TWM438896U - Air valve for pressure gauge with wave stabilizing and pressurization effect - Google Patents

Air valve for pressure gauge with wave stabilizing and pressurization effect Download PDF

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Publication number
TWM438896U
TWM438896U TW101209529U TW101209529U TWM438896U TW M438896 U TWM438896 U TW M438896U TW 101209529 U TW101209529 U TW 101209529U TW 101209529 U TW101209529 U TW 101209529U TW M438896 U TWM438896 U TW M438896U
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Taiwan
Prior art keywords
pressure
measuring device
micro
gas valve
hole
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TW101209529U
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Chinese (zh)
Inventor
Chien-Kuo Lo
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Huan Lan Internat Corp
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Priority to TW101209529U priority Critical patent/TWM438896U/en
Publication of TWM438896U publication Critical patent/TWM438896U/en

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Description

M438896 五、新型說明: 【新型所屬之技術領域】 指一 原理 壓式 的氣 達到 式氣 生鬆 過多 壓流 論究 應精 上通 放過 1¾ / 慢洩 有氣 值之 在之 實使 方向 本創作係涉及一種壓力計量裝置甩氣閥,特別是 種具有穩波增壓效杲之創新氣閥結構型態設計者。 【先前技術】 按,本創作所指的壓力計量裝置係包含利用氣壓 與手段來達成計量功能的裝置產品,例如血壓計、氣 測高計等等。 Φ 舉血壓計為例,目前市面上可見的血壓計所採用 閥均為可調整式構造,主要可藉由該可調整式氣閥來 控制氣體流量與增壓時間之目的,然而,習知可調整 閥為人所詬病之處,除了使用一段時間後氣閥容易產 動變形以致造成量測誤差而必須送廠維修、以及構件 而徒增成本且不良率高等問題與缺弊之外,氣閥的增 路產生的紊流現象所導致的增壓不穩定現象,縱使不 其調整式構造所存在的弊病,仍舊存在增壓不穩、感 度精準度不佳的問題與缺弊;而一般血壓計結構設計 常設有一脈衝感應器,該脈衝感應器會在氣體緩慢洩 ®程中偵測到高/低血壓之差異脈衝值,以將所偵測的 低血壓脈衝資料傳送至電路板處理,係由於氣體於緩 放過程的穩定度高於氣體增壓過程的穩定度,而存在 體於增壓過程中所量測的壓力無法當作血壓實際測量 缺撼。 是以,針對上述習知壓力計量裝置增壓結構所存 問題點,如何開發一種更具理想實用性之創新結構, 用者所企盼,亦係相關業者須努力研發突破之目標及 有鑑於此,創作人本於多年從事相關產品之製造開發 M438896 與設計經驗,針對上述之目標,詳加設計與審 終得一確具實用性之本創作。 【新型内容】 本創作之主要目的,係在提供一種具有穩 之壓力計量裝置用氣閥;其所欲解決之問題點 何研發出一種更具理想實用性之新式壓力計量 結構為目標加以改良創新突破,該氣閥係藉以 力計量裝置所預設的增壓部位; ® 本創作解決問題之技術特點,主要在於該 :一柱型主體,採用玻璃或壓克力材料所構成 型態;一微型貫穿孔,設於柱型主體中間位置 型態;且該微型貫穿孔的孔徑係介於0. 025mm至 ,又微型貫穿孔的孔壁表面粗糙度(Ra )係為 0. 16a之間的鏡面光滑型態,而所述氣閥長度係 至5 cm之間;藉此創新獨特設計,使本創作對 而言,俾可利用該微型貫穿孔能夠在限制流量 φ氣體順暢穩定通過的特性,進而達到大幅提昇 與感應精準度,使壓力計量裝置於增壓過程中 量測壓力值,並且簡化氣閥構造而能降低製造 產品良率等實用進步性與較佳產業經濟效益。 【實施方式】 請參閱第1 、2 、3 、4圖所示,係本創 增壓效杲之壓力計量裝置用氣閥之較佳實施例 施例僅供說明之用,在專利申請上並不受此結 所述氣閥10係藉以裝設於一壓力計量裝置A ( 1圖)所預設的增壓部位01 (僅標示於第1圖 評估後, 波增壓效果 ,係針對如 裝置用氣閥 裝設於一壓 氣閥係包括 的筆直柱狀 呈筆直貫穿 0. 5mm之間 介於0. Ola至 介於0.5 cm 照先前技術 的條件下使 增壓穩定性 就能夠準確 成本、提高 作具有穩波 ,惟此等實 構之限制。 僅標示於第 );該氣閥 M438896 10係包括下述構成: 一柱型主體11,係採用破璃或壓克力材料所構成的筆 直柱狀型態; 一微型貫穿孔12,設於該柱型主體1〇的中間位置呈筆 直貫穿型態;其中該微型貫穿孔12的真圓度要求係為土 〇· 003mm ; 且其中,該微型貫穿孔12的孔徑係介於〇. 025mm至〇. 5 mm之間,又該微型貫穿孔12的孔壁表面粗糙度(Ra )係為 鲁介於0. Ola至0.16a之間的鏡面光滑型態;其中該微型貫穿孔 12可利用雷射加工方式使其孔壁表面呈鏡面光滑型態’令 氣體能夠順暢無阻地通過;又其中,該氣閥10長度介於0 .5 cm至5 cm之間為較佳長度;由於壓力計量裝置A增壓過 程中需要一段導引長度,使氣體壓縮以達到增加壓力的效 果,因此,上述令氣閥10長度遠大於微型貫穿孔12孔徑的 結構比例型態設計,能夠使增壓過程獲得較佳的導引長度 ’以達到最佳增壓效果舆氣流穩定效果; 、久 和凡,砀亂阀ιυ的微型貝牙礼12飴约 件下估产祕 "月b夠在限制流量的 牛順暢穩定地通過’達到大幅提昇 =應-準度’使壓力計量裝置A於增壓 置測壓力值並簡化氣閥10構造,且所述患門中$“夠準 於壓力計量裝置A所預設的增壓部閱丨。可直接裳 整構件或進行校對工作,俾可達到夫r不需加裝任何 準確性。 &到大幅增加使用方便性 $其中該壓力計量裝置A可為血壓 乳壓式測厚計等壓力計量裝置。 氣壓式測高計 如第4圖所示’係為本創作 M -h / . h 與 係針對增壓過程( 如W2所示)即不在 刀/時間曲線比較圖,而本舍丨 所_ 、 τ启丨J 1乍 不)加以論述,因此洩壓過程 M438896 述,·習知增塵過程面線(如L1所示),會由於 生的紊流現象而導致增壓不穩定(如u所#,係產 型態),嚴重影響壓力計量裝置量A測精準产·、相料-狀 ,本創作利用微型貫穿孔能夠在限制流量的二牛言 順暢穩定通過…’使本創作於增 能 體 線性曲線(如L2所示),而達到大幅提昇=”慧定 使壓力計量裝4A於增麼過程;就:準。 測壓力值。 把夕」-Τ碩$ >功效說明 本創作功 本創 閥」主要 位置呈筆 型態設計 mm之間與 間的鏡面 】所提習 流量的條 不會產生 幅提昇增 過程中就 型主體中 量裝置所 不需校對 大幅提昇 進步性與 間使用也 確性。 效增進之事 作所揭「具 藉由所述氣 直貫穿型態 ’且藉由微 其孔壁表面 光滑型態之 知結構而言 件下使氣體 奈流現象所 壓穩定性與 能夠準確量 間設置微型 預設的增壓 、測試與調 生產效率與 較佳產業經 無須再校$ 實如下: 有穩波增壓 閥包括柱型 之微型貫穿 型貫穿孔的 粗糙度(Ra 技術特徵, ’俾可利用 順暢穩定通 導致的增壓 感應精準度 測壓力值, 貫穿孔,並 部位即可, 整等繁複過 產品良率且 脅效益;而 ’俾可達到 效果之壓 主體與設 孔所構成 孔徑係介 )係為介 使本創作 該微型貫 過的特,k 不穩定現 ’使壓力 且由於只 直接將氣 因此就製 程且簡化 降低製造 就使用者 大幅增加 力計量裝 於枝型主 之創新獨 於〇· 〇25咖 於〇. Ola至 對照【先 穿孔能夠 ’使增壓 象,進而 計量裝置 在所述 閥裝設於 造面而言 氣閥構造 成本等諸 而言,即 使用方便 置用氣 體中間 特結構 至0· 5 0.16a 之 如技術 在限制 過程中 達到大 於增壓 氣閥柱 壓力計 ’完全 ,達到 多實用 使長時 性與準 6 M438896 另一方靣,藉由令該氣閥長度遠大於微型貫穿孔 的結構比例型態設計,更能使增壓過程獲得較佳導引 ,以達到最佳增壓效果與氣流穩定效果。 上述實施例所揭示者係藉以具體說明本創作,且 雖透過特定的術語進行說明,當不能以此限定本新型 之專利範圍;熟悉此項技銜領域之人士當可在瞭解本 之精神與原則後對其進行變更與修改而達到等效目的 此等變更與修改,皆應涵蓋於如后所述申請專利範圍 定之範疇中。 孔徑 長度 文中 創作 創作 ,而 所界 M438896 [ 圖 式 簡單 說明】 第 1 圖 :本 創作氣 閥 裝 rriL 5又 於 壓 力 計 裝置之立體 圖。 第 2 圖 :本 創作氣 闊 之 立 體 圖 〇 第 3 圖 :本 創作氣 閥 之 剖 視 圖 〇 第 4 圖 :本 創作與 習 知 增 壓 與 洩 壓 過 程之壓力/ 時間曲線 比 較圖。 [ 主 要 元件符號說 明 ] 壓 力 計 量裝 置 A 增 壓 部 位 0 1 氣 閥 1 0 柱 型 主 體 1 1 微 型 貫 穿孔 1 2M438896 V. New description: [New technical field] refers to a principle-pressed gas-to-type gas-fired loose multi-pressure flow study should be finely discharged over 13⁄4 / slow venting gas value in the real direction of the creation The utility model relates to a pressure measuring device helium valve, in particular to an innovative gas valve structure type designer with a steady wave supercharging effect. [Prior Art] According to the present invention, the pressure measuring device includes a device product that uses a gas pressure and a means to achieve a metering function, such as a sphygmomanometer, a gas altimeter, and the like. Φ Take the sphygmomanometer as an example. The valves used in the sphygmomanometers currently available on the market are all adjustable. The adjustable gas valve can be used to control the gas flow and the pressurization time. However, the conventional method can be used. The regulating valve is a criticized place, except for the problem that the valve is easy to produce deformation after a period of use, which causes measurement error and must be sent to the factory for repair, and the components are increased in cost and the non-performing rate is high. The phenomenon of supercharging instability caused by the turbulence phenomenon caused by the increase of the road, even if it does not have the disadvantages of the adjustment structure, there are still problems of lack of pressure instability, poor sensitivity and lack of sensitivity; and the general sphygmomanometer The structure design is provided with a pulse sensor that detects the difference pulse value of the high/low blood pressure during the gas slow venting process to transmit the detected hypotensive pulse data to the circuit board for processing. The stability of the gas during the slow release process is higher than the stability of the gas pressurization process, and the pressure measured during the pressurization process cannot be used as the actual measurement of blood pressure. Therefore, in view of the problems existing in the above-mentioned pressure-measuring device supercharging structure, how to develop an innovative structure that is more ideal and practical, the user hopes, and the relevant industry must strive to develop the breakthrough goal and in view of this, create People have been engaged in the manufacturing and development of related products M438896 and design experience for many years. In view of the above objectives, the design and finalization of this design are practical. [New content] The main purpose of this creation is to provide a gas valve with a stable pressure measuring device; the problem to be solved is to develop a new pressure measuring structure with more ideal and practicality to improve and innovate. Breakthrough, the valve is based on the pre-set pressure point of the force metering device; ® The technical characteristics of the solution to the problem are mainly: the one-column body, which is made of glass or acrylic material; Between the mirrors of the surface of the micro-through-holes, the surface roughness (Ra) of the micro-through holes is 0. 16a between the mirrors. Smooth type, and the length of the valve is between 5 cm; this innovative and unique design makes the creation of the micro-through hole capable of restricting the flow rate φ gas smoothly and stably passing through. Achieve substantial improvement and induction accuracy, so that the pressure metering device measures the pressure value during the pressurization process, and simplifies the valve structure and can reduce the practical progress and comparison of the manufacturing product yield. Industrial economic efficiency. [Embodiment] Please refer to the first, second, third, and fourth figures. The preferred embodiment of the air valve for the pressure measuring device of the present invention is for illustrative purposes only. The valve 10 is not installed in a pressure measuring device A (Fig. 1) preset by the pressure measuring device 01 (only after the evaluation of the first figure, the wave boosting effect is for the device) The air valve is installed in a pressure valve system including a straight column shape pendulum penetrating through 0. 5mm between 0. Ola to between 0.5 cm under the conditions of the prior art, the pressure stability can be accurately cost-effective It has a steady wave, but the limits of such a solid. Only indicated in the first); the gas valve M438896 10 includes the following structure: A cylindrical body 11 is a straight column made of glass or acrylic material. a micro-perforation 12 is disposed in a straight penetrating manner at a position intermediate the cylindrical body 1 ;; wherein the micro-through hole 12 has a roundness requirement of 〇 003 mm; and wherein the micro The diameter of the through hole 12 is between 025 mm and 〇 5 mm, and the micro The surface roughness (Ra) of the through-hole 12 is a mirror-smooth pattern between 0. Ola and 0.16a; wherein the micro-through hole 12 can be mirror-finished by laser processing. The smooth type 'allows the gas to pass smoothly and unimpededly; and wherein the length of the gas valve 10 is between 0.5 cm and 5 cm, which is a preferred length; since the pressure metering device A requires a length of guiding during the pressurization process The gas is compressed to achieve the effect of increasing the pressure. Therefore, the above-mentioned structural proportional design that makes the length of the gas valve 10 much larger than the diameter of the micro through hole 12 enables the pressurization process to obtain a better guiding length 'to achieve the best. The supercharging effect 舆 airflow stability effect; 久久和凡, 砀 阀 υ υ υ 微型 微型 微型 微型 微型 微型 微型 微型 微型 微型 微型 微型 估 估 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月 月The accuracy 'the pressure metering device A is used to pressurize the pressure value and simplify the configuration of the gas valve 10, and the patient's door is "acceptable to the pressure gauge preset by the pressure metering device A. The whole component or proofreading work There is no need to add any accuracy to the husband. & to greatly increase the ease of use. The pressure measuring device A can be a pressure measuring device such as a blood pressure milk pressure gauge. The pneumatic altimeter is as shown in Fig. 4. The 'system-based creation M-h / . h and the system for the supercharging process (as shown by W2) is not in the knife / time curve comparison chart, and the present 丨 丨, τ 丨 丨 J 1 乍 not discussed Therefore, the pressure relief process M438896 described, the conventional dust-increasing process line (as shown by L1), will result in supercharged instability due to the turbulent phenomenon of the raw (such as u, #, production type), seriously affecting the pressure measurement The amount of device A is measured accurately, and the material-like shape is used. This creation uses a miniature through-hole to smoothly and stably pass the two-way flow that restricts the flow... so that the creation is in the linear curve of the energizing body (as shown by L2). Significantly improved = "Hui Ding makes the pressure measurement device 4A increase the process; Measure the pressure value.夕"-Τ硕$ >Efficacy Description The creation of this work is the main position of the pen-shaped design mm between the mirror and the mirror. The flow of the article will not increase the volume of the process. The medium-sized device does not need to be proofread to greatly improve the progress and the accuracy of use. The effect of the improvement is "there is a straight through-type of the gas" and the stability of the gas flow phenomenon is accurate and accurate by the structure of the smooth surface of the pore wall. The micro-preset pressurization, test and adjustment production efficiency and better industry do not need to be re-calibrated as follows: The steady-state booster valve includes the roughness of the cylindrical micro-through type through hole (Ra technical feature, '俾You can use the pressure-sensing accuracy of the smooth and stable pass to measure the pressure value, and the through-holes and the parts can be used to complete the product yield and the threat benefit; and the 压 can achieve the effect of the pressure body and the hole The aperture system is designed to mediate the micro-performation of the creation, k is unstable, and because of the direct process of the gas, the process is simplified and the manufacturing is simplified. Innovative is unique in 〇·〇25咖于〇. Ola to control [first perforation can be used to make the pressurized image, and thus the metering device in the valve installation on the surface, the valve construction cost, etc. Easy to use gas intermediate structure to 0·5 0.16a as the technology reaches more than the pressurized gas column pressure gauge in the limiting process 'completely, to achieve more practical long-term and quasi-6 M438896 the other side, by The length of the gas valve is much larger than that of the micro-perforation structure, and the supercharging process can be better guided to achieve the optimal supercharging effect and the airflow stabilizing effect. The embodiments disclosed above are specifically Explain this creation, and although it is explained by specific terms, it is not possible to limit the scope of the patent of this new type; those who are familiar with the subject area can change and modify it after understanding the spirit and principles of this article. Equivalent purpose These changes and modifications shall be covered in the scope of the patent application as described later. The aperture length is created in the text, and the boundary is M438896 [Simple description of the drawing] Figure 1: The creation of the valve valve rriL 5 is a three-dimensional diagram of the pressure gauge device. Figure 2: The three-dimensional diagram of the creation of the atmosphere 〇 Figure 3: This creation Cross-sectional view of the air valve 〇 Figure 4: Comparison of the pressure/time curve between the creation and the conventional pressurization and pressure relief process. [Main component symbol description] Pressure measuring device A Pressurized part 0 1 Air valve 1 0 Column type main body 1 1 Miniature through hole 1 2

Claims (1)

M438896 々、申請專利範圍: 1 、一種具有穩波增壓效杲之壓力計量裝置用氣閥, 閥係藉以裝設於一壓力計量裝置所預設的增壓部 該氣閥包括: 一柱型主體,係採用玻璃或壓克力材料所構成的 柱狀型態; 一微型貫穿孔,設於該柱型主體的中間位置呈筆 穿型態; 且其中,該微型貫穿孔的孔徑係介於0. 025_至0. 之間,又該微型貫穿孔的孔壁表面粗糙度(Ra ) 介於0. Ola至0.16a之間的鏡面光滑型態; 又其中,該氣閥長度係介於0. 5 cm至5 cm之間; 藉此,該氣閥的微型貫穿孔能夠在限制流量的條 使氣體順暢穩定地通過,以穩定增壓效果並簡化 構造。 2 、依據申請專利範圍第1項所述之具有穩波增壓效 壓力計量裝置用氣閥,其中該壓力計量裝置係為 壓計。 3 、依據申請專利範圍第1項所述之具有穩波增壓效 壓力計量裝置用氣閥,其中該壓力計量裝置係為 壓式測高計或氣壓式測厚計。 4 、依據申請專利範圍第1項所述之具有穩波增壓效 壓力計量裝置用氣閥,其中該微型貫穿孔的真圓 求係為± 0. 003mm 。 該氣 位; 筆直 直貫 5mm 係為 件下 氣閥 果之 J&L 果之 一氣 果之 度要 9M438896 々, the scope of application for patents: 1. A gas valve for a pressure metering device with a constant wave supercharging effect, the valve is installed in a boosting portion preset by a pressure measuring device. The gas valve comprises: a column type The main body is a columnar type formed by glass or acrylic material; a micro through hole is disposed in a pen-penetrating state at a position intermediate the main body of the column; and wherein the aperture of the micro through hole is between Between 0. 025_至0., the surface roughness (Ra) of the micro-through hole is in a mirror-smooth pattern between 0. Ola and 0.16a; and wherein the valve length is between Between 0.5 cm and 5 cm; the micro-through hole of the gas valve allows the gas to pass smoothly and stably at a flow restricting strip to stabilize the pressurization effect and simplify the construction. 2. A gas valve for a pressure boosting pressure measuring device according to the first aspect of the patent application, wherein the pressure measuring device is a pressure gauge. 3. The gas valve for a pressure boosting pressure measuring device according to claim 1 of the patent application scope, wherein the pressure measuring device is a pressure type height meter or a barometric thickness meter. 4. The gas valve for a pressure-boosting pressure measuring device according to the first aspect of the patent application, wherein the micro-through hole has a true circle of ± 0. 003 mm. The air position; straight straight 5mm is the lower part of the gas valve, the result of the J&L
TW101209529U 2012-05-21 2012-05-21 Air valve for pressure gauge with wave stabilizing and pressurization effect TWM438896U (en)

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TW101209529U TWM438896U (en) 2012-05-21 2012-05-21 Air valve for pressure gauge with wave stabilizing and pressurization effect

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TW101209529U TWM438896U (en) 2012-05-21 2012-05-21 Air valve for pressure gauge with wave stabilizing and pressurization effect

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TWM438896U true TWM438896U (en) 2012-10-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI654964B (en) * 2016-07-29 2019-04-01 村田製作所股份有限公司 Valve, gas control device, and sphygmomanometer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI654964B (en) * 2016-07-29 2019-04-01 村田製作所股份有限公司 Valve, gas control device, and sphygmomanometer

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