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Investigation into temperature field of nano-zirconia ceramics precision grinding

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TLDR
In this article, a heat transfer model for the precision grinding process on nano-zirconia ceramics has been investigated, and the effect of temperature dependent thermal properties and heat flux profile on temperature distribution in the workpiece has also been investigated.
Abstract
A heat transfer model for the precision grinding process on nano-zirconia ceramics has been investigated. Based on the analysis of the processing properties of nano-zirconia ceramic materials, a theoretical model for the temperature field in the grinding of nano-zirconia ceramics was established. The model was then simulated and analysed under different grinding conditions. The effect of temperature dependent thermal properties and heat flux profile on temperature distribution in the workpiece has also been investigated. Parametric studies were carried out to study the effect of different input parameters such as the depth of cut, work feed rate and grinding speed on temperature distribution in the contact zone and in the workpiece across the grinding width and along the direction of movement. The results showed that, as the grinding wheel cut into the workpiece, the workpiece temperature rose sharply, and then levelled-off, with a high temperature gradient on the surface of workpiece. As the grinding depth of cut increased, a local high temperature took place in the grinding contact zone.

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Recent applications of nanomaterials in prosthodontics

TL;DR: In this paper, the latest research progress on the applications of nanometals, nanoceramic materials, nanoresin materials, and other nanomaterials in prosthodontics was reviewed, which not only gives a detailed description of the new related investigations, but also hopefully provides important elicitation for future researches in this field.
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Modeling the operation of a common grinding wheel with nanoparticle jet flow minimal quantity lubrication

TL;DR: In this paper, the authors investigated the surface topography of a single grinding wheel under nanoparticle jet flow minimal quantity lubrication and found that the peaks and valleys on the profile curve of the workpiece surface increase and the corresponding R� a� and R� z heights decrease as the peripheral velocity of the grinding wheel increases.
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Grinding model and material removal mechanism of medical nanometer zirconia ceramics.

TL;DR: The critical conditions for the transfer of brittle and plastic removal in nano-zirconia ceramic grinding as well as the high-quality surface grinding of medical nanometer zirconian ceramics by ELID grinding are analyzed.
Journal ArticleDOI

Investigation into Engineering Ceramics Grinding Mechanism and the Influential Factors of the Grinding Force

TL;DR: In this article, the formation of the grinding force was analyzed from the perspective of material removal mechanism in a ceramic grinding model and the grinding process of engineering ceramics, and the authors provided further knowledge and development of ceramic grinding.
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Analytical and experimental investigation of grinding fluid hydrodynamic pressure at wedge-shaped zone

TL;DR: In this paper, theoretical hydrodynamic pressure modelling was applied to induce a flow of coolant fluid through the grinding zone during flood delivery grinding, and the simulation results showed that hydrodynamics pressure was proportional to the wheel velocity and inversely proportional to minimum gap between the wheel and the workpiece surface.
References
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Book

Grinding Technology: Theory and Applications of Machining with Abrasives

TL;DR: In this paper, the authors present a critical and unified picture of the grinding process and how its use brings part quality in harmony with customer expectations, as well as a shop-floor reference.
Journal ArticleDOI

Energy Partition to the Workpiece for Grinding with Aluminum Oxide and CBN Abrasive Wheels

TL;DR: In this paper, an experimental investigation of the energy partition to the workpiece for grinding of steels with aluminum oxide and cubic boron nitride (CBN) abrasive wheels was conducted.
Journal ArticleDOI

Simulation of thermal stresses due to grinding

TL;DR: In this paper, an efficient finite element procedure was developed to calculate the temperatures and stresses arising due to a moving source of heat, which was applied to calculating the thermal stresses produced in hardened steels during grinding.
Journal ArticleDOI

High Efficiency Deep Grinding of a Low Alloy Steel with Plated CBN Wheels

TL;DR: In this paper, high efficiency deep grinding (HEDG) of a low alloy steel (51CrV4) has been carried out on an Edgetek 5-axis CNC grinding machine, using electroplated CBN wheels.
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