WO2012167602A1 - 一种上位取水双室袋水机 - Google Patents

一种上位取水双室袋水机 Download PDF

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Publication number
WO2012167602A1
WO2012167602A1 PCT/CN2012/000755 CN2012000755W WO2012167602A1 WO 2012167602 A1 WO2012167602 A1 WO 2012167602A1 CN 2012000755 W CN2012000755 W CN 2012000755W WO 2012167602 A1 WO2012167602 A1 WO 2012167602A1
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WIPO (PCT)
Prior art keywords
water
locking
spring
water tank
bag
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PCT/CN2012/000755
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English (en)
French (fr)
Inventor
李万红
Original Assignee
Li Wanhong
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Publication date
Application filed by Li Wanhong filed Critical Li Wanhong
Publication of WO2012167602A1 publication Critical patent/WO2012167602A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0009Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with cooling arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0022Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with heating arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0029Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with holders for bottles or similar containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0048Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes using siphoning arrangements

Definitions

  • the present invention relates to the field of water dispensers, and more particularly to an upper water intake double chamber water bag machine.
  • the water intake device is designed under the water bag.
  • a water bagging machine that uses a siphon principle to design a water intake device above the water bag, not only can the water collecting operation be realized from above the water bag, but also can divide the water tank into two left and right carrying rooms to become a double-chamber bag.
  • the water tank (9) of the double-chamber bag water machine is located at the highest position of the bag water machine, and the center of the water tank (9) is provided with a longitudinal sub-chamber low wall (11) and a sub-chamber low wall (11).
  • the height is one-half the height of the water tank (9), and the sub-chamber low wall (11) longitudinally divides the water tank (9) into the load-bearing chamber A (4) and the load-bearing chamber B (10), the load-bearing chamber A (4) and the load-bearing Room B (10) can accommodate two water bags (13) that are not compatible with each other; the water bags (13) in the second room are independent and not mutually compatible.
  • This technical solution solves the water bag machine for lower water intake. It is impossible to realize the water intake mode of one machine and two waters, because at the same time, when the water bag is penetrated, the phenomenon of two water penetration is bound to occur. Since the double-chamber water dispenser with upper water can meet or exceed the capacity of the traditional bottled water dispenser, it is convenient for both the supply and the demand.
  • the technical problem to be solved by this patent is to improve the installed capacity of the bagged drink machine.
  • the existing bagged beverage machine has a capacity of 7-10 liters, and only allows a single bag of water immersion machine.
  • This patent adopts the upper water intake technology, can easily realize the two packs of drinking water at the same time, and the operation becomes more reliable and Convenient.
  • the above-mentioned water intake double-chamber bag water machine includes: loading system (00), siphon system (01), exhaust system (02), water intake system
  • the loading system (00) includes: a water tank cover (1), a positioning short column ( ⁇ ), a water tank cover lock (3), a bearing A room (4), a water tank (9), carrying room B (10), compartment wall (11), water bag (13);
  • said siphon system (01) includes: inverted tube (7), water pipe (12) upper tee ( 6), lower three-way (15), cold water inlet (17);
  • the exhaust system (02) includes: exhaust pipe (2), exhaust valve (5), upper three-way (6), inverted
  • the water pipe system (03) includes an upper water extractor (8), a gas valve cap (201), a gas valve hole (21), a gas valve spring (22), and a gas valve ball (23).
  • the body system (04) comprises: a cold water switch (14), hot water Switch (16), cold water inlet (17), boiling water outlet (18), line heater (20);
  • the utility model is characterized in that the inverted rainbow tube (7) in the siphon system (01) is connected with the upper three-way (6), the upper three-way (6) and the water conduit (12)
  • the water conduit (12) is connected to the lower tee (15); forms a typical siphon structure; the upper tee (6) is mounted with an exhaust valve (5); the water tank ( 9) Located at the highest position of the water bag machine, the center of the water tank (9) is provided with a longitudinal partition wall (11), and the height of the sub-chamber (11) is one-half the height of the water tank (9). (11) longitudinally partitioning the water tank (9) into the bearing chamber A (4) and the bearing chamber B (10), the bearing chamber A (4) and the carrying chamber B (10) can accommodate two water containers that are not mutually fused (13), the upper water dispenser (8) is taken in from the top of the water bag (13) to perform the water taking operation.
  • the water tank is divided into two, and can accommodate two water packs (13) at the same time.
  • the water bag (13) is longitudinally loaded to save space.
  • the installed capacity exceeds the bottled water. It is convenient for both parties to supply and demand.
  • the second package is on the machine, and one package is stored in the storage room inside the machine. The total capacity of the whole machine can reach 30 kg, enough for a family of three to drink two. Weeks.
  • FIG. 1 is a schematic view of the structure of the whole machine.
  • FIG. 1 is a schematic diagram of the structure of the machine's siphon system and exhaust system.
  • gas valve cap 201
  • gas valve hole 21
  • gas spring 22
  • pneumatic ball 23
  • ball seat 24
  • positioning circular groove 25
  • water intake pipe 26
  • lock spring 27
  • check valve 28
  • spring chamber 29
  • locking plate 30
  • locking port 31
  • sealing groove 31
  • sealing groove 33
  • suction hole 34
  • suction head 35
  • an upper water intake double chamber bag water machine includes: a loading system (00), a siphon system (01), an exhaust system (02), a water intake system (03), and a body system (04).
  • the receiving system (00) comprises: a water tank cover (1), a positioning short column ( ⁇ ), a water tank cover locking buckle (3), a carrying room A (4), water tank (9), load-bearing room B (10), sub-chamber low wall (11), water pack (13).
  • the water tank (9) in the receiving system (00) is located at the highest position of the water bag machine, and the center of the water tank (9) is provided with a longitudinal partition wall (11).
  • the height of the compartment wall (11) is one-half the height of the water tank (9), and the water tank (9) is divided by the sub-chamber low wall (11) into a housing chamber with a bilaterally symmetrical, uncomfortable water bag, ie A Room (4) and room B (10).
  • the center of the sub-chamber low wall (11) is provided with a mounting position of the water conduit (12).
  • the installation position is a hollow cylinder integrated with the sub-chamber low wall (11), that is, the water conduit (12) in FIG. 1, and the upper and lower ends of the water conduit (12) are provided
  • the valve seat (24) of the gas valve (5) and the gas wide cap (201) are sleeved on the upper port of the upper three-way (6) to form a valve cavity of the automatic exhaust port (5).
  • the water tank cover (1) and the water tank (9) are hinged, and the front side of the water tank cover (1) is provided with a water tank lock (3) for locking the water tank cover (1);
  • the inner surface corresponds to the center position of the load-bearing chamber A (4) and the load-bearing chamber B (10); each is provided with a positioning short column ( ⁇ ) for positioning the upper water dispenser (8).
  • the inverted siphon system (01) of the upper water double-chamber water bag machine is composed of an upper three-way (6), an inverted siphon (7), an upper water extractor (8), and a water conduit ( 12), the lower three links (15), the cold water inlet (17) are combined to form a typical siphon structure; the upper water extractor (8) is pierced from the upper position of the water bag (13), which is realized by the siphon principle.
  • the conical suction head (35) of the upper water dispenser (8) is the suction port of the siphon structure.
  • the drinking water is sucked by the water suction hole (34) in the upper water extractor (8) through the water intake pipe (26), the inverted siphon pipe (7), the upper three-way (6), the water conduit (12), and the lower three-way (15).
  • the water distribution to the machine is realized by the lower three links (15).
  • the automatic exhaust system (02) includes: an exhaust pipe (2), a gas valve cap (201), a gas valve hole (21), a valve spring (22), a valve ball (23), a ball seat (24), positioning circular groove (25), upper three-way (6), characterized in that: the automatic exhaust valve (5) of the exhaust system is installed on the upper three-way (6), the upper three-way (6)
  • the upper port acts as a valve seat (24) for the automatic valve, and the valve seat (24) and the gas valve cap (201) are screwed together to form a body cavity of the exhaust valve; the valve spring (22) under the gas valve cap (201) is tight
  • the pressure valve ball (23) is on the ball seat (24).
  • the automatic exhausting path is: When the upper water dispenser (8) penetrates the water bag (13), if there is air in the siphon structure, the water bag (13) can be passed through the locking disk (30). The pressure is applied, and the result of the pressure is that the drinking water in the water bag (13) is squeezed into the upper water extractor (8), and the pushing of the drinking water pushes the air in the siphon structure to move toward the exhaust valve, and the pressure applied by the applied pressure is greater than When the spring force of the gas spring (22) in the exhaust valve, the air ball (23) is lifted up, and the air in the siphon structure is discharged through the air valve hole (21).
  • Adopted in this patent The technical measures for automatic exhaust are -
  • the height of the upper water dispenser (8) is consciously designed to be larger than the distance between the water bag (13) and the cover when the water bag (13) is installed, and the design principle of the distance difference is added.
  • Positioning the short column ( ⁇ ). The auxiliary function of the water tank lock (3) and the positioning circular groove (25).
  • the positioning short column ( ⁇ ) is inserted.
  • the locking disk (30) located under the inverted siphon system (01) generates a compression of about 2 cm for the water bag (13). The pressure generated by this compression is sufficient to drive the valve ball in the exhaust valve (5) below the exhaust pipe (2) to achieve automatic exhaust.
  • the siphon phenomenon is formed, and the inverted siphon system (01) can implement the siphon water supply to the drinking machine.
  • a check valve (28) is designed in the upper water dispenser (8).
  • the check valve flap (28) is located at the junction of the water intake elbow (26) and the suction head (35), so that the drinking water in the siphon structure can only be moved in one direction. This design effectively avoids the water exchange operation. The phenomenon of drinking water draining from the siphon channel to eliminate or reduce the degree and amount of exhaust.
  • the upper water dispenser (8) comprises: a positioning circular groove (25), a water intake pipe (26), a locking spring (27), a check valve (28), and a spring cavity (29). ), the locking disk (30), the locking opening (31), the sealing groove (32), the sealing ring (33), the suction hole (34), and the suction head (35).
  • the locking disc (30) has a serpentine shape, and a center of the locking disc (30) is provided with a spring chamber (29); a port at the center of the locking disc (30) is provided with a locking opening (31) .
  • the locking disc (30) is set on the water intake pipe (26) through a spring chamber (29); the inner side of the spring chamber (29) is divided into two inner walls of different diameters, and the inner wall of the second wall is obviously The step, the space between the inner wall of the spring chamber (29) having a larger diameter and the water intake pipe (26) is the spring chamber (29) of the lock spring (27).
  • the inner wall of the spring chamber (29) having a smaller diameter has a loose fit with the water intake elbow (26), so that the locking disc (30) can move on the water intake elbow (26).
  • the locking opening (31) has a concave annular structure whose diameter and depth coincide with the diameter and height of the sealing ring (33).
  • the locking spring (27) is disposed in a spring chamber (28) between the water intake elbow (26) and the locking disc (30), and the locking disc (30) is in the locking spring (27) Under the elastic force, the locking opening (31) and the sealing ring (33) on the locking disk (30) can be closed to achieve the function of automatically locking the water bag (13), ensuring the water bag (13) No leakage will occur during use.
  • the water absorbing head (35) penetrates into the water bag (13), and the locking disk (30) sleeved on the water absorbing head (35) has The water bag (13) blocks and presses the lock spring (27) for backward movement.
  • the lock spring (27) pushes the lock disk (30) forward, locking
  • the tight disk (30) closes the locking opening (31) and the sealing ring (33) on the locking disk (30) under the elastic force of the locking spring (27), and automatically locks the water bag (13)

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

一种上位取水双室袋水机,包括承装系统(00)、虹吸供水系统(01)、排气系统(02)、加热系统及机体系统(04)。所述承装系统(00)包括水箱盖(1)、定位短柱(1')、水箱(9)、承载室A(4)、承载室B(10)、分室矮墙(11)、水包(13),水箱(9)位于袋水机的最高位置,水箱(9)的中心设有纵向的分室矮墙(11),分室矮墙(11)的高度是水箱(9)高度的二分之一,分室矮墙(11)纵向地把水箱(9)分隔成承载室A(4)和承载室B(10),承载室A(4)和承载室B(10)可各自容纳互不通融的两个水包(13)。该上位取水双室袋水机,采用虹吸供水原理和双贮水室,解决了下位取水模式袋水机无法实现一机二水大容量上机的问题。

Description

说 明 书
一种上位取水双室袋水机 技术领域
[0001] 本发明涉及饮水机的领域, 特别是一种上位取水双室袋水机。
背景技术
[0002] 现行的袋装水机, 其取水装置都是设计在水包之下的。 一种采用虹吸原理, 将取水装 置设计在水包之上的上位取水的袋水机,不但可以从水包上方实现取水作业,而且还可将水箱 分成左右二个的承载室, 成为双室袋水机; 所述的双室袋水机的水箱 (9), 位于袋水机的最高 位置, 水箱 (9)的中心, 设有纵向的分室矮墙 (11 ), 分室矮墙 (11 ) 的高度是水箱 (9)高度的二分 之一, 分室矮墙 (11 ) 纵向地把水箱 (9)分隔成承载室 A (4) 和承载室 B ( 10), 承载室 A (4) 和承载室 B ( 10) 可各自容纳互不通融的二个水包 (13); 二室中的水包 (13)是各自为政, 互不 融通的, 这一技术方案, 解决了下位取水的袋水机不可能实现一机二水的取水模式, 因为同时 刺入水包作业时,势必会发生二水贯通的现象。由于上位取水水的双室袋水机能达到或超过传 统的桶装水饮机的容量, 所以为供需双方都提供了方便。
发明内容
[0003] 本专利所要解决的技术问题是提高袋装饮机的装机容量。 现有的袋装饮机的容量为 7-10 升, 只容许单包饮水上机, 本专利采用上位取水技术后, 能容易地实现二包饮水同时上 机, 且操作变得更为可靠和便捷。
【00041—种上位取水双室袋水机包括: 承装系统 (00)、 虹吸系统 (01)、 排气系统 (02)、 取水系统
(03)及机体系统 (04); 所述的承装系统 (00)包括: 水箱盖(1 )、定位短柱 (Γ ).水箱盖锁扣(3 )、 承载 A室 (4)、 水箱 (9)、 承载 B室 (10)、 分室矮墙 (11 )、 水包 (13); 所述的虹吸系统 (01)包 括: 倒虹管 (7)、 引水管 (12 ) 上三通 (6)、 下三通 (15)、 冷水接入口 (17); 所述的排气系 统 (02)包括: 排气管 (2)、 排气阀 (5)、 上三通(6)、 倒虹管 (7); 所述的取水系统 (03)包括, 上位取水器 (8)、 气阀帽 (201 )、 气阀孔 (21 )、 气阀簧 (22)、 气阀球 (23 )、 阀球座 (24)、 定位圆槽 (25)、 取水弯管 (26)、 锁紧簧 (27)、 止回阀瓣 (28)、 弹簧腔(29)、 锁紧盘 (30)、 锁紧口 (31 )、 封环槽 (32)、 密封环 (33 )、 吸水孔 (34)、 吸水头 (35); 所述的机体系统 (04) 包括: 冷水开关(14)、热水开关(16)、 冷水接入口 (17)、 开水输出口(18)、 管路加热器 (20); 其特征在于, 虹吸系统 (01)中的倒虹管(7)与上三通(6)相连接, 上三通(6)与引水管(12)
I 相连接; 引水管 (12) 与下三通 (15) 相连接; 形成一个典型的虹吸架构; 所述的上三通 (6) 的上方安装有排气阀 (5); 所述的水箱 (9) 位于袋水机的最高位置, 水箱 (9) 的中心设有纵 向的分室矮墙 (11 ), 分室矮墙 (11 ) 的高度是水箱(9) 高度的二分之一, 分室矮墙 (11 )纵向地 把水箱 (9) 分隔成承载 A室 (4) 和承载 B室 (10), 承载 A室 (4) 和承载 B室 (10)可承 装互不融通的二个水包 (13), 上位取水器 (8)从水包 (13)的顶部剌入实施取水作业。
【0005】本专利解决技术问题所采用的技术方案是:
【0006】水箱一分为二, 能同时容置二个水包 (13)于其中。
【0007】纵向装入水包 (13), 有效节约空间。
[00081应用倒虹吸原理, 实施对饮机配水;
【00091自动排除虹吸管中空气, 保障虹吸原理成立, 减少排气作业。
【0010】本专利有益效果是:
【00111—、 上位取水操作简单明了, 老、 稚、 妇、 弱人群都会自助上机;
10012】二、 能杜绝袋装水最头痛的漏水现象, 使袋装水的推广应用迈出了坚实的、 革命性一大 步。
【00131三、 装机容量超过桶装水, 为供求双方都来了方便, 二包上机, 一包贮藏于机内的贮藏 室内, 整机的总容量可达 30千克, 足够三口之家喝二个星期。
附图说明
【0014]图 1为: 整机结构示意图。
【00151图 2为: 本机虹吸系统及排气系统结构示意图。
具体实施方式
【0016】图 1的标记名称是: 定位短柱 (Γ ), 水箱盖(1 )、 排气管(2)、 水箱锁扣 (3)、 承载室 A
(4)、 自动排气阀 (5)、 上三通 (6)、 倒虹吸管 (7)、 上位取水器 (8)、 水箱 (9)、 承载室 B(10)、 分室矮墙 (11 )、 引水管 ( 12)、 水包 (13), 冷水开关 (14)、 下三通 (15)、 热水开关 (16)、 冷水接入 口 (17)、 开水输出口(18)、 机体 (19)、 管路加热器 (20)。
【0017】图 2的标记名称是: 气阀帽 (201 )、 气阀孔 (21 )、 气阀簧 (22)、 气闳球 (23 )、 阀球 座 (24)、 定位圆槽 (25 )、 取水弯管 (26)、 锁紧簧 (27)、 止回阀瓣 (28)、 弹簧腔 (29)、 锁 紧盘 (30)、 锁紧口 (31 )、 封环槽 (32)、 密封环 (33 )、 吸水孔 (34)、 吸水头 (35)。
[0018】下面结合附图详细描述本发明:
如图 1所示, 一种上位取水水双室袋水机包括: 承装系统 (00)、 虹吸系统 (01)、 排气系统 (02)、 取水系统 (03)及机体系统 (04)。
[0019] 所述的承装系统 (00)包括: 水箱盖 (1 )、 定位短柱 (Γ ), 水箱盖锁扣 (3 )、 承载室 A (4)、 水箱 (9)、 承载室 B ( 10)、 分室矮墙 (11 )、 水包 (13)。
[0020] 如图 1 所示, 所述的承装系统 (00)中的水箱 (9), 位于袋水机的最高位置, 水箱 (9)的中 心设有纵向的分室矮墙 (11 ), 分室矮墙 (11 ) 的高度是水箱 (9)高度的二分之一, 水箱 (9)被分室 矮墙 (11 ) 分隔成左右对称的、 互不通融的水包的容置室, 即 A室 (4)和 B室 (10)。
[0021] 进一步, 所述的分室矮墙 (11 ) 的中心设有引水管 (12) 的安装位。
[0022] 进一步,所述的安装位是一与分室矮墙 (11 )一体的中空圆柱, 即图 1中的引水管(12), 所述的引水管 (12) 的上下二端设有上三通(6) 和下三通 (15); 所述的上三通 (6) 的下端口 与引水管 (12) 相接, 中端口与倒虹吸管 (7)接通, 上端口充当自动排气阀 (5)的阀球座 (24), 气阔帽 (201 ) 套扣于上三通 (6) 的上端口上, 形成自动排气闽 (5)的阀腔体。
[0023] 如图 1所示, 水箱盖 (1 ) 与水箱 (9)采用铰链接, 水箱盖 (1 ) 的前侧设有锁定水箱 盖 (1 ) 的水箱锁扣 (3 ); 水箱盖 (1 ) 内面对应承载室 A (4) 和承载室 B ( 10) 的中心位上; 各设有定位上位取水器 (8)的定位短柱 (Γ )。
[0024] 如图 1所示, 上位取水水双室袋水机的倒虹吸液系统 (01)由上三通 (6)、 倒虹管 (7)、 上位取水器 (8)、 引水管 (12)、 下三通 (15)、 冷水接入口 (17) 所组合形成一个典型的虹吸架 构; 上位取水器 (8)是从水包 (13)的上位刺入的, 是以虹吸原理实现对饮机供水的, 上位取水器 (8)的锥形吸液头 (35 ) 即是虹吸架构的吸水口。 饮水由上位取水器 (8)中的吸水孔 (34) 吸入 经由取水弯管(26)、 倒虹吸管 (7)、 上三通(6)、 引水管(12)、 下三通 (15), 并由下三通(15 ) 实现对机器的配水。
[0025] 进一步, 实现虹吸现象的条件有二, 一是出水口必须低于水平面, 二是虹吸通道中不 得留有积聚的空气。从应用的实践证明,机器的每一次换水操作中都会有空气进入虹吸通道中, 这就产生了每次换水就得先要做排除积聚于虹吸通道中空气的麻烦事,就是说,要采用虹吸供 水的模式, 首当其冲要解决的技术问题就是要实现机器的自动排气。
[0026] 自动排气系统 (02)包括: 排气管 (2)、 气阀帽 (201 )、 气阀孔(21 )、 气阀簧 (22)、 气 阀球 (23 )、 阀球座 (24)、 定位圆槽 (25)、 上三通 (6), 其特征在于: 排气系统的自动排气 阀 (5)安装于上三通 (6)上, 上三通 (6)的上端口充当自动阀的阀球座(24), 阀球座(24)与气阀 帽 (201 )螺合形成排气阀的体腔; 气阀帽 (201 )下的气阀簧(22)紧压气阀球(23 )于阀球 座 (24) 上。
[0027] 自动排气是路径是: 当上位取水器 (8)刺入水包 (13)后, 若虹吸架构中有空气的存在, 则 可通过锁紧盘 (30)对水包 (13)施压, 施压的结果是水包 (13)中的饮水被挤入上位取水器 (8)中, 饮水的挤入推动虹吸架构中有空气向排气阀方向移动, 外加施压的压力大于排气阀中气阀簧 (22)的弹力时, 气阀球(23 )被顶起, 虹吸架构中的空气经气阀孔 (21 )排放。 本专利所采用 自动排气的技术措施是-
[0028] 一是, 有意识地把上位取水器 (8)的高度设计成大于水包 (13)刚装机时水包 (13)与箱盖间 的距离, 这一距离差的设计原理, 加上定位短柱 (Γ ). 水箱锁扣 (3) 和定位圆槽 (25)、 的辅 助作用, 当放下水箱盖 (1)锁定箱盖锁扣 (3 ) 时, 定位短柱 (Γ )插入倒虹吸系统 (01)顶部定位 凹圆槽 (25)中, 由于距离差的原因, 位于倒虹吸系统 (01)下方的锁紧盘(30)对水包 (13)会产生 2公分左右的压缩洼陷, 这一压縮所产生的压力能足以驱动位于排气管 (2) 下面的排气阀 (5) 中的气阀球动作, 实现自动排气。 虹吸架构中空气被排除后, 虹吸现象形成, 倒虹吸系统 (01) 就可实施对饮机虹吸供水。
[0029] 二是, 在上位取水器 (8)中设计有止回阔瓣 (28)。 止回阀瓣 (28)位于取水弯管 (26) 与吸 水头 (35)的结合部, 使虹吸架构中的饮水只能作单向的运动, 这一设计, 有效地避免了换水操 作时饮水从虹吸通道中流失的现象, 以杜绝或减少排气的度和量。
[0030] 本专利上位取水器 (8)自锁定的技术措施是这样实现的:
[0031] 如图 2所示, 上位取水器 (8)包括: 定位圆槽 (25 )、 取水弯管 (26)、 锁紧簧 (27)、 止 回阔瓣 (28)、 弹簧腔 (29)、 锁紧盘 (30)、 锁紧口 (31 )、 封环槽 (32)、 密封环 (33 )、 吸水 孔 (34)、 吸水头 (35)。
[0032] 所述的锁紧盘 (30) 呈 Π形状, 锁紧盘 (30) 的中心设有弹簧腔 (29); 锁紧盘 (30) 中心的端口上设有锁紧口 (31 )。
[0033] 所述的锁紧盘 (30) 通过弹簧腔 (29) 套装在取水弯管 (26) 上; 弹簧腔 (29) 的内 侧分为不同直径的二层内壁, 二内壁之间有明显的台阶, 弹簧腔(29)直径较大的内壁与取水 弯管 (26) 之间的空间是锁紧簧 (27) 的弹簧腔 (29)。
[0034] 所述的弹簧腔(29)直径较小的内壁与取水弯管(26)呈宽松的整配合, 使锁紧盘(30) 在取水弯管 (26) 上能活动如是。
[0035] 所述的锁紧口 (31 ) 呈凹形的圆环结构, 其直径及深度与密封环 (33 ) 的直径和高度 相一致。
[0036] 所述的锁紧簧 (27)安设于取水弯管(26) 与锁紧盘 (30)之间的弹簧腔 (28)中, 锁紧 盘 (30) 在锁紧簧 (27) 的弹力作用下, 能使锁紧盘 (30) 上的锁紧口 (31 ) 与密封环 (33 ) 闭合, 达到自动锁紧水包 (13)的剌入口功能, 保障水包 (13)使用中不会发生渗漏的现象。
[0037] 进一步, 在实施取水作业时, 在外力的作用下, 吸水头 (35)刺入水包 (13)之中, 套设于 吸水头 (35)上的锁紧盘 (30) 因有水包 (13)的阻挡, 压迫锁紧簧 (27) 作向后的移动, 当完成 刺入动作,外力消失时,锁紧簧(27)即把锁紧盘(30)推向前方,锁紧盘(30)在锁紧簧(27) 的弹力作用下, 使锁紧盘 (30) 上的锁紧口 (31 ) 与密封环 (33 ) 闭合, 自动锁紧了水包 (13)
Ψ 刺入口。
[0038] 本专利所述的与传统饮机类同的其它功能部件包括: 冷水开关 (14)、 下三通 (15 )、 热水开关 (16)、 冷水接入口 (17)、 开水输出口(18)及机体 (19), 不同之处在于电热膜加热器 03替代了传统饮机中的热胆, 管路加热器 (20)具有即时速沸的功能。
b

Claims

权 利 要 求 书
1. 一种上位取水双室袋水机包括: 承装系统 (00)、 虹吸系统 (01)、 排气系统 (02)、 取水系统 (03) 及机体系统 (04); 所述的承装系统 (00)包括: 水箱盖 (1 )、 定位短柱 ( ), 水箱盖锁扣 (3 )、 承载 A室 (4)、 水箱 (9)、 承载 B室 (10)、 分室矮墙 (11 )、 水包 (13); 所述的虹吸系统 (01)包 括: 倒虹管 (7)、 引水管 (12) 上三通 (6)、 下三通 (15)、 冷水接入口 (17); 所述的排气系 统 (02)包括: 排气管 (2)、 排气阔 (5)、 上二通(6)、 倒虹管 (7); 所述的取水系统 (03)包括, 上位取水器 (8)、 气阀帽 (201 )、 气阀孔 (21 )、 气阀簧 (22)、 气阀球 (23 )、 阀球座 (24)、 定位圆槽 (25 )、 取水弯管 (26)、 锁紧簧 (27)、 止回阀瓣 (28)、 弹簧腔 (29)、 锁紧盘(30)、 锁紧口 (31 )、 封环槽 (32)、 密封环 (33 )、 吸水孔 (34)、 吸水头 (35); 所述的机体系统 (04) 包括: 冷水开关(14)、热水开关(16)、 冷水接入口 (17)、 开水输出口(18)、 管路加热器 (20); 其特征在于, 虹吸系统 (01)中的倒虹管(7)与上三通(6)相连接, 上三通(6)与引水管(12) 相连接; 引水管 (12) 与下三通 (15)相连接; 形成一个典型的虹吸架构; 所述的上三通 (6) 的上方安装有排气阀 (5); 所述的水箱 (9) 位于袋水机的最高位置, 水箱 (9) 的中心设有纵 向的分室矮墙 (11 ), 分室矮墙 (11 ) 的高度是水箱(9) 高度的二分之一, 分室矮墙 (11 )纵向地 把水箱(9) 分隔成承载 A室 (4)和承载 B室 (10), 承载 A室 (4)和承载 B室 (10)可承 装互不融通的二个水包 (13), 上位取水器 (8)从水包 (13)的顶部剌入实施取水作业。
2. 根据权利要求 1 所述的上位取水双室袋水机其特征在于, 所述的承装系统 (00)中的水箱盖 ( 1 ) 与水箱 (9)采用铰链结合, 水箱盖 (1 ) 的前端设有水箱盖锁扣 (3 ), 水箱盖 (1 ) 的中间 设有定位上位取水器 (8)的定位短柱 (Γ )所述的箱盖 (1 ) 与水包 (13)顶面之间的距离与上位取 水器 (8)的高度有 3公分的距离差。
3. 根据权利要求 1 所述的上位取水双室袋水机其特征在于, 所述的虹吸系统 (01)倒虹吸系统 (01)中的上位取水器向水包 (13)取水作业时是从水包 (13)的顶部垂直剌入的, 吸液头(35)中的 吸液孔 (34) 即是虹吸系统 (01)的吸水口, 所述的吸液头 (35 ) 呈中空的锥形体, 靠近锥尖的 位置设有吸液孔 (34), 吸液头 (35) 的锥形头与中空圆柱的结合部设有密封环 (33) 的安装 凹槽 (31); 取水弯管 (26) 与吸液头 (35) 结合部的内腔, 设有止回阀瓣 (28)。
4. 根据权利要求 1所述的上位取水双室袋水机其特征在于, 所述的锁紧盘 (30) 呈 Π形状, 锁紧盘 (30) 的中心设有弹簧腔 (29), 锁紧盘 (30) 中心孔靠近密封环 (33 ) 的端口上设有 锁紧口 (31 ); 所述的锁紧盘 (30)通过弹簧腔 (29) 套装在取水弯管 (26) 上; 所述的弹簧 腔(29)的内侧分为不同直径的二层内壁, 二内壁之间有明显的台阶, 弹簧腔(29)直径较大 的内壁与取水弯管(26)之间的空间是锁紧簧(27) 的安装腔; 弹簧腔(29)直径较小的内壁 与取水弯管(26)呈宽松的整配合, 使锁紧盘(30)在取水弯管 (26)上能活动如是; 所述的 锁紧口 (31 )呈凹形的圆环结构, 其直径及深度与密封环 (33 ) 的直径和高度相一致, 所述的 锁紧簧 (27) 安设于取水弯管 (26) 与锁紧盘 (30)之间的弹簧腔 (28)中, 锁紧盘 (30)在锁 紧簧(27) 的弹力作用下, 能使锁紧盘(30) 上的锁紧口 (31 ) 与密封环(33 ) 闭合, 达到自 动锁紧水包 (13)的剌入口功能。
5. 根据权利要求 1所述的上位取水双室袋水机其特征在于, 所述的自动排气阀 (5)安装于上三 通 (6)上, 上三通 (6)的上端口充当自动排气阀 (5)的阀球座(24), 阀球座(24)与气阀帽(201 ) 螺合形成排气阀的体腔; 气阀帽 (201 ) 下的气阀簧 (22) 紧压气阀球 (23 ) 于阀球座 (24) 上。
PCT/CN2012/000755 2011-06-10 2012-06-01 一种上位取水双室袋水机 WO2012167602A1 (zh)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0288899A2 (en) * 1987-04-30 1988-11-02 Valentino Ribi Coffee making method and related coffee machine
JP2009011420A (ja) * 2007-07-02 2009-01-22 Daiki Shoji Kk ドリップバッグ
CN201409816Y (zh) * 2009-04-27 2010-02-24 陈本良 穿刺装置及使用该装置的虹吸式袋装水饮水机
CN201414712Y (zh) * 2009-03-10 2010-03-03 夏军 一种虹吸式无菌节能袋装水饮水机
CN202096052U (zh) * 2011-06-10 2012-01-04 李万红 一种上位取液双室袋水机
CN102327059A (zh) * 2011-06-10 2012-01-25 李万红 一种上位取液双室袋水机

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0288899A2 (en) * 1987-04-30 1988-11-02 Valentino Ribi Coffee making method and related coffee machine
JP2009011420A (ja) * 2007-07-02 2009-01-22 Daiki Shoji Kk ドリップバッグ
CN201414712Y (zh) * 2009-03-10 2010-03-03 夏军 一种虹吸式无菌节能袋装水饮水机
CN201409816Y (zh) * 2009-04-27 2010-02-24 陈本良 穿刺装置及使用该装置的虹吸式袋装水饮水机
CN202096052U (zh) * 2011-06-10 2012-01-04 李万红 一种上位取液双室袋水机
CN102327059A (zh) * 2011-06-10 2012-01-25 李万红 一种上位取液双室袋水机

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