TWM601823U - Bubble filter in liquid pipe - Google Patents

Bubble filter in liquid pipe Download PDF

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Publication number
TWM601823U
TWM601823U TW109207309U TW109207309U TWM601823U TW M601823 U TWM601823 U TW M601823U TW 109207309 U TW109207309 U TW 109207309U TW 109207309 U TW109207309 U TW 109207309U TW M601823 U TWM601823 U TW M601823U
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Taiwan
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bubble
liquid
pipe
containing chamber
tube
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TW109207309U
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Chinese (zh)
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鄭升凱
鄭香弘
譚曾包裕
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威光自動化科技股份有限公司
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Priority to TW109207309U priority Critical patent/TWM601823U/en
Publication of TWM601823U publication Critical patent/TWM601823U/en

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Abstract

本新型提供一種液管內之氣泡篩選器,係在一器體內開設一液管流道及一氣泡容置室,該液管流道雙端分別銜接一給液管及一排液管,該液管流道穿伸通過該氣泡容置室,該給液管經由該氣泡容置室而與該排液管相連通,其中該氣泡容置室之一側端壁上形成一開放槽口,該氣泡容置室及該開放槽口共同篩選該給液管提供之氣泡的氣泡體積範圍,令大於該氣泡體積範圍之一過大氣泡分解成為一多餘氣泡及一監測氣泡,該多餘氣泡經由該開放槽口排流離開該液管流道,該監測氣泡經由該氣泡容置室導引至該排液管內接受偵測,以改善小流量氣體外洩時偵測的精確性。 The present model provides a bubble filter in a liquid tube. A liquid tube flow channel and a bubble containing chamber are opened in a body. The two ends of the liquid tube flow channel are respectively connected with a liquid supply tube and a liquid discharge tube. The liquid pipe flow path extends through the bubble containing chamber, the liquid feeding tube communicates with the liquid discharge pipe through the bubble containing chamber, wherein an open notch is formed on one side end wall of the bubble containing chamber, The bubble accommodating chamber and the open slot jointly screen the bubble volume range of the bubble provided to the liquid tube, so that the oversized bubble larger than the bubble volume range is decomposed into an excess bubble and a monitoring bubble, and the excess bubble passes through the The open notch drains away from the liquid pipe flow path, and the monitoring bubble is guided into the liquid drain pipe through the bubble containing chamber to be detected, so as to improve the accuracy of detection when a small flow of gas leaks.

Description

液管內之氣泡篩選器 Bubble filter in liquid pipe

本新型應用於洩漏氣體偵測領域,涉及防止洩漏氣體於液管內生成氣塞現象,進而提供一種液管內之氣泡篩選器。 The utility model is applied to the field of leaking gas detection, and relates to preventing the leaking gas from generating a gas plug phenomenon in the liquid pipe, and further provides a bubble filter in the liquid pipe.

一般例如是熱交換、鍋爐、熱處理、燃氣或廢氣處理等工業設備中都存在有製程氣體,所述的製程氣體多半具備特定的壓力,並且利用例如是管或艙室等構造元件加以導流或儲存。 Generally, there are process gases in industrial equipment such as heat exchange, boilers, heat treatment, gas or exhaust gas treatment. Most of the process gases have a specific pressure and are guided or guided by structural elements such as pipes or cabins. store.

且知,存在有製程氣體的工業設備在經過一段時間的使用後,經常容易發生製程氣體外洩現象,而影響該等工業設備的妥善率。倘若,外洩的製程氣體具有毒性,其對環境的迫害、人員的健康甚至是安全都會造成相當的威脅。因此,該等工業設備中的製程氣體一旦發生外洩時,必須立即被檢知,以維護設備的妥善率、環境衛生和公共安全。 Moreover, it is known that after a period of use of industrial equipment with process gas, process gas leakage is often prone to occur, which affects the proper rate of such industrial equipment. If the leaked process gas is toxic, it will pose a considerable threat to the environment, personnel health and even safety. Therefore, once the process gas in the industrial equipment leaks, it must be detected immediately to maintain the proper rate of the equipment, environmental sanitation and public safety.

已知,當今存在有製程氣體的工業設備,多半在氣體導流管道或氣體儲存艙等處安裝氣體壓力感測器、氣體流量計等量測元件,以檢知製程氣體是否外洩的情形。惟,此等現有技術較難精確檢知小流量的氣體外洩情形。 It is known that in today's industrial equipment with process gas, gas pressure sensors, gas flow meters and other measuring components are installed in gas diversion pipes or gas storage tanks to detect whether the process gas has leaked. However, it is difficult for these prior art technologies to accurately detect gas leakage at small flow rates.

且知,申請人已於日前提出一種將外洩氣體導入液管中生成氣泡,進而以偵測液體中氣泡生成數量或體積的方式進行外洩氣體的偵測暨檢知的技術;惟,此技術當面臨外洩氣體的流量過小時,由於小流量的外洩氣體在液管內的推力也相對地變小,導致小流量外洩氣體所生成的氣泡易於液管內堆積而形成具有較大氣泡體積的過大氣泡,該過大氣泡會影響到小流量外洩氣體偵測的精確性,因此亟待加以改進。 It is also known that the applicant has recently proposed a technology for detecting and detecting the leaked gas by introducing the leaked gas into the liquid pipe to generate bubbles, and then by detecting the number or volume of bubbles generated in the liquid; however, this Technology When the flow rate of the leaked gas is too small, the thrust of the small flow of the leaked gas in the liquid pipe is also relatively small, causing the bubbles generated by the small flow of the leaking gas to accumulate in the liquid pipe and form a larger If the volume of the bubble is too large, the excessively large bubble will affect the accuracy of the detection of the small flow of the leaked gas, so it needs to be improved urgently.

有鑑於此,本新型之目的,旨在改善上述小流量氣體外洩時偵測的精確性。 In view of this, the purpose of the present invention is to improve the accuracy of detection when the above-mentioned small flow gas leaks.

為達上述目的,本新型之一較佳實施例,係在提供一種液管內之氣泡篩選器,以提升小流量氣體外洩時偵測的精確性。其技術手段係在一器體內開設包括:一液管流道,其雙端分別銜接一提供氣泡的給液管以及一排流氣泡進行偵測的排液管;一氣泡容置室,該液管流道穿伸通過該氣泡容置室,該給液管係經由該氣泡容置室而與該排液管相連通;;其中,該氣泡容置室之一側端壁上形成一開放槽口,該氣泡容置室及該開放槽口共同篩選該給液管提供之氣泡的氣泡體積範圍,令大於該氣泡體積範圍之一過大氣泡分解成為一多餘氣泡及一監測氣泡,該多餘氣泡經由該開放槽口排流離開該氣泡容置室,該監測氣泡經由該氣泡容置室導引至該排液管內接受偵測。 To achieve the above objective, a preferred embodiment of the present invention provides a bubble filter in the liquid pipe to improve the accuracy of detection when a small flow of gas leaks. The technical means is to open a vessel body including: a liquid pipe flow channel, the two ends of which are respectively connected with a liquid supply pipe for providing bubbles and a discharge pipe for detecting the discharge of bubbles; a bubble containing chamber, the liquid The pipe flow path extends through the bubble containing chamber, and the liquid supply pipe is connected to the drain pipe via the bubble containing chamber; wherein, an open groove is formed on one side end wall of the bubble containing chamber The bubble accommodating chamber and the open notch jointly screen the bubble volume range of the bubble provided to the liquid tube, so that an oversized bubble larger than the bubble volume range is decomposed into an excess bubble and a monitoring bubble, the excess bubble Drain through the open slot to leave the bubble accommodating chamber, and the monitoring bubble is guided through the bubble accommodating chamber into the drain pipe for detection.

在進一步實施中,該液管流道雙端分別形成有相互平行的一給液管銜接口及一排液管銜接口,該給液管銜接口與該排液管銜接口經由該氣泡容置室而相互連通,且該給液管銜接口與該排液管銜接口之間具有不同的高度差。 In a further implementation, both ends of the liquid pipe flow channel are respectively formed with a liquid supply pipe connection port and a liquid discharge pipe connection port which are parallel to each other, and the liquid supply pipe connection port and the discharge pipe connection port are accommodated by the bubble The chambers are communicated with each other, and there are different height differences between the liquid supply pipe connection port and the discharge pipe connection port.

在更進一步實施中,該給液管銜接口在該氣泡容置室內的所在高度相對低於該排液管銜接口。 In a further implementation, the height of the liquid supply pipe adapter in the bubble containing chamber is relatively lower than the liquid discharge pipe adapter.

在更進一步實施中,該給液管之一端經由該給液管銜接口植入該氣泡容置室內。 In a further implementation, one end of the liquid feeding tube is implanted into the air bubble containing chamber through the liquid feeding tube adapter port.

在更進一步實施中,該給液管銜接口製成半圓形管壁狀,且該給液管銜接口的開口面積小於該開放槽口。 In a further implementation, the liquid feeding tube adapter port is made into a semicircular tube wall shape, and the opening area of the liquid feeding tube adapter port is smaller than the open slot.

在更進一步實施中,該給液管銜接口與該開放槽口形成於該器體的同一側端壁上。 In a further implementation, the liquid supply pipe connecting port and the open notch are formed on the same side end wall of the body.

在更進一步實施中,該給液管銜接口的所在高度相對低於該開放槽口。 In a further implementation, the height of the connecting port of the liquid feeding pipe is relatively lower than the open slot.

在更進一步實施中,該排液管銜接口製成管孔狀。 In a further implementation, the drain pipe adapter is made into a pipe hole shape.

在進一步實施中,該排液管內之液體經由一驅動器的驅動而流動。 In a further implementation, the liquid in the discharge pipe flows through the drive of a driver.

根據上述技術手段,本新型的技術效果在於:藉由氣泡篩選技術,讓液管內不慎生成過大氣泡時,該過大氣泡能順利的被篩選成合適體積的監測氣泡,以利提升小流量外洩氣體的偵測精確性。 According to the above-mentioned technical means, the technical effect of the present invention lies in the following: through the bubble screening technology, when excessive bubbles are accidentally generated in the liquid tube, the excessive bubbles can be smoothly screened into monitoring bubbles of suitable volume, so as to improve the small flow rate. Accuracy of leak detection.

除此之外,有關本新型可供據以實施的相關技術細節,將在後續的實施方式及圖式中加以闡述。 In addition, the relevant technical details on which the present invention can be implemented will be described in the subsequent implementation modes and drawings.

10:氣泡 10: bubbles

11:過大氣泡 11: Too big bubbles

12:多餘氣泡 12: Excess bubbles

13:監測氣泡 13: Monitoring bubbles

20:液體 20: Liquid

30:器體 30: Body

31:液管流道 31: Liquid pipe runner

32:氣泡容置室 32: Bubble holding room

33:開放槽口 33: open notch

34:給液管銜接口 34: Liquid pipe connection interface

35:排液管銜接口 35: Discharge pipe connection

41:給液管 41: Liquid supply pipe

42:排液管 42: Drain pipe

50:液槽 50: liquid tank

60:氣體導管 60: Gas conduit

圖1是本新型液管內之氣泡篩選器的立體示意圖。 Figure 1 is a three-dimensional schematic diagram of the bubble filter in the new liquid tube.

圖2是圖1的剖示圖。 Fig. 2 is a cross-sectional view of Fig. 1.

圖3至圖5分別是本新型液管內之氣泡篩選器的動作示意圖。 Figures 3 to 5 are schematic diagrams of the action of the bubble filter in the new liquid tube.

首先,請合併參閱圖1及圖2,揭露本新型之一較佳實施例的態樣,說明本新型所提供的液管內之氣泡篩選器,係在一器體30內開設包括一液管流道31及一氣泡容置室32。其中: First of all, please refer to FIGS. 1 and 2 together to disclose the aspect of a preferred embodiment of the present invention. It is explained that the bubble filter in the liquid tube provided by the present invention is opened in a vessel 30 and includes a liquid tube The flow channel 31 and a bubble containing chamber 32. among them:

該液管流道31雙端分別延伸至器體30表面形成有相互平行的一給液管銜接口34及一排液管銜接口35,該給液管銜接口34用以銜接一提供氣泡10的給液管41,該排液管銜接口35用以銜接一排流氣泡10進行偵測的排液管42,該給液管銜接口34在實施上製成半圓形管壁狀,該排液管銜接口35在實施上製成管孔狀。進一步的說,該給液管銜接口34與排液管銜接口35之間具有不同的高度差,在具體實施上,該給液管銜接口34在氣泡容置室32內的所在高度相對低於排液管銜接口35。 The two ends of the liquid pipe flow channel 31 respectively extend to the surface of the body 30 to form a liquid supply pipe connection port 34 and a liquid discharge pipe connection port 35 which are parallel to each other, and the liquid supply pipe connection port 34 is used to connect a supply air bubble 10 The liquid supply pipe 41, the discharge pipe connection port 35 is used to connect a discharge pipe 42 for detecting the discharge air bubble 10, the liquid supply pipe connection port 34 is implemented as a semicircular tube wall. The drain pipe connecting port 35 is made into a pipe hole shape in implementation. Furthermore, there are different height differences between the liquid supply pipe connection port 34 and the discharge pipe connection port 35. In specific implementation, the height of the liquid supply pipe connection port 34 in the bubble containing chamber 32 is relatively low. At the drain pipe connection interface 35.

該液管流道31穿伸通過氣泡容置室32,該給液管銜接口34與排液管銜接口35經由氣泡容置室32而相互連通,進而使給液管41經由氣泡容置室32而與排液管42相連通。該器體30形成給液管銜接口34的端壁上還形成有一連通氣泡容置室32的 開放槽口33,該開放槽口33在氣泡容置室32內的所在高度相對高於給液管銜接口34,且給液管銜接口34的開口面積小於開放槽口33,使氣泡10由給液管41進入氣泡容置室32內之後,能經由開放槽口33快速離開氣泡容置室32,不會堆積在氣泡容置室32而形成氣塞現象。此外,該給液管41一端是植入氣泡容置室32內,使氣泡10進入氣泡容置室32之後接近排液管42,以利於部分氣泡10(也就是監測氣泡13)進入排液管42中。 The liquid pipe flow passage 31 extends through the bubble containing chamber 32, and the liquid supply pipe connection port 34 and the discharge pipe connection port 35 are in communication with each other via the bubble storage chamber 32, so that the liquid supply pipe 41 passes through the bubble storage chamber. 32 and communicate with the drain pipe 42. The end wall of the body 30 formed to the liquid pipe adapter 34 is also formed with a communicating bubble containing chamber 32 Open notch 33. The height of the open notch 33 in the bubble containing chamber 32 is relatively higher than that of the liquid feeding pipe adapter 34, and the opening area of the liquid feeding pipe adapter 34 is smaller than that of the open notch 33, so that the bubble 10 is removed After the liquid feeding pipe 41 enters the bubble accommodating chamber 32, it can quickly leave the bubble accommodating chamber 32 through the open slot 33, and will not accumulate in the bubble accommodating chamber 32 to form an air lock phenomenon. In addition, one end of the liquid supply tube 41 is implanted in the bubble containing chamber 32, so that the bubble 10 enters the bubble containing chamber 32 and then approaches the drain tube 42, so that part of the bubble 10 (that is, the monitoring bubble 13) enters the drain tube. 42 in.

根據上述配置,請接續參閱圖3至圖5,依序揭示本新型的動作解說圖,說明將器體30及連接至器體30上的給液管41沉入一液槽50的液體20內,該液槽50可由透明或不透明的槽壁框圍而成,使液槽50連通大氣並且裝填有液體20,該液槽50的液體20密度與給液管41中的液體20相同。將導引洩漏氣體的氣體導管60連接至給液管41,使氣體導管60內的氣體在給液管41的液體20內生成氣泡10,同一時間,排液管42內的液體20經由一驅動器(未繪示)的驅動而流動,進而帶動給液管41內的液體20跟著流動,使給液管41內的氣泡10經由液體20的帶動而由給液管41流向氣泡容置室32(如圖3所示),其中包含在給液管41內堆積而形成的過大氣泡11,該過大氣泡11是指其體積大於預設的氣泡體積範圍。 According to the above configuration, please continue to refer to FIGS. 3 to 5, and the operation explanatory diagrams of the present invention are successively disclosed, explaining that the vessel body 30 and the liquid feeding pipe 41 connected to the vessel body 30 are sunk into the liquid 20 of a liquid tank 50 The liquid tank 50 may be framed by transparent or opaque tank walls, so that the liquid tank 50 communicates with the atmosphere and is filled with a liquid 20. The density of the liquid 20 in the liquid tank 50 is the same as the liquid 20 in the liquid supply pipe 41. Connect the gas pipe 60 for guiding the leaking gas to the liquid supply pipe 41, so that the gas in the gas pipe 60 generates bubbles 10 in the liquid 20 of the liquid supply pipe 41. At the same time, the liquid 20 in the discharge pipe 42 passes through a driver (Not shown), the liquid 20 in the liquid feeding pipe 41 is driven to flow, so that the bubbles 10 in the liquid feeding pipe 41 are driven by the liquid 20 to flow from the liquid feeding pipe 41 to the bubble containing chamber 32 ( As shown in FIG. 3), it contains oversized bubbles 11 formed by accumulation in the liquid feeding pipe 41, and the oversized bubbles 11 mean that their volume is greater than a preset bubble volume range.

當過大氣泡11經由給液管41進入氣泡容置室32時(如圖4所示),該過大氣泡11會上浮,並在上浮的過程中,該過大氣泡11會分解成為多餘氣泡12及監測氣泡13,該多餘氣泡12的氣泡體積是大於監測氣泡13,該多餘氣泡12會因其浮力經由開放槽口33排流離開氣泡容置室32而進入液槽50內。 When the excessively large bubble 11 enters the bubble containing chamber 32 through the liquid supply pipe 41 (as shown in FIG. 4), the excessively large bubble 11 will float up, and during the upward process, the excessively large bubble 11 will decompose into excess bubbles 12 and monitoring The bubble 13, the bubble volume of the excess bubble 12 is larger than the monitoring bubble 13, the excess bubble 12 will drain out of the bubble containing chamber 32 through the open slot 33 due to its buoyancy, and enter the liquid tank 50.

由於監測氣泡13的氣泡體積小於多餘氣泡12,也就是說,監測氣泡13所具有的浮力小於多餘氣泡12,當排液管42內的液體20經由驅動器的驅動而流動時,使排液管42內形成負壓狀態,令具有較小浮力的監測氣泡13被吸入排液管42內(如圖5所示),藉此,來篩選氣泡10的氣泡體積,以便於後續的偵測作 業。 Since the bubble volume of the monitoring bubble 13 is smaller than that of the excess bubble 12, that is, the buoyancy of the monitoring bubble 13 is less than that of the excess bubble 12. When the liquid 20 in the discharge pipe 42 is driven by the driver to flow, the discharge pipe 42 A negative pressure is formed inside, so that the monitoring bubble 13 with less buoyancy is sucked into the discharge pipe 42 (as shown in FIG. 5), so as to filter the bubble volume of the bubble 10 for subsequent detection operations. industry.

以上實施例僅為表達了本新型的較佳實施方式,但並不能因此而理解為對本新型專利範圍的限制。因此,本新型應以申請專利範圍中限定的請求項內容為準。 The above embodiments only express the preferred embodiments of the present invention, but they should not be interpreted as limiting the scope of the present invention. Therefore, this new model should be subject to the content of the claims defined in the scope of the patent application.

30:器體 30: Body

33:開放槽口 33: open notch

34:給液管銜接口 34: Liquid pipe connection interface

35:排液管銜接口 35: Discharge pipe connection

41:給液管 41: Liquid supply pipe

42:排液管 42: Drain pipe

Claims (9)

一種液管內之氣泡篩選器,係在一器體內開設包括: A bubble filter in a liquid pipe, which is opened in a body and includes: 一液管流道,其雙端分別銜接一提供氣泡的給液管以及一排流氣泡進行偵測的排液管; A liquid pipe flow channel, the two ends of which are respectively connected with a liquid supply pipe for providing air bubbles and a liquid discharge pipe for detecting air bubbles; 一氣泡容置室,該液管流道穿伸通過該氣泡容置室,該給液管係經由該氣泡容置室而與該排液管相連通; A bubble accommodating chamber, the liquid pipe flow path extends through the bubble accommodating chamber, and the liquid supply pipe is communicated with the drain pipe through the bubble accommodating chamber; 其中,該氣泡容置室之一側端壁上形成一開放槽口,該氣泡容置室及該開放槽口共同篩選該給液管提供之氣泡的氣泡體積範圍,令大於該氣泡體積範圍之一過大氣泡分解成為一多餘氣泡及一監測氣泡,該多餘氣泡經由該開放槽口排流離開該液管流道,該監測氣泡經由該氣泡容置室導引至該排液管內接受偵測。 Wherein, an open notch is formed on one side end wall of the bubble containing chamber, and the bubble containing chamber and the open notch jointly screen the bubble volume range of the bubble provided by the liquid supply tube to be larger than the bubble volume range An excessively large bubble decomposes into an excess bubble and a monitoring bubble, the excess bubble is drained out of the liquid pipe flow channel through the open slot, and the monitoring bubble is guided through the bubble containing chamber into the drain pipe for detection Measurement. 如請求項1所述的液管內之氣泡篩選器,其中該液管流道雙端分別形成有相互平行的一給液管銜接口及一排液管銜接口,該給液管銜接口與該排液管銜接口經由該氣泡容置室而相互連通,且該給液管銜接口與該排液管銜接口之間具有不同的高度差。 The bubble filter in the liquid pipe according to claim 1, wherein the liquid pipe flow channel is respectively formed with a liquid supply pipe connection port and a liquid discharge pipe connection port parallel to each other at both ends, and the liquid supply pipe connection port and The liquid discharge pipe connection port is communicated with each other through the bubble containing chamber, and the liquid supply pipe connection port and the discharge pipe connection port have different height differences. 如請求項2所述的液管內之氣泡篩選器,其中該給液管銜接口在該氣泡容置室內的所在高度相對低於該排液管銜接口。 The bubble filter in the liquid pipe according to claim 2, wherein the height of the liquid supply pipe connection port in the bubble containing chamber is relatively lower than the discharge pipe connection port. 如請求項2所述的液管內之氣泡篩選器,其中該給液管之一端經由該給液管銜接口植入該氣泡容置室內。 The bubble filter in the liquid tube according to claim 2, wherein one end of the liquid feeding tube is implanted in the bubble containing chamber through the liquid feeding tube adapter port. 如請求項2所述的液管內之氣泡篩選器,其中該給液管銜接口製成半圓形管壁狀,且該給液管銜接口的開口面積小於該開放槽口。 The bubble filter in the liquid tube according to claim 2, wherein the liquid feeding tube adapter port is made into a semicircular tube wall shape, and the opening area of the liquid feeding tube adapter port is smaller than the open notch. 如請求項2所述的液管內之氣泡篩選器,其中該給液管銜接口與該開放槽口形成於該器體的同一側端壁上。 The bubble filter in the liquid tube according to claim 2, wherein the liquid feeding tube interface and the open slot are formed on the same side end wall of the body. 如請求項2、5或6所述的液管內之氣泡篩選器,其中該給液管銜接口在該氣泡容置室內的所在高度相對低於該開放槽口。 The bubble filter in the liquid tube according to claim 2, 5, or 6, wherein the height of the liquid feeding tube interface in the bubble containing chamber is relatively lower than the open slot. 如請求項2所述的液管內之氣泡篩選器,其中該排液管銜接口製成管孔狀。 The bubble filter in the liquid pipe according to claim 2, wherein the connection port of the liquid discharge pipe is made into a pipe hole shape. 如請求項1所述的液管內之氣泡篩選器,其中該排液管內之液體經由一驅動器的驅動而流動。 The bubble filter in the liquid pipe according to claim 1, wherein the liquid in the liquid discharge pipe is driven by a driver to flow.
TW109207309U 2020-06-11 2020-06-11 Bubble filter in liquid pipe TWM601823U (en)

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TWM601823U true TWM601823U (en) 2020-09-21

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