TWI790143B - High-pressure spray tank and valve mechanism for high-pressure spray tank - Google Patents

High-pressure spray tank and valve mechanism for high-pressure spray tank Download PDF

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TWI790143B
TWI790143B TW111109810A TW111109810A TWI790143B TW I790143 B TWI790143 B TW I790143B TW 111109810 A TW111109810 A TW 111109810A TW 111109810 A TW111109810 A TW 111109810A TW I790143 B TWI790143 B TW I790143B
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channel
bead
tank
reference direction
spray
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TW111109810A
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TW202337786A (en
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陳漢樑
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競聯企業有限公司
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Priority to TW111109810A priority Critical patent/TWI790143B/en
Priority to US17/661,213 priority patent/US11685592B2/en
Priority to JP2022075967A priority patent/JP7137263B1/en
Priority to CN202210480994.6A priority patent/CN115367313B/en
Priority to DE102022112119.4A priority patent/DE102022112119A1/en
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Abstract

本發明係高壓噴罐,包含一罐體、一閥門機構及兩珠體。閥門機構包含一閥門組件及一切換座。閥門組件係被密封固定在罐體上並可使罐體內外連通。切換座的頂端接合閥門組件,且包含兩通道、一正噴吸水口及一倒噴吸水口。兩吸水口分別連通兩通道,且分別藉由兩通道連通閥門組件的液劑出口。兩珠體分別能移動地設於兩通道內,且能藉由移動分別控制正噴吸水口與倒噴吸水口的連通或阻斷。利用兩通道的傾斜內壁,兩珠體能同時連動,促使罐體呈正噴狀態、倒噴狀態及水平狀態時皆可順利噴射液劑且不會洩漏拋射劑,且不會有殘餘液劑留在罐體內。The invention is a high-pressure spray tank, which comprises a tank body, a valve mechanism and two bead bodies. The valve mechanism includes a valve assembly and a switching seat. The valve assembly is sealed and fixed on the tank body and can communicate with the inside and outside of the tank. The top end of the switching seat is connected with the valve assembly, and includes two channels, a forward water inlet and a reverse water inlet. The two water suction ports are respectively connected to the two channels, and are respectively connected to the liquid agent outlet of the valve assembly through the two channels. The two beads are respectively arranged in the two channels so as to be movable, and can respectively control the connection or blockage of the forward spray suction port and the reverse spray suction port by moving. Using the inclined inner wall of the two channels, the two beads can move simultaneously, so that the liquid can be sprayed smoothly when the tank is in the forward spraying state, the reverse spraying state and the horizontal state without leakage of the propellant, and there will be no residual liquid left behind inside the tank.

Description

高壓噴罐及用於高壓噴罐的閥門機構High-pressure spray tank and valve mechanism for high-pressure spray tank

本發明係涉及一種可盛裝及噴射產品液劑的容器,尤指一種罐體呈正噴狀態、倒噴狀態及水平噴射狀態使用時皆能順利噴射液劑,且皆不會洩漏拋射劑。The invention relates to a container capable of containing and spraying product liquid, especially a tank body that can spray liquid smoothly when used in the forward spraying state, backward spraying state and horizontal spraying state, and will not leak propellant.

現代終端市場對於消費者的需求,相關業者創新研發的高壓噴罐產品不勝枚舉並且跨足各個領域,故高壓噴罐產品已普遍廣泛使用於民眾日常生活中。例如,個人及家庭用品領域中的護髮噴霧劑、廚浴清潔劑及殺蟲劑;或是汽車及工業用品中的化油器清潔劑、空氣清新劑及油漆噴霧劑;甚至亦包含警察、保全人員及婦女作為防護自身安全的辣椒噴霧劑等等。In order to meet the needs of consumers in the modern terminal market, there are countless high-pressure spray can products innovatively developed by related companies and spanning various fields. Therefore, high-pressure spray can products have been widely used in people's daily life. For example, hair sprays, kitchen and bath cleaners, and insecticides in personal and household products; or carburetor cleaners, air fresheners, and paint sprays in automotive and industrial products; even police, Security personnel and women are used as pepper spray to protect their own safety, etc.

習用技術中用以噴射產品液劑的高壓噴罐,罐體的頂端具有一罐口;閥門組件是被密封固定在罐體的罐口上;安裝在罐體內的吸管的頭端連通閥門組件,而呈微彎狀的吸管其尾端之彎曲方向通常是被固定設置與高壓噴罐頂端的噴頭之噴嘴口是相同的一側,且吸管尾端的吸水口是貼近罐身與罐底接連之角落,故該吸水口可浸沒並定位於罐底內的液劑中;高壓噴罐於使用時,於罐體內填充的液劑以及拋射劑(通常為壓縮氣體,例如氮氣N 2),拋射劑在罐體內形成的壓力可推動液劑流入吸管,並且在經過閥門組件後由噴頭的噴嘴噴出。 In the high-pressure spray tank used for spraying product liquid in the conventional technology, the top of the tank body has a tank mouth; the valve assembly is sealed and fixed on the tank mouth of the tank body; the head end of the suction pipe installed in the tank body communicates with the valve assembly, and The bending direction of the tail end of the slightly curved suction pipe is usually fixed on the same side as the nozzle opening of the nozzle on the top of the high-pressure spray tank, and the suction port at the end of the suction pipe is close to the corner where the tank body and the tank bottom are connected. Therefore, the suction port can be submerged and positioned in the liquid agent at the bottom of the tank; when the high-pressure spray tank is in use, the liquid agent and propellant (usually compressed gas, such as nitrogen N 2 ) filled in the tank, the propellant The pressure built up in the body pushes the liquid into the straw and out of the nozzle of the spray head after passing through the valve assembly.

高壓噴罐產品之運作原理的關鍵在於,當裝上閥門組件及吸管之後密封的罐體,此時罐內實際的可用容積,通常填充的液劑約佔70%,而拋射劑(如氮氣N2)則約佔30%,此容積佔比在罐體產品用罄之後液劑及拋射劑幾乎皆可全部噴出;罐內因氮氣N2的拋射劑是與液體不相溶,且氮氣N2的比重比空氣輕,故在密封的罐體內氮氣N2是懸浮於液面上;進一步而言,吸管之尾端吸水口需浸沒於罐底內的液劑中,這樣當使用者按壓噴頭時,使得閥門組件的閥桿呈開啟狀態,且同時被拋射劑所擠壓的液劑才會經由吸管尾端之吸水口快速流動至閥門組件而由噴頭的噴嘴噴出;反之,若是閥門組件的吸管尾端之吸水口沒有浸沒於液劑中而是暴露於拋射劑中,則當使用者按壓噴頭時,反而是拋射劑快速地由閥門組件洩出而液劑無法隨著噴出,最終導致殘餘液劑留在罐體內形成浪費。換言之,若罐內的液劑容量僅剩一半或更少時,傳統的高壓噴罐在罐體倒噴使用時,罐頂是朝地面的方向同時液劑亦流至相同方向,故拋射劑是位於液面之上方,與此同時吸管之尾端吸水口是暴露於拋射劑中,因此當使用者按壓噴頭時,液劑無法進入位於上方的吸管尾端之吸水口,反而是拋射劑快速地進入吸水口流動至閥門組件而由噴頭的噴嘴噴出,故這是習用高壓噴罐的缺點。The key to the operation principle of high-pressure spray can products is that when the valve assembly and suction pipe are installed on the sealed tank body, the actual usable volume in the tank at this time, usually filled with liquid agent accounts for about 70%, and the propellant (such as nitrogen N2 ) accounts for about 30%, and this volume ratio can be almost all sprayed out after the tank product is used up; the propellant of nitrogen N2 in the tank is incompatible with the liquid, and the specific gravity of nitrogen N2 is higher than that of air Light, so the nitrogen N2 in the sealed tank is suspended on the liquid surface; further, the suction port at the end of the straw must be immersed in the liquid in the bottom of the tank, so that when the user presses the nozzle, the valve assembly will The valve stem is in an open state, and at the same time, the liquid liquid squeezed by the propellant will quickly flow to the valve assembly through the suction port at the end of the suction pipe and be sprayed out from the nozzle of the nozzle; on the contrary, if the suction port at the end of the suction pipe of the valve assembly If the user is not immersed in the liquid but exposed to the propellant, when the user presses the nozzle, the propellant will be released from the valve assembly quickly and the liquid cannot be sprayed out, resulting in residual liquid remaining in the tank Form waste. In other words, if the liquid agent capacity in the tank is only half or less, when the traditional high-pressure spray tank is used for reverse spraying, the top of the tank is facing the direction of the ground and the liquid agent also flows in the same direction, so the propellant is It is located above the liquid surface, and at the same time, the suction port at the end of the straw is exposed to the propellant, so when the user presses the nozzle, the liquid cannot enter the suction port at the end of the straw above, but the propellant quickly It enters the suction port and flows to the valve assembly to be sprayed out from the nozzle of the nozzle, so this is a shortcoming of the conventional high-pressure spray tank.

為了解決傳統高壓噴罐無法倒噴的問題,在現有技術的高壓噴罐中發展出一種能實現倒噴的側珠式閥門機構。請參考圖14至圖17,圖中為現有技術中採用側珠式閥門機構的高壓噴罐。側珠式閥門機構具有一閥門組件911、一切換座912、一吸管92、一倒噴吸水口93、及一珠體94,並且吸管92具有一正噴吸水口921。In order to solve the problem that traditional high-pressure spray cans cannot spray backwards, a side ball valve mechanism capable of spraying backwards has been developed in the high-pressure spray cans of the prior art. Please refer to Fig. 14 to Fig. 17, which are high-pressure spray cans using a side bead valve mechanism in the prior art. The side bead valve mechanism has a valve assembly 911 , a switching seat 912 , a suction pipe 92 , a reverse spray suction port 93 , and a bead body 94 , and the suction pipe 92 has a forward spray suction port 921 .

如圖14所示,當罐體在正噴狀態使用時,此時珠體94是向下滑落並堵住倒噴吸水口93,而吸管92的正噴吸水口921可浸沒於罐內的液劑A中,當使用者按壓噴頭98時,使得閥門組件911的閥桿呈開啟狀態,拋射劑B在罐體內形成的壓力可推動液劑A流入正噴吸水口921,並且液劑A依序由正噴通道922、共同通道923、液劑入口924、液劑出口925後由噴頭98的噴嘴981噴出。As shown in Figure 14, when the tank body is used in the forward spray state, the beads 94 slide down and block the reverse spray suction port 93, and the positive spray suction port 921 of the suction pipe 92 can be immersed in the liquid in the tank. In agent A, when the user presses the nozzle 98, the valve stem of the valve assembly 911 is in an open state, and the pressure formed by the propellant B in the tank can push the liquid agent A to flow into the positive spray suction port 921, and the liquid agent A is sequentially It is sprayed by the nozzle 981 of the spray head 98 after the forward spray channel 922 , the common channel 923 , the liquid agent inlet 924 , and the liquid agent outlet 925 .

如圖15所示,當手握的高壓噴罐在倒噴狀態使用時,噴頭98是朝地面的方向故液劑A亦流至相同方向,此時珠體94受引力作用而滑落至地面的方向並開啟了倒噴吸水口93,且倒噴吸水口93浸沒於液劑A中;當使用者按壓噴頭98時開啟閥門組件911,拋射劑B在罐體內形成的壓力可推動液劑A流入倒噴吸水口93,並且液劑A繞行經由倒噴通道931並依序由共同通道923,液劑入口924、液劑出口925後由噴頭98的噴嘴981噴出。As shown in Figure 15, when the hand-held high-pressure spray tank is used in the reverse spray state, the spray head 98 is facing the direction of the ground, so the liquid agent A also flows in the same direction, and at this time, the bead 94 is slid to the ground due to the gravitational force. direction and opened the reverse spray suction port 93, and the reverse spray suction port 93 is immersed in the liquid agent A; when the user presses the nozzle 98, the valve assembly 911 is opened, and the pressure formed by the propellant B in the tank can push the liquid agent A to flow into The reverse spray suction port 93, and the liquid agent A detours through the reverse spray channel 931 and is sprayed from the nozzle 981 of the spray head 98 through the common channel 923, the liquid agent inlet 924, and the liquid agent outlet 925 in sequence.

也就是說,側珠式閥門機構的切換座912是單珠單通道的側珠式切換座912;然而,雖然現有技術的側珠式閥門機構因為使用了單珠單通道的側珠式切換座912而能夠實現倒噴,但仍然具有下列缺點:That is to say, the switch seat 912 of the side bead type valve mechanism is a side bead type switch seat 912 of single ball and single channel; 912 can achieve reverse spraying, but still has the following disadvantages:

第一,請參考圖14與圖15。當手握的高壓噴罐在正噴狀態使用時,此時因珠體94受引力作用而滑落並堵住倒噴吸水口93,故正噴狀態時吸管92的正噴吸水口921可浸沒於液劑A中並正常噴出,且於液面之上的拋射劑B亦不會由倒噴吸水口93洩出;然而,當手握的高壓噴罐在倒噴狀態使用時,珠體94朝地面方向滑落並使倒噴吸水口93浸沒於液劑A中,故倒噴狀態時可順利將液劑A由噴頭98的噴嘴981噴出;與此同時吸管92的正噴吸水口921並未浸沒於液劑A中而是暴露於位於液面上方的拋射劑B中,故拋射劑B亦會由吸管92的正噴吸水口921通過共同通道923一起瞬間噴出。換言之,雖然現有技術的側珠式閥門機構能夠實現倒噴,但由於並沒有任何元件能在倒噴時堵住吸管92的正噴吸水口921,因此造成倒噴的同時拋射劑B也在洩漏噴出,並導致罐內殘液的情況發生。First, please refer to Figure 14 and Figure 15 . When the hand-held high-pressure spray tank was used in the forward spraying state, the bead body 94 would slide down due to the gravitational force and block the reverse spray water suction port 93, so the forward spray water suction port 921 of the suction pipe 92 could be submerged in the normal spray state. In the liquid agent A, it is normally sprayed out, and the propellant B above the liquid level will not be released from the backspray water suction port 93; yet, when the high-pressure spray tank held by the hand is used in the backspray state, the bead body 94 faces The direction of the ground slides and the reverse spray suction port 93 is submerged in the liquid agent A, so that the liquid agent A can be successfully sprayed out from the nozzle 981 of the nozzle 98 in the backward spray state; at the same time, the forward spray suction port 921 of the suction pipe 92 is not submerged The liquid agent A is exposed to the propellant B located above the liquid surface, so the propellant B will also be sprayed instantly through the common channel 923 through the positive spray suction port 921 of the suction pipe 92 . In other words, although the side bead valve mechanism of the prior art can realize reverse spraying, since there is no element that can block the positive spray suction port 921 of the suction pipe 92 during reverse spraying, the propellant B is also leaking while reverse spraying Spray out and cause residual liquid in the tank to occur.

第二,請參考圖16,當手握的高壓噴罐在水平噴射狀態使用時,此時由於支撐珠體94的壁面為水平,故珠體94不會因為引力作用而固定位於開啟或封閉倒噴吸水口93的位置,反而是左右不定的移動,造成時而開啟倒噴吸水口93或時而封閉倒噴吸水口93;此時若罐體內的液劑A的量已不足以同時淹沒吸管92的正噴吸水口921及倒噴吸水口93時,當使用者按壓噴頭98,使得閥門組件911的閥桿呈開啟狀態時,則因吸管92的正噴吸水口921是貼近罐身與罐底接連之角落,故吸管92的正噴吸水口921可浸沒於罐體內的液劑A並順利噴出;但因倒噴吸水口93無法浸沒於罐體內的液劑A,且珠體94在倒噴吸水口93上漂移不定,致使拋射劑B會斷斷續續地由倒噴吸水口93通過共同通道923一起瞬間洩出,此時亦會因在共同通道923中與由正噴吸水口921流出的液劑A碰撞產生亂流,最終導致液劑A的噴射呈斷斷續續的狀態,此時拋射劑B由倒噴吸水口93洩漏噴出形成浪費,並導致罐內殘液的情況發生。Second, please refer to Fig. 16, when the high-pressure spray can held by hand is used in a horizontal spraying state, at this time, because the wall surface supporting the bead 94 is horizontal, the bead 94 will not be fixed at the open or closed inverted position due to the gravitational force. The position of the spray suction port 93, on the contrary, moves indefinitely from side to side, causing the reverse spray suction port 93 to be opened sometimes or the reverse spray suction port 93 to be closed sometimes; 92, when the forward spray and suction port 921 and the reverse spray and suction port 93, when the user presses the spray nozzle 98 so that the valve stem of the valve assembly 911 is in an open state, the positive spray and suction port 921 of the suction pipe 92 is close to the tank body and the tank. The bottom is connected to the corner, so the positive spray suction port 921 of the suction pipe 92 can be immersed in the liquid agent A in the tank and spray out smoothly; Drift on the spray suction port 93 is indefinite, causing propellant B to be released intermittently by the reverse spray suction port 93 through the common passage 923, and at this time also due to the common passage 923 and the liquid flowing out from the forward spray suction port 921. The collision of agent A produces turbulent flow, which finally leads to the intermittent spraying of liquid agent A. At this time, propellant B leaks and sprays out from the backspray suction port 93 to form waste, and leads to the occurrence of residual liquid in the tank.

第三,請參考圖17,當手握的高壓噴罐在水平噴射狀態且噴頭98繼續朝地面方向傾斜使用,此時若罐內的液劑A容量僅剩一半或更少時,珠體94受引力作用而滑落並開啟倒噴吸水口93。由於此時罐體內的液劑A的量不足故倒噴吸水口93與吸管92的正噴吸水口921皆無法浸沒於罐體內的液劑A中,也就是倒噴吸水口93與吸管92的正噴吸水口921皆可能同時暴露於拋射劑B中,當使用者按壓噴頭98並使閥門組件911開啟時,拋射劑B會瞬間同時由倒噴吸水口93與吸管92的正噴吸水口921通過共同通道923一起瞬間全部洩出;而剩餘的液劑A則留滯於罐體內。The 3rd, please refer to Fig. 17, when the high-pressure spray can held by hand is in the horizontal spraying state and the nozzle 98 continues to be tilted towards the ground, if the liquid agent A capacity in the tank is only half or less, the beads 94 Slide down and open backspray water suction port 93 by gravitational force. Because the amount of the liquid agent A in the tank is not enough at this moment, the forward spray water intake 921 of the spray suction port 93 and the suction pipe 92 cannot be submerged in the liquid agent A in the tank body, that is, the difference between the spray suction port 93 and the suction pipe 92 Both the forward spray and suction ports 921 may be exposed to the propellant B at the same time. When the user presses the spray head 98 and opens the valve assembly 911, the propellant B will instantly flow from the reverse spray and suction ports 93 and the forward spray and suction ports 921 of the suction pipe 92 simultaneously. Through the common channel 923, all of them are released instantly; and the remaining liquid agent A is retained in the tank.

有鑑於前述之現有技術的缺點及不足,本發明提供一種高壓噴罐及用於高壓噴罐的閥門機構,其利用兩個珠體來分別控制第一吸水口與第二吸水口的連通或阻斷,並使得正噴狀態使用與倒噴狀態使用皆不會洩漏拋射劑。並且,利用兩通道的傾斜內壁的設計,使得雙珠體能夠同時快速連動,促使罐體呈水平噴射狀態使用時可順利噴射液劑且不會洩漏拋射劑,同時亦不會有殘餘液劑留在罐體內的情況發生。In view of the aforementioned shortcomings and deficiencies of the prior art, the present invention provides a high-pressure spray tank and a valve mechanism for the high-pressure spray tank, which uses two beads to control the connection or resistance of the first water suction port and the second water suction port respectively. Break, and make the use of the forward spraying state and the use of the reverse spraying state will not leak the propellant. Moreover, using the design of the inclined inner wall of the two channels, the double beads can be quickly linked at the same time, so that when the tank is in a horizontal spraying state, the liquid can be sprayed smoothly and the propellant will not leak, and there will be no residual liquid. The case of staying in the tank occurs.

為達到上述的創作目的,本發明所採用的技術手段為設計一種用於高壓噴罐的閥門機構,其用以設置於一罐體上並可使該罐體內外連通,該罐體包含相連通的一內部空間及一安裝罐口;該用於高壓噴罐的閥門機構包含: 一第一基準方向,其平行於該罐體的軸心,且朝向該罐體的頂端; 一第二基準方向,其垂直於該第一基準方向,且朝向該罐體的徑向外側; 一第三基準方向,其平行於該罐體的軸心,且朝向該罐體的底端; 一閥門組件,其係被密封固定在該罐體的該安裝罐口,該閥門組件具有一液劑入口及一液劑出口,該液劑入口位於該罐體的該內部空間中,該液劑出口位於該罐體外;該液劑入口選擇性地連通該液劑出口; 一切換座,其頂端接合閥門組件的底端且與閥門組件相互連通,其包含 一第一通道,其包含 一第一連通口,其形成於該第一通道朝向該第一基準方向的一端,且連通於該液劑入口; 一第一傾斜內壁面,其位於該第一通道在該第二基準方向的一側;該第一傾斜內壁面傾斜於該罐體的軸心,且由朝向該第一基準方向的一端至朝向該第三基準方向的一端,偏向該第二基準方向傾斜延伸;該第一傾斜內壁面上形成有 兩第一凸肋狀滑軌,其沿著該第一傾斜內壁面沿伸且相互間隔,且鄰近於第一吸水口的洞口兩側;該第一珠體能滾動地抵靠於該兩第一凸肋狀滑軌上,藉此該第一珠體與該第一傾斜內壁面之間形成高低間隙; 一第一吸水口,其連通於該第一通道,且經由該第一通道的該第一連通口連通於該液劑入口; 一第二通道,其包含 一第二連通口,其形成於該第二通道朝向該第三基準方向的一端,且連通於該液劑入口; 一第二傾斜內壁面,其位於該第二通道在該第二基準方向的一側;該第二傾斜內壁面傾斜於該罐體的軸心,且由朝向該第三基準方向的一端至朝向該第一基準方向的一端,偏向該第二基準方向傾斜延伸;該第二傾斜內壁面上形成有 兩第二凸肋狀滑軌,其沿著該第二傾斜內壁面沿伸且相互間隔,且鄰近於第二吸水口的洞口兩側;該第二珠體能滾動地抵靠於該兩第二凸肋狀滑軌上,藉此該第二珠體與該第二傾斜內壁面之間形成高低間隙; 一第二吸水口,其連通於該第二通道,且經由該第二通道的該第二連通口連通於該液劑入口; 一第一珠體,其能移動地設於該第一通道內,且選擇性地連通或阻斷該第一吸水口與該液劑入口; 一第二珠體,其能移動地設於該第二通道內,且選擇性地連通或阻斷該第二吸水口與該液劑入口; 其中, 當該第一基準方向鉛直向上時,該第一吸水口連通於該液劑入口,且該第二珠體堵住該第二連通口,藉此該第二珠體阻斷該第二吸水口與該液劑入口; 當該第一基準方向鉛直向下時,該第二吸水口連通於該液劑入口,且該第一珠體堵住該第一連通口,藉此該第一珠體阻斷該第一吸水口與該液劑入口; 當該第二基準方向鉛直向下時,該第一珠體抵靠於該第一傾斜內壁面,並停滯於該第一傾斜內壁面的較低端,藉此該第一吸水口連通於該液劑入口,且該第二珠體抵靠於該第二傾斜內壁面,並停滯於該第二傾斜內壁面的較低端,藉此該第二吸水口連通於該液劑入口。 In order to achieve the above-mentioned creative purpose, the technical means adopted in the present invention is to design a valve mechanism for a high-pressure spray can, which is used to be arranged on a tank body and can communicate with the inside and outside of the tank body. An internal space and a tank opening; the valve mechanism for high-pressure spray tanks includes: a first reference direction, which is parallel to the axis of the tank and faces the top of the tank; a second reference direction, which is perpendicular to the first reference direction and faces radially outward of the tank; a third reference direction, which is parallel to the axis of the tank and towards the bottom of the tank; A valve assembly, which is sealed and fixed on the installation tank mouth of the tank body, the valve assembly has a liquid agent inlet and a liquid agent outlet, the liquid agent inlet is located in the inner space of the tank body, the liquid agent The outlet is located outside the tank; the liquid agent inlet is selectively connected to the liquid agent outlet; A switching seat, the top end of which engages the bottom end of the valve assembly and communicates with the valve assembly, which includes a first channel, which includes a first communication port, which is formed at one end of the first channel facing the first reference direction, and communicates with the liquid agent inlet; A first inclined inner wall surface, which is located on one side of the first channel in the second reference direction; the first inclined inner wall surface is inclined to the axis of the tank body, and extends from one end facing the first reference direction to the One end of the third reference direction extends obliquely toward the second reference direction; the first inclined inner wall surface is formed with Two first rib-shaped sliding rails extend along the first inclined inner wall and are spaced apart from each other, and are adjacent to both sides of the opening of the first water suction port; the first bead can roll against the two first On the convex rib-shaped slide rail, a height gap is formed between the first bead and the first inclined inner wall surface; a first water suction port, which communicates with the first channel, and communicates with the liquid agent inlet through the first communication port of the first channel; a second channel, which includes a second communication port, which is formed at one end of the second channel facing the third reference direction, and communicates with the liquid agent inlet; A second inclined inner wall surface, which is located on one side of the second channel in the second reference direction; the second inclined inner wall surface is inclined to the axis of the tank body, and extends from one end facing the third reference direction to the One end of the first reference direction extends obliquely toward the second reference direction; the second inclined inner wall surface is formed with Two second convex rib-shaped sliding rails extend along the second inclined inner wall and are spaced apart from each other, and are adjacent to both sides of the hole of the second water suction port; the second bead can roll against the two second On the convex rib-shaped slide rail, a height gap is formed between the second bead and the second inclined inner wall surface; a second water suction port, which communicates with the second channel, and communicates with the liquid agent inlet through the second communication port of the second channel; a first bead, which is movably arranged in the first channel, and selectively connects or blocks the first water suction port and the liquid agent inlet; a second bead, which is movably arranged in the second channel, and selectively connects or blocks the second water suction port and the liquid agent inlet; in, When the first reference direction is vertically upward, the first water suction port is connected to the liquid agent inlet, and the second bead blocks the second communication port, whereby the second bead blocks the second water suction port with the liquid agent inlet; When the first reference direction is vertically downward, the second water suction port is connected to the liquid agent inlet, and the first bead blocks the first communication port, whereby the first bead blocks the first the water suction port and the liquid agent inlet; When the second reference direction is vertically downward, the first bead abuts against the first inclined inner wall surface and stagnates at the lower end of the first inclined inner wall surface, whereby the first water suction port communicates with the The liquid agent inlet, and the second bead leans against the second inclined inner wall surface and stagnates at the lower end of the second inclined inner wall surface, whereby the second water suction port communicates with the liquid agent inlet.

為達到上述的創作目的,本發明所採用的技術手段為設計一種高壓噴罐,其包含: 一罐體,其包含相連通的一內部空間及一安裝罐口; 一噴頭,其包含一噴嘴; 一如前所述的用於高壓噴罐的閥門機構,其設置於該罐體上並可使該罐體內外連通;該第一基準方向平行於該罐體的軸心;該閥門組件係被密封固定於該安裝罐口並連接於該噴頭,且該閥門組件的該液劑出口連通於該噴頭的該噴嘴。 In order to achieve the above-mentioned creative purpose, the technical means adopted in the present invention is to design a high-pressure spray tank, which includes: A tank body, which includes an internal space and a tank opening connected to each other; a spray head, which includes a nozzle; A valve mechanism for a high-pressure spray tank as described above, which is arranged on the tank body and can communicate with the inside and outside of the tank body; the first reference direction is parallel to the axis of the tank body; the valve assembly is The seal is fixed on the mouth of the installation tank and connected to the spray head, and the liquid agent outlet of the valve assembly is communicated with the nozzle of the spray head.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該第一傾斜內壁面與該第一基準方向的夾角為1度至3度;該第二傾斜內壁面與該第三基準方向的夾角為1度至3度。Further, the valve mechanism for high-pressure spray cans, wherein, the included angle between the first inclined inner wall surface and the first reference direction is 1 degree to 3 degrees; the second inclined inner wall surface and the third reference direction The angle between the directions is 1 degree to 3 degrees.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該第一傾斜內壁面與該第一基準方向的夾角為1.5度;該第二傾斜內壁面與該第三基準方向的夾角為1.5度。Further, in the valve mechanism for high-pressure spray cans, the included angle between the first inclined inner wall surface and the first reference direction is 1.5 degrees; the included angle between the second inclined inner wall surface and the third reference direction is 1.5 degrees.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該切換座進一步包含一本體,本體包含一共同通道,其連通於該液劑入口,且該第一連通口及該第二連通口經由該共同通道連通於該液劑入口;一匯流隔板,其設於該共同通道內,且位於該第一連通口及該第二連通口之間。Furthermore, in the valve mechanism for high-pressure spray cans, the switching seat further includes a body, and the body includes a common channel, which communicates with the liquid agent inlet, and the first communication port and the second communication port The two communication ports are connected to the liquid agent inlet through the common channel; a confluence partition is arranged in the common channel and located between the first communication port and the second communication port.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該切換座進一步包含一本體,該第一通道、該第一吸水口、該第二通道、及該第二吸水口形成於該本體上;一第一開口,其形成於該本體上,且位於該第一通道朝向於該第三基準方向的一端,並且該第一珠體能由該第一開口進入或脫離該第一通道;一第一塞蓋,其能分離地封閉該第一開口;一第二開口,其形成於該本體上,且位於該第二通道朝向於該第一基準方向的一端,並且該第二珠體能由該第二開口進入或脫離該第二通道;一第二塞蓋,其能分離地封閉該第二開口;一第三開口,其形成於該本體朝向該第二基準方向的一側,且連通於該第一連通口;一第三塞蓋,其能分離地封閉該第三開口,且包含一第三塞蓋導引壁,其與該本體夾設形成連接於該第一吸水口與該第一通道之間的彎曲連接通道;一第四開口,其形成於該本體朝向該第二基準方向的一側,且連通於該第二連通口;一第四塞蓋,其能分離地封閉該第四開口,且包含一第四塞蓋導引壁,其與該本體夾設形成連接於該第二連通口與該共同通道之間的彎曲連接通道。Furthermore, the valve mechanism for high-pressure spray cans, wherein the switching seat further includes a body, the first channel, the first water suction port, the second channel, and the second water suction port are formed on On the body; a first opening formed on the body and located at one end of the first channel facing the third reference direction, and the first bead can enter or leave the first channel through the first opening ; a first plug cap, which can detachably close the first opening; a second opening, which is formed on the body and is located at one end of the second channel facing the first reference direction, and the second bead A body can enter or escape from the second passage through the second opening; a second plug cap, which can detachably close the second opening; a third opening, which is formed on the side of the body facing the second reference direction, And communicated with the first communication port; a third plug cap, which can detachably close the third opening, and includes a third plug cap guide wall, which is interposed with the body to form a connection to the first water-absorbing A curved connecting channel between the mouth and the first channel; a fourth opening formed on the side of the body facing the second reference direction and communicating with the second communication port; a fourth plug cap capable of The fourth opening is separately closed, and a fourth plug cover guide wall is interposed with the main body to form a curved connection channel connected between the second communication port and the common channel.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該切換座進一步包含一本體,該第一通道及該第二通道形成於該本體上;一倒噴延伸管部,其形成於該本體上,且朝向該第二基準方向延伸;該第二吸水口形成於該倒噴延伸管部位於該第二基準方向上的末端。Furthermore, the valve mechanism for high-pressure spray cans, wherein, the switch seat further includes a body, the first channel and the second channel are formed on the body; On the main body and extending towards the second reference direction; the second water suction port is formed at the end of the reverse spray extension pipe part located in the second reference direction.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該切換座進一步包含一本體,該第一通道及該第二通道形成於該本體上;一正噴延伸管部,其設於該本體上,且連通於該第一吸水口,並且朝向該第三基準方向延伸。Furthermore, the valve mechanism for high-pressure spray cans, wherein the switching seat further includes a body, the first channel and the second channel are formed on the body; It is on the body, communicates with the first water suction port, and extends toward the third reference direction.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該第一傾斜內壁面上形成有兩第一凸肋狀滑軌,其沿著該第一傾斜內壁面沿伸且相互間隔,且鄰近於第一吸水口的洞口兩側;該第一珠體能滾動地抵靠於該兩第一凸肋狀滑軌上,藉此該第一珠體與該第一傾斜內壁面之間形成高低間隙,故可避免第一珠體移動於該第一通道的內壁面時,因第一珠體陷入於第一入水口的洞口窟窿而影響第一珠體的移動進行;該第二傾斜內壁面上形成有兩第二凸肋狀滑軌,其沿著該第二傾斜內壁面沿伸且相互間隔,且鄰近於第二吸水口的洞口兩側;該第二珠體能滾動地抵靠於該兩第二凸肋狀滑軌上,藉此該第二珠體與該第二傾斜內壁面之間形成高低間隙,故可避免第二珠體移動於該第二通道的內壁面時,因第二珠體陷入於第二入水口的洞口窟窿而影響第二珠體的移動進行。Furthermore, in the valve mechanism for high-pressure spray cans, two first rib-shaped sliding rails are formed on the first inclined inner wall surface, which extend along the first inclined inner wall surface and are spaced apart from each other. , and adjacent to both sides of the opening of the first water suction port; the first bead can roll against the two first rib-shaped slide rails, whereby the gap between the first bead and the first inclined inner wall A height gap is formed, so that when the first bead moves on the inner wall of the first channel, the movement of the first bead is affected because the first bead is trapped in the hole of the first water inlet; the second inclination Two second convex rib-shaped sliding rails are formed on the inner wall, which extend along the second inclined inner wall and are spaced apart from each other, and are adjacent to both sides of the hole of the second water suction port; the second bead can roll against On the two second convex rib-shaped slide rails, a height gap is formed between the second bead and the second inclined inner wall, so that when the second bead moves on the inner wall of the second channel, The movement of the second bead is affected because the second bead is trapped in the hole of the second water inlet.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該兩第一凸肋狀滑軌在垂直於該第一基準方向上的截面上呈圓弧形或多邊形;該兩第二凸肋狀滑軌在垂直於該第一基準方向上的截面上呈圓弧形或多邊形。Furthermore, in the valve mechanism for high-pressure spray cans, the two first rib-shaped sliding rails are arc-shaped or polygonal in section perpendicular to the first reference direction; the two second The rib-shaped slide rail is arc-shaped or polygonal in cross-section perpendicular to the first reference direction.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該切換座的該本體包含一第一開口,其形成於該本體上,且位於該第一通道朝向於該第三基準方向的一端,並且該第一珠體能由該第一開口進入或脫離該第一通道;一第一塞蓋,其能分離地設於該第一開口上,且止擋該第一珠體脫離該第一通道;該第一塞蓋上形成有一第一塞蓋通孔,藉此該第一塞蓋通孔在罐體內可促使浸沒於第一通道內外的液劑皆可承受相同的內壓而流暢無阻;該第一塞蓋通孔的內徑小於該第一珠體的外徑;一第二開口,其形成於該本體上,且位於該第二通道朝向於該第一基準方向的一端,並且該第二珠體能由該第二開口進入或脫離該第二通道;一第二塞蓋,其能分離地設於該第二開口上,且止擋該第二珠體脫離該第二通道;該第二塞蓋上形成有一第二塞蓋通孔,藉此該第二塞蓋通孔在罐體內可促使浸沒於第二通道內外的液劑皆可承受相同的內壓而流暢無阻;該第二塞蓋通孔的內徑小於該第二珠體的外徑。Further, in the valve mechanism for high-pressure spray cans, the body of the switching seat includes a first opening formed on the body and located in the first channel facing the third reference direction One end of the first bead, and the first bead can enter or leave the first passage through the first opening; a first plug cap, which can be detachably arranged on the first opening, and stops the first bead from breaking away from the first passage The first passage; a first plug through hole is formed on the first plug, so that the first plug through hole in the tank can promote the liquid agent immersed in the first passage to withstand the same internal pressure. Smooth and unimpeded; the inner diameter of the through hole of the first plug cap is smaller than the outer diameter of the first bead; a second opening is formed on the body and is located at one end of the second channel facing the first reference direction , and the second bead can enter or leave the second passage through the second opening; a second plug cap can be detachably arranged on the second opening, and stop the second bead from breaking away from the second Passage; a second plug through hole is formed on the second plug, so that the second plug through hole in the tank can promote the liquid agent immersed in the second channel to withstand the same internal pressure and flow unimpeded ; The inner diameter of the through hole of the second plug cover is smaller than the outer diameter of the second bead.

進一步而言,所述之用於高壓噴罐的閥門機構,其中,該第一塞蓋通孔的背面周緣形成有一第一塞蓋托球環,當該第一珠體滑落抵靠於該第一塞蓋托球環並藉此封閉該第一塞蓋通孔;該第一通道的頂端周緣形成有一第一通道托球環,當該第一珠體滑落抵靠於該第一通道托球環並藉此封閉該第一連通口;尤其該第一珠體抵靠於該兩第一托球環的周邊皆有空隙,故可促使第一珠體停滯或脫離於第一通道的頂端或第一塞蓋時皆可順利移動;該第二塞蓋通孔的背面周緣形成有一第二塞蓋托球環,當該第二珠體滑落抵靠於該第二塞蓋托球環並藉此封閉該第二塞蓋通孔;該第二通道的底端周緣形成有一第二通道托球環,當該第二珠體滑落抵靠於該第二通道托球環並藉此封閉該第二連通口;尤其該第二珠體抵靠於該兩托球環的周邊皆有空隙,故可促使第二珠體停滯或脫離於第二通道的底端或第二塞蓋時皆可順利移動。Further, in the valve mechanism for high-pressure spray cans, a first plug support ball ring is formed on the back periphery of the through hole of the first plug cap, when the first bead slides down against the first plug A plug ball ring and thereby close the first plug hole; the top peripheral edge of the first channel is formed with a first channel ball ring, when the first bead slides against the first channel ball ring and thereby close the first communication port; especially the first bead has a gap against the periphery of the two first ball support rings, so it can promote the first bead to stagnate or break away from the top of the first passage Or the first plug can move smoothly; the back periphery of the second plug through hole forms a second plug ring, when the second bead slides against the second plug ring and Thereby closing the through hole of the second plug cover; the bottom peripheral edge of the second channel forms a second channel holding ball ring, when the second bead slides against the second channel holding ball ring and thereby closes the The second communication port; especially the second bead has a gap against the periphery of the two supporting ball rings, so it can impel the second bead to stagnate or break away from the bottom end of the second passage or the second plug cover. Move smoothly.

進一步而言,所述之高壓噴罐,其中,該用於高壓噴罐的閥門機構進一步包含一正噴吸管,其設於該切換座上且連通於該第一吸水口,該正噴吸管的尾端朝向該第二基準方向且朝向該第三基準方向延伸至該罐體的底部。Further, the above-mentioned high-pressure spray tank, wherein, the valve mechanism for the high-pressure spray tank further includes a positive spray suction pipe, which is arranged on the switching seat and communicated with the first water suction port, and the positive spray suction pipe The tail end extends toward the second reference direction and toward the third reference direction to the bottom of the tank body.

進一步而言,所述之高壓噴罐,其中,該切換座進一步包含一本體,該第一通道及該第二通道形成於該本體上;一正噴延伸管部,其設於該本體上,且連通於該第一吸水口,並且朝向該第三基準方向延伸;該正噴吸管結合於該正噴延伸管部。Further, in the above-mentioned high-pressure spray tank, wherein the switching seat further includes a body, the first passage and the second passage are formed on the body; a positive spray extension pipe part is provided on the body, And communicate with the first water suction port, and extend toward the third reference direction; the positive spray suction pipe is combined with the positive spray extension pipe part.

進一步而言,所述之高壓噴罐,其中,該用於高壓噴罐的閥門機構進一步包含一倒噴吸管,其設於該切換座上且連通於該第二吸水口,該倒噴吸管呈L型,並且其尾端朝向該第二基準方向且朝向該第一基準方向延伸至該罐體的頂部。Furthermore, the above-mentioned high-pressure spray tank, wherein, the valve mechanism for the high-pressure spray tank further includes a reverse spray suction pipe, which is arranged on the switching seat and communicated with the second water suction port, and the reverse spray suction pipe is L-shaped, and its tail end extends toward the second reference direction and toward the first reference direction to the top of the tank.

進一步而言,所述之高壓噴罐,其中,該切換座進一步包含一本體,該第一通道及該第二通道形成於該本體上;一倒噴延伸管部,其形成於該本體上,且朝向該第二基準方向延伸;該第二吸水口形成於該倒噴延伸管部位於該第二基準方向上的末端;該倒噴延伸管部上形成有一定位凸肋;該倒噴吸管包含一接合端,其結合於該倒噴延伸管部;一定位匣,其卡合於該倒噴延伸管部的該定位凸肋。Further, in the above-mentioned high-pressure spray tank, wherein the switching seat further includes a body, the first channel and the second channel are formed on the body; a reverse spray extension tube is formed on the body, and extend toward the second reference direction; the second water suction port is formed at the end of the reverse spray extension pipe part in the second reference direction; a positioning rib is formed on the reverse spray extension pipe part; the reverse spray suction pipe includes A joint end, which is combined with the backspray extension tube; a positioning box, which is engaged with the positioning rib of the backspray extension tube.

本發明的優點在於,在閥門組件的底端設置有一切換座,該切換座進一步包含第一通道與第二通道的兩通道,並且當正噴吸管連通於第一吸水口及倒噴吸管連通於第二吸水口時,使正噴吸管的正噴吸水口及倒噴吸管的倒噴吸水口可分別經由第一通道與第二通道連通於閥門組件的液劑入口,再利用第一珠體與第二珠體分別能移動地設於第一通道與第二通道內,藉此第一珠體與第二珠體能夠分別控制正噴吸水口與倒噴吸水口的連通或阻斷。如此一來,在罐內的液劑容量僅剩一半或更少時,當正噴狀態使用時,第一珠體受引力影響滑落並藉此使正噴吸水口經由第一連通口連通於該液劑入口,並且此時正噴吸水口是浸沒於液劑A中,且同時該第二珠體受引力影響滑落並堵住第二連通口藉此阻斷倒噴吸水口與該液劑入口;並且當倒噴狀態使用時罐頂是朝地面方向,此時第二珠體受引力影響滑落並藉此使倒噴吸水口經由第二連通口連通於液劑入口,並且此時倒噴吸水口是浸沒於液劑A中,且同時該第一珠體受引力影響滑落並堵住第一連通口藉此阻斷該正噴吸水口與該液劑入口。因此,本發明不論是在正噴狀態使用時或是在倒噴狀態使用時,皆有珠體能夠堵住未浸沒於液劑之中的吸水口,故本發明相較於現有技術的閥門組件或閥門機構,在正噴狀態使用或倒噴狀態使用皆能噴射液劑且避免拋射劑洩漏,達到降低殘液避免浪費的功效。The advantage of the present invention is that a switch seat is provided at the bottom of the valve assembly, the switch seat further includes two channels of the first channel and the second channel, and when the forward spray suction pipe is connected to the first water suction port and the reverse spray suction pipe is connected to the When the second water suction port is used, the forward spray suction port of the forward spray suction pipe and the reverse spray suction port of the reverse spray suction pipe can be connected to the liquid agent inlet of the valve assembly through the first channel and the second channel respectively, and then the first bead and the The second beads are respectively movably arranged in the first channel and the second channel, whereby the first beads and the second beads can respectively control the connection or blockage of the forward spray suction port and the backward spray water suction port. In this way, when the liquid agent capacity in the tank is only half or less, when the positive spraying state is used, the first bead will slide down under the influence of gravity, thereby making the positive spraying water inlet communicate with the The liquid agent inlet, and at this time, the spraying water inlet is immersed in the liquid agent A, and at the same time, the second bead is affected by the gravitational force and slides down and blocks the second communication port, thereby blocking the backward spraying water suction port and the liquid agent Inlet; and when the reverse spray state is used, the top of the tank is facing the ground direction. At this time, the second bead slides down under the influence of gravity, thereby making the reverse spray suction port communicate with the liquid agent inlet through the second communication port, and at this time the reverse spray The water suction port is submerged in the liquid agent A, and at the same time, the first bead slides down under the influence of gravity and blocks the first communication port so as to block the forward spraying water suction port and the liquid agent inlet. Therefore, no matter whether the present invention is used in the forward spraying state or in the reverse spraying state, there are beads that can block the water suction port that is not submerged in the liquid agent, so the present invention is compared with the valve assembly of the prior art or The valve mechanism, when used in the forward spraying state or the reverse spraying state, can spray the liquid agent and avoid the leakage of the propellant, so as to reduce the residual liquid and avoid waste.

此外,本發明在罐體呈水平噴射狀態使用時,並且罐內的液劑容量僅剩一半或更少時,藉由第一傾斜內壁面與第二傾斜內壁面的向下傾斜,因此第一珠體會朝罐底方向抵靠於第一傾斜內壁面並快速往向下傾斜方向移動,促使正噴吸水口連通於液劑入口,與此同時第二珠體亦會朝罐頂方向抵靠於第二傾斜內壁面並快速往向下傾斜方向移動,促使倒噴吸水口連通於液劑入口;也就是說,在罐體呈水平噴射狀態使用時,因為兩傾斜內壁面向下傾斜促使兩珠體因為相互連動而同時向下傾斜方向移動並促使開啟兩吸水口,致使正噴與倒噴的兩吸水口皆浸沒於液劑中並可同時噴射液劑,而不會造成兩珠體在兩通道內游移不定的,時而開啟時而封閉兩吸水口的擾亂液劑流向而造成噴射呈斷斷續續的情況。In addition, when the tank is used in a horizontal spraying state and the liquid capacity in the tank is only half or less, the first inclined inner wall surface and the second inclined inner wall surface are inclined downward, so the first The bead will lean against the first inclined inner wall toward the bottom of the tank and quickly move towards the downward slope, so that the positive spray and suction port is connected to the liquid agent inlet. At the same time, the second bead will also lean against the tank top. The second inclined inner wall surface moves quickly to the downward inclined direction, so that the reverse spray suction port is connected to the liquid agent inlet; Because of the mutual interlocking, the body moves downward at the same time and promotes the opening of the two water suction ports, so that the two water suction ports of the forward spray and the reverse spray are both immersed in the liquid agent and can spray the liquid agent at the same time, without causing the two beads to be on the two sides. The fluid in the channel is indeterminate, sometimes open and sometimes close the two water suction ports, which disturb the flow direction of the liquid agent and cause the spray to be intermittent.

再者,本發明在罐體呈趨近於水平狀態以及水平狀態之間小角度傾斜時,兩吸水口會同時開啟並促使兩傾倒角度範圍的重疊;其係藉由第一傾斜內壁面與第二傾斜內壁面分別朝向罐體底部與罐體頂部向下傾斜,故可使兩珠體同時連動並往兩向下傾斜方向移動,當罐體在趨近於水平狀態以及水平狀態之間小角度傾斜時,此時罐體的兩端猶如天平般的上下微動傾斜;換言之,在罐內的液劑容量僅剩一半或更少時,當正噴吸水口在罐體呈正噴狀態且繼續逐漸由趨近於水平狀態轉換至水平噴射狀態的期間,第一珠體仍是朝罐底方向停滯並抵靠於第一傾斜內壁面的較低端,且正噴吸水口仍然是維持開啟狀態,與此同時當倒噴吸水口在罐體呈正噴狀態繼續逐漸由趨近於水平狀態轉換至水平噴射狀態的期間,第二珠體即朝罐頂方向移動並抵靠於第二傾斜內壁面的較低端,故倒噴吸水口亦呈開啟狀態,使得正噴吸水口與倒噴吸水口在罐體繼續逐漸由趨近於水平狀態轉換至水平狀態的期間皆為開啟,致使正噴與倒噴的兩吸水口皆浸沒於液劑中並可同時噴射液劑,此即所謂的兩吸水口皆開啟的兩傾倒角度範圍的重疊,因此本發明能快速且精確地切換正噴狀態、倒噴狀態、及水平噴射狀態,並且重點是能確保拋射劑不會在各種使用狀態切換時以及各種傾斜狀態切換期間時洩出。這是現有技術中的閥門組件或閥門機構所沒有的。Furthermore, in the present invention, when the tank body is close to the horizontal state and tilted at a small angle between the horizontal states, the two water suction ports will be opened simultaneously to promote the overlapping of the ranges of the two pouring angles; The two inclined inner walls are inclined downwards towards the bottom of the tank and the top of the tank respectively, so that the two beads can move simultaneously and move in the two downward inclined directions. When the tank is approaching the horizontal state and the small angle When tilting, the two ends of the tank body tilt up and down slightly like a balance; During the transition from the horizontal state to the horizontal spray state, the first bead still stagnates toward the bottom of the tank and abuts against the lower end of the first inclined inner wall, and the positive spray suction port remains open, and At the same time, when the reverse spray suction port is in the positive spray state and continues to gradually change from the horizontal state to the horizontal spray state, the second bead moves towards the top of the tank and abuts against the relatively small part of the second inclined inner wall. At the low end, the reverse spray suction port is also open, so that the forward spray suction port and the reverse spray suction port are both open during the period when the tank body continues to gradually change from the horizontal state to the horizontal state, resulting in the forward spray and reverse spray. The two water suction ports are both immersed in the liquid agent and can spray the liquid agent at the same time. This is the so-called overlapping of the two pouring angle ranges where the two water suction ports are both open. Therefore, the present invention can quickly and accurately switch between the forward spraying state and the reverse spraying state. , and the horizontal injection state, and the key point is to ensure that the propellant will not leak out when switching between various use states and during various tilt state switches. This is not available in prior art valve assemblies or valve trains.

以下配合圖式及本發明之較佳實施例,進一步闡述本發明為達成預定發明目的所採取的技術手段。The technical means adopted by the present invention to achieve the intended invention purpose are further described below in conjunction with the drawings and preferred embodiments of the present invention.

請參考圖1及圖2,本發明之高壓噴罐的第一實施例中包含一罐體10、一噴頭20、及一閥門機構30。其中,閥門機構30包含一閥門組件31及一切換座32;其中,閥門組件31係被密封固定在罐體10的一安裝罐口12上並可使罐體10內外連通,而切換座32的頂端係設置於閥門組件31的底端並與閥門組件31相互連通。並且,噴頭20包含一呈水平狀的噴嘴21,且噴頭20是安裝於閥門組件31的頂端並與閥門組件31相互連通。Please refer to FIG. 1 and FIG. 2 , the first embodiment of the high-pressure spray tank of the present invention includes a tank body 10 , a spray head 20 , and a valve mechanism 30 . Wherein, the valve mechanism 30 includes a valve assembly 31 and a switching seat 32; wherein, the valve assembly 31 is sealed and fixed on a tank opening 12 of the tank body 10 and can communicate with the inside and outside of the tank body 10, and the switching seat 32 The top end is arranged at the bottom of the valve assembly 31 and communicates with the valve assembly 31 . Moreover, the spray head 20 includes a horizontal nozzle 21 , and the spray head 20 is installed on the top of the valve assembly 31 and communicates with the valve assembly 31 .

請參考圖1及圖2,罐體10包含一內部空間11、前述之安裝罐口12、及一底壁13。前述之罐體10為一中空體並具有安裝用的安裝罐口12;在第一實施例中,罐體10較佳的材質為金屬,安裝罐口12位於罐體10的頂端;在第一實施例中,罐體10的底部具有一弧凸形的底壁13,底壁13朝罐體10的內部空間11凹入,藉此,罐體10能夠藉由底壁13的周緣著地正立。Please refer to FIG. 1 and FIG. 2 , the tank body 10 includes an inner space 11 , the aforementioned installation tank opening 12 , and a bottom wall 13 . The aforementioned tank body 10 is a hollow body and has an installation tank mouth 12 for installation; in the first embodiment, the preferred material of the tank body 10 is metal, and the installation tank mouth 12 is positioned at the top of the tank body 10; In the embodiment, the bottom of the tank body 10 has an arc-convex bottom wall 13, and the bottom wall 13 is recessed toward the inner space 11 of the tank body 10, whereby the tank body 10 can be positioned on the ground by the periphery of the bottom wall 13. stand.

請進一步參考圖2及圖3,閥門機構30設於罐體10上並可使罐體10內外連通,且包含一第一基準方向D1、一第二基準方向D2、一第三基準方向D3、前述之閥門組件31、前述之切換座32、一第一珠體33、一第二珠體34、一正噴吸管35、及一倒噴吸管36。第一基準方向D1平行於罐體10的軸心,且朝向罐體10的頂端。第二基準方向D2垂直於第一基準方向D1,且朝向罐體10的徑向外側。第三基準方向D3平行於罐體10的軸心,且朝向罐體10的底端。Please further refer to FIG. 2 and FIG. 3 , the valve mechanism 30 is arranged on the tank body 10 and can communicate with the inside and outside of the tank body 10, and includes a first reference direction D1, a second reference direction D2, a third reference direction D3, The aforementioned valve assembly 31, the aforementioned switching seat 32, a first bead body 33, a second bead body 34, a forward spray suction pipe 35, and a reverse spray suction pipe 36. The first reference direction D1 is parallel to the axis of the tank body 10 and faces the top of the tank body 10 . The second reference direction D2 is perpendicular to the first reference direction D1 and faces radially outward of the tank body 10 . The third reference direction D3 is parallel to the axis of the tank body 10 and faces the bottom of the tank body 10 .

請參考圖1、圖2、及圖3,前述之閥門組件31具有液劑入口315及液劑出口316,液劑入口315位於罐體10的內部空間11中,液劑出口316位於罐體10外;液劑入口315選擇性地連通液劑出口316。具體來說,如圖1、圖2、及圖3所示,閥門組件31包含閥座314、閥桿312及固定蓋311(具體為金屬固定蓋),閥座314設於固定蓋311的底部,固定蓋311係被密封固定於罐體10的安裝罐口12上,液劑入口315形成於閥座314的底端;閥桿312為一管體,且在閥桿312上設有一橫孔3121;其底端設於閥座314之內,閥桿312的頂端由固定蓋311底部的中央孔穿入並突出於外,且閥桿312的頂端設有液劑出口316;進一步而言,液劑A經由閥門組件31的共同通道325、液劑入口315以及閥桿312的橫孔3121可連通液劑出口316;進一步而言,第一實施例中有一噴頭20,噴頭20是高壓噴罐的配套產品;通常噴頭20是安裝於閥桿312頂端的液劑出口316上,且噴頭20的噴嘴21與閥桿312的液劑出口316是可相連通,故當使用者壓下噴頭20之後,閥桿密封圈313的內孔會立即脫離閥桿312的橫孔3121,則閥門組件31是呈開啟狀況即可噴出罐內的液劑A;通常噴頭20呈水平狀的噴嘴口21的方向,是與呈微彎狀的正噴吸管35的正噴吸水口322是被固定設置為相同的一側。由於閥門組件31為一現有制式組件,其細部構造不再進一步詳細描述。第一實施例中的閥門組件31規格為1英吋;請參閱圖1的元件所示,即習用標準的閥門組件31包含閥桿312、閥桿密封圈313、固定蓋311、固定蓋密封圈3111、閥座314、一彈簧3112、及一正噴吸管35等七個零件構成。Please refer to Fig. 1, Fig. 2, and Fig. 3, the aforementioned valve assembly 31 has a liquid agent inlet 315 and a liquid agent outlet 316, the liquid agent inlet 315 is located in the inner space 11 of the tank body 10, and the liquid agent outlet 316 is located in the tank body 10 Outside; the liquid agent inlet 315 is selectively connected to the liquid agent outlet 316 . Specifically, as shown in Figure 1, Figure 2, and Figure 3, the valve assembly 31 includes a valve seat 314, a valve stem 312 and a fixed cover 311 (specifically a metal fixed cover), and the valve seat 314 is located at the bottom of the fixed cover 311 , the fixed cover 311 is sealed and fixed on the installation tank mouth 12 of the tank body 10, the liquid agent inlet 315 is formed at the bottom end of the valve seat 314; the valve stem 312 is a pipe body, and a horizontal hole is provided on the valve stem 312 3121; its bottom end is located in the valve seat 314, the top of the valve stem 312 penetrates and protrudes from the central hole at the bottom of the fixed cover 311, and the top of the valve stem 312 is provided with a liquid agent outlet 316; further, The liquid agent A can communicate with the liquid agent outlet 316 through the common channel 325 of the valve assembly 31, the liquid agent inlet 315 and the cross hole 3121 of the valve stem 312; furthermore, there is a spray head 20 in the first embodiment, and the spray head 20 is a high-pressure spray tank Ancillary products; usually the nozzle 20 is installed on the liquid agent outlet 316 at the top of the valve stem 312, and the nozzle 21 of the nozzle 20 and the liquid agent outlet 316 of the valve stem 312 can be connected, so when the user presses down the nozzle 20 , the inner hole of the valve stem sealing ring 313 will immediately break away from the horizontal hole 3121 of the valve stem 312, then the valve assembly 31 is in an open state and can spray out the liquid agent A in the tank; usually the nozzle 20 is in the direction of the horizontal nozzle opening 21 , is to be fixedly set to the same side as the positive spraying water inlet 322 of the positive spraying suction pipe 35 that is slightly curved. Since the valve assembly 31 is an existing standard assembly, its detailed structure will not be further described in detail. The specification of the valve assembly 31 in the first embodiment is 1 inch; please refer to the components shown in Fig. 1, that is, the conventional standard valve assembly 31 includes a valve stem 312, a valve stem sealing ring 313, a fixed cover 311, and a fixed cover sealing ring 3111, valve seat 314, a spring 3112 and a positive spray suction pipe 35 and other seven parts constitute.

請參考圖1、圖3、及圖9,前述之切換座32包含一本體32A,本體32A進一步包含一第一通道321、一第一吸水口322B、一第二通道323、一第二吸水口324B、一共同通道325、一匯流隔板326、一第一開口327、一第一塞蓋328、一第二開口329、一第二塞蓋330、一第三開口32B、一第三塞蓋32C、一第四開口32D、一第四塞蓋32E、倒噴延伸管部36A及一正噴延伸管部35A。其中,前述之第一通道321、第一吸水口322B、第二通道323、第二吸水口324B、共同通道325、匯流隔板326、第一開口327、第二開口329、第三開口32B、第四開口32D及倒噴延伸管部36A全部都形成於本體32A,而第一塞蓋328、第二塞蓋330、第三塞蓋32C、第四塞蓋32E及正噴延伸管部35A與本體32A為相互分離獨立的元件。Please refer to Fig. 1, Fig. 3, and Fig. 9, the aforementioned switching seat 32 includes a body 32A, and the body 32A further includes a first channel 321, a first water suction port 322B, a second channel 323, and a second water suction port 324B, a common channel 325, a confluence partition 326, a first opening 327, a first plug cover 328, a second opening 329, a second plug cover 330, a third opening 32B, a third plug cover 32C, a fourth opening 32D, a fourth plug cap 32E, a reverse spray extension tube portion 36A and a forward spray extension tube portion 35A. Among them, the first passage 321, the first suction port 322B, the second passage 323, the second suction port 324B, the common passage 325, the confluence partition 326, the first opening 327, the second opening 329, the third opening 32B, The fourth opening 32D and the reverse spray extension pipe portion 36A are all formed in the main body 32A, while the first plug cap 328, the second plug cap 330, the third plug cap 32C, the fourth plug cap 32E and the forward spray extension pipe portion 35A are connected to the main body 32A. The body 32A is a separate and independent element from each other.

請參考圖2、圖3、及圖6,進一步而言,切換座32的頂端係設置於閥門組件31的底端並與閥門組件31相互連通,切換座32包含第一通道321與第二通道323,以及第一水平線與第二水平線。其中,第一水平線其標示於第一通道321內,且該第一水平線僅供本創作當罐體呈水平狀態時,與第一傾斜內壁面3212呈虛擬夾角比對之參考;第二水平線其標示於第二通道323內,該第二水平線僅供本創作當罐體呈水平狀態時,與第二傾斜內壁面3232呈虛擬夾角比對之參考。Please refer to FIG. 2, FIG. 3, and FIG. 6. Further, the top end of the switching seat 32 is arranged on the bottom end of the valve assembly 31 and communicates with the valve assembly 31. The switching seat 32 includes a first channel 321 and a second channel. 323, and the first horizontal line and the second horizontal line. Among them, the first horizontal line is marked in the first channel 321, and this first horizontal line is only for reference in this creation when the tank body is in a horizontal state, compared with the first inclined inner wall surface 3212 to form a virtual angle; the second horizontal line is its Marked in the second channel 323, the second horizontal line is only for reference in this invention when the tank body is in a horizontal state, compared with the second inclined inner wall surface 3232 to form a virtual angle.

請參考圖2及圖3,在本體32A上,第一通道321包含一第一連通口3211及一第一傾斜內壁面3212。第一連通口3211形成於第一通道321朝向第一基準方向D1的一端,並且連通於液劑入口315。第一傾斜內壁面3212位於該第一通道321在第二基準方向D2上的一側,第一傾斜內壁面3212傾斜於罐體10的軸心,且由朝向第一基準方向D1的一端(此為起點,即罐體的頂端方向)至朝向第三基準方向D3的一端(此為終點,即罐體的底端方向)偏向第二基準方向D2傾斜延伸;也就是說在圖中第一傾斜內壁面3212位在第一通道321內的左側,且傾斜於罐體10的軸心,並且是由上至下向左偏斜。換言之,如圖6所示,因第一傾斜內壁面3212形成於第一通道321在第二基準方向D2上的一側,故在罐體呈水平狀態時,第一傾斜內壁面3212在第一水平線之下沿是朝罐底方向呈夾角的傾斜。具體來說,在本實例中第一傾斜內壁面3212與第一基準方向D1的夾角θ可以是1度至3度,且較佳為1.5度,但在其他實施例中其角度不以前述為限。Please refer to FIG. 2 and FIG. 3 , on the body 32A, the first channel 321 includes a first communication opening 3211 and a first inclined inner wall surface 3212 . The first communication port 3211 is formed at one end of the first channel 321 facing the first reference direction D1 and communicates with the liquid agent inlet 315 . The first inclined inner wall surface 3212 is located on one side of the first channel 321 in the second reference direction D2, the first inclined inner wall surface 3212 is inclined to the axis of the tank body 10, and is directed toward one end of the first reference direction D1 (here is the starting point, i.e. the direction of the top of the tank body) to one end towards the third reference direction D3 (this is the end point, i.e. the direction of the bottom end of the tank body) and extends obliquely towards the second reference direction D2; The inner wall surface 3212 is located on the left side of the first channel 321 and is inclined to the axis of the tank body 10 , and is inclined to the left from top to bottom. In other words, as shown in FIG. 6, since the first inclined inner wall surface 3212 is formed on one side of the first passage 321 in the second reference direction D2, when the tank body is in a horizontal state, the first inclined inner wall surface 3212 is in the first direction. The lower edge of the horizontal line is an angled slope towards the bottom of the tank. Specifically, in this example, the included angle θ between the first inclined inner wall surface 3212 and the first reference direction D1 can be 1 degree to 3 degrees, and is preferably 1.5 degrees, but in other embodiments, the angle is different from the aforementioned limit.

請參考圖3,第一吸水口322B形成於本體32A的底部且連通於第一通道321,且經由第一通道321的第一連通口3211連通於液劑入口315。Please refer to FIG. 3 , the first water suction port 322B is formed at the bottom of the body 32A and communicates with the first passage 321 , and communicates with the liquid agent inlet 315 through the first communication port 3211 of the first passage 321 .

請參考圖3,正噴延伸管部35A設於本體32A上,且連通於第一吸水口322B,並且朝向第三基準方向D3延伸。正噴吸管35結合於正噴延伸管部35A。Referring to FIG. 3 , the forward spray extension pipe portion 35A is disposed on the main body 32A, communicates with the first water suction port 322B, and extends toward the third reference direction D3. The front jet suction pipe 35 is coupled to the front jet extension pipe portion 35A.

請參考圖2及圖3,在本體32A上,第二通道323包含一第二連通口3231及一第二傾斜內壁面3232。第二連通口3231其形成於第二通道323朝向第三基準方向D3的一端,並且連通於液劑入口315。第二傾斜內壁面3232位於第二通道323在第二基準方向D2上的一側,第二傾斜內壁面3232傾斜於罐體10的軸心,且由朝向第三基準方向D3的一端(此為起點,即罐體的底端方向)至朝向第一基準方向D1的一端(此為終點,即罐體的頂端方向)偏向第二基準方向D2傾斜延伸;也就是說在圖中第二傾斜內壁面3232位在第二通道323內的左側,且傾斜於罐體10的軸心,並且是由下至上向左偏斜。換言之,如圖6所示,因第二傾斜內壁面3232形成於第二通道323在第二基準方向D2上的一側,故在罐體呈水平狀態時,第二傾斜內壁面3232在第二水平線之下沿是朝罐頂方向呈夾角的傾斜。具體來說,在本實例中第二傾斜內壁面3232與第三基準方向D3的夾角θ可以是1度至3度,且較佳為1.5度,但在其他實施例中其角度不以前述為限,並且第二傾斜內壁面3232的傾斜度與第一傾斜內壁面3212的傾斜度可以不相同。Please refer to FIG. 2 and FIG. 3 , on the body 32A, the second channel 323 includes a second communication port 3231 and a second inclined inner wall 3232 . The second communication port 3231 is formed at one end of the second channel 323 facing the third reference direction D3 and communicates with the liquid agent inlet 315 . The second inclined inner wall surface 3232 is located on one side of the second channel 323 in the second reference direction D2, the second inclined inner wall surface 3232 is inclined to the axis of the tank body 10, and is directed toward one end of the third reference direction D3 (this is The starting point, that is, the direction of the bottom end of the tank) to one end toward the first reference direction D1 (this is the end point, that is, the direction of the top end of the tank) extends obliquely toward the second reference direction D2; that is to say, in the second inclination in the figure The wall 3232 is located on the left side of the second channel 323 and is inclined to the axis of the tank body 10 , and is inclined from bottom to top to the left. In other words, as shown in Figure 6, since the second inclined inner wall surface 3232 is formed on one side of the second passage 323 in the second reference direction D2, when the tank body is in a horizontal state, the second inclined inner wall surface 3232 is on the second side of the second reference direction D2. The lower edge of the horizontal line is an angled slope towards the tank roof. Specifically, in this example, the included angle θ between the second inclined inner wall surface 3232 and the third reference direction D3 can be 1 degree to 3 degrees, and is preferably 1.5 degrees, but in other embodiments, the angle is not the same as the aforementioned limit, and the inclination of the second inclined inner wall surface 3232 and the inclination of the first inclined inner wall surface 3212 may be different.

請參考圖9,在第一實施例中,切換座32進一步包含一倒噴延伸管部36A直接形成於本體32A上,且朝向第二基準方向D2延伸至貼近於罐體10的內壁面。其中,前述之第二吸水口324B是形成於倒噴延伸管部36A位於第二基準方向D2上的末端,也就是說第二吸水口324B是形成於倒噴延伸管部36A的尾孔,且連通於第二通道323,再經由第二通道323的第二連通口3231連通於液劑入口315。並且,倒噴延伸管部36A上形成有一定位凸肋363。Please refer to FIG. 9 , in the first embodiment, the switch base 32 further includes a spray extension tube portion 36A directly formed on the main body 32A, and extends toward the second reference direction D2 to be close to the inner wall of the tank body 10 . Wherein, the aforementioned second water suction port 324B is formed at the end of the backspray extension pipe portion 36A located in the second reference direction D2, that is to say, the second water suction port 324B is formed at the tail hole of the backspray extension pipe portion 36A, and It communicates with the second channel 323 , and then communicates with the liquid agent inlet 315 through the second communication port 3231 of the second channel 323 . Moreover, a positioning rib 363 is formed on the spray extension tube portion 36A.

請參考圖1、圖3、圖9及圖9A,倒噴吸管36上設有一定位匣361及一接合端362。其中,定位匣361與倒噴延伸管部36A的定位凸肋363之接合是供做方向定位之用,而接合端362是連通於第二吸水口324B及第二連通口3231。具體來說,當倒噴吸管36與倒噴延伸管部36A相結合時,接合端362是穿設結合於倒噴延伸管部36A內,並且由於接合端362與倒噴延伸管部36A係兩圓形管體對接,因此為了定位以使L型的倒噴吸管36朝向上方,故設計定位匣361在倒噴吸管36與倒噴延伸管部36A相結合時卡合於定位凸肋363,藉此達到方向定位之功效。Please refer to FIG. 1 , FIG. 3 , FIG. 9 and FIG. 9A , a positioning box 361 and a joint end 362 are provided on the spray nozzle 36 . Wherein, the joint between the positioning box 361 and the positioning rib 363 of the backspray extension pipe portion 36A is used for direction positioning, and the joint end 362 is connected to the second water suction port 324B and the second communication port 3231 . Specifically, when the reverse spray suction pipe 36 is combined with the reverse spray extension pipe portion 36A, the joint end 362 is penetrated and combined in the reverse spray extension pipe portion 36A, and since the joint end 362 and the reverse spray extension pipe portion 36A are two The circular tubes are butted, so in order to make the L-shaped reverse spray suction pipe 36 face upward, the positioning box 361 is designed to engage with the positioning rib 363 when the reverse spray suction pipe 36 is combined with the reverse spray extension pipe part 36A. This achieves the effect of orientation positioning.

請參考圖3,在本體32A上,共同通道325連通於液劑入口315,且第一連通口3211及第二連通口3231係經由共同通道325連通於液劑入口315。匯流隔板326設於共同通道325內,且位於第一連通口3211及第二連通口3231之間。匯流隔板326以及共同通道325可以在液劑A同時由第一吸水口322B與第二吸水口324B進入時產生穩定匯流的效果,避免兩流向的液劑A相碰撞產生擾流而影響正常噴射,但在其他實施例中也可以沒有共同通道325與匯流隔板326。Please refer to FIG. 3 , on the body 32A, the common channel 325 communicates with the liquid agent inlet 315 , and the first communication port 3211 and the second communication port 3231 communicate with the liquid agent inlet 315 through the common channel 325 . The confluence separator 326 is disposed in the common channel 325 and between the first communication port 3211 and the second communication port 3231 . The confluence partition plate 326 and the common channel 325 can produce a stable confluence effect when the liquid agent A enters from the first water suction port 322B and the second water suction port 324B at the same time, avoiding the collision of the liquid agent A in the two flow directions to cause turbulence and affect the normal injection , but in other embodiments there may be no common channel 325 and bus partition 326 .

請參考圖2及圖3,在本體32A上,第一開口327形成於第一通道321朝向於第三基準方向D3的一端,且第一珠體33能由第一開口327進入或脫離第一通道321。第一塞蓋328能分離地封閉第一開口327,藉此支撐第一珠體33使其不會脫離第一通道321。第二開口329形成於第二通道323朝向於第一基準方向D1的一端,並且第二珠體34能由第二開口329進入或脫離第二通道323。第二塞蓋330能分離地設於第二開口329,藉此支撐第二珠體34使其不會脫離第二通道323。珠體較佳的材質為不鏽鋼。2 and 3, on the body 32A, the first opening 327 is formed at one end of the first channel 321 facing the third reference direction D3, and the first bead 33 can enter or leave the first opening 327. Channel 321. The first plug cap 328 can detachably close the first opening 327 , thereby supporting the first bead 33 so as not to escape from the first channel 321 . The second opening 329 is formed at one end of the second channel 323 facing the first reference direction D1 , and the second bead 34 can enter or leave the second channel 323 through the second opening 329 . The second plug cover 330 is detachably disposed on the second opening 329 , thereby supporting the second bead 34 so as not to be separated from the second channel 323 . The preferred material of the beads is stainless steel.

請參考圖3及圖9,在本體32A上,第三開口32B形成於本體32A朝向第二基準方向D2的一側,且連通於第一連通口3211。第三塞蓋32C能分離地封閉第三開口32B,且包含一第三塞蓋導引壁32C1。當第三塞蓋32C封閉第三開口32B時,第三塞蓋導引壁32C1與本體32A可夾設形成連接於第一吸水口322B與第一通道321之間的彎曲連接通道。第四開口32D形成於本體32A朝向第二基準方向D2的一側,且連通於第二連通口3231。第四塞蓋32E能分離地封閉第四開口32D,且包含一第四塞蓋導引壁32E1。當第四塞蓋32E封閉第四開口32D時,第四塞蓋導引壁32E1與本體32A可夾設形成連接於第二連通口3231與共同通道325之間的彎曲連接通道。換言之,第三開口32B形成於第一吸水口322B的頂端通往第一通道321之間,而第四開口32D形成於第二連通口3231通往共同通道325之間。第三塞蓋32C及第四塞蓋32E是間隔地結合;第三塞蓋32C能分離地封閉第三開口32B,藉此支撐第一吸水口322B的頂端通往第一通道321之間的通道彎曲繞行之用途;第四塞蓋32E能分離地封閉第四開口32D,藉此支撐第二連通口3231通往共同通道325之間的通道彎曲繞行之用途。Referring to FIG. 3 and FIG. 9 , on the body 32A, the third opening 32B is formed on the side of the body 32A facing the second reference direction D2 and communicates with the first communication port 3211 . The third plug cover 32C can detachably close the third opening 32B, and includes a third plug cover guiding wall 32C1. When the third plug cover 32C closes the third opening 32B, the third plug cover guide wall 32C1 and the main body 32A can interpose to form a curved connection channel connected between the first water suction port 322B and the first channel 321 . The fourth opening 32D is formed on one side of the main body 32A facing the second reference direction D2 and communicates with the second communication port 3231 . The fourth plug cover 32E can detachably close the fourth opening 32D, and includes a fourth plug cover guiding wall 32E1. When the fourth plug cover 32E closes the fourth opening 32D, the fourth plug cover guide wall 32E1 and the main body 32A can interpose to form a curved connection channel connected between the second communication port 3231 and the common channel 325 . In other words, the third opening 32B is formed between the top of the first water suction port 322B and the first channel 321 , and the fourth opening 32D is formed between the second communication port 3231 and the common channel 325 . The third plug cover 32C and the fourth plug cover 32E are combined at intervals; the third plug cover 32C can separately close the third opening 32B, thereby supporting the passage between the top of the first water suction port 322B leading to the first passage 321 The purpose of bending around: the fourth plug cover 32E can separately close the fourth opening 32D, thereby supporting the purpose of the second communication port 3231 leading to the channel between the common channels 325 to bend around.

此外,請參考圖1,在第一實施例中正噴延伸管部35A及第一塞蓋328是間隔地結合,但在其他實施例中不以此為限。In addition, please refer to FIG. 1 , in the first embodiment, the forward spray extension tube portion 35A and the first plug cap 328 are combined at intervals, but in other embodiments, it is not limited thereto.

特別說明,請參考圖1、圖3及圖4,本體32A為組成切換座32的組件之一(如[0034]所述),故當本體32A尚未與正噴吸管35及倒噴吸管36結合時,在本體32A上的兩吸水口分別定義為第一吸水口322B及第二吸水口324B;而當實際使用時,即本體32A與正噴吸管35及倒噴吸管36結合之後,此時正噴吸管35的尾端開口定義為正噴吸水口322,且呈L形狀的倒噴吸管36的尾端開口定義為倒噴吸水口324。In particular, please refer to Fig. 1, Fig. 3 and Fig. 4, the main body 32A is one of the components forming the switching seat 32 (as described in [0034]), so when the main body 32A has not been combined with the forward spray suction pipe 35 and the reverse spray suction pipe 36 At the time, the two suction ports on the main body 32A are respectively defined as the first water suction port 322B and the second water suction port 324B; and when in actual use, that is, after the body 32A is combined with the forward spray suction pipe 35 and the reverse spray suction pipe 36, at this time, the The tail end opening of the spray suction pipe 35 is defined as a forward spray water suction port 322 , and the tail end opening of the L-shaped backward spray suction pipe 36 is defined as a reverse spray water suction port 324 .

請參考圖3,本發明之第一實施例中,第一珠體33能移動地設於第一通道321內,且選擇性地連通或阻斷正噴吸水口322與液劑入口315。第二珠體34能移動地設於第二通道323內,且選擇性地連通或阻斷倒噴吸水口324與液劑入口315。其中,請參考圖4,當手握的高壓噴罐在正噴使用時,第一珠體33受引力作用而滑落於第一塞蓋328上,促使正噴吸管35的正噴吸水口322浸沒於液劑A中並經由第一連通口3211連通於液劑入口315,且同時第二珠體34亦受引力作用而滑落並堵住第二連通口3231藉此阻斷倒噴吸水口324與液劑入口315;請參考圖5,當高壓噴罐在倒噴使用時,第二珠體34受引力作用而滑落於第二塞蓋330上,促使倒噴吸管36的倒噴吸水口324浸沒於液劑A中並經由第二連通口3231連通於液劑入口315,且同時第一珠體33亦受引力作用而滑落並堵住第一連通口3211藉此阻斷正噴吸水口322與液劑入口315;請參考圖6,當高壓噴罐在水平噴射使用時,第一珠體33受引力作用而抵靠移動於第一傾斜內壁面3212並朝罐底方向向下滾動,並最終停滯並抵靠於第一傾斜內壁面3212的較低端,藉此正噴吸管35的正噴吸水口322浸沒於液劑A中並經由第一連通口3211連通於液劑入口315,且同時第二珠體34亦受引力作用而抵靠移動於第二傾斜內壁面3232並朝罐頂方向向下滾動,並最終停滯並抵靠於第二傾斜內壁面3232的較低端,藉此倒噴吸管36的倒噴吸水口324浸沒於液劑A中並經由第二連通口3231連通於液劑入口315。Please refer to FIG. 3 , in the first embodiment of the present invention, the first bead 33 is movably disposed in the first channel 321 , and selectively connects or blocks the positive spraying water inlet 322 and the liquid agent inlet 315 . The second bead 34 is movably disposed in the second channel 323 , and selectively connects or blocks the backspray suction port 324 and the liquid agent inlet 315 . Wherein, please refer to Fig. 4, when the high-pressure spray tank held by hand is used in the forward spraying, the first bead 33 is subjected to the gravitational force and slides on the first plug cover 328, impelling the positive spraying suction port 322 of the positive spraying suction pipe 35 to be submerged In the liquid agent A, it is connected to the liquid agent inlet 315 through the first communication port 3211, and at the same time, the second bead 34 is also affected by the gravitational force and slides down and blocks the second communication port 3231, thereby blocking the backspray suction port 324 and the liquid agent inlet 315; please refer to Fig. 5, when the high-pressure spray tank is used for reverse spraying, the second bead 34 will slide down on the second plug cover 330 due to the gravitational force, and the backward spray suction port 324 of the reverse spray suction pipe 36 will be prompted Immersed in the liquid agent A and communicated with the liquid agent inlet 315 through the second communication port 3231, and at the same time, the first bead 33 also slides down due to the action of gravity and blocks the first communication port 3211, thereby blocking the positive spray and suction port 322 and the liquid agent inlet 315; please refer to Figure 6, when the high-pressure spray tank is used for horizontal spraying, the first bead 33 is moved against the first inclined inner wall surface 3212 by gravity and rolls down toward the bottom of the tank, And finally stagnate and lean against the lower end of the first inclined inner wall surface 3212, whereby the positive spray suction port 322 of the positive spray suction pipe 35 is immersed in the liquid agent A and communicates with the liquid agent inlet 315 through the first communication port 3211 , and at the same time, the second bead 34 is also moved against the second inclined inner wall surface 3232 by the gravitational force and rolls down toward the top of the tank, and finally stagnates and leans against the lower end of the second inclined inner wall surface 3232, Accordingly, the reverse spray suction port 324 of the reverse spray suction pipe 36 is immersed in the liquid agent A and communicates with the liquid agent inlet 315 through the second communication port 3231 .

請參考圖3、圖4及圖5,本發明之第一實施例中,在本體32A上,正噴吸管35的頭端透過正噴延伸管部35A與本體32A的第一吸水口322B接合且連通於第一連通口3211,而呈微彎狀的正噴吸管35之彎曲方向是被固定設置與噴頭20之噴嘴21是相同的一側,且正噴吸管35的正噴吸水口322是朝向第三基準方向D3延伸並貼近罐身與罐底接連之角落,故在正噴狀態使用時,正噴吸管35的正噴吸水口322可浸沒並定位於罐底內的液劑A中;本發明之第一實施例中,倒噴吸管36是呈L型,且倒噴吸管36的接合端362與本體32A的倒噴吸水口324B接合且連通於第二連通口3231,而倒噴吸管36的倒噴吸水口324是朝向第二基準方向D2且朝向第一基準方向D1延伸至罐體10內的頂部,故在倒噴狀態使用時,倒噴吸管36的倒噴吸水口324可浸沒並定位於罐頂內的液劑A中。但不以此為限,正噴吸管35的正噴吸水口322亦可筆直朝向第三基準方向D3,而倒噴吸管36的倒噴吸水口324亦可不是朝向罐體10的頂部而是朝向第二基準方向D2。Please refer to Fig. 3, Fig. 4 and Fig. 5, in the first embodiment of the present invention, on the main body 32A, the head end of the positive spray suction pipe 35 is connected with the first water suction port 322B of the main body 32A through the positive spray extension pipe part 35A and It is connected to the first communication port 3211, and the bending direction of the slightly curved positive spraying and suction pipe 35 is fixedly installed on the same side as the nozzle 21 of the shower head 20, and the positive spraying and suction port 322 of the positive spraying and suction pipe 35 is It extends towards the third reference direction D3 and is close to the corner where the tank body and the bottom of the tank are connected, so when using in the forward spraying state, the positive spray suction port 322 of the positive spray suction pipe 35 can be submerged and positioned in the liquid agent A in the bottom of the tank; In the first embodiment of the present invention, the backspray suction pipe 36 is L-shaped, and the joint end 362 of the backspray suction pipe 36 is engaged with the backspray suction port 324B of the body 32A and communicated with the second communication port 3231, while the backspray suction pipe The backspray suction port 324 of 36 extends to the top of the tank body 10 toward the second reference direction D2 and toward the first reference direction D1, so when used in the reverse spray state, the backspray suction port 324 of the backspray suction pipe 36 can be submerged And positioned in the liquid agent A in the top of the tank. But it is not limited to this, the forward spray suction port 322 of the forward spray suction pipe 35 can also be straight towards the third reference direction D3, and the reverse spray suction port 324 of the reverse spray suction pipe 36 can also be not toward the top of the tank body 10 but toward the top of the tank body 10. The second reference direction D2.

更具體而言,本發明使用時大致分為五種狀態,如下說明。More specifically, the present invention is roughly divided into five states when used, as described below.

第一,正噴狀態。請參考圖4,當罐體10呈正噴狀態使用時,第一珠體33位於第一通道321底端使正噴吸水口322經由第一連通口3211連通於液劑入口315,且同時第二珠體34亦滑落於第二通道323的底端並堵住第二連通口3231藉此阻斷倒噴吸水口324與液劑入口315,並且此時正噴吸水口322是浸沒於液劑A中,而倒噴吸水口324是暴露於拋射劑B中。故當按壓噴頭20時,液劑A依序通過正噴吸水口322、第一通道321、第一連通口3211及共同通道325後進入液劑入口315即可噴出罐內的液劑A。此時由於第二珠體34阻斷倒噴吸水口324與液劑入口315,故即便倒噴吸管36的倒噴吸水口324暴露於拋射劑B中,拋射劑B也不會因此由噴嘴21洩漏出。First, the positive spraying state. Please refer to Fig. 4, when the tank body 10 is used in the forward spraying state, the first bead 33 is located at the bottom of the first channel 321 so that the forward spraying water inlet 322 is connected to the liquid agent inlet 315 through the first communication port 3211, and at the same time the second The second bead 34 also slides down on the bottom of the second channel 323 and blocks the second communication port 3231 so as to block the reverse spray suction port 324 and the liquid agent inlet 315, and at this time, the forward spray water suction port 322 is immersed in the liquid agent In A, the backspray suction port 324 is exposed to propellant B. Therefore, when the spray head 20 is pressed, the liquid agent A enters the liquid agent inlet 315 through the forward spray suction port 322, the first channel 321, the first communication port 3211 and the common channel 325 in sequence, and then the liquid agent A in the tank can be sprayed out. At this time, because the second bead 34 blocks the backspray suction port 324 and the liquid agent inlet 315, even if the backspray suction port 324 of the backspray suction pipe 36 is exposed to the propellant B, the propellant B will not be released from the nozzle 21. leak out.

第二,倒噴狀態,請參考圖5,當罐體10呈倒噴狀態使用時,第二珠體34位於第二通道323的底端使倒噴吸水口324經由第二連通口3231連通於液劑入口315,且同時第一珠體33亦滑落於第一通道321的底端並堵住第一連通口3211藉此阻斷正噴吸水口322與液劑入口315,並且此時倒噴吸水口324是浸沒於液劑A中,而正噴吸水口322是暴露於拋射劑B中,故當按壓噴頭20時,液劑A依序通過倒噴吸水口324、第二通道323、第二連通口3231、及共同通道325後進入液劑入口315即可噴出罐內的液劑A。此時由於第一珠體33阻斷正噴吸水口322與液劑入口315,故即便正噴吸管35的正噴吸水口322暴露於拋射劑B中,拋射劑B也不會因此由噴嘴21洩漏出。Second, the backspray state, please refer to Figure 5, when the tank body 10 is used in the backspray state, the second bead 34 is located at the bottom end of the second channel 323 so that the backspray suction port 324 communicates with the second communication port 3231 Liquid agent inlet 315, and at the same time, the first bead 33 also slides down on the bottom end of the first channel 321 and blocks the first communication port 3211 so as to block the positive spraying water inlet 322 and the liquid agent inlet 315, and at this time, pour The spray water suction port 324 is immersed in the liquid agent A, while the forward spray water suction port 322 is exposed to the propellant B, so when the nozzle 20 is pressed, the liquid liquid A passes through the reverse spray water suction port 324, the second channel 323, After the second communication port 3231 and the common channel 325 enter the liquid agent inlet 315, the liquid agent A in the tank can be sprayed out. At this time, because the first bead 33 blocks the positive spray suction port 322 and the liquid agent inlet 315, even if the positive spray suction port 322 of the positive spray suction pipe 35 is exposed to the propellant B, the propellant B will not be released from the nozzle 21. leak out.

第三,平噴狀態。請參考圖6,當罐體10呈水平噴射狀態時,由於第一傾斜內壁面3212其形成於第一水平線下沿,且朝向罐底方向呈1.5度的傾斜夾角θ,而第二傾斜內壁面3232其形成於第二水平線下沿,且朝向罐頂方向呈1.5度的傾斜夾角θ。故當罐內的液劑A容量僅剩一半或更少時,使用者手持罐體10在100%呈水平噴射狀態下使用時,藉由第一傾斜內壁面3212與第二傾斜內壁面3232的向下傾斜,因此第一珠體33會抵靠於第一傾斜內壁面3212並朝罐底方向迅速滾動並定位於傾斜的較低端,促使正噴吸水口322連通於液劑入口315,且同時第二珠體34亦會抵靠於第二傾斜內壁面3232並朝罐頂方向迅速移動並定位於傾斜的較低端,促使倒噴吸水口324連通於液劑入口315;也就是說,在100%呈水平噴射狀態時因為有第一傾斜內壁面3212與第二傾斜內壁面3232之設計,故第一珠體33與第二珠體34會因為相互連動而同時向下傾斜方向移動於兩傾斜的較低端,並促使正噴吸水口322與倒噴吸水口324皆呈開啟狀態,且液劑A經由兩吸水口依序通過兩通道、兩連通口及共同通道325後進入液劑入口315即可同時噴出罐內的液劑A,甚至當罐體10使用至最後時,罐內的液劑A與拋射劑B亦有可能兩者皆全部用罄而無任何浪費。Third, the flat spray state. Please refer to Fig. 6, when the tank body 10 is in a horizontal spray state, because the first inclined inner wall surface 3212 is formed on the lower edge of the first horizontal line, and has an inclined angle θ of 1.5 degrees toward the bottom of the tank, while the second inclined inner wall surface 3232 It is formed on the lower edge of the second horizontal line, and has an angle θ of 1.5 degrees toward the top of the tank. Therefore, when the capacity of liquid agent A in the tank is only half or less, when the user holds the tank body 10 and uses it in a 100% horizontal spraying state, the first inclined inner wall surface 3212 and the second inclined inner wall surface 3232 It is inclined downward, so the first bead 33 will abut against the first inclined inner wall surface 3212 and roll rapidly toward the bottom of the tank and be positioned at the lower end of the inclination, so that the positive spray and suction port 322 is communicated with the liquid agent inlet 315, and At the same time, the second bead 34 will also lean against the second inclined inner wall surface 3232 and move rapidly toward the tank top and be positioned at the lower end of the inclination, so that the backspray suction port 324 is communicated with the liquid agent inlet 315; that is, When the spraying state is 100% horizontal, because of the design of the first inclined inner wall surface 3212 and the second inclined inner wall surface 3232, the first bead 33 and the second bead 34 will move downward in an inclined direction at the same time due to mutual linkage. The lower ends of the two inclinations make the forward spray suction port 322 and the reverse spray suction port 324 both open, and the liquid agent A enters the liquid agent through the two water suction ports through the two channels, the two communication ports and the common channel 325 in sequence The inlet 315 can spray out the liquid agent A in the tank at the same time. Even when the tank body 10 is used to the end, both the liquid agent A and the propellant B in the tank may be completely used up without any waste.

第四,當罐體呈水平噴射且噴頭20繼續朝下傾斜狀態。請參考圖7,由於第二傾斜內壁面3232其形成於第二水平線下沿,且朝向罐頂方向呈1.5度的傾斜夾角θ。故當罐內的液劑A容量僅剩一半或更少時,使用者手持罐體10在正噴狀態且罐頂繼續朝地面方向小角度傾斜至趨近於水平線上沿呈1.5度或大於1.5度夾角θ時,此時原本呈1.5度夾角θ的第二傾斜內壁面3232與第二水平線幾乎是平行或是罐頂更朝地面方向傾斜,因藉由第二珠體34抵靠於第二傾斜內壁面3232故第二珠體34是朝罐頂方向迅速移動且定位於傾斜的較低端,促使倒噴吸水口324浸沒於液劑A中並連通於液劑入口315;且同時第一珠體33亦已朝罐頂方向移動並堵住第一連通口3211藉此阻斷正噴吸水口322與液劑入口315相通;並且此時倒噴吸水口324是浸沒於液劑A中,而正噴吸水口322是暴露於拋射劑B中,故當按壓噴頭20時,液劑A依序通過倒噴吸水口324、第二通道323、第二連通口3231、及共同通道325後進入液劑入口315即可噴出罐內的液劑A,此時由於第一珠體33阻斷正噴吸水口322與液劑入口315相通,故即便正噴吸水口322暴露於拋射劑B中,拋射劑B也不會因此由噴嘴21洩漏出。Fourth, when the tank body is spraying horizontally and the spray head 20 continues to tilt downward. Please refer to FIG. 7 , because the second inclined inner wall surface 3232 is formed on the lower edge of the second horizontal line, and forms an included angle θ of 1.5 degrees toward the tank top. Therefore, when the capacity of liquid agent A in the tank is only half or less, the user holds the tank body 10 in the state of spraying and the top of the tank continues to incline at a small angle towards the ground until it approaches the horizontal line at 1.5 degrees or greater than 1.5 degrees. When the included angle θ is 1.5°, the second inclined inner wall surface 3232, which originally formed an included angle θ of 1.5°, is almost parallel to the second horizontal line or the top of the tank is inclined more toward the ground, because the second bead 34 abuts against the second The inclined inner wall surface 3232, so that the second bead 34 moves rapidly towards the top of the tank and is positioned at the lower end of the inclination, so that the reverse spray suction port 324 is immersed in the liquid agent A and communicated with the liquid agent inlet 315; and at the same time, the first The bead body 33 has also moved towards the top of the tank and blocks the first communication port 3211 so as to block the communication between the forward spray suction port 322 and the liquid agent inlet 315; , and the forward spray suction port 322 is exposed to the propellant B, so when the nozzle 20 is pressed, the liquid agent A passes through the reverse spray suction port 324, the second channel 323, the second communication port 3231, and the common channel 325 in sequence Entering the liquid agent inlet 315, the liquid agent A in the tank can be sprayed out. At this time, since the first bead 33 blocks the positive spraying water inlet 322 from communicating with the liquid agent inlet 315, even if the positive spraying water suction port 322 is exposed to the propellant B , the propellant B will not leak out from the nozzle 21 as a result.

第五,當罐體呈水平噴射且噴頭20繼續朝上傾斜狀態。請參考圖8,由於第一傾斜內壁面3212其形成於第一水平線下沿,且朝向罐底方向呈1.5度的傾斜夾角θ。故當罐內的液劑A容量僅剩一半或更少時,使用者手持罐體10在倒噴狀態且罐頂繼續朝地面反方向小角度傾斜至趨近於水平線下沿呈1.5度或小於1.5度夾角θ時,此時原本呈1.5度夾角θ的第一傾斜內壁面3212與第一水平線幾乎是平行或是罐頂更朝地面反方向傾斜,因藉由第一珠體33抵靠於第一傾斜內壁面3212故第一珠體33是朝罐底方向迅速移動且定位於傾斜的較低端,促使正噴吸水口322浸沒於液劑A中並連通於液劑入口315;且同時第二珠體34亦已朝罐底方向移動並堵住第二連通口3231藉此阻斷倒噴吸水口324與液劑入口315相通;並且此時正噴吸水口322是浸沒於液劑A中,而倒噴吸水口324是暴露於拋射劑B中,故當按壓噴頭20時,液劑A依序通過正噴吸水口322、第一通道321、第一連通口3211、及共同通道325後進入液劑入口315即可噴出罐內的液劑A,此時由於第二珠體34阻斷倒噴吸水口324與液劑入口315相通,故即便倒噴吸水口324暴露於拋射劑B中,拋射劑B也不會因此由噴嘴21洩漏出。Fifth, when the tank body is spraying horizontally and the spray head 20 continues to tilt upward. Please refer to FIG. 8 , because the first inclined inner wall surface 3212 is formed on the lower edge of the first horizontal line and forms an included angle θ of 1.5 degrees towards the bottom of the tank. Therefore, when the capacity of liquid agent A in the tank is only half or less, the user holds the tank body 10 in the reverse spraying state and the top of the tank continues to incline at a small angle in the opposite direction to the ground until it is close to the horizontal line and the bottom edge is 1.5 degrees or less. When the included angle θ is 1.5 degrees, the first inclined inner wall surface 3212, which was originally at an included angle θ of 1.5 degrees, is almost parallel to the first horizontal line or the tank roof is inclined in the opposite direction to the ground, because the first bead 33 abuts against the The first inclined inner wall surface 3212, so that the first bead 33 moves rapidly towards the bottom of the tank and is positioned at the lower end of the inclination, so that the positive spray and suction port 322 is immersed in the liquid agent A and communicated with the liquid agent inlet 315; and at the same time The second bead 34 has also moved towards the bottom of the tank and blocks the second communication port 3231 so as to block the communication between the reverse spray suction port 324 and the liquid agent inlet 315; , and the reverse spray suction port 324 is exposed to the propellant B, so when the nozzle 20 is pressed, the liquid agent A passes through the forward spray suction port 322, the first channel 321, the first communication port 3211, and the common channel in sequence After entering the liquid agent inlet 315 after 325, the liquid agent A in the tank can be sprayed out. At this time, because the second bead body 34 blocks the backspray water suction port 324 from communicating with the liquid agent inlet 315, even if the backspray water suction port 324 is exposed to the propellant In B, the propellant B cannot thus escape from the nozzle 21 .

綜上所述,雖依罐體10的擺放方式具有五種狀態,但實際上第一珠體33與第二珠體34的移動與運作僅具有三種狀態,即第一珠體33開啟正噴吸水口322且同時第二珠體34堵住倒噴吸水口324、第二珠體34開啟倒噴吸水口324且同時第一珠體33堵住正噴吸水口322、以及第一珠體33與第二珠體34同時開啟正噴吸水口322與倒噴吸水口324,並且此三種運作狀態在罐體呈水平噴射且噴頭20繼續朝下傾斜狀態(如圖7)與罐體呈水平噴射且噴頭20繼續朝上傾斜狀態(圖8)中的特定角度變化時快速切換時,亦同時促使第一珠體33與第二珠體34快速移動並定位,使得正噴吸水口322與倒噴吸水口324要不是浸沒於液劑A中就是被第一珠體33或第二珠體34所堵住,因此本發明能達到快速切換使用不同運作狀態的功效,藉此即便是使用者處於動態並手持罐體10邊移動邊使用時,也不用擔心噴射是呈斷斷續續的狀態或者是拋射劑B的洩漏而影響產品的功能。To sum up, although there are five states according to the arrangement of the tank body 10, in fact there are only three states for the movement and operation of the first bead body 33 and the second bead body 34, that is, the first bead body 33 is opened and closed. Spray suction port 322 and at the same time the second bead body 34 blocks the reverse spray water suction port 324, the second bead body 34 opens the reverse spray water suction port 324 and simultaneously the first bead body 33 blocks the forward spray water suction port 322, and the first bead body 33 and the second bead 34 open the forward spray water intake 322 and the reverse spray water intake 324 at the same time, and these three operating states are horizontal when the tank body is sprayed and the nozzle 20 continues to tilt downward (as shown in Figure 7) and the tank body is horizontal When spraying and the nozzle 20 continues to tilt upwards (Fig. 8), when the specific angle changes rapidly, it also impels the first bead 33 and the second bead 34 to move and position quickly, so that the positive spraying water inlet 322 and the inverted If the spray and suction port 324 is not immersed in the liquid agent A, it is blocked by the first bead 33 or the second bead 34, so the present invention can achieve the effect of quickly switching and using different operating states, so that even if the user is in the When the tank body 10 is moved and used in a dynamic manner, there is no need to worry about the intermittent state of the injection or the leakage of the propellant B, which will affect the function of the product.

請參考圖10至圖13,本創作的第二實施例的結構與第一實施例基本相同,同樣透過切換座32的本體32F的第一通道321F與第二通道323F內的第一傾斜內壁面3212F及第二傾斜內壁面3232F,配合第一珠體33F與第二珠體34F來達到在上述正噴狀態、倒噴狀態以及平噴狀態之間快速切換且不洩漏拋射劑B之功效,而第二實施例與第一實施例的差別如下說明。Please refer to FIG. 10 to FIG. 13 , the structure of the second embodiment of the present invention is basically the same as that of the first embodiment, and also passes through the first inclined inner wall surface in the first channel 321F and the second channel 323F of the body 32F of the switching seat 32 3212F and the second inclined inner wall surface 3232F cooperate with the first bead 33F and the second bead 34F to achieve the effect of quickly switching between the above-mentioned forward spraying state, reverse spraying state and flat spraying state without leaking the propellant B, and The difference between the second embodiment and the first embodiment is explained below.

在第二實施例中,第一傾斜內壁面3212F上形成有兩第一凸肋狀滑軌3213F,且第二傾斜內壁面3232F上形成有兩第二凸肋狀滑軌3233F。兩第一凸肋狀滑軌3213F沿著第一傾斜內壁面3212F沿伸且相互間隔,且鄰近於第一吸水口322B的洞口兩側。第一珠體33F能滾動地抵靠於兩第一凸肋狀滑軌3213F上,藉此第一珠體33F與第一傾斜內壁面3212F之間形成高低間隙。兩第二凸肋狀滑軌3233F其沿著第二傾斜內壁面3232F沿伸且相互間隔,且鄰近於第二吸水口324B的洞口兩側。第二珠體34F能滾動地抵靠於兩第二凸肋狀滑軌3233F上,藉此第二珠體34F與第二傾斜內壁面3232F之間形成高低間隙。In the second embodiment, two first rib-shaped sliding rails 3213F are formed on the first inclined inner wall surface 3212F, and two second rib-shaped sliding rails 3233F are formed on the second inclined inner wall surface 3232F. The two first rib-shaped sliding rails 3213F extend along the first inclined inner wall surface 3212F and are spaced apart from each other, and are adjacent to two sides of the opening of the first water suction opening 322B. The first bead 33F can roll against the two first rib-shaped sliding rails 3213F, thereby forming a height gap between the first bead 33F and the first inclined inner wall surface 3212F. The two second rib-shaped slide rails 3233F extend along the second inclined inner wall surface 3232F and are spaced apart from each other, and are adjacent to two sides of the second water suction port 324B. The second bead 34F can roll against the two second rib-shaped sliding rails 3233F, whereby a height gap is formed between the second bead 34F and the second inclined inner wall surface 3232F.

並且,第一通道321F的內徑大於第一珠體33F的直徑,第二通道323F的內徑大於第二珠體34F的直徑。也就是說,第一珠體33F滾動於第一通道321F以及第二珠體34F滾動於第二通道323F時,兩珠體33F、34F的周緣在兩通道321F、323F內皆形成有空隙,藉此可以避免因液劑A沾黏於第一珠體33F與第二珠體34F的表面上進而產生第一珠體33F與第二珠體34F在第一通道321F與第二通道323F內滾動的阻力,如此一來兩珠體33F、34F可以在不同噴射狀態之間的切換更加快速精確。Moreover, the inner diameter of the first channel 321F is larger than the diameter of the first bead 33F, and the inner diameter of the second channel 323F is larger than the diameter of the second bead 34F. That is to say, when the first bead 33F rolls in the first channel 321F and the second bead 34F rolls in the second channel 323F, the peripheries of the two beads 33F, 34F are all formed with gaps in the two channels 321F, 323F. This can prevent the first bead 33F and the second bead 34F from rolling in the first channel 321F and the second channel 323F due to the liquid agent A sticking to the surface of the first bead 33F and the second bead 34F. resistance, so that the two beads 33F, 34F can switch between different injection states more quickly and accurately.

此外,第一凸肋狀滑軌3213F以及第二凸肋狀滑軌3233F在垂直於第一基準方向D1的截面上呈圓弧形或多邊形。具體來說,在第二實施例中,第一凸肋狀滑軌3213F以及第二凸肋狀滑軌3233F為圓弧形,且可以是圓形或者橢圓形的一部份。但在其他實施例中,第一凸肋狀滑軌3213F以及第二凸肋狀滑軌3233F也可以是三角形或者矩形。In addition, the first rib-shaped sliding rail 3213F and the second rib-shaped sliding rail 3233F are arc-shaped or polygonal in cross section perpendicular to the first reference direction D1. Specifically, in the second embodiment, the first rib-shaped slide rail 3213F and the second rib-shaped slide rail 3233F are arc-shaped, and may be a part of a circle or an ellipse. However, in other embodiments, the first rib-shaped sliding rail 3213F and the second rib-shaped sliding rail 3233F may also be triangular or rectangular.

請參考圖10至圖13,在第二實施例中,切換座32的本體32F的第一塞蓋328F是能分離地設於第一開口327F上,且止擋第一珠體33F脫離第一通道321F,且第一塞蓋328F上形成有一第一塞蓋通孔3281F,第一塞蓋通孔3281F的內徑小於第一珠體33F的外徑;並且第二塞蓋330F是能分離地設於第二開口329F上,且止擋第二珠體34F脫離第二通道323F,第二塞蓋330F上形成有一第二塞蓋通孔3301F,第二塞蓋通孔3301F的內徑小於第二珠體34F的外徑。也就是說,在第二實施例中第一塞蓋328F與第二塞蓋330F並非封閉第一開口327F與第二開口329F,而僅是設於第一開口327F與第二開口329F上止擋第一珠體33F與第二珠體34F以防止脫離。而透過第一塞蓋通孔3281F及第二塞蓋通孔3301F,可以促進液劑A流動於兩通道321F、323F的內外,尤其當罐體10呈水平狀態且兩通道口321F、323F浸沒於液劑A時,因兩塞蓋328F、330F若沒有通孔,則當兩珠體33F、34F抵靠於兩塞蓋328F、330F的背面時將產生水張力,致使兩珠體33F、34F可能被吸住在兩塞蓋328F、330F的背面上,則當罐體10呈水平狀態且噴頭20繼續朝上或朝下微動傾斜使用時,兩珠體33F、34F將因被吸住在兩塞蓋328F、330F的背面上,故無法正常即時滾動或滑落而影響產品的功能。故因有兩塞通孔3281F、3301F的設計故可以更確實使第一珠33F與第二珠體34F可以在不同噴射狀態之間的切換更加快速精確。Please refer to FIG. 10 to FIG. 13 , in the second embodiment, the first plug cover 328F of the body 32F of the switch seat 32 is detachably arranged on the first opening 327F, and the stopper first bead 33F is detached from the first opening 327F. channel 321F, and a first plug cap through hole 3281F is formed on the first plug cap 328F, the inner diameter of the first plug cap through hole 3281F is smaller than the outer diameter of the first bead 33F; and the second plug cap 330F is detachable It is arranged on the second opening 329F, and stops the second bead 34F from the second channel 323F. A second plug through hole 3301F is formed on the second plug 330F. The inner diameter of the second plug through hole 3301F is smaller than that of the first plug. The outer diameter of the second bead 34F. That is to say, in the second embodiment, the first plug cover 328F and the second plug cover 330F do not close the first opening 327F and the second opening 329F, but are only provided as stops on the first opening 327F and the second opening 329F. The first bead 33F and the second bead 34F are used to prevent separation. Through the first plug hole 3281F and the second plug hole 3301F, the liquid agent A can be promoted to flow inside and outside the two channels 321F, 323F, especially when the tank body 10 is in a horizontal state and the two channel ports 321F, 323F are immersed in the During liquid preparation A, if there is no through hole because of the two plug covers 328F, 330F, then when the two beads 33F, 34F lean against the backs of the two plug covers 328F, 330F, water tension will be generated, causing the two beads 33F, 34F to If they are sucked on the back of the two plugs 328F and 330F, when the tank body 10 is in a horizontal state and the nozzle 20 continues to tilt up or down for use, the two beads 33F and 34F will be sucked on the two plugs. Cover 328F, 330F on the back, so it can not roll or slide normally and immediately and affect the function of the product. Therefore, due to the design of the two through-holes 3281F and 3301F, the switching between the different injection states of the first bead 33F and the second bead 34F can be made more quickly and accurately.

此外,在第二實施例中,第一塞蓋通孔3281F的背面周緣形成有一第一塞蓋托球環3282F,當第一珠體33F滑落抵靠於第一塞蓋托球環3282F並藉此封閉第一塞蓋通孔3281F。第一通道321F的頂端周緣形成有一第一通道托球環3214F,當第一珠體33F滑落抵靠於第一通道托球環3214F並藉此封閉第一連通口3211F。尤其第一珠體33F抵靠於兩第一托球環3282F、3214F的周邊皆有空隙,故可促使第一珠體33F停滯或脫離於第一通道321F的頂端或第一塞蓋328F時皆可順利移動。第二塞蓋通孔3301F的背面周緣形成有一第二塞蓋托球環3302F,當第二珠體34F滑落抵靠於第二塞蓋托球環3302F並藉此封閉第二塞蓋通孔3301F。第二通道323F的底端周緣形成有一第二通道托球環3234F,當第二珠體34F滑落抵靠於第二通道托球環3234F並藉此封閉第二連通口3231F。尤其第二珠體34F抵靠於兩二托球環3302F、3234F的周邊皆有空隙,故可促使第二珠體34F停滯或脫離於第二通道323F的底端或第二塞蓋330F時皆可順利移動。In addition, in the second embodiment, a first plug support ball ring 3282F is formed on the back periphery of the first plug through hole 3281F. When the first bead 33F slides down against the first plug support ring 3282F and This closes the first plug through hole 3281F. A first channel holding ring 3214F is formed on the top peripheral edge of the first channel 321F. When the first bead 33F slides and abuts against the first channel holding ring 3214F, thereby closing the first communication port 3211F. In particular, the first bead 33F abuts against the two first ball support rings 3282F, 3214F and there are gaps around the periphery, so that the first bead 33F can be stagnated or separated from the top of the first channel 321F or the first plug cover 328F. Moves smoothly. A second plug support ball ring 3302F is formed on the back periphery of the second plug through hole 3301F. When the second bead 34F slides down against the second plug support ball ring 3302F and thereby closes the second plug through hole 3301F . A second channel ring 3234F is formed on the bottom peripheral edge of the second channel 323F. When the second bead 34F slides and abuts against the second channel ring 3234F, the second communication port 3231F is closed. In particular, the second bead body 34F has a gap against the periphery of the two supporting ball rings 3302F, 3234F, so that the second bead body 34F can be stagnated or disengaged from the bottom end of the second channel 323F or the second plug cover 330F. Moves smoothly.

本發明的優點在於,請參考圖4及圖5,設置第一通道321與第二通道323的兩通道,並且使正噴吸水口322及倒噴吸水口324分別經由第一通道321與第二通道323連通於閥門組件組件31的液劑入口315,再利用第一珠體33與第二珠體34分別能移動地設於第一通道321與第二通道323內,藉此第一珠體33與第二珠體34能夠分別控制正噴吸水口322與倒噴吸水口324的連通或阻斷。如此一來,當正噴狀態時,第一珠體33受引力影響滑落藉此使正噴吸水口322連通於液劑入口315,且同時第二珠體34亦受引力影響滑落而堵住第二連通口3231藉此阻斷倒噴吸水口324與液劑入口315;並且當倒噴狀態時,第二珠體34受引力影響滑落藉此使倒噴吸水口324連通於液劑入口315,且同時第一珠體33亦受引力影響滑落而堵住第一連通口3211藉此阻斷正噴吸水口322與液劑入口315。因此,本發明不論是在正噴狀態下或是在倒噴狀態時,皆有珠體能夠堵住未浸沒於液劑A之中的的吸水口,故本發明相較於現有技術的閥門組件或閥門機構,在正噴狀態或倒噴狀態下皆能避免拋射劑B洩漏,且更可讓使用者獲得工作進行中的順暢以避免困擾。The advantage of the present invention is that, please refer to Fig. 4 and Fig. 5, two passages of the first passage 321 and the second passage 323 are set, and the forward spraying water inlet 322 and the reverse spraying water inlet 324 are respectively passed through the first passage 321 and the second passageway 321. The passage 323 communicates with the liquid agent inlet 315 of the valve assembly 31, and the first bead 33 and the second bead 34 are respectively movably arranged in the first passage 321 and the second passage 323, whereby the first bead 33 and the second bead 34 can respectively control the connection or blockage of the forward spray water suction port 322 and the reverse spray water suction port 324. In this way, when in the forward spraying state, the first bead 33 is affected by the gravitational force and slides down so that the positive spraying water suction port 322 is connected to the liquid agent inlet 315, and at the same time the second bead 34 is also affected by the gravitational force and slides down to block the first bead. The two communication ports 3231 thereby block the backspray suction port 324 and the liquid agent inlet 315; and when the reverse spray state, the second bead 34 slides down under the influence of gravity so that the backspray water suction port 324 communicates with the liquid agent inlet 315, And at the same time, the first bead 33 is also affected by the gravitational force and slides down to block the first communication port 3211 so as to block the forward water injection and suction port 322 and the liquid agent inlet 315 . Therefore, no matter whether the present invention is in the forward spraying state or in the reverse spraying state, there are beads that can block the water suction port that is not submerged in the liquid agent A, so the present invention is compared with the valve assembly or valve assembly of the prior art. The valve mechanism can avoid the leakage of propellant B in the state of forward spraying or reverse spraying, and also allows the user to obtain smooth work in progress and avoid troubles.

此外,請參考圖6,本發明在罐體呈水平噴射狀態使用時,藉由第一傾斜內壁面3212與第二傾斜內壁面3232的向下傾斜,因此第一珠體33會抵靠於第一傾斜內壁面3212並朝向罐底方向迅速滾動並定位於傾斜的較低端,促使正噴吸水口322連通於液劑入口315,且同時第二珠體34亦會抵靠於第二傾斜內壁面3232並朝向罐頂方向迅速移動並定位於傾斜的較低端,促使倒噴吸水口324連通於液劑入口315;也就是說,在罐體呈水平噴射狀態下因為有第一傾斜內壁面3212與第二傾斜內壁面3232之設計,故第一珠體33與第二珠體34會因為相互連動而同時向下傾斜方向移動於兩通道的兩傾斜的較低端,並促使正噴吸水口322與倒噴吸水口324皆呈開啟狀態,而不會造成兩珠體在兩通道內游移不定,時而開啟或時而封閉兩吸水口的擾亂液劑A流向而造成噴射呈斷斷續續的情況。In addition, please refer to FIG. 6 , when the tank body of the present invention is used in a horizontal spraying state, the first bead 33 will lean against the first inclined inner wall surface 3212 and the second inclined inner wall surface 3232 due to the downward inclination. An inclined inner wall surface 3212 rolls rapidly toward the bottom of the tank and is positioned at the lower end of the inclination, so that the positive spray and suction port 322 is connected to the liquid agent inlet 315, and at the same time, the second bead 34 will also abut against the second incline. The wall 3232 moves rapidly towards the top of the tank and is positioned at the lower end of the inclination, so that the reverse spray suction port 324 is communicated with the liquid agent inlet 315; 3212 and the design of the second inclined inner wall surface 3232, so the first bead 33 and the second bead 34 will move downward in the direction of inclination at the lower ends of the two passages at the same time due to mutual interlocking, and promote positive spraying and water absorption Both the port 322 and the backspray suction port 324 are open, without causing the two beads to move indefinitely in the two channels, sometimes opening or sometimes closing the two suction ports to disrupt the flow direction of the liquid agent A, resulting in intermittent spraying .

再者,請參考圖6,第一傾斜內壁面3212,其形成於第一水平線之下沿,且朝向罐底方向呈1.5度的傾斜夾角θ。而第二傾斜內壁面3232,其形成於第二水平線之下沿,且朝向罐頂方向呈1.5度的傾斜夾角θ。藉由第一珠體33與第二珠體34分別能移動地設於第一通道321與第二通道323內,故當手持罐體10欲做水平噴射狀態使用時罐體10很難是可呈100%水平狀態,而此時罐體10的兩端猶如天平般的上下微動傾斜,故此時的罐體10運作僅可稱謂為趨近於水平噴射狀態。進一步而言,當正噴使用時,罐體10的噴頭20繼續朝地面方向逐漸傾斜於第一水平線之上沿且呈1.5度夾角θ的傾倒範圍內,能使第一珠體33仍然維持是停滯抵靠於第一傾斜內壁面3212的較低端並呈開啟正噴吸水口322,與此同時,原本呈1.5度夾角θ的第二傾斜內壁面3232與第二水平線則幾乎轉換呈為平行狀態,故能使第二珠體34朝第二傾斜內壁面3232的較低端移動(即罐頂方向),致使倒噴吸水口324亦呈開啟狀態;反之,當倒噴使用時,罐體10的噴頭20繼續朝地面的反方向逐漸傾斜於第二水平線之下沿且呈1.5度夾角θ的傾倒範圍內,能使第二珠體34仍然維持是停滯抵靠於第二傾斜內壁面3232的較低端並呈開啟倒噴吸水口324,與此同時,原本呈1.5度夾角θ的第一傾斜內壁面3212與第一水平線則幾乎轉換呈為平行狀態,故能使第一珠體33朝第一傾斜內壁面3212的較低端移動(即罐底方向),致使正噴吸水口322亦呈開啟狀態。Furthermore, please refer to FIG. 6 , the first inclined inner wall surface 3212 is formed below the first horizontal line and forms an inclined angle θ of 1.5 degrees toward the bottom of the tank. The second inclined inner wall surface 3232 is formed below the second horizontal line, and forms an included angle θ of 1.5 degrees toward the tank top. Since the first bead 33 and the second bead 34 are respectively movably arranged in the first channel 321 and the second channel 323, it is difficult to use the tank 10 when the tank 10 is held in a horizontal spraying state. It is in a 100% horizontal state, and at this time, the two ends of the tank body 10 tilt slightly up and down like a balance, so the operation of the tank body 10 at this time can only be called approaching the horizontal spraying state. Further, when the spray head 20 of the tank body 10 continues to tilt towards the ground and is within the pouring range of the upper edge of the first horizontal line and an included angle θ of 1.5 degrees, the first bead 33 can still be maintained stagnates against the lower end of the first inclined inner wall 3212 and opens the positive spray and suction port 322. At the same time, the second inclined inner wall 3232, which originally formed an included angle θ of 1.5 degrees, is almost parallel to the second horizontal line state, so the second bead 34 can be moved toward the lower end of the second inclined inner wall surface 3232 (i.e., the direction of the tank top), so that the backspray suction port 324 is also in an open state; otherwise, when the backspray is used, the tank body The spray head 20 of 10 continues to incline gradually in the opposite direction to the ground, and is within the falling range of the second horizontal line and the included angle θ of 1.5 degrees, so that the second bead 34 can still remain stagnant against the second inclined inner wall surface 3232 The lower end of the backspray water suction port 324 is opened, and at the same time, the first inclined inner wall surface 3212 and the first horizontal line, which originally formed an included angle θ of 1.5 degrees, are almost converted into a parallel state, so that the first bead body 33 Moving toward the lower end of the first inclined inner wall surface 3212 (that is, the direction of the bottom of the tank), the positive spray and suction port 322 is also in an open state.

更具體而言,請參考圖6,如上所述罐體10的兩端猶如天平般的上下微動傾斜,故上述兩珠體移動在上述兩趨近於水平噴射狀態的期間所形成各自的1.5度夾角θ傾倒範圍內,則兩者最大的重疊範圍是可幾近於3度夾角θ(1.5度+1.5度),故當罐體10由趨近於水平噴射狀態逐漸轉換至水平噴射狀態的期間,正噴吸水口322與倒噴吸水口324皆是可浸沒於液劑A,此時按壓噴頭20時即可同時噴出罐內的液劑A。因此本發明能快速且精確地切換正噴狀態、倒噴狀態、及水平噴射狀態,並且重點是能確保拋射劑B不會在各種使用狀態切換時以及各種傾斜狀態切換期間洩出。這是現有技術中的閥門組件或閥門機構所沒有的。More specifically, please refer to Fig. 6. As mentioned above, the two ends of the tank body 10 tilt up and down slightly like a balance, so the above-mentioned two beads move to form respective 1.5-degree angles during the above-mentioned two approaches to the horizontal spray state. If the included angle θ is within the pouring range, the maximum overlapping range of the two can be close to 3 degrees included angle θ (1.5 degrees + 1.5 degrees), so when the tank body 10 is gradually converted from the horizontal spraying state to the horizontal spraying state , the forward spray suction port 322 and the reverse spray suction port 324 can be submerged in the liquid agent A, and the liquid agent A in the tank can be sprayed out simultaneously when the nozzle 20 is pressed. Therefore, the present invention can quickly and accurately switch the forward spraying state, reverse spraying state, and horizontal spraying state, and the key point is to ensure that the propellant B will not leak out during various use state switching and various tilt state switching. This is not available in prior art valve assemblies or valve trains.

以上所述僅是本發明的較佳實施例而已,並非對本發明做任何形式上的限制,雖然本發明已以較佳實施例揭露如上,然而並非用以限定本發明,任何所屬技術領域中具有通常知識者,在不脫離本發明技術方案的範圍內,當可利用上述揭示的技術內容作出些許更動或修飾為等同變化的等效實施例,但凡是未脫離本發明技術方案的內容,依據本發明的技術實質對以上實施例所作的任何簡單修改、等同變化與修飾,均仍屬於本發明技術方案的範圍內。The above descriptions are only preferred embodiments of the present invention, and do not limit the present invention in any form. Although the present invention has been disclosed as above with preferred embodiments, it is not intended to limit the present invention. Anyone in the technical field has Ordinary knowledgeable persons, without departing from the scope of the technical solution of the present invention, may use the technical content disclosed above to make some changes or be modified into equivalent embodiments with equivalent changes, but any content that does not depart from the technical solution of the present invention, according to the technical content of the present invention Technical Essence of the Invention Any simple modifications, equivalent changes and modifications made to the above embodiments still fall within the scope of the technical solutions of the present invention.

A:液劑 B:拋射劑 D1:第一基準方向 D2:第二基準方向 D3:第三基準方向 θ:夾角 10:罐體 11:內部空間 12:安裝罐口 13:底壁 20:噴頭 21:噴嘴 30:閥門機構 31:閥門組件 311:固定蓋 3111:固定蓋密封圈 3112:彈簧 312:閥桿 3121:橫孔 313:閥桿密封圈 314:閥座 315:液劑入口 316:液劑出口 32:切換座 321:第一通道 3211:第一連通口 3212:第一傾斜內壁面 322:正噴吸水口 322B:第一吸水口 323:第二通道 3231:第二連通口 3232:第二傾斜內壁面 324:倒噴吸水口 324B:第二吸水口 325:共同通道 326:匯流隔板 327:第一開口 328:第一塞蓋 329:第二開口 330:第二塞蓋 32A:本體 32B:第三開口 32C:第三塞蓋 32C1:第三塞蓋導引壁 32D:第四開口 32E:第四塞蓋 32E1:第四塞蓋導引壁 33:第一珠體 34:第二珠體 35:正噴吸管 35A:正噴延伸管部 36:倒噴吸管 36A:倒噴延伸管部 361:定位匣 362:接合端 363:定位凸勒 32F:本體 321F:第一通道 3211F:第一連通口 3212F:第一傾斜內壁面 3213F:第一凸肋狀滑軌 3214F:第一通道托球環 323F:第二通道 3231F:第二連通口 3232F:第二傾斜內壁面 3233F:第二凸肋狀滑軌 3234F:第二通道托球環 327F:第一開口 328F:第一塞蓋 3281F:第一塞蓋通孔 3282F:第一塞蓋托球環 329F:第二開口 330F:第二塞蓋 3301F:第二塞蓋通孔 3302F:第二塞蓋托球環 33F:第一珠體 34F:第二珠體 911:閥門組件 912:切換座 92:吸管 921:正噴吸水口 922:正噴通道 923:共同通道 924:液劑入口 925:液劑出口 93:倒噴吸水口 931:倒噴通道 94:珠體 98:噴頭 981:噴嘴A: Liquid B: propellant D1: the first reference direction D2: Second reference direction D3: Third reference direction θ: included angle 10: tank 11: Internal space 12: Install the tank mouth 13: bottom wall 20: Nozzle 21: Nozzle 30: Valve Mechanism 31: Valve assembly 311: fixed cover 3111: fixed cover sealing ring 3112: Spring 312: valve stem 3121: horizontal hole 313: Stem sealing ring 314: valve seat 315: Liquid entrance 316: Liquid agent export 32: switch seat 321: first channel 3211: The first connection port 3212: The first inclined inner wall surface 322: Positive spray suction port 322B: The first suction port 323:Second channel 3231: Second communication port 3232: The second inclined inner wall 324: Backspray suction port 324B: Second suction port 325: common channel 326: confluence partition 327: first opening 328: The first plug cover 329: second opening 330:Second plug cover 32A: Body 32B: The third opening 32C: third plug cover 32C1: third plug cover guide wall 32D: Fourth opening 32E: Fourth plug cover 32E1: Fourth plug cover guide wall 33: The first bead 34: the second bead 35: Positive spray straw 35A: Positive spray extension pipe 36: Inverted spray straw 36A: Backspray extension pipe 361: Positioning box 362:Joint end 363: Positioning Convex Le 32F: Body 321F: the first channel 3211F: The first communication port 3212F: the first inclined inner wall 3213F: First ribbed slide 3214F: The first channel toss ring 323F: Second channel 3231F: Second communication port 3232F: second inclined inner wall 3233F: Second ribbed slide 3234F: second channel toss ring 327F: first opening 328F: First plug cap 3281F: First plug cap through hole 3282F: First Segto Ball Ring 329F: second opening 330F: Second plug cap 3301F: Second plug cap through hole 3302F: Second Segto ring 33F: the first bead 34F: second bead 911: valve assembly 912: switch seat 92: Straw 921: Positive spray suction port 922: Positive injection channel 923: common channel 924: Liquid entrance 925: Liquid agent export 93: Backspray suction port 931: backspray channel 94: beads 98: Nozzle 981:Nozzle

圖1係本發明的第一實施例的元件分解圖。 圖2係本發明的第一實施例的側視剖面圖。 圖3係本發明的圖2的局部放大圖。 圖4係本發明的第一實施例的正噴狀態的側視剖面示意圖。 圖5係本發明的第一實施例的倒噴狀態的側視剖面示意圖。 圖6係本發明的第一實施例的平噴狀態的側視剖面示意圖。 圖7係本發明的第一實施例的平噴且噴頭繼續朝下傾斜狀態的側視剖面示意圖。 圖8係本發明的第一實施例的平噴且噴頭繼續朝上傾斜狀態的側視剖面示意圖。 圖9係本發明的第一實施例的切換座的元件分解圖。 圖9A係本發明的第一實施例的切換座與倒噴吸管結合的示意圖。 圖10係本發明的第二實施例的局部放大圖。 圖11係本發明的第二實施例於第一通道的側視及立體剖面圖。 圖12係本發明的第二實施例於第二通道的側視及立體剖面圖。 圖13係本發明的第二實施例的切換座配合第一與第二珠體的位置的側視及立體剖面示意圖。 圖14係現有技術之高壓噴罐的正噴狀態的側視剖面示意圖。 圖15係現有技術之高壓噴罐的倒噴狀態的側視剖面示意圖。 圖16係現有技術之高壓噴罐的平噴狀態的側視剖面示意圖。 圖17係現有技術之高壓噴罐的下傾斜狀態的側視剖面示意圖。 FIG. 1 is an exploded view of the first embodiment of the present invention. Fig. 2 is a side sectional view of the first embodiment of the present invention. Fig. 3 is a partially enlarged view of Fig. 2 of the present invention. Fig. 4 is a schematic side sectional view of the spraying state of the first embodiment of the present invention. FIG. 5 is a schematic side sectional view of the reverse spray state of the first embodiment of the present invention. Fig. 6 is a schematic side sectional view of the flat spray state of the first embodiment of the present invention. Fig. 7 is a side sectional schematic diagram of the horizontal spraying and the spraying head continuing to tilt downward according to the first embodiment of the present invention. Fig. 8 is a schematic side sectional view of the horizontal spraying and the spraying head continuing to tilt upwards according to the first embodiment of the present invention. Fig. 9 is an exploded view of the switching base of the first embodiment of the present invention. Fig. 9A is a schematic diagram of the combination of the switch seat and the reverse spray suction pipe according to the first embodiment of the present invention. Fig. 10 is a partially enlarged view of the second embodiment of the present invention. Fig. 11 is a side view and a three-dimensional sectional view of the second embodiment of the present invention in the first channel. Fig. 12 is a side view and a three-dimensional cross-sectional view of the second embodiment of the present invention in the second channel. Fig. 13 is a side view and a three-dimensional cross-sectional schematic diagram of the positions where the switching seat cooperates with the first and second beads according to the second embodiment of the present invention. Fig. 14 is the side view sectional schematic diagram of the positive spray state of the high-pressure spray tank of the prior art. Fig. 15 is a schematic side view sectional view of the reverse spraying state of the high-pressure spray tank of the prior art. Fig. 16 is the side view sectional schematic diagram of the flat spray state of the high-pressure spray tank of the prior art. Fig. 17 is a schematic side view sectional view of a downwardly inclined state of a high-pressure spray tank of the prior art.

D1:第一基準方向 D1: the first reference direction

D2:第二基準方向 D2: Second reference direction

D3:第三基準方向 D3: Third reference direction

10:罐體 10: tank

11:內部空間 11: Internal space

30:閥門機構 30: Valve Mechanism

31:閥門組件 31: Valve assembly

312:閥桿 312: valve stem

314:閥座 314: valve seat

315:液劑入口 315: Liquid entrance

32:切換座 32: switch seat

321:第一通道 321: first channel

3211:第一連通口 3211: The first connection port

3212:第一傾斜內壁面 3212: The first inclined inner wall surface

322B:第一吸水口 322B: The first suction port

323:第二通道 323:Second channel

3231:第二連通口 3231: Second communication port

3232:第二傾斜內壁面 3232: The second inclined inner wall

324:倒噴吸水口 324: Backspray suction port

324B:第二吸水口 324B: Second suction port

325:共同通道 325: common channel

326:匯流隔板 326: confluence partition

327:第一開口 327: first opening

328:第一塞蓋 328: The first plug cover

329:第二開口 329: second opening

330:第二塞蓋 330:Second plug cover

32A:本體 32A: Body

33:第一珠體 33: The first bead

34:第二珠體 34: the second bead

35:正噴吸管 35: Positive spray straw

35A:正噴延伸管部 35A: Positive spray extension pipe

36:倒噴吸管 36: Inverted spray straw

36A:倒噴延伸管部 36A: Backspray extension pipe

Claims (14)

一種用於高壓噴罐的閥門機構,其用以設置於一罐體上並可使該罐體內外連通,該罐體包含相連通的一內部空間及一安裝罐口;該用於高壓噴罐的閥門機構包含 一第一基準方向,其平行於該罐體的軸心,且朝向該罐體的頂端; 一第二基準方向,其垂直於該第一基準方向,且朝向該罐體的徑向外側; 一第三基準方向,其平行於該罐體的軸心,且朝向該罐體的底端; 一閥門組件,其係被密封固定在該罐體的該安裝罐口,該閥門組件具有一液劑入口及一液劑出口,該液劑入口位於該罐體的該內部空間中,該液劑出口位於該罐體外;該液劑入口選擇性地連通該液劑出口; 一切換座,其係接合於閥門組件的底端並與閥門組件相互連通,該切換座進一步包含一本體,其包含 一第一通道,其包含 一第一連通口,其形成於該第一通道朝向該第一基準方向的一端,且連通於該液劑入口; 一第一傾斜內壁面,其位於該第一通道在該第二基準方向的一側;該第一傾斜內壁面傾斜於該罐體的軸心,且由朝向該第一基準方向的一端至朝向該第三基準方向的一端,偏向該第二基準方向傾斜延伸;該第一傾斜內壁面上形成有 兩第一凸肋狀滑軌,其沿著該第一傾斜內壁面沿伸且相互間隔,且鄰近於第一吸水口的洞口兩側;該第一珠體能滾動地抵靠於該兩第一凸肋狀滑軌上,藉此該第一珠體與該第一傾斜內壁面之間形成高低間隙; 一第一吸水口,其連通於該第一通道,且經由該第一通道的該第一連通口連通於該液劑入口; 一第二通道,其包含 一第二連通口,其形成於該第二通道朝向該第三基準方向的一端,且連通於該液劑入口; 一第二傾斜內壁面,其位於該第二通道在該第二基準方向的一側;該第二傾斜內壁面傾斜於該罐體的軸心,且由朝向該第三基準方向的一端至朝向該第一基準方向的一端,偏向該第二基準方向傾斜延伸;該第二傾斜內壁面上形成有 兩第二凸肋狀滑軌,其沿著該第二傾斜內壁面沿伸且相互間隔,且鄰近於第二吸水口的洞口兩側;該第二珠體能滾動地抵靠於該兩第二凸肋狀滑軌上,藉此該第二珠體與該第二傾斜內壁面之間形成高低間隙; 一第二吸水口,其連通於該第二通道,且經由該第二通道的該第二連通口連通於該液劑入口; 一第一珠體,其能移動地設於該第一通道內,且選擇性地連通或阻斷該第一吸水口與該液劑入口; 一第二珠體,其能移動地設於該第二通道內,且選擇性地連通或阻斷該第二吸水口與該液劑入口; 其中, 當罐體呈正立狀態時,該第一基準方向鉛直向上時,該第一珠體滑落藉此該第一吸水口連通於該液劑入口,且同時該第二珠體堵住該第二連通口,藉此該第二珠體阻斷該第二吸水口與該液劑入口; 當罐體呈倒立狀態時,該第一基準方向鉛直向下時,該第二珠體滑落藉此該第二吸水口連通於該液劑入口,且同時該第一珠體堵住該第一連通口,藉此該第一珠體阻斷該第一吸水口與該液劑入口; 當罐體呈水平狀態時,該第二基準方向鉛直向下時,該第一珠體抵靠於該第一傾斜內壁面,並停滯於該第一傾斜內壁面的較低端,藉此該第一吸水口連通於該液劑入口,且同時該第二珠體抵靠於該第二傾斜內壁面,並停滯於該第二傾斜內壁面的較低端,藉此該第二吸水口連通於該液劑入口。 A valve mechanism for a high-pressure spray tank, which is used to set on a tank body and communicate with the inside and outside of the tank body, the tank body includes an internal space connected with it and a tank opening; the valve mechanism for a high-pressure spray tank The valve train contains a first reference direction, which is parallel to the axis of the tank and faces the top of the tank; a second reference direction, which is perpendicular to the first reference direction and faces radially outward of the tank; a third reference direction, which is parallel to the axis of the tank and towards the bottom of the tank; A valve assembly, which is sealed and fixed on the installation tank mouth of the tank body, the valve assembly has a liquid agent inlet and a liquid agent outlet, the liquid agent inlet is located in the inner space of the tank body, the liquid agent The outlet is located outside the tank; the liquid agent inlet is selectively connected to the liquid agent outlet; A switching seat, which is connected to the bottom end of the valve assembly and communicates with the valve assembly, the switching seat further includes a body, which includes a first channel, which includes a first communication port, which is formed at one end of the first channel facing the first reference direction, and communicates with the liquid agent inlet; A first inclined inner wall surface, which is located on one side of the first channel in the second reference direction; the first inclined inner wall surface is inclined to the axis of the tank body, and extends from one end facing the first reference direction to the One end of the third reference direction extends obliquely toward the second reference direction; the first inclined inner wall surface is formed with Two first rib-shaped sliding rails extend along the first inclined inner wall and are spaced apart from each other, and are adjacent to both sides of the opening of the first water suction port; the first bead can roll against the two first On the convex rib-shaped slide rail, a height gap is formed between the first bead and the first inclined inner wall surface; a first water suction port, which communicates with the first channel, and communicates with the liquid agent inlet through the first communication port of the first channel; a second channel, which includes a second communication port, which is formed at one end of the second channel facing the third reference direction, and communicates with the liquid agent inlet; A second inclined inner wall surface, which is located on one side of the second channel in the second reference direction; the second inclined inner wall surface is inclined to the axis of the tank body, and extends from one end facing the third reference direction to the One end of the first reference direction extends obliquely toward the second reference direction; the second inclined inner wall surface is formed with Two second convex rib-shaped sliding rails extend along the second inclined inner wall and are spaced apart from each other, and are adjacent to both sides of the hole of the second water suction port; the second bead can roll against the two second On the convex rib-shaped slide rail, a height gap is formed between the second bead and the second inclined inner wall surface; a second water suction port, which communicates with the second channel, and communicates with the liquid agent inlet through the second communication port of the second channel; a first bead, which is movably arranged in the first channel, and selectively connects or blocks the first water suction port and the liquid agent inlet; a second bead, which is movably arranged in the second channel, and selectively connects or blocks the second water suction port and the liquid agent inlet; in, When the tank body is in an upright position and the first reference direction is vertically upward, the first bead slides down so that the first water suction port is connected to the liquid agent inlet, and at the same time the second bead blocks the second communication mouth, whereby the second bead blocks the second water suction port and the liquid agent inlet; When the tank body is in an upside-down state and the first reference direction is vertically downward, the second bead slides down so that the second water suction port is connected to the liquid agent inlet, and at the same time the first bead blocks the first a communication port, whereby the first bead blocks the first water suction port and the liquid agent inlet; When the tank body is in a horizontal state and the second reference direction is vertically downward, the first bead abuts against the first inclined inner wall surface and stagnates at the lower end of the first inclined inner wall surface, whereby the The first water suction port communicates with the liquid agent inlet, and at the same time, the second bead abuts against the second inclined inner wall surface and stagnates at the lower end of the second inclined inner wall surface, whereby the second water suction port communicates with the liquid agent inlet. at the liquid inlet. 如請求項1所述之用於高壓噴罐的閥門機構,其中, 該第一傾斜內壁面與該第一基準方向的夾角為1度至3度; 該第二傾斜內壁面與該第三基準方向的夾角為1度至3度。 The valve mechanism for high-pressure spray cans as described in claim 1, wherein, The included angle between the first inclined inner wall surface and the first reference direction is 1 degree to 3 degrees; The included angle between the second inclined inner wall surface and the third reference direction is 1 degree to 3 degrees. 如請求項2所述之用於高壓噴罐的閥門機構,其中, 該第一傾斜內壁面與該第一基準方向的夾角為1.5度; 該第二傾斜內壁面與該第三基準方向的夾角為1.5度。 The valve mechanism for high-pressure spray cans as described in claim 2, wherein, The included angle between the first inclined inner wall surface and the first reference direction is 1.5 degrees; The included angle between the second inclined inner wall surface and the third reference direction is 1.5 degrees. 如請求項1至3中任一項所述之用於高壓噴罐的閥門機構,其中, 該切換座進一步包含一本體,其包含 一共同通道,其連通於該液劑入口,且該第一連通口及該第二連通口經由該共同通道連通於該液劑入口; 一匯流隔板,其設於該共同通道內,且位於該第一連通口及該第二連通口之間。 The valve mechanism for a high-pressure spray can as described in any one of claims 1 to 3, wherein, The switching seat further includes a body, which includes a common channel, which communicates with the liquid agent inlet, and the first communication port and the second communication port communicate with the liquid agent inlet through the common channel; A confluence partition, which is arranged in the common passage, and is located between the first communication port and the second communication port. 如請求項4項所述之用於高壓噴罐的閥門機構,其中, 該切換座進一步包含,該第一通道、該第一吸水口、該第二通道、及該第二吸水口形成於該本體上;該本體進一步包含 一第一開口,其形成於該本體上,且位於該第一通道朝向於該第三基準方向的一端,並且該第一珠體能由該第一開口進入或脫離該第一通道; 一第一塞蓋,其能分離地封閉該第一開口; 一第二開口,其形成於該本體上,且位於該第二通道朝向於該第一基準方向的一端,並且該第二珠體能由該第二開口進入或脫離該第二通道; 一第二塞蓋,其能分離地封閉該第二開口; 一第三開口,其形成於該本體朝向該第二基準方向的一側,且連通於該第一連通口; 一第三塞蓋,其能分離地封閉該第三開口,且包含 一第三塞蓋導引壁,其與該本體夾設形成連接於該第一吸水口與該第一通道之間的彎曲連接通道; 一第四開口,其形成於該本體朝向該第二基準方向的一側,且連通於該第二連通口; 一第四塞蓋,其能分離地封閉該第四開口,且包含 一第四塞蓋導引壁,其與該本體夾設形成連接於該第二連通口與該共同通道之間的彎曲連接通道。 The valve mechanism for high-pressure spray cans as described in item 4 of claim, wherein, The switching seat further includes that the first channel, the first water suction port, the second channel, and the second water suction port are formed on the body; the body further includes a first opening formed on the body and located at one end of the first channel facing the third reference direction, and the first bead can enter or leave the first channel through the first opening; a first plug cap, which can detachably close the first opening; a second opening formed on the body and located at one end of the second channel facing the first reference direction, and the second bead can enter or leave the second channel through the second opening; a second plug cap, which can detachably close the second opening; a third opening formed on a side of the main body facing the second reference direction and communicating with the first communication port; A third plug cap, which can detachably close the third opening, and includes A third plug cover guide wall, which is interposed with the body to form a curved connection channel connected between the first water suction port and the first channel; a fourth opening formed on a side of the main body facing the second reference direction and communicating with the second communication port; A fourth plug cap, which can detachably close the fourth opening, and includes A fourth plug cover guide wall is interposed with the main body to form a curved connection channel connected between the second communication port and the common channel. 如請求項1至3中任一項所述之用於高壓噴罐的閥門機構,其中, 該切換座進一步包含,該第一通道及該第二通道形成於該本體上;該本體進一步包含 一倒噴延伸管部,其形成於該本體上,且朝向該第二基準方向延伸;該第二吸水口形成於該倒噴延伸管部位於該第二基準方向上的末端。 The valve mechanism for a high-pressure spray can as described in any one of claims 1 to 3, wherein, The switching seat further includes that the first channel and the second channel are formed on the body; the body further includes A spray-back extension pipe part is formed on the main body and extends towards the second reference direction; the second water suction port is formed at the end of the spray-back extension pipe part in the second reference direction. 如請求項1至3中任一項所述之用於高壓噴罐的閥門機構,其中, 該切換座進一步包含,該第一通道及該第二通道形成於該本體上;該本體進一步包含 一正噴延伸管部,其設於該本體上,且連通於該第一吸水口,並且朝向該第三基準方向延伸。 The valve mechanism for a high-pressure spray can as described in any one of claims 1 to 3, wherein, The switching seat further includes that the first channel and the second channel are formed on the body; the body further includes A positive spray extension pipe part is arranged on the main body, communicates with the first water suction port, and extends toward the third reference direction. 如請求項1至3中任一項所述之用於高壓噴罐的閥門機構,其中,該切換座的該本體包含 一第一開口,其形成於該本體上,且位於該第一通道朝向於該第三基準方向的一端,並且該第一珠體能由該第一開口進入或脫離該第一通道; 一第一塞蓋,其能分離地設於該第一開口上,且止擋該第一珠體脫離該第一通道;該第一塞蓋上形成有一第一塞蓋通孔;該第一塞蓋通孔的內徑小於該第一珠體的外徑; 一第二開口,其形成於該本體上,且位於該第二通道朝向於該第一基準方向的一端,並且該第二珠體能由該第二開口進入或脫離該第二通道; 一第二塞蓋,其能分離地設於該第二開口上,且止擋該第二珠體脫離該第二通道;該第二塞蓋上形成有一第二塞蓋通孔;該第二塞蓋通孔的內徑小於該第二珠體的外徑。 The valve mechanism for high-pressure spray cans as described in any one of claims 1 to 3, wherein the body of the switching seat includes a first opening formed on the body and located at one end of the first channel facing the third reference direction, and the first bead can enter or leave the first channel through the first opening; A first plug cap, which can be detachably arranged on the first opening, and stops the first bead from breaking away from the first passage; a first plug cap through hole is formed on the first plug cap; the first plug cap The inner diameter of the plug hole is smaller than the outer diameter of the first bead; a second opening formed on the body and located at one end of the second channel facing the first reference direction, and the second bead can enter or leave the second channel through the second opening; A second plug cap, which can be detachably arranged on the second opening, and stops the second bead from breaking away from the second channel; a second plug cap through hole is formed on the second plug cap; the second plug cap The inner diameter of the plug hole is smaller than the outer diameter of the second bead. 如請求項8所述之用於高壓噴罐的閥門機構,其中, 該第一塞蓋通孔的背面周緣形成有一第一塞蓋托球環,當該第一珠體抵靠於該第一塞蓋托球環並藉此封閉該第一塞蓋通孔; 該第一通道的頂端周緣形成有一第一通道托球環,該第一珠體抵靠於該第一通道托球環並藉此封閉該第一連通口; 該第二塞蓋通孔的背面周緣形成有一第二塞蓋托球環,當該第二珠體抵靠於該第二塞蓋托球環並藉此封閉該第二塞蓋通孔; 該第二通道的底端周緣形成有一第二通道托球環,該第二珠體抵靠於該第二通道托球環並藉此封閉該第二連通口。 The valve mechanism for high-pressure spray cans as described in Claim 8, wherein, A first plug support ball ring is formed on the back periphery of the first plug through hole, when the first bead abuts against the first plug support ball ring and thereby closes the first plug through hole; A first channel holding ball ring is formed on the top periphery of the first channel, and the first bead abuts against the first channel holding ball ring to thereby close the first communication port; A second plug support ball ring is formed on the back periphery of the second plug through hole, when the second bead leans against the second plug support ball ring and thereby closes the second plug through hole; A ball-supporting ring for the second channel is formed on the periphery of the bottom end of the second channel, and the second bead abuts against the ball-supporting ring for the second channel to thereby close the second communication port. 一種高壓噴罐,其包含 一罐體,其包含相連通的一內部空間及一安裝罐口; 一噴頭,其包含一噴嘴; 一如請求項1至9中任一項所述的用於高壓噴罐的閥門機構,其設置於該罐體上並可使該罐體內外連通;該第一基準方向平行於該罐體的軸心;該閥門組件係被密封固定於該安裝罐口並連接於該噴頭,且該閥門組件的該液劑出口連通於該噴頭的該噴嘴。 A high-pressure spray tank comprising A tank body, which includes an internal space and a tank opening connected to each other; a spray head, which includes a nozzle; A valve mechanism for a high-pressure spray tank as described in any one of claims 1 to 9, which is arranged on the tank body and can communicate with the inside and outside of the tank body; the first reference direction is parallel to the tank body Shaft; the valve assembly is sealed and fixed on the installation tank mouth and connected to the spray head, and the liquid agent outlet of the valve assembly communicates with the nozzle of the spray head. 如請求項10項所述之高壓噴罐,其中, 該用於高壓噴罐的閥門機構進一步包含 一正噴吸管,其設於該切換座上且連通於該第一吸水口,該正噴吸管的尾端朝向該第二基準方向且朝向該第三基準方向延伸至該罐體的底部。 The high-pressure spray can as described in item 10 of claim, wherein, The valve mechanism for a high pressure spray can further comprises A positive spray suction pipe is arranged on the switch seat and communicated with the first water suction port. The tail end of the positive spray suction pipe extends toward the second reference direction and toward the third reference direction to the bottom of the tank body. 如請求項11項所述之高壓噴罐,其中, 該切換座進一步包含,該第一通道及該第二通道形成於該本體上;該本體進一步包含 一正噴延伸管部,其設於該本體上,且連通於該第一吸水口,並且朝向該第三基準方向延伸;該正噴吸管結合於該正噴延伸管部。 The high-pressure spray can as described in Claim 11, wherein, The switching seat further includes that the first channel and the second channel are formed on the body; the body further includes A positive spray extension pipe part is arranged on the main body, communicates with the first water suction port, and extends towards the third reference direction; the positive spray suction pipe is combined with the positive spray extension pipe part. 如請求項10項所述之高壓噴罐,其中, 該用於高壓噴罐的閥門機構進一步包含 一倒噴吸管,其設於該切換座上且連通於該第二吸水口,該倒噴吸管呈L型,並且其尾端朝向該第二基準方向且朝向該第一基準方向延伸至該罐體的頂部。該倒噴吸管進一步包含一接合端,其結合於該倒噴延伸管部;一定位匣,其卡合於該倒噴延伸管部的該定位凸肋。 The high-pressure spray can as described in item 10 of claim, wherein, The valve mechanism for a high pressure spray can further comprises A reverse spray suction pipe, which is arranged on the switch seat and communicated with the second water suction port, the reverse spray suction pipe is L-shaped, and its tail end faces the second reference direction and extends toward the first reference direction to the tank top of the body. The backspray suction pipe further includes a joint end, which is combined with the backspray extension tube part; a positioning box, which is engaged with the positioning rib of the backspray extension tube part. 如請求項13項所述之高壓噴罐,其中, 該切換座進一步包含,該第一通道及該第二通道形成於該本體上;該本體進一步包含 一倒噴延伸管部,其形成於該本體上,且朝向該第二基準方向延伸;該第二吸水口形成於該倒噴延伸管部位於該第二基準方向上的末端;該倒噴延伸管部上形成有一定位凸肋。 The high-pressure spray can as described in Claim 13, wherein, The switching seat further includes that the first channel and the second channel are formed on the body; the body further includes a reverse spray extension pipe part, which is formed on the body and extends toward the second reference direction; the second water suction port is formed at the end of the reverse spray extension pipe part in the second reference direction; the reverse spray extension A positioning rib is formed on the tube part.
TW111109810A 2021-05-18 2022-03-17 High-pressure spray tank and valve mechanism for high-pressure spray tank TWI790143B (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
TW111109810A TWI790143B (en) 2022-03-17 2022-03-17 High-pressure spray tank and valve mechanism for high-pressure spray tank
US17/661,213 US11685592B2 (en) 2021-05-18 2022-04-28 High-pressure spray can and valve mechanism for high-pressure spray can
JP2022075967A JP7137263B1 (en) 2021-05-18 2022-05-02 Aerosol container and valve mechanism used therefor
CN202210480994.6A CN115367313B (en) 2021-05-18 2022-05-05 High-pressure spray tank and valve mechanism for high-pressure spray tank
DE102022112119.4A DE102022112119A1 (en) 2021-05-18 2022-05-13 HIGH PRESSURE AEROSOL AND VALVE MECHANISM FOR HIGH PRESSURE AEROSOL

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6267304B1 (en) * 2000-06-14 2001-07-31 Emsar, Inc. Variable discharge dispensing head for a squeeze dispenser
TW554917U (en) * 2001-12-07 2003-09-21 Sheng-Ming Tian Container structure suitable for installing atomizer
CN212557627U (en) * 2020-06-22 2021-02-19 陈炎聪 Sprayer with a spray tube
US20210107728A1 (en) * 2017-03-31 2021-04-15 The Salford Valve Company Ltd A valve assembly for an aerosol spray device

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6267304B1 (en) * 2000-06-14 2001-07-31 Emsar, Inc. Variable discharge dispensing head for a squeeze dispenser
TW554917U (en) * 2001-12-07 2003-09-21 Sheng-Ming Tian Container structure suitable for installing atomizer
US20210107728A1 (en) * 2017-03-31 2021-04-15 The Salford Valve Company Ltd A valve assembly for an aerosol spray device
CN212557627U (en) * 2020-06-22 2021-02-19 陈炎聪 Sprayer with a spray tube

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