Hangzhou Altrasonic Technology Co., Ltd

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Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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Hangzhou Altrasonic Technology Co., Ltd
Province/State:zhejiang
Country/Region:china
Contact Person:MsHogo Lv
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Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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Brand Name :Altrasonic
Model Number :HS-M2010
Certification :CE
Place of Origin :China
MOQ :1 set
Payment Terms :T/T, Western Union
Supply Ability :200 sets per month
Packaging Details :Carton or Wooden case
Power :500W
Frequency :20Khz/40Khz
Generator :Digital
Application :Ultrasonic Machining
Components :Digital Generator, Transducer, Booster, Horn
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Micromachined and Mico Structured Glass Process with Ultrasonic Tool Holder CAT40

Technical Parameters:

Product shape: milling machine handle

Resonance point amplitude: 10um or more;

Speed: 3000 r / min or less

Matching tool: carbide end mill head Φ2-Φ13; disk cutter Φ50;

Power: 500W

Frequency 20 Khz/40Khz
Output Power 500 W
Voltage 220 V
Switch Handle or foot switch
Power Adjusting Step or continuous
Working Time Control 24 Hours
Weight 30 KG
Application Ultrasonic drilling
Generator Digital Generator
Length of cable 5M

Ultrasonic Machining

Ultrasonic assisted machining is a recently-developed technique, in which high-frequency (> 20 kHz) vibration is superimposed onto the movement of a standard drill bit in the axial direction, providing advantages including reduced drilling forces (reduction often in excess of 80%) and improved quality of drilled holes when compared to conventional drilling. Ultrasonic assisted drilling also achieves a reduction in entry and exit delamination size, but not in the expected proportion considering the observed reduction of drilling forces. A different mechanical process to that in conventional drilling may be driving the delamination in Ultrasonic assisted drilling, for example dynamic or thermal effects in addition to thrust and torque loads.

The aim of this project is to achieve a mechanical understanding of the process that drives delamination during Ultrasonic assisted drilling and to implement it in an analytical model and numerical tools with predictive ability. These can then be used to enhance Ultrasonic assisted drilling to minimise delamination and to predict the performance of hybrid joints with Ultrasonic assisted drilling-induced damage.

Principle:

Ultrasonic machining offers a unique blend of capabilities, quality and material compatibility for the machining of engineered ceramics and advanced technical materials. The process is versatile, offering flexibility to meet a wide range of design requirements, and yields high-quality parts with little or no subsurface damage and no heat-affected zone. These benefits make it a valuable resource for the scientists, engineers and designers who are developing tomorrow’s advanced technologies.

Applications

  • Glass TRIANGULAR CAVITY
  • Sapphire
  • Alumina
  • Ferrite
  • PCD
  • Piezoceramics
  • Quartz
  • CVD Silicon Carbide
  • Ceramic Matrix Composites
  • Technical Ceramics

Micromachined and Mico Structured Glass Process with Ultrasonic Tool Holder CAT40

Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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Mico Structured Glass Ultrasonic Assisted Machining with Ultrasonic Tool Holder CAT40

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