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1.
Micromachines (Basel) ; 11(3)2020 Mar 19.
Article in English | MEDLINE | ID: mdl-32204493

ABSTRACT

This paper presents a novel fabrication process that allows integration of polydimethylsiloxane (PDMS)-based microfluidic channels and metal electrodes on a wafer with a micrometer-range alignment accuracy. This high level of alignment accuracy enables integration of microwave and microfluidic technologies, and furthermore accurate microwave dielectric characterization of biological liquids and chemical compounds on a nanoliter scale. The microfluidic interface between the pump feed lines and the fluidic channels was obtained using magnets fluidic connection. The tube-channel interference and the fluidic channel-wafer adhesion was evaluated, and up to a pressure of 700 mBar no leakage was observed. The developed manufacturing process was tested on a design of a microwave-microfluidic capacitive sensor. An interdigital capacitor (IDC) and a microfluidic channel were manufactured with an alignment accuracy of 2.5 µm. The manufactured IDC sensor was used to demonstrate microwave dielectric sensing on deionized water and saline solutions with concentrations of 0.1, 0.5, 1, and 2.5 M.

2.
Sensors (Basel) ; 20(6)2020 Mar 18.
Article in English | MEDLINE | ID: mdl-32197364

ABSTRACT

This work presents a novel platform conceived as an interconnect box (ICB) that brings high-frequency signals from microwave instruments to consumable lab-on-a-chip devices. The ICB can be connected to instruments with a standard coaxial connector and to consumable chips by introducing a spring-levered interface with elastomer conductive pins. With the spring-system, microwave-microfluidic chips can be mounted reliably on the setup in a couple of seconds. The high-frequency interface within the ICB is protected from the environment by an enclosure having a single slit for mounting the chip. The stability and repeatability of the contact between the ICB and inserted consumable chips are investigated to prove the reliability of the proposed ICB. Given the rapid interconnecting of chips using the proposed ICB, five different interdigital capacitor (IDC) designs having the same sensing area were investigated for dielectric permittivity extraction of liquids. The designed IDCs, embedded in a polydimethylsiloxane (PDMS) channel, were fabricated with a lift-off gold patterning technology on a quartz substrate. Water-Isopropanol (IPA) mixtures with different volume fractions were flushed through the channel over IDCs and sensed based on the measured reflection coefficients. Dielectric permittivity was extracted using permittivity extraction techniques, and fitted permittivity data shows good agreement with literature from 100 to 25 GHz.

3.
Sensors (Basel) ; 19(3)2019 Feb 10.
Article in English | MEDLINE | ID: mdl-30744177

ABSTRACT

This paper proposes a miniature microwave-microfluidic chip based on continuous microfluidics and a miniature interdigital capacitor (IDC). The novel chip consists of three individually accessible heaters, three platinum temperature sensors and two liquid cooling and mixing zones. The IDC is designed to achieve localized, fast and uniform heating of nanoliter volumes flowing through the microfluidic channel. The heating performance of the IDC located on the novel chip was evaluated using a fluorescent dye (Rhodamine B) diluted in demineralized water on a novel microwave-optical-fluidic (MOF) measurement setup. The MOF setup allows simultaneous microwave excitation of the IDC by means of a custom-made printed circuit board (connected to microwave equipment) placed in a top stage of a microscope, manipulation of liquid flowing through the channel located over the IDC with a pump and optical inspection of the same liquid flowing over the IDC using a fast camera, a light source and the microscope. The designed IDC brings a liquid volume of around 1.2 nL from room temperature to 100 °C in 21 ms with 1.58 W at 25 GHz. Next to the heating capability, the designed IDC can dielectrically sense the flowing liquid. Liquid sensing was evaluated on different concentration of water-isopropanol mixtures, and a reflection coefficient magnitude change of 6 dB was recorded around 8.1 GHz, while the minimum of the reflection coefficient magnitude shifted in the same frequency range for 60 MHz.

4.
Ultrason Sonochem ; 34: 947-952, 2017 01.
Article in English | MEDLINE | ID: mdl-27773325

ABSTRACT

Al-50Si alloys were joined by rapid ultrasound-induced transient-liquid-phase bonding method using Zn foil as interlayer at 390°C in air, below the melt point of interlayer. The fracture of oxide films along the edge of Si particles led to contact and inter-diffusion between aluminum substrate and Zn interlayer, and liquefied Zn-Al alloys were developed. The width of Zn-Al alloys gradually decreased with increasing the ultrasonic vibration time due to liquid squeezing out and accelerated diffusion. A stage of isothermal solidification existed, and the completion time was significantly shortened. In the liquid metal, the acoustic streaming and ultrasonic cavitations were induced. As the process developed, much more Si particles, which were particulate-reinforced phases of Al-50Si, gradually migrated to the center of soldering seam. The highest average shear strength of joints reached to 94.2MPa, and the fracture mainly occurred at the base metal.

5.
Zhongguo Yi Liao Qi Xie Za Zhi ; 38(2): 149-51, 2014 Mar.
Article in Chinese | MEDLINE | ID: mdl-24941785

ABSTRACT

This paper analyzes the characteristics of medical equipment's preventive maintenance, and it expounds the objective and methods of introducing risk management to medical equipment's preventive maintenance,what's more,the problem of establishment object and cycle of preventive maintenance was solved scientifically.


Subject(s)
Equipment and Supplies, Hospital , Maintenance , Risk Assessment
6.
Zhongguo Yi Liao Qi Xie Za Zhi ; 37(1): 68-71, 2013 Jan.
Article in Chinese | MEDLINE | ID: mdl-23668049

ABSTRACT

Based on HRP (Hospital Resource Planning) system's device management module, A new online information management system is proposed and realized to meet the new challenge of medical devices' repairing and maintenance. the traditional telephone report or online report can all be deal. the repair progress can be visualized in real time PM planning and it's early warning are added.


Subject(s)
Equipment and Supplies, Hospital , Maintenance and Engineering, Hospital
7.
Zhongguo Yi Liao Qi Xie Za Zhi ; 31(4): 295-6, 2007 Jul.
Article in Chinese | MEDLINE | ID: mdl-17969515

ABSTRACT

This paper analyses the defects of bubble oxygen inhalators currently used, and investigates into their solutions for improvement.


Subject(s)
Oxygen Inhalation Therapy/instrumentation , Oxygen Inhalation Therapy/methods , Oxygenators/standards
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