Discover the latest Analytical Routine update for this month! Explore exciting applications like "Analysis of VOC and SVOC Emissions from Automotive Interior Materials" and more. Click the link to dive into the world of cutting-edge analysis techniques: https://lnkd.in/gDqmEn_x #Shimadzu #AnalyticalRoutine #CuttingEdgeAnalysis #VOC #SVOC #AutomotiveMaterials
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What is an Infrared Thermometer? Ⅰ. Introduction To The Principle Of Infrared Thermometer 1. The technology of infrared thermometer plays an important role in the production process, product quality control and monitoring, equipment online fault diagnosis and safety protection, and energy saving, etc. Compared with contact thermometers, infrared thermometers have the advantages of fast response time, non-contact, safe operation and long service life. https://lnkd.in/g7XDAmBN
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If you need to ensure your products aren't negatively affected by temperature fluctuations, thermochromic liquid crystals are very effective. This color-changing technology makes it simple to see what levels they were exposed to during transportation. https://hubs.ly/Q02HmYK10
Temperature Sensitive Liquid Crystal Sheet Kit 6"x12" - Standard Seven temperatures
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ANALYTICAL BALANCE ? ?? Why is impossible to adjust this model Calibrating and adjusting a 4 place analytical is easy. Problems arise when the model has 5 decimal places. EQUIPMENT A 200 g by 0.01 mg resolution and repeatability. The linearity and eccentricity are second to none. STANDARD Span: Mass: 100 g CLASS Suggested class E2 or E1 TOLERANCE E2 ± 0.15 mg E1 ± 0.05 mg 000 ± 0.025 mg SITUATION Full capacity requires 200 g, which doubles the ± tolerance. Using two 100 g with opposite tolerances diminishes them. A one 200 g delivers less uncertainty. DILEMMA An E1 costs a lot more than E2, but offers better tolerance. 200 g ± 0.050 mg (correction it should be ± 0.100 mg) 100 g ± 0.025 mg (correction it should be ± 0.050 mg) A class 000 may be extremely expensive, but delivers 200 g ± 0.025 mg (correction it should be ± 0.050 mg) 100 g ± 0.013 mg (correction it should be ± 0.025 mg) CONCLUSION Regardless of your reference standard, all measurements are altered. Measurements closer to full capacity exhibit larger errors. Lower capacity samples are least affected. #analyticalBalances #balances #laboratoryBalances #weighingIndustry 2024-04-04 4:25 AM UTC+0 ? Weighing Industry 24.028
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Did you know that DFM now offers accredited calibration of electrolytic conductivity across a range from 0.05 μS/cm to 300 mS/cm? Electrolytic conductivity sensors are widely used to monitor water quality. To ensure accurate and compliant measurements, these sensors must be calibrated over a broad range. Traditionally, calibration at higher conductivity values is done at specific points using reference materials. However, DFM has developed a system that allows calibration at any conductivity value by immersing your sensor in the same solution as DFM’s reference cell. Our method is ISO17025 accredited and is traceable to primary standards. Learn more about our electrolytic conductivity calibration services here: https://lnkd.in/dCdgTsYX #Calibration #WaterQuality #AccreditedCalibration #Electrochemistry #Innovation
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?? Did You Know? ?? Most people don’t realize that small bore measuring instruments can detect deviations as tiny as 1 micron! This incredible level of precision is crucial in bearing production, where even the slightest errors can lead to significant performance issues. ??? Our advanced tools are designed to ensure your bearings meet the most exacting standards, helping you avoid costly defects and enhance overall performance. ????? By investing in precision measurement, you can guarantee that every component functions flawlessly, leading to higher efficiency and reliability in your operations. Don’t compromise on quality—let our measuring instruments elevate your production process! ?? Explore more at https://lnkd.in/dGjkkVDV #Gloriousenterprise #PrecisionMeasurement #SmallBoreInstruments #BearingProduction #QualityControl #ManufacturingExcellence #EngineeringTools #TechInnovation #MicronPrecision #MeasurementTools #IndustrialEngineering #AccuracyMatters #ProductionQuality #PerformanceEngineering #ManufacturingSolutions #DefectPrevention
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?? Did You Know? ?? Most people don’t realize that small bore measuring instruments can detect deviations as tiny as 1 micron! This incredible level of precision is crucial in bearing production, where even the slightest errors can lead to significant performance issues. ??? Our advanced tools are designed to ensure your bearings meet the most exacting standards, helping you avoid costly defects and enhance overall performance. ????? By investing in precision measurement, you can guarantee that every component functions flawlessly, leading to higher efficiency and reliability in your operations. Don’t compromise on quality—let our measuring instruments elevate your production process! ?? Explore more at https://lnkd.in/dgUsScJX #Gloriousenterprise #PrecisionMeasurement #SmallBoreInstruments #BearingProduction #QualityControl #ManufacturingExcellence #EngineeringTools #TechInnovation #MicronPrecision #MeasurementTools #IndustrialEngineering #AccuracyMatters #ProductionQuality #PerformanceEngineering #ManufacturingSolutions #DefectPrevention
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Geometric Surveys: Geometric surveys of the components are carried out. Physical Tests: We perform physical tests on the machinery. Performance monitoring: During the tests, the performances of the tap and the chip are monitored. Laboratory Analysis: The results are taken to the laboratory for analysis under a microscope or in R&D. Test Satisfaction: Analyses continue until the test is considered satisfactory. Customer responses: are based on empirical data obtained from tests Technical Reports: We prepare reports with photographs and technical data. Performance Consultation: We explain to the customer the best performance of the tap based on speed, characteristics, and working methods. UFS know-how: it's exclusive! #GeometricSurveys #PhysicalTests #PerformanceMonitoring #LaboratoryAnalysis #TestSatisfaction #CustomerResponses #TechnicalReports #PerformanceConsultation #KnowHowUFS #UFS
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AMX'S PRESSURE SINTERING TECHNOLOGY Have a look to our video here to discover pressure sintering advantages and our Sintering press series: https://lnkd.in/dSU9U5Fs ? Pressure sintering is a heat treatment process applied to a powdered material in order to give it higher strength, integrity and conductivity. Compared with soldering or other standard methods, Ag or Cu pressure sintering shows outstanding results on all the previous application boosting the performances and avoiding re-melting problems. The AMX Automatrix's Patented Micro-Punch system is nowadays considered the most advanced method to guarantee better production yield percentage and to assure to the entire package best performances, longer lifetime and outstanding reliability. New higher characterization parameters are necessary to deeply check the wright functioning of the mechanical joint. Higher repeatability methods capable to assure best bonding condition, no die lost and no cosmetic defect are worldwide R&D and production priority.
Introduction to pressure sintering Technology dec2023
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It all starts with the material!! What is the composition? What are the safety considerations? What are the characteristics? Is it abrasive? How does it flow? Etc, etc, etc.. The more your know- the better your results!
In case you missed it! We recently hosted an insightful webinar on Material Characteristics and Conveying Performance, where we shared valuable knowledge on optimizing material handling processes. If you missed the live event, you can now access it on demand! ?? Key Topics Discussed: ?Understanding material flow properties ?The impact of particle size, shape, and moisture content on conveying efficiency ?How to select the right conveyor for your material type
How Material Characteristics Influence Conveying and Processing Performance
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New application note: Optical temperature measurement on the continuous casting plant https://lnkd.in/eUctBVEy The increasing requirements for the material properties become ever more demanding for producers in terms of the production process and production parameters. For this purpose, very tight tolerances are specified by the quality control. In order to be able to meet these high requirements, modern measuring methods and measuring systems adapted to the respective measuring points are absolutely necessary. A temperature-controlled production is the prerequisite for achieving the desired material properties while maximizing energy efficiency. Pyrometers have proven their worth for measuring the temperature when casting the melt and when cooling the slabs or billets on the continuous casting machine. They measure the infrared radiation of the objects and calculate the temperature according to the Planck’s law of radiation. The radiation is measured contactless from a safe distance and without destroying the workpiece. The temperature is recorded in a few milliseconds and serves as a monitoring and control variable.
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