Visoria P, DM750P 및 DM4P 편광 현미경

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Radially grown sugar crystals which have been imaged with a Leica microscope using circular polarized light.

Polarizing Microscope Image Gallery

How polarization microscope images can be used for analysis is shown in this gallery. Polarized light microscopy (also known as polarizing microscopy) is an important method for different fields and…
Spherulitic crystals of hippuric acid, a carboxylic acid found in urine, imaged with crossed polarizers showing so-called Maltese crosses. Spherulitic structures are formed by radial crystal growth starting from a central crystal nucleus. Image recorded with a DM4 P microscope using transmitted light, 20x Plan Fluotar objective, and polarizers.

A Guide to Polarized Light Microscopy

Polarized light microscopy (POL) enhances contrast in birefringent materials and is used in geology, biology, and materials science to study minerals, crystals, fibers, and plant cell walls.
Leitz Laborlux: Tartaric acids, polarization contrast

The Polarization Microscopy Principle

Polarization microscopy is routinely used in the material and earth sciences to identify materials and minerals on the basis of their characteristic refractive properties and colors. In biology,…

Rate the Quality of Your Steel: Free Webinar and Report

This webinar and report describe optimal microscopy solutions for rating steel quality in terms of non-metallic inclusions and reviews the various international and regional standards concerning…

Metallography – an Introduction

This article gives an overview of metallography and metallic alloy characterization. Different microscopy techniques are used to study the alloy microstructure, i.e., microscale structure of grains,…
Measuring grains size with Abrams Three-Circle Procedure.

How to Adapt Grain Size Analysis of Metallic Alloys to Your Needs

Metallic alloys, such as steel and aluminum, have an important role in a variety of industries, including automotive and transportation. In this report, the importance of grain size analysis for alloy…

Metallography with Color and Contrast

The examination of microstructure morphology plays a decisive role in materials science and failure analysis. There are many possibilities of visualizing the real structures of materials in the light…

Quality as Clear as Glass - Polarizing Microscopy in Glass Production

An exquisite beverage deserves a high-quality glass. Even the ancient Romans made artistically crafted drinking glasses. In the Middle Ages, Venetian glassmakers were famous for the purity of their…

재료 분석 현미경

재료 분석에는 금속 합금, 반도체, 유리 및 세라믹뿐만 아니라 플라스틱 및 폴리머와 같은 다양한 소재의 이미징, 측정 및 특성 분석을 위한 현미경 솔루션이 필요합니다.

Fields of Application

금속 산업

금속 산업을 위한 라이카의 현미경 솔루션은 소재의 품질을 평가하고 적용될 수 있는 표준을 준수하는지 확인하는 데 유용합니다.

재료 및 지구 과학

신뢰 할 수 있는 고품질의 이미징 및 분석을 위해서는 올바른 도구가 필요합니다. 라이카사의 현미경시스템은 귀하의 모든 연구를 해결하기 위한 유일한 해결책입니다. 현지전문가의 지원과 함께 귀하에 적합한 시스템을 설계하기 위해서 가장 광범위한 광학. 이미징 시스템, 소프트웨어 및 인체 공학적 액세서리를 제공할 것입니다.
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