體,因此當氣瓶54脫離導氣管53時,氣瓶54可能會以高 速噴射至不確定的地方,而導致危險。 However, when the convenient bubble water bottle 50 is in use, the gas cylinder 54 is exposed. When the user accidentally hits the gas cylinder 54 while using the bubble water bottle 50, it may cause the connection between the gas cylinder 54 and the air guide tube 53 to be detached. Since the cylinder 54 is filled with high pressure gas, when the cylinder 54 is disengaged from the air duct 53, the cylinder 54 may be high. Rapid injection to an indeterminate place, resulting in danger.

此外,習知氣泡水機40與氣泡水瓶50之導氣管44、53均係伸入於杯體43、52之中央位置。由於氣泡在液體中係受到向上浮力,因此只有位於導氣管44、53出口以上的水可以與二氧化碳氣體進行混合,導致溶氣效果不佳。 Further, both the conventional air bubble unit 40 and the air tubes 44 and 53 of the bubble water bottle 50 project into the center of the cup bodies 43, 52. Since the bubbles are subjected to upward buoyancy in the liquid, only water located above the outlets of the air guiding tubes 44, 53 can be mixed with the carbon dioxide gas, resulting in poor gas-dissolving effect.

因此,如何提供一種便利、安全且高效的氣泡水裝置,實屬當前重要課題之一。 Therefore, how to provide a convenient, safe and efficient bubble water device is one of the current important topics.

因此,本發明之目的係提供一種可攜式氣泡水瓶,其中供氣裝置的出氣口係設置於液體容納室之下緣,藉由氣泡水瓶的外殼來保護氣瓶,提升氣液混合的效率與安全。 Therefore, the object of the present invention is to provide a portable water bottle, wherein the air outlet of the air supply device is disposed at the lower edge of the liquid storage chamber, and the gas cylinder is protected by the outer casing of the air bubble water bottle, thereby improving the efficiency of gas-liquid mixing. Safety.

根據上述目的,本發明提供一種可攜式氣泡水瓶,包括有外瓶殼體、分隔槽體、底蓋與供氣裝置。外瓶殼體由上而下定義有飲用部、瓶壁與組裝部。分隔槽體設置於外瓶殼體下方。分隔槽體由外而內定義有氣閥槽與氣瓶槽,且氣閥槽上具有連接孔。氣瓶槽朝向飲用部之方向凹陷。分隔槽體上方與外瓶殼體內側共同定義出儲液空間。底蓋從下方覆蓋分隔槽體與外瓶殼體之組裝部。底蓋上方與分隔槽體下方共同定義出供氣空間。供氣裝置,設置於供氣空間中,包括氣瓶與控制氣閥。氣瓶包括有氣瓶出氣口,且氣瓶係以氣瓶出氣口朝下之方式放置於氣瓶槽中。控制氣閥設置於氣閥槽中。控制氣閥包括有氣閥進氣口與氣閥出氣口。氣瓶出氣口連接至氣閥進氣口,且氣閥出氣口連接至儲液空間底部之連接孔。 According to the above object, the present invention provides a portable bubble water bottle comprising an outer bottle casing, a separation tank body, a bottom cover and a gas supply device. The outer bottle housing defines a drinking portion, a bottle wall and an assembly portion from top to bottom. The separation tank is disposed below the outer bottle housing. The separation tank body defines a valve groove and a cylinder groove from the outside, and the valve groove has a connection hole. The cylinder slot is recessed toward the drinking portion. A liquid storage space is defined above the partitioning tank and the inner side of the outer bottle casing. The bottom cover covers the assembly portion of the partitioning tank and the outer bottle casing from below. A gas supply space is defined above the bottom cover and below the partition tank. The gas supply device is disposed in the gas supply space, including the gas cylinder and the control gas valve. The gas cylinder includes a gas cylinder outlet, and the gas cylinder is placed in the cylinder tank with the gas cylinder outlet facing downward. The control valve is disposed in the valve spool. The control air valve includes a gas valve inlet and a gas valve outlet. The gas cylinder outlet is connected to the gas valve inlet, and the gas valve outlet is connected to the connection hole at the bottom of the liquid storage space.

於本發明之一實施例中,可攜式氣泡水瓶更包含上蓋,其係裝卸式連接於外瓶殼體之飲用部,以密閉儲液空間。 In an embodiment of the invention, the portable bubble water bottle further comprises an upper cover that is detachably connected to the drinking portion of the outer bottle casing to seal the liquid storage space.

於本發明之另一實施例中,上蓋係以螺合、樞接、卡合或上述之組合,而連接於外瓶殼體之飲用部。 In another embodiment of the invention, the upper cover is coupled to the drinking portion of the outer bottle housing by screwing, pivoting, snapping, or a combination thereof.

綜合上述,本發明可攜式氣泡水瓶之氣閥出氣口係連接至儲液空間底部之連接孔,因此大幅提高溶氣效果。其次,由於本發明係以氣瓶出氣口朝下之方式放置於氣瓶槽中,因此增 加氣泡水瓶使用時的安全性。再者,本發明上蓋與底蓋可裝卸式連接於外瓶殼體,因此可輕鬆操作。此外,本發明之控制氣閥設計可分次進行氣液混合,維持氣泡水的溶氣效果。 In summary, the air valve outlet of the portable bubble water bottle of the present invention is connected to the connection hole at the bottom of the liquid storage space, thereby greatly improving the dissolved air effect. Secondly, since the present invention is placed in the cylinder tank with the gas outlet port facing downward, Safety when using a bubble water bottle. Furthermore, the upper cover and the bottom cover of the present invention are detachably coupled to the outer bottle casing, so that it can be easily operated. In addition, the control valve design of the present invention can perform gas-liquid mixing in stages to maintain the dissolved air effect of the bubble water.

40‧‧‧氣泡水機 40‧‧‧bubble water machine

41‧‧‧機台 41‧‧‧ machine

42、54‧‧‧氣瓶 42, 54‧‧‧ gas cylinders

43、52‧‧‧杯體 43, 52‧‧‧ cup body

44、53‧‧‧導氣管 44, 53‧‧‧ air duct

50‧‧‧氣泡水瓶 50‧‧‧ bubble water bottle

51‧‧‧上蓋 51‧‧‧Upper cover

100、200、300‧‧‧可攜式氣泡水瓶 100, 200, 300‧‧‧ portable bubble water bottles

102、202‧‧‧上蓋 102, 202‧‧‧ Cover

103‧‧‧外螺紋面 103‧‧‧ Threaded surface

105‧‧‧內螺紋面 105‧‧‧ internal thread surface

106、206‧‧‧底蓋 106, 206‧‧‧ bottom cover

110、210、310‧‧‧外瓶殼體 110, 210, 310‧‧‧ outer bottle housing

111‧‧‧飲用部 111‧‧‧ Drinking Department

112‧‧‧瓶壁 112‧‧‧ bottle wall

113、213‧‧‧組裝部 113, 213‧‧‧ Assembly Department

114‧‧‧飲用邊緣 114‧‧‧ Drinking edge

115‧‧‧開口 115‧‧‧ openings

130‧‧‧分隔槽體 130‧‧‧Separate tank

132‧‧‧氣閥槽 132‧‧‧ valve slot

132a‧‧‧連接孔 132a‧‧‧connection hole

134‧‧‧氣瓶槽 134‧‧‧ gas cylinder

150‧‧‧供氣裝置 150‧‧‧ gas supply device

152‧‧‧氣瓶 152‧‧‧ gas cylinder

152b‧‧‧氣瓶出氣口 152b‧‧‧ gas cylinder outlet

154、354‧‧‧控制氣閥 154, 354‧‧‧Control valve

155‧‧‧彈簧 155‧‧ ‧ spring

156‧‧‧單向氣閥 156‧‧‧One-way air valve

157、357‧‧‧活動件 157, 357‧‧‧ activities

158、358‧‧‧控制按鈕 158, 358‧‧‧ control buttons

159‧‧‧導氣管道 159‧‧‧Gas duct

160、360‧‧‧閥體 160, 360‧‧‧ valve body

161、361‧‧‧進氣管道 161, 361‧‧ ‧ intake pipe

161a、361a‧‧‧氣閥進氣口 161a, 361a‧‧‧ valve inlet

162、362‧‧‧出氣管道 162, 362‧‧‧ gas pipeline

162b、362b‧‧‧氣閥出氣口 162b, 362b‧‧‧ gas valve outlet

163‧‧‧元件室 163‧‧‧Component Room

164‧‧‧上圓環 164‧‧‧上上环

165‧‧‧活動圓環 165‧‧‧ activity ring

166‧‧‧下圓環 166‧‧‧ lower ring

271‧‧‧第一樞接元件 271‧‧‧First pivotal component

272‧‧‧第二樞接元件 272‧‧‧Second pivotal component

273‧‧‧第一卡扣元件 273‧‧‧First snap element

274‧‧‧第二卡扣元件 274‧‧‧Second snap element

367‧‧‧圓環 367‧‧‧ Ring

SP1‧‧‧儲液空間 SP1‧‧‧ liquid storage space

SP2‧‧‧供氣空間 SP2‧‧‧ gas supply space

第1圖係習知一種氣泡水機的剖面示意圖。 Figure 1 is a schematic cross-sectional view of a bubble water machine.

第2圖係習知另一種氣泡水瓶的剖面示意圖。 Figure 2 is a schematic cross-sectional view of another bubble water bottle.

第3圖係本發明第一實施例可攜式氣泡水瓶之側視示意圖。 Fig. 3 is a side elevational view showing the portable water bottle of the first embodiment of the present invention.

第4圖係本發明第一實施例可攜式氣泡水瓶之上蓋示意圖。 Fig. 4 is a schematic view showing the upper cover of the portable bubble water bottle according to the first embodiment of the present invention.

第5圖係本發明第一實施例可攜式氣泡水瓶之仰視示意圖。 Fig. 5 is a bottom view showing the portable water bottle of the first embodiment of the present invention.

第6圖係本發明第一實施例可攜式氣泡水瓶的供氣裝置之立體示意圖。 Fig. 6 is a perspective view showing the air supply device of the portable bubble water bottle according to the first embodiment of the present invention.

第7圖係本發明第一實施例可攜式氣泡水瓶的供氣裝置之剖視示意圖。 Figure 7 is a cross-sectional view showing the gas supply device of the portable bubble water bottle according to the first embodiment of the present invention.

第8圖係本發明第二實施例可攜式氣泡水瓶之側視示意圖。 Fig. 8 is a side elevational view showing the portable water bottle of the second embodiment of the present invention.

第9圖係本發明第二實施例可攜式氣泡水瓶之正視示意圖。 Figure 9 is a front elevational view showing the portable water bottle of the second embodiment of the present invention.

第10圖係本發明第二實施例可攜式氣泡水瓶之上蓋的內部仰視示意圖。 Fig. 10 is a schematic bottom plan view showing the upper cover of the portable bubble water bottle according to the second embodiment of the present invention.

第11圖係本發明第二實施例可攜式氣泡水瓶之仰視示意圖。 Figure 11 is a bottom plan view showing a portable bubble water bottle according to a second embodiment of the present invention.

第12圖係本發明第三實施例可攜式氣泡水瓶之剖視示意圖。 Figure 12 is a cross-sectional view showing a portable water bottle of a third embodiment of the present invention.

關於本發明之優點與精神可以藉由以下發明詳述及所附圖式得到進一步的瞭解。本發明較佳實施例之製造及使用詳細說明如下。必須瞭解的是本發明提供了許多可應用的創新概念,在特定的背景技術之下可以做廣泛的實施。此特定的實施例僅以特定的方式表示,以製造及使用本發明,但並非限制本發明的範圍。 The advantages and spirit of the present invention will be further understood from the following detailed description of the invention. The manufacture and use of the preferred embodiments of the present invention are described in detail below. It must be understood that the present invention provides a number of applicable innovative concepts that can be widely implemented under specific background art. This particular embodiment is shown by way of example only, and is not intended to limit the scope of the invention.

請一併參照第3圖至第7圖,第3圖係本發明第一實施例可攜式氣泡水瓶100之側視示意圖,第4圖係本發明第一實施例可攜式氣泡水瓶100之上蓋102示意圖,第5圖係本發明第一實施例 可攜式氣泡水瓶100之仰視示意圖,第6圖係本發明第一實施例可攜式氣泡水瓶100的供氣裝置150之立體示意圖,而第7圖係本發明第一實施例可攜式氣泡水瓶100的供氣裝置150之剖視示意圖。 Referring to FIG. 3 to FIG. 7 together, FIG. 3 is a side view of the portable water bottle 100 according to the first embodiment of the present invention, and FIG. 4 is a portable air bottle 100 of the first embodiment of the present invention. The upper cover 102 is schematic, and the fifth figure is the first embodiment of the present invention. FIG. 6 is a schematic perspective view of a gas supply device 150 of a portable water bottle 100 according to a first embodiment of the present invention, and FIG. 7 is a portable air bubble of the first embodiment of the present invention. A schematic cross-sectional view of the air supply device 150 of the water bottle 100.

如第3圖至第7圖所示,本發明第一實施例之可攜式氣泡水瓶100包括有外瓶殼體110、分隔槽體130、上蓋102、底蓋106與供氣裝置150。 As shown in FIGS. 3 to 7, the portable water bottle 100 of the first embodiment of the present invention includes an outer bottle housing 110, a partitioning tank 130, an upper cover 102, a bottom cover 106, and a gas supply device 150.

外瓶殼體110本質上是一圓柱狀殼體。外瓶殼體110由上而下定義有飲用部111、瓶壁112與組裝部113。外瓶殼體110之飲用部111具有飲用邊緣114,其係由外瓶殼體110之邊緣所形成。外瓶殼體110之瓶壁112係連接組裝部113與飲用部111,且在組裝部113具有一開口115。在本實施例中,組裝部113係沿著外瓶殼體110之瓶壁112的周緣延伸而成。 The outer bottle housing 110 is essentially a cylindrical housing. The outer bottle housing 110 defines a drinking portion 111, a bottle wall 112, and an assembly portion 113 from top to bottom. The drinking portion 111 of the outer bottle housing 110 has a drinking edge 114 formed by the edges of the outer bottle housing 110. The bottle wall 112 of the outer bottle housing 110 is connected to the assembly portion 113 and the drinking portion 111, and has an opening 115 in the assembly portion 113. In the present embodiment, the assembly portion 113 extends along the circumference of the bottle wall 112 of the outer bottle housing 110.

分隔槽體130設置於外瓶殼體110下方。分隔槽體130由外而內定義有氣閥槽132與氣瓶槽134,且氣閥槽132上具有連接孔132a。氣瓶槽134朝向飲用部111之方向凹陷。分隔槽體130上方與外瓶殼體110內側共同定義出儲液空間SP1。氣閥槽132鄰接於外瓶殼體110之組裝部113底緣。 The partitioning groove body 130 is disposed below the outer bottle housing 110. The partitioning groove 130 defines an air valve groove 132 and a cylinder groove 134 from the outside, and the gas valve groove 132 has a connecting hole 132a. The cylinder groove 134 is recessed toward the drinking portion 111. A liquid storage space SP1 is defined above the partitioning tank 130 together with the inner side of the outer bottle casing 110. The valve spool 132 is adjacent to the bottom edge of the assembly portion 113 of the outer bottle housing 110.

上蓋102係連接於外瓶殼體110之飲用部111,在本實施例中,上蓋102係利用螺合組裝,裝卸式連接於外瓶殼體110之飲用部111,以密閉儲液空間SP1。具體而言,本實施例之上蓋102具有外螺紋面103(第4圖),而外瓶殼體110之飲用部111具有對應之內螺紋面105(第3圖)。使用者可利用旋轉方式嵌合外螺紋面103與內螺紋面105,將上蓋102旋入或旋出外瓶殼體110之飲用部111。其中,上蓋102的外螺紋面103所形成之外直徑,小於飲用部111的內螺紋面105之內直徑。 The upper cover 102 is connected to the drinking portion 111 of the outer bottle casing 110. In the present embodiment, the upper cover 102 is assembled by screwing, and is detachably connected to the drinking portion 111 of the outer bottle casing 110 to seal the liquid storage space SP1. Specifically, in the present embodiment, the upper cover 102 has a male thread surface 103 (Fig. 4), and the drinking portion 111 of the outer bottle housing 110 has a corresponding internal thread surface 105 (Fig. 3). The user can rotate the fitting of the external thread surface 103 and the internal thread surface 105, and screw the upper cover 102 into or out of the drinking portion 111 of the outer bottle housing 110. The outer diameter of the outer thread surface 103 of the upper cover 102 is smaller than the inner diameter of the inner thread surface 105 of the drinking portion 111.

底蓋106從下方覆蓋分隔槽體130與外瓶殼體110之組裝部113(第5圖),且底蓋106上方與分隔槽體130下方共同定義出供氣空間SP2。底蓋106係裝卸式連接於外瓶殼體110之組裝部113。藉由底蓋106與外瓶殼體110的組合,底蓋106與分隔槽體130可封閉供氣空間SP2。在本實施例中,供氣空間SP2之容積係小於 儲液空間SP1之容積。本實施例之底蓋106與外瓶殼體110之組裝部113亦利用螺合方式達成。其中,底蓋106與外瓶殼體110之間可利用橡膠(圖未示)等具有較大摩擦力之材料達到緊密結合的功效。使用者可利用旋轉方式,將底蓋106旋入或旋出外瓶殼體110之組裝部113。 The bottom cover 106 covers the assembly portion 113 (FIG. 5) of the partitioning groove body 130 and the outer bottle casing 110 from below, and the air supply space SP2 is defined above the bottom cover 106 and below the partitioning groove body 130. The bottom cover 106 is detachably coupled to the assembly portion 113 of the outer bottle housing 110. By the combination of the bottom cover 106 and the outer bottle housing 110, the bottom cover 106 and the partitioning groove 130 can close the air supply space SP2. In this embodiment, the volume of the air supply space SP2 is smaller than The volume of the liquid storage space SP1. The assembly portion 113 of the bottom cover 106 and the outer bottle housing 110 of the present embodiment is also achieved by screwing. Wherein, the bottom cover 106 and the outer bottle casing 110 can achieve a tight bonding effect by using a material having a large frictional force such as rubber (not shown). The user can screw the bottom cover 106 into or out of the assembly portion 113 of the outer bottle housing 110 by means of rotation.

當底蓋106與外瓶殼體110連接後,分隔槽體130被夾固在其中,而分隔槽體130可固定供氣裝置150位於供氣空間SP2中之位置,避免供氣裝置150在供氣空間SP2中位移。 After the bottom cover 106 is connected to the outer bottle housing 110, the partitioning groove body 130 is clamped therein, and the partitioning groove body 130 can fix the position of the air supply device 150 in the air supply space SP2 to prevent the air supply device 150 from being supplied. Displacement in the gas space SP2.

供氣裝置150設置於供氣空間SP2中,包括氣瓶152與控制氣閥154。氣瓶152包括有氣瓶出氣口152b,且氣瓶152係以氣瓶出氣口152b朝下之方式放置於氣瓶槽134中。其中,所謂的朝下係指氣瓶出氣口152b係遠離飲用部111而朝向底蓋106之方向。在本實施例中,氣瓶152中係填充被壓縮的液態二氧化碳。 The air supply device 150 is disposed in the air supply space SP2, and includes a gas cylinder 152 and a control air valve 154. The gas cylinder 152 includes a gas cylinder outlet 152b, and the gas cylinder 152 is placed in the cylinder tank 134 with the cylinder outlet 152b facing downward. Here, the downward direction means that the gas cylinder outlet 152b is away from the drinking portion 111 and faces the bottom cover 106. In the present embodiment, the gas cylinder 152 is filled with compressed liquid carbon dioxide.

當底蓋106與外瓶殼體110連接後,分隔槽體130被夾固在其中,氣瓶槽134可固定氣瓶152之位置,而氣閥槽132可固定控制氣閥154之位置,避免氣瓶152與控制氣閥154在供氣空間SP2中位移。 When the bottom cover 106 is connected to the outer bottle housing 110, the partitioning groove 130 is clamped therein, the cylinder groove 134 can fix the position of the gas cylinder 152, and the gas valve groove 132 can fix the position of the control valve 154 to avoid The gas cylinder 152 and the control air valve 154 are displaced in the air supply space SP2.

控制氣閥154設置於氣閥槽132中,用以將氣瓶152中的氣體釋出,例如每次動作僅通過一定流量的氣體。 A control valve 154 is provided in the valve spool 132 for releasing the gas in the cylinder 152, for example, only a certain flow of gas per action.

如第3圖、第6圖與第7圖所示,控制氣閥154包括有單向氣閥156與閥體160。單向氣閥156設置於氣閥槽132之連接孔132a上(第3圖),以選擇性地使氣瓶152中的氣體經由控制氣閥154流向儲液空間SP1。單向氣閥156係設置於儲液空間SP1底部,並連接儲液空間SP1及供氣空間SP2(第3圖)。在本實施例中,單向氣閥156例如為逆止閥,其係連接於控制氣閥154的出氣端,以使其容許通過方向係由供氣空間SP2通往儲液空間SP1,並使得儲液空間SP1中的液體不會流向供氣空間SP2。 As shown in FIGS. 3, 6, and 7, the control air valve 154 includes a one-way air valve 156 and a valve body 160. The one-way air valve 156 is disposed on the connection hole 132a of the air valve groove 132 (Fig. 3) to selectively cause the gas in the gas cylinder 152 to flow to the liquid storage space SP1 via the control air valve 154. The one-way air valve 156 is disposed at the bottom of the liquid storage space SP1 and is connected to the liquid storage space SP1 and the air supply space SP2 (Fig. 3). In the present embodiment, the one-way air valve 156 is, for example, a check valve that is connected to the air outlet end of the control air valve 154 so as to allow the passage of the direction from the air supply space SP2 to the liquid storage space SP1, and The liquid in the liquid storage space SP1 does not flow to the air supply space SP2.

閥體160設置於氣閥槽132中,藉由閥體160形狀與氣閥槽132形狀的配合,將控制氣閥154固定在氣閥槽132中(第3圖、第6圖與第7圖)。在閥體160中,閥體160形狀定義出一進氣管道 161、一出氣管道162與一元件室163(第7圖)。進氣管道161之入口定義為氣閥進氣口161a,連接至氣瓶出氣口152b。出氣管道162之出口定義為氣閥出氣口162b,連接至氣閥槽132之連接孔132a與單向氣閥156,進而連接至儲液空間SP1(第3圖)。 The valve body 160 is disposed in the valve groove 132, and the control valve 154 is fixed in the valve groove 132 by the shape of the valve body 160 and the shape of the valve groove 132 (Fig. 3, Fig. 6, and Fig. 7). ). In the valve body 160, the shape of the valve body 160 defines an intake duct 161, an outlet duct 162 and an element chamber 163 (Fig. 7). The inlet of the intake duct 161 is defined as a valve inlet 161a that is connected to the cylinder outlet 152b. The outlet of the outlet duct 162 is defined as a valve outlet 162b, connected to the connection hole 132a of the valve spool 132 and the one-way air valve 156, and further connected to the reservoir space SP1 (Fig. 3).

如第7圖所示,在元件室163中,控制氣閥154沿著軸向從上而下更包括有彈簧155、活動件157以及控制按鈕158。在本實施例中,控制按鈕158係以直壓式為例。控制按鈕158從氣閥槽132軸向向下延伸至控制氣閥154外,而活動件157設置於閥體160中軸向線性移動。活動件157內部定義有導氣管道159,導氣管道159徑向貫穿活動件157,用以在按壓控制按鈕158時連接進氣管道161與出氣管道162。 As shown in FIG. 7, in the component chamber 163, the control air valve 154 further includes a spring 155, a movable member 157, and a control button 158 from top to bottom along the axial direction. In the present embodiment, the control button 158 is exemplified by a direct pressure type. The control button 158 extends axially downward from the valve spool 132 to the outside of the control valve 154, and the movable member 157 is disposed in the valve body 160 to move axially linearly. The movable member 157 defines an air guiding duct 159 inside, and the air guiding duct 159 radially penetrates the movable member 157 for connecting the intake duct 161 and the air outlet duct 162 when the control button 158 is pressed.

此外,控制氣閥154更包括有上圓環164、活動圓環165與下圓環166,均套設於活動件157外,位於活動件157與閥體160之間,用來作氣體封閉,例如避免氣瓶152內的氣體從控制按鈕158周圍洩漏而出。根據控制氣閥154各元件的相對位置,沿著軸向從上而下分別是彈簧155、進氣管道161、上圓環164、出氣管道162、活動圓環165、導氣管道159、下圓環166以及控制按鈕158。 In addition, the control valve 154 further includes an upper ring 164, a movable ring 165 and a lower ring 166, which are sleeved outside the movable member 157 and located between the movable member 157 and the valve body 160 for gas sealing. For example, the gas in the gas cylinder 152 is prevented from leaking out around the control button 158. According to the relative positions of the components of the control valve 154, the spring 155, the intake pipe 161, the upper ring 164, the air outlet pipe 162, the movable ring 165, the air guiding pipe 159, and the lower circle are respectively from top to bottom along the axial direction. Ring 166 and control button 158.

在控制按鈕158未作動時,氣瓶152的氣體透過氣瓶出氣口152b連接至氣閥進氣口161a與進氣管道161,活動件157會將氣瓶152的氣體封閉在氣瓶152與進氣管道161內。在控制按鈕158作動時,例如按壓控制按鈕158時,氣瓶152的高壓氣體會透過氣瓶出氣口152b、氣閥進氣口161a、進氣管道161、活動件157之導氣管道159、出氣管道162、氣閥出氣口162b與單向氣閥156,到達儲液空間SP1。 When the control button 158 is not actuated, the gas of the gas cylinder 152 is connected to the gas valve inlet 161a and the intake pipe 161 through the gas cylinder outlet 152b, and the movable member 157 closes the gas of the gas cylinder 152 to the gas cylinder 152 and the inlet. Inside the gas pipe 161. When the control button 158 is actuated, for example, when the control button 158 is pressed, the high pressure gas of the gas cylinder 152 passes through the cylinder air outlet 152b, the air valve inlet 161a, the intake duct 161, the air guiding duct 159 of the movable member 157, and the air outlet. The duct 162, the air valve outlet 162b and the one-way air valve 156 reach the liquid storage space SP1.

在組裝或更換氣瓶152時,使用者可先將底蓋106從外瓶殼體110取下,便可將控制氣閥154與氣瓶152等元件從外瓶殼體110取出,再安裝新氣瓶152與控制氣閥154。其中,本實施例之外瓶殼體110、分隔槽體130、上蓋102、底蓋106與供氣裝置150等元件均可拆卸進行清洗或更換。而於其他實施例中,外瓶殼體110與分隔槽體130可彼此固定。 When assembling or replacing the gas cylinder 152, the user can first remove the bottom cover 106 from the outer bottle housing 110, and then the control valve 154 and the gas cylinder 152 and the like can be taken out from the outer bottle housing 110, and then installed. The new gas cylinder 152 and the control gas valve 154. In this embodiment, the bottle housing 110, the separation tank 130, the upper cover 102, the bottom cover 106, and the air supply device 150 and the like can be detached for cleaning or replacement. In other embodiments, the outer bottle housing 110 and the partitioning groove 130 can be fixed to each other.

在實際使用時,儲液空間SP1一般係用以乘裝水、果汁、茶飲或酒精飲料等液體。在上蓋102連接外瓶殼體110以密閉儲液空間SP1後,當氣瓶152中的二氧化碳經由單向氣閥156進入儲液空間SP1,即可與儲液空間SP1之液體混合溶解產生氣泡飲品。 In actual use, the liquid storage space SP1 is generally used for liquids such as water, juice, tea or alcoholic beverages. After the upper cap 102 is connected to the outer bottle casing 110 to seal the liquid storage space SP1, when the carbon dioxide in the gas cylinder 152 enters the liquid storage space SP1 via the one-way air valve 156, it can be mixed with the liquid in the liquid storage space SP1 to generate a bubble drink. .

本發明可攜式氣泡水瓶100還可具有其他結構,例如上蓋102、底蓋106與外瓶殼體110之組裝可用樞接、卡合或鎖合等結合方式。請一併參照第8圖至第11圖,第8圖係本發明第二實施例可攜式氣泡水瓶200之側視示意圖,第9圖係本發明第二實施例可攜式氣泡水瓶200之正視示意圖,第10圖係本發明第二實施例可攜式氣泡水瓶200之上蓋202的內部仰視示意圖,而第11圖係本發明第二實施例可攜式氣泡水瓶200之仰視示意圖。第二實施例與第一實施例之主要不同在於,第二實施例之上蓋202、底蓋206與外瓶殼體210係利用樞接與卡合來做組裝結合。 The portable bubble water bottle 100 of the present invention may have other structures, for example, the upper cover 102, the bottom cover 106 and the outer bottle housing 110 may be assembled by pivoting, snapping or locking. Referring to FIG. 8 to FIG. 11 together, FIG. 8 is a side view of a portable air bubble bottle 200 according to a second embodiment of the present invention, and FIG. 9 is a portable air bubble water bottle of the second embodiment of the present invention. Fig. 10 is a schematic bottom plan view of the upper cover 202 of the portable bubble water bottle 200 according to the second embodiment of the present invention, and Fig. 11 is a bottom view showing the portable bubble water bottle 200 of the second embodiment of the present invention. The second embodiment differs from the first embodiment in that the upper cover 202, the bottom cover 206 and the outer bottle housing 210 of the second embodiment are assembled and coupled by pivoting and engaging.

如第8圖至第11圖所示,本發明第二實施例之上蓋202與外瓶殼體210之間利用第一樞接元件271軸接,利用第一卡扣元件273進行卡合關閉與彈蓋開啟。另一方面,底蓋206與外瓶殼體210的組裝部213之間利用第二樞接元件272軸接,利用第二卡扣元件274進行卡合關閉與彈蓋開啟(第9圖與第11圖)。上蓋202能以第一樞接元件271為軸心而相對於外瓶殼體210旋轉,底蓋206能以第二樞接元件272為軸心而相對於外瓶殼體210旋轉。如此一來,上蓋202與底蓋206均可輕鬆開啟操作與關閉操作,且不易遺失。 As shown in FIG. 8 to FIG. 11 , in the second embodiment of the present invention, the upper cover 202 and the outer bottle housing 210 are pivoted by the first pivoting member 271, and the first snap member 273 is used for closing and closing. The cover is open. On the other hand, the bottom cover 206 and the assembly portion 213 of the outer bottle housing 210 are pivoted by the second pivoting member 272, and the second snap member 274 is used for the closing and closing of the cover (Fig. 9 and 11 figure). The upper cover 202 can rotate relative to the outer bottle housing 210 with the first pivoting member 271 as an axis, and the bottom cover 206 can rotate relative to the outer bottle housing 210 with the second pivoting member 272 as an axis. In this way, the upper cover 202 and the bottom cover 206 can be easily opened and closed, and are not easily lost.

此外,本發明之控制氣閥154亦可具有其他結構設計。請參照第12圖,第12圖係本發明第三實施例可攜式氣泡水瓶300之剖視示意圖。第三實施例與前二實施例之主要不同在於,第三實施例之控制氣閥354具有不同設計,控制按鈕358係從氣閥槽132徑向向外延伸至外瓶殼體310外。 In addition, the control valve 154 of the present invention may have other structural designs. Please refer to FIG. 12, which is a cross-sectional view of a portable water bottle 300 according to a third embodiment of the present invention. The third embodiment differs from the first two embodiments in that the control valve 354 of the third embodiment has a different design, and the control button 358 extends radially outward from the valve spool 132 to the outside of the outer bottle housing 310.

如第12圖所示,控制氣閥354包括有氣閥進氣口361a、氣閥出氣口362b、進氣管道361、出氣管道362、單向氣閥156、控制按鈕358、閥體360、活動件357與圓環367。氣瓶出氣口 152b連接至氣閥進氣口361a,且氣閥出氣口362b透過氣閥槽132之連接孔132a而連接至儲液空間SP1。 As shown in Fig. 12, the control air valve 354 includes a valve inlet 361a, a valve outlet 362b, an intake duct 361, an air outlet duct 362, a one-way air valve 156, a control button 358, a valve body 360, and an activity. Piece 357 and ring 367. Cylinder outlet 152b is connected to the air valve inlet 361a, and the air valve outlet 362b is connected to the liquid storage space SP1 through the connection hole 132a of the air valve groove 132.

控制按鈕358從氣閥槽132徑向向外延伸至外瓶殼體310外。閥體360設置於氣閥槽132中,而活動件357設置於閥體360中徑向線性移動。圓環367套設於活動件357與閥體360之間,用來作氣體封閉,避免氣瓶152內的氣體從控制按鈕358周圍洩漏而出。 Control button 358 extends radially outward from valve spool 132 to the outside of outer bottle housing 310. The valve body 360 is disposed in the valve spool 132, and the movable member 357 is disposed in the valve body 360 to move linearly in a radial direction. The ring 367 is sleeved between the movable member 357 and the valve body 360 for gas sealing to prevent gas in the gas cylinder 152 from leaking around the control button 358.

在控制按鈕358未作動時,氣瓶152的氣體透過氣瓶出氣口152b連接至氣閥進氣口361a與進氣管道361,活動件357會將氣瓶152的氣體封閉在氣瓶152與進氣管道361內。在控制按鈕358作動時,例如按壓控制按鈕358時,氣瓶152的高壓氣體會透過氣瓶出氣口152b、氣閥進氣口361a、進氣管道361、活動件357、出氣管道362、氣閥出氣口362b與單向氣閥156,到達儲液空間SP1。 When the control button 358 is not actuated, the gas of the gas cylinder 152 is connected to the gas valve inlet 361a and the intake pipe 361 through the gas cylinder outlet 152b, and the movable member 357 closes the gas of the gas cylinder 152 to the gas cylinder 152 and the inlet. Inside the gas pipe 361. When the control button 358 is actuated, for example, when the control button 358 is pressed, the high pressure gas of the gas cylinder 152 passes through the cylinder outlet 152b, the valve inlet 361a, the intake duct 361, the movable member 357, the outlet duct 362, and the air valve. The air outlet 362b and the one-way air valve 156 reach the liquid storage space SP1.

本發明具有下列優點。首先,本發明可攜式氣泡水瓶之氣閥出氣口均係連接至儲液空間底部之連接孔,因此氣體會從儲液空間底部開始進行氣液混合。利用氣泡所受到的向上浮力,使整個儲液空間中的液體充分與氣體混合接觸,大幅提高溶氣效果。其次,由於本發明係以氣瓶出氣口朝下之方式放置於氣瓶槽中,可利用整個可攜式氣泡水瓶加強包覆容納氣瓶的供氣空間,更可增加氣泡水瓶使用時的安全性。再者,本發明透過螺合、樞接、卡合等方式,使上蓋與底蓋可裝卸式連接於外瓶殼體,因此可輕鬆開啟操作與關閉操作,且不易遺失。 The present invention has the following advantages. First, the air outlet of the air valve of the portable bubble water bottle of the present invention is connected to the connection hole at the bottom of the liquid storage space, so that the gas will be gas-liquid mixed from the bottom of the liquid storage space. By using the upward buoyancy force of the bubble, the liquid in the entire liquid storage space is sufficiently mixed with the gas to greatly improve the dissolved gas effect. Secondly, since the present invention is placed in the cylinder tank with the gas cylinder outlet facing downward, the entire portable air bubble bottle can be used to strengthen the air supply space for accommodating the gas cylinder, and the safety of the bubble water bottle can be increased. Sex. Furthermore, the present invention can detachably connect the upper cover and the bottom cover to the outer bottle casing by means of screwing, pivoting, snapping, etc., so that the operation and the closing operation can be easily opened, and it is not easily lost.

此外,本發明利用控制氣閥之設計,可以分次進行氣液混合,而不需一次把氣瓶內之所有氣體用罄。據此,本發明之單一氣瓶即可供一個可攜式氣泡水瓶多次使用。以一個容水量600毫升的可攜式氣泡水瓶為例,一個氣瓶可以提供1800毫升液體達到充分的溶氣效果,因此一個氣瓶即可進行3次的滿水裝盛混合。如此一來,只需攜帶一個可攜式氣泡水瓶即可提供一個成人一天所需的水分攝取量,無須擔心要一次混合1800毫升氣泡水攜帶外出,會導致水中氣泡隨著飲用開蓋而不斷散逸消失,以及負荷重量過大的問題。另外,由於氣體釋放狀況可以經由使用者手 動控制,使用者亦可根據本身需要或喜好而自行調整氣液混合量,達到客製效果。 In addition, the present invention utilizes the design of the control gas valve to perform gas-liquid mixing in multiple stages without having to use all of the gas in the cylinder at a time. Accordingly, the single gas cylinder of the present invention can be used multiple times in a portable bubble water bottle. For example, a portable water bottle with a water capacity of 600 ml can provide 1800 ml of liquid to achieve a sufficient dissolved gas effect, so that one cylinder can be filled with water for 3 times. In this way, you only need to carry a portable water bottle to provide the amount of water needed for an adult a day. You don't have to worry about mixing 1800 ml of sparkling water to carry it out at a time, which will cause the bubbles in the water to continue to dissipate as you open the lid. Disappeared, and the problem of excessive load weight. In addition, since the gas release condition can be via the user's hand Dynamic control, the user can also adjust the gas-liquid mixture according to their own needs or preferences, to achieve the custom effect.

綜上所述,本發明可大幅提高溶氣效果、增加氣泡 水瓶使用時的安全性、輕鬆操作、分段溶氣、易於攜帶、降低氣體逸散速度,並可達到客製效果。 In summary, the present invention can greatly improve the dissolved air effect and increase the air bubbles. The safety of the water bottle is easy to operate, the gas is dissipated in sections, easy to carry, and the gas escape speed is reduced, and the customer effect can be achieved.

以上所述僅為舉例性,而非為限制性者。任何未脫離本發明之精神與範疇,而對其進行之等效修改或變更,均應包括於後附之申請專利範圍中。 The above is intended to be illustrative only and not limiting. Any equivalent modifications or alterations to the spirit and scope of the invention are intended to be included in the scope of the appended claims.

Claims (10)

一種可攜式氣泡水瓶,包括有:一外瓶殼體,該外瓶殼體由上而下定義有一飲用部、一瓶壁與一組裝部;一分隔槽體,設置於該外瓶殼體下方,該分隔槽體由外而內定義有一氣閥槽與一氣瓶槽,且該氣閥槽上具有一連接孔,該氣瓶槽朝向該飲用部之方向凹陷,該分隔槽體上方與該外瓶殼體內側共同定義出一儲液空間;一底蓋,從下方覆蓋該分隔槽體與該外瓶殼體之該組裝部,該底蓋上方與該分隔槽體下方共同定義出一供氣空間;以及一供氣裝置,設置於該供氣空間中,包括:一氣瓶,包括有一氣瓶出氣口,該氣瓶係以該氣瓶出氣口朝下之方式放置於該氣瓶槽中;以及一控制氣閥,設置於該氣閥槽中,該控制氣閥包括有一氣閥進氣口與一氣閥出氣口,該氣瓶出氣口連接至該氣閥進氣口,且該氣閥出氣口連接至該儲液空間底部之該連接孔。 A portable bubble water bottle includes: an outer bottle casing defining a drinking portion, a bottle wall and an assembly portion from top to bottom; and a partitioning groove body disposed on the outer bottle casing In the lower part, the partitioning groove defines a valve slot and a cylinder slot from the outside, and the valve slot has a connecting hole, and the cylinder slot is recessed toward the drinking portion, and the partitioning groove is above A liquid storage space is defined on the inner side of the outer bottle casing; a bottom cover covers the assembly portion of the separation groove body and the outer bottle casing from below, and the upper portion of the bottom cover and the lower portion of the separation groove body define a supply And a gas supply device disposed in the gas supply space, comprising: a gas cylinder, comprising a gas cylinder outlet, wherein the gas cylinder is placed in the cylinder tank with the gas outlet opening downward And a control air valve disposed in the air valve slot, the control air valve includes a gas valve inlet and a gas valve outlet, the cylinder outlet is connected to the valve inlet, and the valve The air outlet is connected to the connection hole at the bottom of the liquid storage space. 如請求項1所述之可攜式氣泡水瓶,更包含一上蓋,其係裝卸式連接於該外瓶殼體之該飲用部,以密閉該儲液空間。 The portable water bottle according to claim 1, further comprising an upper cover that is detachably connected to the drinking portion of the outer bottle housing to seal the liquid storage space. 如請求項2所述之可攜式氣泡水瓶,其中該上蓋係以螺合、樞接、卡合或上述之組合,而連接於該外瓶殼體之該飲用部。 The portable water bottle according to claim 2, wherein the upper cover is connected to the drinking portion of the outer bottle case by screwing, pivoting, engaging or a combination thereof. 如請求項1所述之可攜式氣泡水瓶,其中該控制氣閥更包含一控制按鈕,該控制按鈕從該氣閥槽徑向向外延伸至該外瓶殼體外。 The portable air bottle of claim 1, wherein the control air valve further comprises a control button extending radially outward from the air valve slot to outside the outer bottle housing. 如請求項4所述之可攜式氣泡水瓶,其中該控制氣閥更包含:一閥體,設置於該氣閥槽中;一活動件,該活動件設置於該閥體中徑向線性移動;以及至少一圓環,該圓環套設於該活動件與該閥體之間,用來作氣體封閉。 The portable air bottle according to claim 4, wherein the control air valve further comprises: a valve body disposed in the air valve slot; and a movable member disposed in the valve body to move radially linearly And at least one ring disposed between the movable member and the valve body for gas sealing. 如請求項1所述之可攜式氣泡水瓶,其中該控制氣閥更包含一控制按鈕,該控制按鈕從該氣閥槽軸向向下延伸至該控制氣閥 外。 The portable air bottle according to claim 1, wherein the control air valve further comprises a control button extending axially downward from the air valve slot to the control air valve. outer. 如請求項6所述之可攜式氣泡水瓶,其中該控制氣閥更包含:一閥體,設置於該氣閥槽中;以及一活動件,該活動件設置於該閥體中軸向線性移動。 The portable air bottle according to claim 6, wherein the control air valve further comprises: a valve body disposed in the air valve slot; and a movable member disposed in the valve body in an axial linear direction mobile. 如請求項7所述之可攜式氣泡水瓶,其中該控制氣閥沿著軸向從上而下更包含一上圓環、一進氣管道、一活動圓環、一出氣管道以及一下圓環,該上圓環、該活動圓環與該下圓環均套設於該活動件與該閥體之間,用來作氣體封閉。 The portable water bottle according to claim 7, wherein the control valve further includes an upper ring, an intake pipe, a movable ring, an air outlet pipe and a lower ring from top to bottom along the axial direction. The upper ring, the movable ring and the lower ring are sleeved between the movable member and the valve body for gas sealing. 如請求項1所述之可攜式氣泡水瓶,其中該氣閥槽鄰接於該外瓶殼體之該組裝部,且該底蓋係裝卸式連接於該外瓶殼體之該組裝部。 The portable water bottle according to claim 1, wherein the air valve groove is adjacent to the assembly portion of the outer bottle case, and the bottom cover is detachably connected to the assembly portion of the outer bottle case. 如請求項1所述之可攜式氣泡水瓶,其中該底蓋係以螺合、樞接、卡合或上述之組合,而連裝卸式連接於該外瓶殼體之該組裝部。 The portable water bottle according to claim 1, wherein the bottom cover is screwed, pivoted, engaged, or a combination thereof, and is detachably attached to the assembly portion of the outer bottle casing.
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TWI672116B (en) * 2018-08-01 2019-09-21 沃拓創意股份有限公司 Thermos bottle with dual opening and manufacturing method thereof
TWI680916B (en) * 2018-12-21 2020-01-01 沃拓創意股份有限公司 Portable bubble water bottle and air valve structure thereof

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CN204232917U (en) * 2014-12-09 2015-04-01 上海向葵商贸有限公司 The soaked machine of a kind of Portable gas

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Publication number Priority date Publication date Assignee Title
TWI672116B (en) * 2018-08-01 2019-09-21 沃拓創意股份有限公司 Thermos bottle with dual opening and manufacturing method thereof
CN110786695A (en) * 2018-08-01 2020-02-14 沃拓创意股份有限公司 Double-opening vacuum cup and manufacturing method thereof
TWI680916B (en) * 2018-12-21 2020-01-01 沃拓創意股份有限公司 Portable bubble water bottle and air valve structure thereof

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