TWM360665U - Tea drinks maker - Google Patents

Tea drinks maker Download PDF

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Publication number
TWM360665U
TWM360665U TW97203706U TW97203706U TWM360665U TW M360665 U TWM360665 U TW M360665U TW 97203706 U TW97203706 U TW 97203706U TW 97203706 U TW97203706 U TW 97203706U TW M360665 U TWM360665 U TW M360665U
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Taiwan
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tube
tea
brewing
soup
cylinder
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TW97203706U
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Chinese (zh)
Inventor
Yen-Pin Yang
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Din San Technology Co Ltd
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Priority to TW97203706U priority Critical patent/TWM360665U/en
Publication of TWM360665U publication Critical patent/TWM360665U/en

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M360665 八、新型說明: 【新型所屬之技術領域】 本創作係有關茶飲製造裝置,為一種利用可控制茶湯 汁與添加物混合比例之儲存機構,將茶湯汁與添加物分別 經由流量調整鈕混合,以使茶飲之成份配置準確及維持穩 定之口感。 【先前技術】 習用茶飲沖泡的程序是將茶湯汁沖泡完成置於茶筒待 用,再依茶飲品之種類及顧客特殊之要求添加如糖、奶精 或牛奶等添加物,由於過程均採人工方式,在混合份量的 控制上,不易精確掌握。 上述習用之缺點如下: 1·以人工之方式添加茶飲之添加物之份量無法精確掌 控’以致影響特定飲品之口感。 2·以人工之方式製作茶飲必須以茶匙攪拌或以雪克杯 丨搖晃使其均勻,既費時又費力。 前述所提及關於習用之茶飲沖泡製程,儘管能 在茶飲製作上所具備之基本要求,但在實際製作時之混人 比例控制與節省工時上,皆存在諸多缺點與Μ的情i 下,無法發揮更具體之產業應用性。 綜上所述,由於習用之茶飲沖 失舆不足’基於產業進步之未來趨勢前提下 :出具趙的改善方案’以符合產業進步之所需m 提供業界更多的技術性選擇。 步 M360665 【新型内容】 本創作係以解決習用茶飲沖泡製程在混合比例控制與 節省工時等方面不足之缺點,以及在實用化技術等方面受 到限制之問題’ 一方面在達成精確控制茶飲混合比例為首 要目的’另一方面在節省工時與節省體力,以達成所應具 備之茶飲沖泡基本功能外,並使其兼具產業應用性之實際 發展與要求。 所以不論由主客觀條件觀之,具自動混合添加物之茶 飲製造設計’將帶來即沖即飲之茶飲市場之莫大商機。 為了達成上述目的及功能,其具體採行的技術手段及 方案包括: 一種茶飲製造裝置,係包含有: 一煮沸機構,係包含加熱鍋爐、加熱器及出水管路。 一沖泡機構,係包含沖泡筒、上蓋及内筒,沖泡筒係 連接煮錢構之出水管路,沖泡筒另設&水孔以連接 湯管。 一儲存機構,係為一與沖泡機構之出湯管連接之筒狀 儲存槽,筒狀儲存槽設有一給湯管。 一冷卻機構,係包含馬達 冷媒管係環覆於冷卻筒外部, 繞方式進出冷卻筒。 、壓縮機、冷媒管及冷卻筒, 筒狀儲存槽之給湯管係以旋 上述儲存機構之筒狀儲存槽為高壓式。 上述儲存機構另設右$ ,丨、玄廠j 再力°又有至J一咼壓式之添加物容置筒, 添加物容置筒設有一添加物管。 6 M360665 上述沖泡機構之出湯管 一開關閥。 與儲存機構之給湯管分別設有 夭加物有—出水頭’出水頭連接給湯管及 添加給湯管及添加物管分別設有—流量調整知。 本創作之具體優點在於: 1. 煮彿機構及沖泡機構可自動完成茶葉之沖泡作業。 2. 儲存機構可同時且獨立儲存製作完成 與 加物以備用。 Μ 3·冷卻機構可冷卻溫熱之茶湯汁,使其降溫 之液體狀態。 4·出水頭具有分別可控制茶湯汁及添加物供給量之流 量調整鈕,可調配出任意之混合比例。 爪 5.可大幅減少人工添加調配茶飲之時間並且維持一 疋之準確份量,以維持茶飲之穩定口感。 【實施方式】 " 請參閱第一圖,為本創作整體裝置構造之系統構造 圖’其中,一種茶飲製造裝置,係包含有: 一煮沸機構(1),係包含加熱鍋爐(u)、加熱器(丨2) 及出水管路(13);其中,加熱鍋爐(11)内含加熱器\12), 用以將水煮沸,煮沸後之熱水由出水管路(13)流出。 一沖泡機構(2 ) ’係包含沖泡筒(21)、上蓋(22 )及 内筒(23);沖泡筒(21)係連接煮沸機構(1)之出水管 路(13),沖泡筒(21)内部之内筒(23)可容置茶葉,茶 葉係由上蓋(22)置入内筒(23),沖泡筒(21)另設出1 M360665 孔(211 )以連接一出湯管(24 ),以將内筒(23 )沖泡完 成之茶湯汁導出’出湯管(24)設有一開關閥(25),以控 制茶湯汁之流動啟閉。 一儲存機構(3)’係為一與沖泡機構(2)之出湯管(24) 連接之筒狀儲存槽(31),可儲存沖泡機構(2)沖泡完成 之茶湯汁以備用,筒狀儲存槽(31)另設有一給湯管(311), 給湯官(311 )設有一開關閥(33),以控制茶湯汁之流動 啟閉’而儲存機構(3)之筒狀儲存槽(31)為高壓式,其 ’壓力來自於高壓氣體或二氧化碳等,以產生足夠之壓力以 將茶湯汁送出;儲存機構(3)另獨立設有至少一高壓式之 添加物容置筒(32),添加物容置筒(32)内可儲存糖、奶 精及牛奶等茶飲添加物,添加物容置筒(32)設有一添加 物管(321)。 一冷卻機構(4 ),係包含馬達(41 )、壓縮機(42 )、 冷媒管(43)及冷卻筒(44)’冷媒管(43)係環覆於冷卻 φ筒(44)外部,筒狀儲存槽(31)之給湯管(311)係以旋 繞方式進出冷卻筒(44 );冷卻筒(44 )内部裝有經冷媒管 (43) 降溫之低溫冷卻水,當流通溫熱之茶湯汁之給湯管 -(311)以旋繞方式進入冷卻筒(44)後,會經由與冷卻筒 (44) 内部之低溫冷卻水之熱交換,使茶湯汁成冰涼液體 之狀態,再由給湯管(311)自冷卻筒(44)導出。 冷卻機構(4)另設有一出水頭(45),出水頭(45) 連接給湯管(311)及添加物管(321),給湯管(311)及 添加物管(321)分別設有流量調整鈕(312)、流量調整鈕 M360665 (322)。 應用上述裝置構造之整個茶飲製造裝置之茶飲製作流 程,歸納說明如下: 水經煮沸機構(1 )煮彿後,熱水由出水管路(13 )流 出並送入沖泡機構(2)之沖泡筒(21),熱水與沖泡筒(21) 内部之内筒(23 )之茶葉經沖泡後,沖泡完成之茶湯汁自 出湯管(24)導出至儲存機構(3)之筒狀儲存槽(31)儲 存備用,利用筒狀儲存槽(31)之高壓將製成儲存之茶湯 ®汁由給湯管(311)送入冷卻機構(4)經冷媒管(43)及 冷卻筒(44)内之熱交換以冷卻高溫冬茶湯汁,使茶湯汁 ,成冰涼液體之狀態,再由給湯管(311)自冷卻筒(44)導 出,與儲存機構(3)另獨立設有至少一高壓式之添加物容 置(32)之添加物官(321)内之添加物於冷卻機構(4) 之出水頭(45 )處混合,以產生不同口味之茶類飲品。 綜合上述,本創作係針對茶飲製造裝置之應用技術, 壽特指一種藉由煮沸機構及沖泡機構將茶葉沖泡成茶湯汁, 先經冷卻機構降溫後,再經由儲存機構之流量調整鈕,個 別調整余湯汁與添加物之混合比例,以使茶飲之成份配置 •準確及維持穩定之口感,並達到製作快速及方便之特性, .作最佳之改良與設計,為本創作對於茶飲製造裝置所作 最具體之改良。 【圖式簡單說明】 第一圖:本創作整體裝置構造之系統構造圖。 9 M360665 【主要元件符號說明】M360665 VIII. New description: [New technical field] This creation is about the tea making device. It is a storage mechanism that can control the mixing ratio of tea broth and additives, and mix the tea broth and additives through the flow adjustment button. In order to make the ingredients of the tea drink accurately and maintain a stable taste. [Prior Art] The procedure for brewing tea is to put the tea broth into the tea pot for use, and then add additives such as sugar, creamer or milk according to the type of tea drink and the special requirements of the customer. Manually, it is not easy to accurately grasp the control of the mixing amount. The disadvantages of the above-mentioned conventional use are as follows: 1. The amount of the additive added to the tea by artificial means cannot be precisely controlled to affect the taste of a particular drink. 2. Making tea by hand must be stirred with a teaspoon or evenly shaken with a Schicker cup, which is time consuming and labor intensive. The aforementioned tea brewing process for the use of the tea, although it can meet the basic requirements of tea production, but in the actual production of the mixing ratio control and saving man-hours, there are many shortcomings and embarrassing feelings Under i, it is impossible to exert more specific industrial applicability. In summary, due to the lack of conventional tea consumption, under the premise of the future trend of industrial progress: the improvement plan of Zhao is provided to meet the needs of industrial progress and provide more technical choices in the industry. Step M360665 [New content] This creation is to solve the shortcomings of the conventional tea brewing process in terms of mixing ratio control and saving man-hours, as well as the limitations in practical technology. The proportion of drinking and mixing is the primary purpose. On the other hand, it saves working hours and saves physical strength, in order to achieve the basic functions of tea brewing, and makes it have practical development and requirements for industrial application. Therefore, regardless of the subjective and objective conditions, the design of tea beverages with automatic blending additives will bring great business opportunities in the ready-to-drink tea market. In order to achieve the above objects and functions, the specific technical means and solutions adopted include: A tea making device comprising: a boiling mechanism comprising a heating boiler, a heater and a water outlet pipe. A brewing mechanism comprises a brewing cylinder, an upper cover and an inner cylinder, and the brewing cylinder is connected to the water outlet pipe of the brewing structure, and the brewing cylinder is provided with a water hole to connect the soup tube. A storage mechanism is a cylindrical storage tank connected to the soup tube of the brewing mechanism, and the tubular storage tank is provided with a soup tube. A cooling mechanism includes a motor, and a refrigerant pipe loop is placed on the outside of the cooling cylinder to enter and exit the cooling cylinder. The compressor, the refrigerant pipe and the cooling cylinder, and the tubular storage tank are made of a high-pressure type in which the tubular storage tank of the storage mechanism is rotated. The above-mentioned storage mechanism is additionally provided with a right $, 丨, 玄 factory j 再力° and a J-type pressure type additive accommodating cylinder, and the additive accommodating cylinder is provided with an additive tube. 6 M360665 The above-mentioned brewing mechanism is a soup valve. The feeding tube of the storage mechanism is respectively provided with an additive, a water outlet, an outlet head connected to the soup tube, and a soup tube and an additive tube, respectively, for the flow adjustment. The specific advantages of this creation are as follows: 1. The brewing mechanism and brewing mechanism can automatically complete the brewing operation of the tea. 2. The storage mechanism can store and complete the preparation and storage at the same time and independently. Μ 3. The cooling mechanism cools the warm tea broth to cool it down. 4. The water outlet head has a flow adjustment knob that can control the supply of the tea broth and the additive, and can be adjusted to any mixing ratio. Claw 5. It can greatly reduce the time for artificially adding tea and maintain the exact amount of the tea to maintain the stable taste of the tea. [Embodiment] " Please refer to the first figure, which is a system configuration diagram of the overall device structure of the present invention. Among them, a tea manufacturing device includes: a boiling mechanism (1), which includes a heating boiler (u), The heater (丨2) and the water outlet pipe (13); wherein the heating boiler (11) contains a heater \12) for boiling the water, and the boiled hot water flows out of the water outlet pipe (13). A brewing mechanism (2) 'includes a brewing cylinder (21), an upper cover (22) and an inner cylinder (23); the brewing cylinder (21) is connected to the water outlet pipe (13) of the boiling mechanism (1), and is flushed The inner tube (23) inside the bubble tube (21) can accommodate the tea leaves, and the tea leaves are placed into the inner tube (23) by the upper cover (22), and the 1 (360) hole (211) is further set in the brewing tube (21) to connect one The soup tube (24) is discharged to extract the tea broth which is brewed by the inner tube (23). The soup tube (24) is provided with an on-off valve (25) to control the flow opening and closing of the tea broth. A storage mechanism (3) is a cylindrical storage tank (31) connected to the soup tube (24) of the brewing mechanism (2), and can store the brewing mechanism (2) brewed tea soup for use. The tubular storage tank (31) is further provided with a soup tube (311), and the soup official (311) is provided with an on-off valve (33) for controlling the flow opening and closing of the tea broth and the cylindrical storage tank of the storage mechanism (3) ( 31) is a high pressure type, the 'pressure comes from high pressure gas or carbon dioxide, etc., to generate sufficient pressure to send the tea broth; the storage mechanism (3) is separately provided with at least one high pressure additive accommodating cylinder (32) The additive storage tube (32) can store tea beverage additives such as sugar, creamer and milk, and the additive receiving cylinder (32) is provided with an additive tube (321). A cooling mechanism (4) includes a motor (41), a compressor (42), a refrigerant tube (43), and a cooling cylinder (44). The refrigerant tube (43) is looped over the outside of the cooling φ cylinder (44). The soup tube (311) of the storage tank (31) is fed into and out of the cooling cylinder (44) in a spiral manner; the cooling cylinder (44) is internally provided with a low temperature cooling water cooled by a refrigerant tube (43), and the tea juice flowing through the warm water is circulated. After the soup tube-(311) enters the cooling cylinder (44) in a spiral manner, the tea broth is made into a cold liquid state by heat exchange with the low-temperature cooling water inside the cooling cylinder (44), and then the soup tube is supplied (311). ) is derived from the cooling cylinder (44). The cooling mechanism (4) is further provided with a water outlet head (45), and the water outlet head (45) is connected to the soup tube (311) and the additive material tube (321), and the flow adjustment is respectively provided to the soup tube (311) and the additive material tube (321). Button (312), flow adjustment button M360665 (322). The tea making process of the whole tea manufacturing device constructed by the above device is summarized as follows: After the water is boiled by the boiling mechanism (1), the hot water is discharged from the water outlet pipe (13) and sent to the brewing mechanism (2) The brewing tube (21), the hot water and the inner tube of the inner tube (23) of the brewing tube (21) are brewed, and the brewed tea soup is discharged from the soup tube (24) to the storage mechanism (3) The cylindrical storage tank (31) is stored for use, and the stored tea soup® juice is sent to the cooling tube (4) through the cooling tube (43) and cooled by the high pressure of the cylindrical storage tank (31). Heat exchange in the tube (44) to cool the high temperature winter tea broth, so that the tea broth is in the form of a cold liquid, and then exported to the soup tube (311) from the cooling cylinder (44), and separately from the storage mechanism (3) The additive in the additive (321) of at least one high pressure type additive (32) is mixed at the water outlet (45) of the cooling mechanism (4) to produce a tea beverage of different tastes. In summary, the author is directed to the application technology of the tea making device. Shou Te refers to a brewing mechanism and a brewing mechanism for brewing tea into a tea broth, which is cooled by a cooling mechanism and then passed through a storage mechanism. Individually adjust the mixing ratio of the broth and the additive to make the composition of the tea drink accurately and maintain a stable taste, and achieve the characteristics of rapid and convenient production. For the best improvement and design, for the creation of The most specific improvement made by the tea making device. [Simple description of the diagram] The first picture: the system structure diagram of the overall device structure of the creation. 9 M360665 [Main component symbol description]

(1) 煮沸機構 (11) 加熱銷爐 (12) 加熱器 (13) 出水管路 (2) 沖泡機構 (21) 沖泡筒 (211) 出水孔 (22) 上蓋 (23) 内筒 (24) 出湯管 (25) 開關閥 (3) 儲存機構 (31) 筒狀儲存槽 (311) 給湯管 (312) 流量調整鈕 (32) 添加物容置筒 (321) 添加物管 (322 ) 流量調整鈕 (33) 開關閥 (4) 冷卻機構 (41) 馬達 (42) 壓縮機 (43) 冷媒管 (44) 冷卻筒 (45) 出水頭(1) Boiling mechanism (11) Heating pin furnace (12) Heater (13) Water outlet pipe (2) Brewing mechanism (21) Brewing cylinder (211) Water outlet hole (22) Upper cover (23) Inner cylinder ( 24) Outlet tube (25) On-off valve (3) Storage mechanism (31) Cylindrical storage tank (311) Feed tube (312) Flow adjustment knob (32) Adding capacity cartridge (321) Adding material tube (322) Flow Adjustment knob (33) On-off valve (4) Cooling mechanism (41) Motor (42) Compressor (43) Refrigerant tube (44) Cooling cylinder (45) Outlet

Claims (1)

M360665 九、申請專利範圍: 1、 一種茶飲製造裝置,係包含有: 一煮沸機構,係包含加熱鍋爐、加熱器及出水管路; 一沖泡機構,係包含沖泡筒、上蓋及内筒,沖泡筒係 .連接煮_構之出水管路,沖泡筒另設出水孔以連接一出 湯管; 一儲存機構,係為一與沖泡機構之出湯管連接之筒狀 儲存槽,筒狀儲存槽設有一給湯管; . :冷卻機構’係包含馬達、壓縮機、冷媒f及冷卻筒, 冷媒管係環覆於冷卻筒外部,筒狀儲存槽之給湯管係以旋 繞方式進出冷卻筒。 2、 如申請專利範圍第1項所述之茶飲製造裝置,其中, 儲存機構之筒狀儲存槽為高麗式。 3、 如申請專利範圍第丨項所述之茶飲製造裝置,其中, 儲存機構另設有至少一高壓式之添加物容置筒,添加物容 g置筒設有一添加物管。 4、 如申请專利範圍第丨項所述之茶飲製造裝置,其中, 沖泡機構之出湯管與儲存機構之給湯管分別設有一開關 閥。 申吻專利範圍第1項所述之茶飲製造裝置,其中, 冷卻機構另設有—出水頭,出水頭連接給湯管及添加物管。 6、如申請專利範圍第5項所述之茶飲製造裝置,其中, 給湯管及添加物管分別設有一流量調整鈕。M360665 Nine, the scope of application for patents: 1. A tea making device comprising: a boiling mechanism comprising a heating boiler, a heater and a water outlet pipe; a brewing mechanism comprising a brewing cylinder, an upper cover and an inner cylinder The brewing cylinder system is connected with the water outlet pipe of the boiled _ structure, and the brewing cylinder is further provided with a water outlet hole for connecting the soup tube; a storage mechanism is a tubular storage tank connected with the soup tube of the brewing mechanism, the tube The storage tank is provided with a soup tube; . : the cooling mechanism includes a motor, a compressor, a refrigerant f and a cooling cylinder, and the refrigerant tube is covered on the outside of the cooling cylinder, and the tubular storage tank is fed into the cooling cylinder in a spiral manner. . 2. The tea manufacturing device according to claim 1, wherein the storage tank has a Korean storage tank. 3. The tea manufacturing device according to the above aspect of the invention, wherein the storage mechanism is further provided with at least one high pressure type additive receiving tube, and the additive material holding tube is provided with an additive tube. 4. The tea manufacturing device according to the invention of claim 2, wherein the soup tube of the brewing mechanism and the soup tube of the storage mechanism are respectively provided with a switch valve. The tea manufacturing device according to the first aspect of the invention, wherein the cooling mechanism is further provided with a water outlet head, and the water outlet head is connected to the soup tube and the additive tube. 6. The tea making device according to claim 5, wherein a flow regulating button is respectively provided for the soup tube and the additive tube.
TW97203706U 2008-03-05 2008-03-05 Tea drinks maker TWM360665U (en)

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MM4K Annulment or lapse of a utility model due to non-payment of fees