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Pressure governor valve is the use of a spring-loaded power and pressure balance theory, when the spring-loaded pressure less than atmospheric pressure and the valves closed when the pressure is greater than the spring-loaded rubber tubing stretch when the bottom of compressed air diaphragm, diaphragmthe effort to promote diaphragm upward and left vavle seat blow the air flow of gas, this would piston shirking role in the pressure mobile, Selection will be emissions from valve seat, air compressors made by the then air into the gas valves and exhaust emissions is through the mouth into atmospheric

调压阀的原理是利用了弹簧力与压力相平衡的原理,当弹簧的压力小于气压的时候阀关闭,当压力大于弹簧的弹力时候橡胶调压膜片下方的压缩空气对膜片的作用力,推动膜片向上拱曲离开阀座而使空气流入气腔,此时卸荷活塞在气压作用下移动,将排放阀门推离阀座,于是由空气压缩机充入气腔的空气便通过排放阀和排气口排入大气空气压缩机空转。

Pressure governor valve is the use of a spring-loaded power and pressure balance theory, when the spring-loaded pressure less than atmospheric pressure and the valves closed when the pressure is greater than the spring-loaded rubber tubing stretch when the bottom of compressed air diaphragm, diaphragm the effort to promote diaphragm upward and left vavle seat blow the air flow of gas, this would piston shirking role in the pressure mobile, Selection will be emissions from valve seat, air compressors made by the then air into the gas valves and exhaust emissions is through the mouth into atmospheric air compressors idling.

调压阀的原理是利用了弹簧力与压力相平衡的原理,当弹簧的压力小于气压的时候阀关闭,当压力大于弹簧的弹力时候橡胶调压膜片下方的压缩空气对膜片的作用力,推动膜片向上拱曲离开阀座而使空气流入气腔,此时卸荷活塞在气压作用下移动,将排放阀门推离阀座,于是由空气压缩机充入气腔的空气便通过排放阀和排气口排入大气空气压缩机空转。

Working Principle Transmitter is composed of sensor and electronic element circuit, pressure of measured medium directly applies on sensor s ceramic diaphragm, force diaphragm to displace tinily in proportion to pressure of medium, under normal working condition, diaphragm displace no more than 0.025mm, electronic circuit detects this displacement, and convert it into standard industrial measuring signal i.e.(4~20mA) corresponding to this pressure.

工作原理变送器由传感器与电子元件线路组成,被测介质的压力直接作用于传感器的陶瓷膜片上,使膜片产生与介质压力成正比的微小位移,正常工作状态下,膜片最大位移不大于0.025mm,电子线路检测这一位移量后,即把这一位移量转换成对应这一压力的标准工业测量信号即(4~20mA)。

Transmitter is composed of senselectronic element circuit, pressure of measured medium directly applies on senss ceramic diaphragm, force diaphragm to displace tinily in proportion to pressure of medium, under normal working condition, diaphragm displace no more than 0.025mm, electronic circuit detects this displacement, convert it into standard industrial measuring signal i.e.(4~20mA) corresponding to this pressure.

变送器由传感器与电子元件线路组成,被测介质的压力直接作用于传感器的陶瓷膜片上,使膜片产生与介质压力成正比的微小位移,正常工作状态下,膜片最大位移不大于0.025mm,电子线路检测这一位移量后,即把这一位移量转换成对应于这一压力的标准工业测量信号(4~20)mA。

Transmitter is composed of sensor and electronic element circuit, pressure of measured medium directly applies on sensor s ceramic diaphragm, force diaphragm to displace tinily in proportion to pressure of medium, under normal working condition, diaphragm displace no more than 0.025mm, electronic circuit detects this displacement, and convert it into standard industrial measuring signal i.e.(4~20mA) corresponding to this pressure.

变送器由传感器与电子元件线路组成,被测介质的压力直接作用于传感器的陶瓷膜片上,使膜片产生与介质压力成正比的微小位移,正常工作状态下,膜片最大位移不大于0.025mm ,电子线路检测这一位移量后,即把这一位移量转换成对应于这一压力的标准工业测量信号(4~20) mA 。

Working Principle Transmitter is composed of sensor and electronic element circuit, pressure of measured medium directly applies on sensor s ceramic diaphragm, force diaphragm to displace tinily in proportion to pressure of medium, under normal working condition, diaphragm displace no more than 0.025mm, electronic circuit detects this displacement, and convert it into standard industrial measuring signal i.e.

工作原理变送器由传感器与电子元件线路组成,被测介质的压力直接作用于传感器的陶瓷膜片上,使膜片产生与介质压力成正比的微小位移,正常工作状态下,膜片最大位移不大于0.025mm,电子线路检测这一位移量后,即把这一位移量转换成对应于这一压力的标准工业测量信号(4~20)mA。超压时膜片直接贴到坚固的陶瓷基体上,由于膜片与基体的间隙只有0.1mm,过载时膜片的最大位移只能是0.1mm,所以从结构上保证了膜片不会产生过大变形。

Two FBGs are attached radially and circumferentially to a metal diaphragm respectively, and when temperature and pressure change, the peak wavelength of the FBGs will shift.

分别將光纤Bragg光柵沿膜片的径向和环向粘贴在膜片上,当温度发生变化或者膜片受到压力作用时,都会引起光纤Bragg光柵峰值波长偏移。

This in vivo study was to examine the historical changes of implanted novel chitosan/collagen composite barrier for confirming the clinical feasibility. Four other commercial GTR membranes were chosen for comparison. Among the resorbable GTR membranes, BioMend Extend and Peri-Aid are collagen base, and GORE-TEX OSSEOQUEST is synthesized membrane, while GORE-TEX e-PTFE (Expanded polytetrafluoroethylene) is synthesized but non-resorbable. Beagle dogs were used as animal model. Buccal mucoperiosteal flaps were reflected in the bilateral mandibular premolar and molar areas. Buccal alveolar bone was reduced on 1st、2nd premolar and molar to a level 5 mm apical to the cemento-enemel junction. Root surface was denuded of periodontal ligament and cementum, and notches were placed at the bone level of each root. The tested GTR barriers were implanted in critical bone defect areas. Flaps were coronally positioned and sutured. Two beagle dogs were sacrificed each time as the designed time period after surgery. Histological and histometirc evaluation at 7 days、14 days、28 days、3 months were performed post-operatively to determine the healing response of each treatment modality.

本研究之目的在评估与工研院生医中心合作发展出可吸收性去乙醯几丁聚醣/胶原蛋白复合之组织导引再生膜片,并选择与可吸收性之BioMend Extend 及Peri-Aid 胶原蛋白膜片,和GORE-TEX OSSEOQUEST 合成高分子膜片,及不可吸收之GORE-TEX e-PTFE合成高分子膜片,等其他四种市售商品材料共同对照评估,应用8只年龄为12个月的雄性小猎犬,均分4组(分别为7天、14天、28天、3个月),为动物活体评估模式,在实验犬之左、右下颚第一、二小臼齿及大臼齿的颊侧区制造骨缺损后,分别植入组织导引再生膜片,依实验设定时间将小猎犬牺牲,取下缺损区骨头,以光学显微镜观察量测其牙垩质再生高度与齿槽骨再生高度之变化,以探讨其组织再生模式及评估新膜片在临床应用之适用性。

In this study, we hoped to clarify the mechanisms of pitch control in the pneumatic artificial larynx. METHODS: Three fluent Mandarin speakers using pneumatic artificial larynx devices were studied following total laryngectomies. They were asked to produce sounds in different pitches by following scales upward and downward.

使用气动式人工喉的音调控制,只能透过呼出气流通过橡皮膜片下压力的大小来控制振动的基本频率,本研究即在探讨橡皮膜片振动频率是否也像声带振动一样受到橡皮膜片驱动压力的影响,测量喉全切除患者在使用气动式人工喉发声时之橡皮膜片驱动压力和声音基本频率,并探讨此些病人在发声时之音调控制的原理。

After removing the above stuff, check diaphragm and ○-ring is damaged; Do not be divided without damage to the internal parts on their own struggle.

如发现膜片或○型圈有损坏,请将轴芯上的螺帽松脱,逐浙分解出膜片或型圈,取出后重新换上新的膜片或○型圈。

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