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Rotary Ultrasonic Machining of Difficult-to-machine Materials

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Release : 2020
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Book Synopsis Rotary Ultrasonic Machining of Difficult-to-machine Materials by : Palamandadige Fernando

Download or read book Rotary Ultrasonic Machining of Difficult-to-machine Materials written by Palamandadige Fernando. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt: High-performance materials such as composite materials, metal alloys, and advanced ceramics are attractive to engineering applications in aerospace, automobile and sport industries. Materials with superior properties are often difficult-to-machine due to their high strength, high hardness, and high toughness, which make the cutting force and temperature at the cutting interface very high and result to a short tool life. This limits their market expansion due to the high cost of machining with current machining procedures. However, the demand for high-performance materials is increasing in certain industries such as aerospace and automotive. In addition to machining of high performance materials, some of the conventional materials such as rocks also can be categorized into difficult-to-machine materials. Some causes which made rock drilling complicated are expose to several rock types in a single drilling, an infinite variability of rock properties, relatively high hardness and high abrasiveness of rocks, friction between rock and tool, severe wear and damage to tools etc. Therefore, it is crucial to develop more cost-effective machining processes for difficult-to-machine materials. Rotary ultrasonic machining (RUM), a hybrid non-traditional machining process combining the material removal mechanisms of abrasive grinding and ultrasonic machining, has the potential for low-cost and high quality machining of difficult-to-machine materials. Researchers have shown that RUM can attain a higher material removal rate than both ultrasonic machining (USM) and grinding. RUM can also drill deep holes with high accuracy, improved surface finish, and low cutting force and torque. The objectives of this research are to investigate the relationships between input variables and output variables of RUM of difficult-to-machine materials, to study the measurement methods of ultrasonic vibration amplitude and the effects of tool natural frequency on ultrasonic vibration amplitude, and to model RUM of rocks. In this dissertation, research has been conducted by experimental, numerical, and theoretical investigations on output variables including cutting force, torque, surface roughness, edge chipping, and delamination. The goal of this research is to provide new knowledge based on machining difficult-to-machine materials on RUM in order to improve the quality of the machined holes while decreasing the machining cost and to study the effects of machining variables (feedrate, tool rotation speed, and ultrasonic power) and tool variables (abrasive size and concentration, tool diameter, and tool geometry) on output variables. This dissertation firstly provides the introduction to difficult-to-machine materials and rotary ultrasonic machining. After that Chapter 2 investigates the effects of input variables on cutting force, torque, and surface roughness, and study the effects of machining variables, tool end angle, and the use of a backing plate on the delamination of RUM of CFRP. Chapter 3 studies the comparison between intermittent RUM and continuous RUM when machining K9 glass from the perspectives of cutting force, surface roughness, and chipping size. Chapter 4 investigates the effects of input variables on cutting force, torque, surface roughness, and edge chipping of the RUM of basalt, travertine, and marble, and development of a mechanistic predictive cutting force model for RUM of rocks based on the ductile mode removal and brittle fracture mode removal of rock under the indentation of a single abrasive particle. Chapter 5 discusses the effects of tool natural frequency on ultrasonic vibration amplitude. Finally, conclusions and contributions on RUM drilling are discussed in Chapter 6.

Rotary Ultrasonic Machining

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Release : 2021-02-19
Genre : Technology & Engineering
Kind : eBook
Book Rating : 446/5 ( reviews)

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Book Synopsis Rotary Ultrasonic Machining by : Marcel Kuruc

Download or read book Rotary Ultrasonic Machining written by Marcel Kuruc. This book was released on 2021-02-19. Available in PDF, EPUB and Kindle. Book excerpt: This book covers the process and conditions of Rotary ultrasonic machining (RUM) of hard materials and summarizes the recommendation of proper machining parameters. The optimum conditions were applied for cutting edge preparation of CBN cutting inserts. The results presented in the book show that RUM is able to create controlled cutting edge preparation.

Drilling Small Holes in Hard-to-Machine Materials by Rotary Ultrasonic Machining

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Release : 2000
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Book Synopsis Drilling Small Holes in Hard-to-Machine Materials by Rotary Ultrasonic Machining by : Clyde Treadwell

Download or read book Drilling Small Holes in Hard-to-Machine Materials by Rotary Ultrasonic Machining written by Clyde Treadwell. This book was released on 2000. Available in PDF, EPUB and Kindle. Book excerpt:

Rotary Ultrasonic Machining of Hard-to-machine Materials

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Release : 2010
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Book Synopsis Rotary Ultrasonic Machining of Hard-to-machine Materials by : Nikhil Churi

Download or read book Rotary Ultrasonic Machining of Hard-to-machine Materials written by Nikhil Churi. This book was released on 2010. Available in PDF, EPUB and Kindle. Book excerpt: Titanium alloy is one of the most important materials used in major segments of industries such as aerospace, automobile, sporting goods, medical and chemical. Market survey has stated that the titanium shipment in the USA has increased significantly in last two decades, indicating its increased usage. Industries are always under tremendous pressure to meet the ever-increasing demand to lower cost and improve quality of the products manufactured from titanium alloy. Similar to titanium alloys, silicon carbide and dental ceramics are two important materials used in many applications. Rotary ultrasonic machining (RUM) is a non-traditional machining process that combines the material removal mechanisms of diamond grinding and ultrasonic machining. It comprises of a tool mounted on a rotary spindle attached to a piezo-electric transducer to produce the rotary and ultrasonic motion. No study has been reported on RUM of titanium alloy, silicon carbide and dental ceramics. The goal of this research was to provide new knowledge of machining these hard-to-machine materials with RUM for further improvements in the machining cost and surface quality. A thorough research has been conducted based on the feasibility study, effects of tool variables, effects of machining variables and wheel wear mechanisms while RUM of titanium alloy. The effects of machining variables (such as spindle speed, feed rate, ultrasonic vibration power) and tool variables (grit size, diamond grain concentration, bond type) have been studied on the output variables (such as cutting force, material removal rate, surface roughness, chipping size) and the wheel wear mechanisms for titanium alloy. Feasibility of machining silicon carbide and dental ceramics is also conducted along with a designed experimental study.

Experimental Investigation of Hard and Brittle Materials Machining Using Using Micro Rotary Ultrasonic Machining

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Release : 2012
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Book Synopsis Experimental Investigation of Hard and Brittle Materials Machining Using Using Micro Rotary Ultrasonic Machining by : Amey V. Patwardhan

Download or read book Experimental Investigation of Hard and Brittle Materials Machining Using Using Micro Rotary Ultrasonic Machining written by Amey V. Patwardhan. This book was released on 2012. Available in PDF, EPUB and Kindle. Book excerpt:

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