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- $8 Oil Sample Saves $50,000 Dozer Transmission
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- Download Oil Analysis Identifies Bearing Wear in Back-Up Generator
- Download Oil Analysis Improves Wind Turbine Gearbox Performance – Part I
- Download Oil Analysis Improves Wind Turbine Gearbox Performance – Part II
- Download Oil Analysis in the Digital Era Presentation by Cary Forgeron – General Manager, Bureau Veritas – Oil Analysis
- Download Oil Analysis vs. Microscopic Debris Analysis
- Download Oil Condition Monitoring Case Study
- Download Prepare Your Fleet for Winter
- Download Preventing Premature Engine Failure with Coolant Analysis
- Download Preventive vs. Predictive Maintenance
- Download Proper Testing for Maximum Value and Equipment Condition Information
- Download Proper Testing Gets Maximum Value From Oil Analysis
- Download Root Cause Oil Analysis Prevents Costly Downtime for Industrial Gearbox
- Download Steps for Establishing an Effective Oil Analysis Program
- Download Understanding an Oil Analysis Report
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- Improve Wind Turbine Gearbox Performance – Part I
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- Oil Analysis Finds Source of Water in Dozer Transmission
- Oil Analysis Identifies Bearing Wear in Back-Up Generator
- Oil Analysis Identifies Bearing Wear in Back-Up Generator
- Oil Analysis Identifies Bearing Wear in Power Station Emergency Generator
- Oil Analysis Identifies Source of Water in Dozer Power Shift Transmission
- Oil Analysis Improves Wind Turbine Gearbox Performance – Part I
- Oil Analysis Improves Wind Turbine Gearbox Performance – Part II
- Oil Analysis in the Digital Era
- Oil Analysis In the Digital Era
- Oil Analysis Markets Served
- Oil Analysis vs. Microscopic Debris Analysis
- Oil Analysis vs. Microscopic Debris Analysis
- Oil Analysis vs. Microscopic Debris Analysis
- Oil Analysis: Global Capabilities & Customer Review
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- Preventive vs. Predictive Maintenance
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- The Analyst Newsletter – December 2019
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- The Importance of Accurate Sample Information
- The Importance of Proper Coolant Formulations
- The Importance of Proper Coolant Formulations
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Posts by category
- Category: Archive
- Category: Blog
- Oil Drain Optimization
- PQ vs. DR – Which is Best for Testing Ferrous Density in Used Oil?
- 5 Common Cooling System Mistakes
- Schedule Your Free Program Review Today
- Data Interpretation – Trend Analysis vs. Fixed Limits
- Why Oil Analysis Programs Fail
- Acid Number Role in Industrial Lubricant Serviceability
- Understanding the Impact of Water in Lubricants
- Mitigating Degradation Mechanisms
- Protecting Critical Assets With Condition Monitoring Maintenance and the Understanding of Oil Viscosity
- Inductively Coupled Plasma Atomic Emission Spectroscopy ICP-AES
- Data Center Asset Maintenance
- Optimizing Renewables with Fluid Condition Monitoring
- Impacts of Coolant Mixing on Engine Performance
- Modern Particle Counting
- Setting Up An Oil Analysis Program
- 5 Reasons We Are the Oil Analysis Laboratory For You
- Choosing An Oil Analysis Laboratory
- Why Conduct Oil Analysis?
- Preventive & Predictive Maintenance
- Category: Editorial
- Category: Latest News
- Bureau Veritas is a Gold Sponsor at Lubmat 2024 in Spain
- Bureau Veritas is a Gold Sponsor at Reliable Plant Conference 2024 in Chicago
- Halloween Pumpkin Carving Contest 2020
- Support During the COVID-19 Pandemic
- LUBMAT 2020 Conference and Exhibition
- AEMP CONNECT 2020 Conference
- Complimentary Machinery Lubrication Conference Session Pass
- Houston Lab Tour Event 2019
- Bureau Veritas Coolant Program Manager Speaks at LubMat 2018
- Bureau Veritas Global Oil Condition Monitoring Director will be a Keynote Speaker at Lubmat 2018
- Bureau Veritas is a Gold Sponsor at Lubmat 2018 in San Sebastian, Spain
- Laboratory in Spain to be European Hub for Bureau Veritas’ Global Oil Analysis Network
- BV Acquires Lubrication Management SL from IK4-TEKNIKER in Spain
- Category: News
- Bureau Veritas Coolant Program Manager Speaks at LubMat 2018
- Bureau Veritas Global Oil Condition Monitoring Director will be a Keynote Speaker at Lubmat 2018
- Bureau Veritas is a Gold Sponsor at Lubmat 2018 in San Sebastian, Spain
- Laboratory in Spain to be European Hub for Bureau Veritas’ Global Oil Analysis Network
- BV Acquires Lubrication Management SL from IK4-TEKNIKER in Spain
- Bureau Veritas Releases New Oil Analysis Test Report
- Bureau Veritas’ Oil Analysis Team Showcasing Leading Turbine Maintenance Programs at 7F Users Group Annual Conference in San Antonio, TX
- Bureau Veritas Hosts Successful Used Oil Analysis Seminar in Dubai
- Bureau Veritas Launches Exclusive LOAMS℠ Software in the Middle East
- Bureau Veritas Launch New Oil Condition Monitoring Asset Management Software in Australia
- Bureau Veritas to Present the Benefits of Used Oil Analysis at LUBMAT 2016 in Bilbao, Spain
- Bureau Veritas Launch New Oil Condition Monitoring Laboratory in South Africa
- Maxxam and Bureau Veritas Inc. Combine Expertise to Launch New Lab in Canada
- Bureau Veritas Releases LOAMS℠ Version 2.0
- Bureau Veritas Acquires Oil Analysis Leader Bureau Veritas
- Category: Press Releases
- Category: Uncategorized
Products
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- Source Water Test
- Standard with HPLC Test
- Standard ELC Test
- Standard Convention Test
- Solid Samples Test
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- Diesel Fuel Cold Weather Premium
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- Diesel Fuel Cold Weather Basic
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- J4
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- Basic Aviation Engine Kit
- Vacuum Pump Heavy Duty (38mm) Repair Kit
- Vacuum Pump Repair Kit
- QSS Valve (1/8 inch NPT)
- QSS Valve (1/4 inch NPT)
- Vacuum Pump
- Vacuum Pump - Heavy Duty (38mm)
Glossary Terms
- Active metal
- Acidity
- Acid Treating
- Acid digestion
- Acid
- Lubricity
- Lubricant
- Load-carrying capacity
- Liquid
- Laminar particle
- Lacquer
- Multipass or recirculation test
- Multigrade oil
- Multigrade oil
- Motor
- Miscible
- Mineral oil
- MIL-Spec
- Middle distillate
- Kinematic viscosity
- Micron, micrometer (µm)
- Medium
- ISO viscosity grade
- ISO Solid Contaminant Code
- Media migration
- Interfacial tension (IFT)
- Insolubles
- Media
- Inhibitor
- Ingested contaminants
- Infrared spectra
- Matrix matching
- Influent
- Matrix
- Indicator, differential pressure
- Manifold filter
- Indicator
- Manifold
- In-line filter
- Immiscible
- Maintenance
- Idler
- Hypoid gear lubricant
- Hydrostatic lubrication
- Hydrometer
- Hydrolytic stability
- Hydrolysis
- Hydrofinishing
- Hydrodynamic lubrication
- Hydrocarbon
- Hydraulics
- Hydraulic Fluid
- Housing
- Heat exchanger
- Hardness
- Grease
- Magnetic plug
- Gravimetric analysis analysis
- Graphite
- Magnetic filter
- Generated contaminant
- Gear train
- ZDDP
- Worked penetration
- Wear
- Gear
- Wicking
- Volatility
- Gauge
- Gasohol
- Viscous
- Full-flow filtration
- Viscosity, SUS
- Full fluid-film lubrication
- Viscosity, kinematic
- Friction
- Viscosity, absolute
- Viscosity index (VI)
- Fretting corrosion
- Fourier Transform
- Force feed lubrication
- Foam
- Flushing
- Fluid power
- Fluid compatibility
- Fluid
- Flowmeter
- Flow, turbulent
- Flow, laminar
- Flow rate
- Flow fatigue rating
- Flaw
- Flash point
- Fire-resistant fluid
- Fire point
- Filtration
- Filter media, surface
- Filter media, depth
- Filter life test
- Filter housing
- Filter head
- Viscosity grade
- Filter element
- Filter efficiency
- Filter
- Film strength
- Ferrography
- Viscosity
- Fault
- Viscometer or Viscosimeter
- Varnish
- Vapor Pressure (Reid method or RVP)
- Vapor pressure
- Valve, relief, differential pressure
- Valve, pressure control, relief
- Valve, flow contro
- Valve, directional control, servo
- Fatigue
- Failure
- Valve, directional contro
- Erosion
- Environmental contaminant
- Valve, by-pass
- Valve lifter
- Emulsion
- Valve
- Emulsibility
- Electrostatic separator
- Vacuum separator
- Elastohydrodynamic lubrication
- Effluent
- Duplex filter
- Dry-film lubricant
- Distillation
- Dissolved gases
- Disposable
- Differential pressure indicator
- Dieseling
- Dielectric Strength
- Detergent
- Detection limit
- Desorption
- Depth filter
- Unloading
- Deposit
- Density
- Demulsibility
- Delamination
- Turbulent flow sampler
- Dehydrator
- Turbidity
- Tribology
- Degradation
- Traceability
- Degas
- Defect
- Thixotropy
- Deaerator
- Thin film lubrication
- Thermography
- Cylinder
- Thermal stability
- Cyclic stress
- Thermal conductivity
- Tensile strength
- Cycle
- Cutting fluid
- Cryogenics
- Crown
- Cracking
- Coupling
- Synthetic oil
- Synthetic lubricant
- Corrosion
- Correlation
- Switch, pressure
- Copper strip corrosion
- Swarf
- Coolant
- Surge
- Coolant
- Contamination control
- Surfactant
- Surface tension
- Contaminant lock
- Contaminant failure
- Surface filtration
- Contaminant capacity
- Sulfurized oil
- Sulfated ash
- Contaminant
- Suction filter
- Consistency
- Stringer
- Strainer
- Compression ratio
- Stoke (St)
- Compression
- Statistical quality control
- Statistical process control
- Compressibility
- Static friction
- Compounding
- Starting fluid (diesel)
- Compound
- Stainless steel
- Complex grease
- Colloid
- Splash lubrication
- Collapse pressure
- Spindle oil
- Spin-on filter
- Collapse
- Cold cranking simulator (CCS)
- Cohesion
- Coefficient of friction
- Coalescer
- Cloud point
- Cleanable filter
- Clean room
- Circulating lubrication
- Spectrometry
- Specific gravity
- Spall
- Chromatography
- Solvency
- Solid
- Chip detector
- Soap
- Channeling
- Sludge
- Cetane number (calculated)
- Cetane index
- Sintered medium
- Sleeve bearing
- Cetane improver
- Certificate of analysis
- Single-pass test
- Centrifugal separator
- Silting
- Centralized lubrication
- Silt
- Centistoke (cSt)
- Shear stress
- Centipoise (cP)
- Shear rate
- Cellulose media
- Semisoli
- Cavitation damage
- Scuffing
- Saybolt Universal Viscosity (SUV) or Saybolt Universal Seconds, (SUS)
- Cavitation
- Saturation level
- SAE viscosity numbe
- Catastrophic failure
- Catalytic converter
- Catalyst
- Case drain filter
- Carbon residue
- Carbon
- Capillary viscometer
- Capillarity
- Capacity
- Rust prevention test
- Cam
- Rust
- Roller bearing
- Roll-off cleanliness
- Calibration / standardization
- Rings
- Ring sticking
- Bypass valve
- Ring lubrication
- Bypass filtration
- Return Line Filtration
- Bushing
- Return line
- Burst pressure rating
- Bubble point
- Residual dirt capacity
- BTU
- Reservoir (sump) filter
- BS&W (bottom sediment and water)
- Reservoir
- Rerefining
- Brookfield viscosity
- Refraction
- Brinelling
- Reducer
- Rate of shear
- Boundary lubrication
- Bottoms
- Boiling point
- Pumpability
- Blow-by
- Pump, variable displacement
- Bloom
- Blend(ing)
- Pump, fixed displacement
- Pump
- Black oils
- Beta ratio (ß-ratio)
- Beta Rating
- Process oil
- Bearing
- Process contamination
- Batch
- Base stock
- Pressure, system
- Pressure, rated
- Pressure, cracking
- Bactericide
- Pressure, back
- Babbitt
- Pressure, atmospheric
- Auto-ignition point
- Asperities
- Ash
- Pressure, absolute
- Aromatic
- Pressure line filter
- Apparent viscosity
- Pressure drop
- API gravity
- Pressure
- API engine service categories
- Power unit
- Positive crankcase ventilation (PCV)
- Porosity
- Pore size distribution
- Pore
- Polymerization
- Polishing (bore)
- Polar compound
- Poise (absolute viscosity)
- Pneumatics
- Pleated filter
- Platelet
- Pinion
- pH
- API base stock
- Anodizing
- Permeability
- Annealing
- Penetration
- Aniline point
- Anhydrous
- Ambient temperature
- Patch test
- Alloy steel
- Alkali
- Air entrainment
- Agglomeration
- Particle count
- Particle
- Paraffinic
- Pale oil
- Aftercooling
- Aerosol
- Oxidation stability
- Aeration
- Adsorption
- Adhesion
- Oxidation
- Oiliness
- Oil drain interval
- Oil analysis
- Octane number
- Non-Newtonian fluid
- Nominal filtration rating
- Noble metal
- NLGI number
- Nitration
- Newtonian fluid
- Neutralization number
- Napthene
- Naphthenic
- Accuracy
- Additives
- Base
- Bactericide
- Accumulator
- Absorption
- Absolute (Dynamic) Viscosity
- Abrasion
- Ablation
Documents
- Fluid Condition Monitoring for Data Centers
- Non Pressurized Line Sampling Instructions
- Pressurized Line Sampling Instructions
- Vacuum Pump Sampling Instructions
- Drain Plug Sampling Instructions
- Fluid Analysis Program User Guide
- Cooling System and Predictive Maintenance
- HVAC Fluid Analysis
- The Basics of Coolant Analysis
- The Basics of Oil Analysis
- Optimizing Operations Through Improved Technical Delivery & Cost Reductions
- Refineries & Terminals: Providing Specialist Support for Refinery & Terminal Operations
- Pipelines & Storage: Expert Analytical Services for Pipeline & Terminal Operators
- Pipelines: Expert Analytical Services for Pipeline Operators
- Maintain Equipment Reliability With Expert Used Oil & Lubricant Analysis
- Oil & Petrochemicals: Global Leaders in Testing & Inspection
- Oil Analysis Programs: Controlling Power from the Source
- Oil Analysis: Global Capabilities & Customer Review
- The Lube Oil Management System – LOAMS
- HVAC Refrigerant Analysis
- Transformer Oil Analysis
- Concentrated Solar Power (CSP) Fluid Analysis - HTF, Lubricants and Dielectric
- Coolant Analysis
- Diesel Fuel Analysis
- Facilities and Building Maintenance Fluid Analysis
- Gas Engine Fluid Analysis
- Grease Analysis
- Heavy Duty Oil Analysis - Freight, Trucking and Transit
- Heavy Duty Oil Analysis - Construction and Mining
- Industrial Oil Analysis
- Metalworking Fluids Analysis
- Wind Turbine Fluid Analysis - Oils and Greases
- Oil Analysis Improves Wind Turbine Gearbox Performance - Part Two
- Oil Analysis Improves Wind Turbine Gearbox Performance - Part One
- Monitoring Machine Condition with Grease Analysis
- The Basics of Particle Counting
- The Importance of Proper Coolant Formulations: Chart for Maintaining 50/50 Coolant
- Preventing Premature Engine Failure with Coolant Analysis
- 7 Steps for Establishing an Oil Analysis Program
- Trucking, Freight and Transit
- Diesel Fuel Analysis
- Understanding an Oil Analysis Report
- Guide to Wear, Contaminant and Additive Metals
- Industrial Oil Analysis
- Construction, Mining & Aggregates, Forestry & Agriculture
- Diesel Fuel Oil Analysis Manual
- Comparative Viscosity Classifications
- Preventive and Predictive Maintenance
- The Importance of Proper Coolant Formulations
- Cooling System Sampling Intervals and Method
- HPLC Monitors Organic Acids in Nitrite-Free OAT Coolants
- Understanding a Coolant Analysis Report
- Tips for Summer Coolant Maintenance
- Cooling System Maintenance Impacts Overall Engine Health
- Preparing Your Fleet for Winter
- Recommendations for Proper Glycol Adjustments
- Ion Chromatography Monitors Cooling System Issues and Maintenance Practices
- How to Take a Representative Coolant Sample
- Wind Turbine Fluid Analysis
- Understanding the ISO Cleanliness Code
- Oil Condition Monitoring – Maintain Equipment Reliability With Expert Used Oil & Lubricant Analysis
- The Lube Oil Management System – LOAMS℠
- Artificial Intelligence Transforms Oil Analysis: A Case Study of Predictive Analytics
- Oil Analysis in the Digital Era
- Establishing Proper Lubricant Service Intervals for Fleet Applications
- Root Cause Analysis of Water Contamination in Industrial Gearboxes
- Oil Analysis Identifies Source of Water in Dozer Power Shift Transmission
- Cooling System Predictive Maintenance
- Proper Testing for Maximum Value and Equipment Condition Information
- Oil Analysis vs. Microscopic Debris Analysis
- Oil Analysis Identifies Bearing Wear in Power Station Emergency Generator
Newsletters
FAQs
- What will happen to my PC-based LOAMS℠ program?
- Will I need to download anything?
- How many users can I have?
- Is there a charge for LOAMS℠?
- Will I have access to all my sample histories in the new system?
- How do I get access to LOAMS℠?
- What is the best success story you can share about detecting varnish potential?
- What kind of impact does testing for varnish potential have on overall plant and machinery reliability?
- How was varnish detected prior to this technology?
- What's the best way to make sure I get fast turnaround?
- Does QSA® replace the traditional used oil analysis programs?
- Why is it so difficult to detect varnish potential with traditional fluid analysis techniques?
- What makes this testing different?
- How did Bureau Veritas develop the new QSA predictive technology program?
- Why is my 15W40 engine oil dropping into the SAE 30 grade on my report even though the lab is not detecting any fuel dilution?
- My lab asks me to complete paperwork to send with my sample. I understand why they want to know where to send the report, but why do they need all the other information?
- I’ve sent samples in before on a point, but my latest report doesn’t show them. Why?
- How do I check on a sample that I sent in, but have not yet received results on?
- What’s the best way to make sure I get a fast turnaround?
Industries
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Applications
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Services
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