Lewati ke konten
  • 首页
  • 关于我们
  • 为什么选择我们
  • 院系
  • 设施
  • 焦点:即将举办的活动
    • 即将举办的活动
    • 最新信息
  • 报名
  • ZH
    • EN
    • ID
  • 首页
  • 关于我们
  • 为什么选择我们
  • 院系
  • 设施
  • 焦点:即将举办的活动
    • 即将举办的活动
    • 最新信息
  • 报名
  • ZH
    • EN
    • ID

Design and Analysis of Large Amplitude Ultrasonic Atomizer

4 月 27, 2026

Different from the general ultrasonic atomizer
operating at high frequency, the proposed one is driven at much lower
frequency but with larger amplitude. For this application purpose, a
simple structure constructed with a hollow tube encircled with
piezoelectric actuators is considered to use. Instead of using a
ring type of ceramics, three pieces of same size sectional-type of
d33 ceramic actuators are employed around the hollow tube with
equal distance to generate higher radial vibration. While the tube
fixed at both ends is vibrated with assigned vibration mode shape, a
suitable wave is formed to produce larger amplitude in need. The fluid
inside the tube will flow out smoothly from a very small hole
implemented on the largest amplitude of the waveform. Thereafter,
atomization occurs on the tube surface around the hole immediately
while enough oscillation frequency and amplitude is provided. With
such design structure, several cases with different tube length,
resonance frequency, vibration amplitude are investigated for
comparison. Particle size of 5~30μm and uniform spray distribution is
the target for an example of industry-used spray fluid with viscosity of
about 8~12cp. A measurement system is set up including high speed
camera, laser as a light source, and software Image J for estimation of
particle size and particle distribution. Water is used for experimental
testing in this study. While drives the hollow tube with operating
frequency of 45.3 kHz and the maximum amplitude is great than
6.8μm, atomization occurs with average particle diameter of 28.3μm
and good uniformity and distribution. However, increasing vibration
amplitude, on the contrary, the diameter of the particle becomes larger.
For example, while increases amplitude up to 9μm, atomization occurs
with average particle diameter of 34μm, and the uniformity and
distribution becomes worse. This interesting phenomenon may result
from large amplitude at enough vibration frequency easily makes
atomization occur but large amplitude engenders with large particle
diameter.

Facebook
LinkedIn
WhatsApp
Email
重要链接
  • 彼得拉彼得拉基督大学电子期刊
  • 彼得拉彼得拉基督大学就业中心
  • 彼得拉基督大学数字图书馆
  • 2021年 AMME国际研讨会
  • 《国际工业研究与应用工程学报
  • Facebook
  • Instagram
  • 《机械工程学报》
  • 电子书下载:《从校园世界到世界角落》
  • Landing Page
  • 彼得拉彼得拉基督大学电子期刊
  • 彼得拉彼得拉基督大学就业中心
  • 彼得拉基督大学数字图书馆
  • 2021年 AMME国际研讨会
  • 《国际工业研究与应用工程学报
  • Facebook
  • Instagram
  • 《机械工程学报》
  • 电子书下载:《从校园世界到世界角落》
  • Landing Page

奖学金

作为世界著名的基督教大学,彼得拉基督大学致力于培养来自不同的家庭、文化等背景的人才。

了解更多

常见问题解答

了解财务义务、国际学生要求等常见问题的答案,请访问以下页面。

了解更多
Facebook Instagram Youtube Tiktok
地址

Jl. Siwalankerto No.121-131, Siwalankerto, Kec. Wonocolo, Kota SBY, Jawa Timur 60236

联系我们

T 电话: +62 31 8494830
+62 31 8494831,
+62 31 8439040,
+62 31 2983000

F 传真: +62 31 8436418
E 邮箱: [email protected]

重要链接
  • 彼得拉彼得拉基督大学电子期刊
  • 彼得拉彼得拉基督大学就业中心
  • 彼得拉基督大学数字图书馆
  • 2021年 AMME国际研讨会
  • 《国际工业研究与应用工程学报
  • Facebook
  • Instagram
  • 《机械工程学报》
  • 电子书下载:《从校园世界到世界角落》
  • Landing Page
  • 彼得拉彼得拉基督大学电子期刊
  • 彼得拉彼得拉基督大学就业中心
  • 彼得拉基督大学数字图书馆
  • 2021年 AMME国际研讨会
  • 《国际工业研究与应用工程学报
  • Facebook
  • Instagram
  • 《机械工程学报》
  • 电子书下载:《从校园世界到世界角落》
  • Landing Page

Copyright © 2023 Petra Christian University. All rights reserved.