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Supplier: Bielomatik, Inc.
Description: No Description Provided
- Equipment Type: Ultrasonic Welding
- Equipment Type: Complete System
Supplier: Interplex Industries, Inc.
Description: Interplex's decorative surface finish capabilities include physical vapor deposition (PVD), anodizing, sand blasting, diamond cutting and laser marking, commonly used for mobile device (cell phone) housings and other consumer electronics products. The company also provides Vacuum Metallization
- Painting Processes: Coil / Roll Coating, Powder Coating, Spray Coating, General Painting
- Functional Performance: Conductive, Reflective, Wear / Erosion Resistant
- Substrate Capabilities: Aluminum, Copper / Copper Alloys, Glass, Iron / Cast Iron, Metal, Nickel / Nickel Alloys, Plastic, Precious Metals, Stainless Steel, Steel / Steel Alloys, Titanium, Specialty / Other
- Additional Services / Surface Prep: Pressure / Spray Washing, Sanding / Grinding, Stripping / Coating Removal, Ultrasonic Cleaning
Supplier: ASTM International
Description: Ultrasonic Wave Measurements of Elastic Moduli E, G, and μ for Product Development and Design Calculations Volume 26, Issue 3 (May 1998) A technique is presented to measure the isotropic elastic constants of small specimens using instrumentation designed for the ultrasonic measurement
Supplier: Spire Metering Technology
Description: performance and a richer feature set, all at a lower price. The TP10 system is consisted of a high performance ultrasonic flowmeter EF10 and a pair of standard PT100 temperature sensors. The ultrasonic flowmeter is based on our cutting-edge clamp-on flow measurement technology, which is capable
Supplier: Associated Pacific Machine Corp.
Description: and troubleshooting. 1,000 sheet capacity auto-loader that is hand-trolley accessible. Installation of user supplied anti-static sheet and overlay cleaners. Optical sensor controlled overlay accuracy. Seperate sensors for normal and magnetic tape overlay. Eight point ultra-sonic spot welding
Supplier: Impreglon, Inc.
Description: and Color • Excellent Adhesion • High Chemical Resistance • Category 3 Biocompatibility • Improved Cutting Edge Retention • Negligible Dimensional Changes Environmentally friendly, low temperature PVD processes can be applied to most metals, alloys and metallic compounds
- Thin Film Processes: Physical Vapor Deposition (PVD), Plasma Etching / Cleaning, Titanium Nitride Coating
- Hard Coating / Treatment: Yes
- Material Selection / Design Assistance: Yes
- Research & Development: Yes
Supplier: M&P Manufacturing USA, Inc.
Description: specifications. Our complete in-house tool shop gives us the abilityto respond rapidly to customer needs and changes. It also gives us totalcontrol over the quality and schedule of the final product. M&Poffers secondary operations such as plating, ultrasonic welding and inserting,painting
- Services: Assembly Services, Design Assistance / Review, Tool Making, High Volume Production, Prototype / Short Run, Specialty Packaging
- Materials: ABS, Acrylic, Nylon / Polyamide, Polycarbonate, PPE/PPO, Polyurethane / Urethane, PVC
- Processes: Cold Extrusion, Hot Extrusion
- Secondary Operations: Bending/Forming, Cutting, Drilling/Punching, Embossing, Machining, Painting / Powder Coating, Printing / Labeling, Tape/Adhesive Application
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All Metals & Forge Group, LLC
Nickel, Cobalt and Specialty Alloys
length and 20,000 lbs. Forged-in steps or contours to reduce finish machining time and material waste. Quenching and tempering, normalizing, or annealing of forgings. We offer value-added services, including rough machining, heat treating, cutting, machining, rolling and welding to ensure that your finished product is delivered to you ready for finish machining. All forgings are rough machined to your forging print and include mill test reports (MTRs), reports on mechanical and physical properties... (read more)
Browse Nickel and Nickel Alloys Datasheets for All Metals & Forge Group, LLC
All Metals & Forge Group, LLC
Forging Services - Stainless Steel Forging
offer value-added services, including rough machining, heat treating, cutting, machining, rolling and welding to ensure that your finished product is delivered to you ready for finish machining. All forgings are rough machined to your forging print and include mill test reports (MTRs), reports on mechanical and physical properties, and ultrasonic, X-ray and non-destructive testing (NDT) reports as ordered or specified. Why Industries use Stainless Steel Forgings. Stainless steel has virtually... (read more)
Browse Stainless Steel Alloys Datasheets for All Metals & Forge Group, LLC
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Medical Device Link .
developed a variety of technologies to achieve this goal. One firm is introducing ultrasonic machining equipment to the U.S. market, claiming that it is a productivity-boosting tool for the precise machining of ceramic, silicone, and glass materials. Another supplier has designed a grinding machine
MICRO:Top 40 (Nov '99)
diameters of 1/8 to 1 in. With two-axis cutting capability, the tool enables weld sampling or coupon cutting of high-purity stainless tubing. The saw does not deform tube ends. Features include a clamping vise,
MICRO:Top 40 (Nov '99)
diameters of 1/8 to 1 in. With two-axis cutting capability, the tool enables weld sampling or coupon cutting of high-purity stainless tubing. The saw does not deform tube ends. Features include a clamping vise, a
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Materials Processing Technology II
It analyzed the forming principle of the corresponding curved surface according to the special ultrasonic cutting tool and cutting method, and established a corresponding error.
Ultrasound Technologies for Food and Bioprocessing
At present, an efficient and stable performance, and a limitation of secondary effects (for example, noise, heating) are the main targets for designing and optimizing ultrasonic cutting tools (Cardoni and Lucas, 2002, 2005; Cardoni et al., 2004, 2006; Lucas et al., 2001 …
Silicon micromachined ultrasonic scalpel for the dissection and coagulation of tissue
In general, it is assumed that ultrasonic cutting tools dis- perse less energy into neighboring tissue and cause less prox- imal lateral damage and tissue necrosis compared to current high-frequency technologies (Metternich et al. 2003, Amaral 1994, Boddy et al. 1987).
Characterisation of bone following ultrasonic cutting
Previous work using a direct ultrasonic cutting tool , with a saw-toothed edge, demonstrated that the cancellous bone tended to damp down the oscillations .
Springer Handbook of Mechanical Engineering
Lucas, J.N. Petzing, A. Cardoni, L.J. Smith: Design and characterisation of ultrasonic cutting tools , Ann.
Qualitative Process Evaluation for Ultrasonic Cutting of Food
The investigations described here were carried out with a longitudinal oscillating ultrasonic cutting tool with the oscillation direction parallel to the feed direction.
MEMS: A Practical Guide to Design, Analysis, and Applications
micromotors have been used in surgical applications (e.g., a smart force- feedback knife and an ultrasonic cutting tool ).
Strategies for Reducing Stress in Ultrasonic Cutting Systems
… of gaining a fundamental understanding of the dynamic responses, using the measurement and modelling techniques offered by 3D laser Doppler vibrometer (LDV) measurements and finite element analysis (FEA), allows the design of tuned multiple- component ultrasonic cutting tools capable of delivering the …
Osteoblast viability and detachment following exposure to ultrasound in vitro
Lasers and pressurized water jets are also able to provide similar precision to the ultrasonic cutting tools [9, 10].
An Ultrasonic Trepanning Technique for Radial Sampling of Ceramic Fuel Pellets
An ultrasonic cutting tool and its centering ring.
CR4 - Thread: Ultrasonic Cutting and Welding
We made a ultrasonic cutting tool allows to produce two for each stroke.
Selected Applications of Ultrasonics in Food Processing
Lucas M, Petzing JN, Cardoni A et al (2001) Design and char- acterisation of ultrasonic cutting tools .
Biomedical Engineering and Design Handbook, Volume 1 > BIO MICRO ELECTRO MECHANICAL SYSTEMS—BIOMEMS TECHNOLOGIES
A good example of using MEMS technology in eye surgical devices is the ultrasonic cutting tool which is used for the removal of cataract.