[go: up one dir, main page]

Gao et al., 2021 - Google Patents

Numerical simulation and experiment for the ultrasonic field characteristics of ultrasonic standing wave atomization

Gao et al., 2021

Document ID
6813035813367779661
Author
Gao S
Guo S
Dong G
Wang H
Publication year
Publication venue
Journal of the Brazilian Society of Mechanical Sciences and Engineering

External Links

Snippet

Ultrasonic standing wave atomization (USWA) can obtain micron-sized spherical droplets from high viscosity or high surface energy liquids, which mainly depend on the high-energy density of a sound field. In this paper, the formation of an ultrasonic field can be generated …
Continue reading at link.springer.com (other versions)

Similar Documents

Publication Publication Date Title
Zhang et al. An integrated dual ultrasonic selective powder dispensing platform for three-dimensional printing of multiple material metal/glass objects in selective laser melting
Ning et al. Ultrasonic vibration-assisted laser engineered net shaping of inconel 718 parts: microstructural and mechanical characterization
Hadad et al. A novel approach to improve environmentally friendly machining processes using ultrasonic nozzle–minimum quantity lubrication system
Yin et al. Development and optimization of ultrasonic elliptical vibration cutting device based on single excitation
Ning et al. Ultrasonic frequency effects on the melt pool formation, porosity, and thermal-dependent property of Inconel 718 fabricated by ultrasonic vibration-assisted directed energy deposition
Grigoriev et al. Effect of cavitation erosion wear, vibration tumbling, and heat treatment on additively manufactured surface quality and properties
Kang et al. A lens ultrasonic vibration-assisted laser machining system for laser polishing and laser drilling of 304 stainless steel
Wang et al. Droplets generator: Formation and control of main and satellite droplets
Gao et al. Numerical simulation and experiment for the ultrasonic field characteristics of ultrasonic standing wave atomization
Gao et al. Design and atomization experiments of an ultrasonic atomizer with a levitation mechanism
Gao et al. Design and experiment of low-frequency ultrasonic nozzle integrating air-assistant system and acoustic levitation mechanism
Yuan et al. Experimental study on a two-dimensional ultrasonic vibration platform and milling of Ti2AlNb intermetallic alloy
Feng et al. Preparation of additive manufacturing powder by external field–enabled: a comparative assessment
Liu et al. Design optimization and eigenfrequency tuning of ultrasonic oscillator of one-dimensional longitudinal vibration at high temperature for laser welding
Wang et al. Numerical simulation and verification of acoustic–fluid coupling in multi-source ultrasound enhancement processes
Kadekar et al. Deposition technologies for micromanufacturing: a review
Mahravan et al. Analysis of free surface oscillations of a droplet due to ultrasonic wave impingement
Tsai et al. Silicon-based megahertz ultrasonic nozzles for production of monodisperse micrometer-sized droplets
Li et al. Holographic surface-acoustic-wave tweezers for functional manipulation of solid or liquid objects
Xing et al. Research on ultrasonic vibration–assisted micro-EDM milling of microgrooves with large aspect ratio
Lin et al. The numerical research on the effect of ultrasonic field on metallic powders produced by the ultrasonic-assisted electrical discharge process
Cheng et al. Sound absorption of metallic sound absorbers fabricated via the selective laser melting process
Zhang et al. Development of an ultrasonic vibration-assisted MQL device and its effects on the milling performance of ultra-high strength steel
US11491569B1 (en) Multidirectional synchronized ultrasonic devices and methods for assisting wire arc additive manufacturing
Vincent et al. Calibration of the axial stiffness of a single-beam acoustic tweezers