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Article Name | Author | Code |
---|---|---|
Interactive Dictionary for Polymer Industries | Rheology Solutions Pty Ltd | |
Rheology Solutions Kit for Polymer Industries | Rheology Solutions Pty Ltd | |
Understanding a Fog Testing System | S.Pratt | ANTCFOFTEST0311 |
Performance of Peltier II System for Series 1 Rheometer | W.Marquardt | HA008 |
MiniLab – Compunder and Reactor | G.Isaakides, Dr.A.Frendel, J.Bouton | HA009 |
Improvements on Laboratory Scaled Mixers for Rubber compound Qualification | HA010 | |
Standard Liquids for the Calibration of Viscometers | W.Marquardt | HA013 |
Influence of Droplet Size on Rheological Properties of Emulsions | HAAKE | HA014 |
Special Motor Technology Allows New and Improved Rheological Test Methods | W.Marquardt | HA015 |
Calibration of Rotational Rheometers | W.Marquardt | HA018 |
New Experimental Possibilities for the Investigation of the Melting of Polymer Blends | M.Bastian, T.Gabor, P.Reinheimer | HA019 |
UV Curing Characterisation by Rheological Techniques | M.Toalson, T.Richards | HA021 |
HAAKE Series 1 – “Lift” Control Options | W.Marquardt | HA022 |
Elongational Viscosity of Polymer melts. A new method for Labwork and On-Line Monitoring | H Braun, W.Gleissle | HA024 |
Viscosity Measurement of Novel Polymers and Additives Using a Conical Micro Twin Screw Compounder | S.R.Kim | HA025 |
Thermo Unveils Pharma-Focused Extruder | Thermo Electron | HA026 |
Conductivity under Shear Flow | Thermo Electron | HA028 |
Flexibility in Polymer Research | M.Jahling, A.Frendel | HA029 |
A Practical Approach to Scale-Up from Bench-Top Twin-Screw Extruders | A.Swanborough | HA031 |
New Measuring Cell for UV Assisted Thermal Curing at Elevated Temperatures | HA047 | |
Advances in Small Scale Processing Equipment for Polymers and Additives | A.Swanborough | HA049 |
The Impact of PE Based Adhesive Resins and Other Thermoplastic Matrix on Mechanical Properties of Ground Rubber Tires-Thermoplastics Composites | S.Kim, C.Han, S.J.Kim | HA052 |
Dies for Rheomex Extruders: Horizontal Sheet and Ribbon Dies | Thermo HAAKE Group | HL-011E |
Parallel Twin Screw Extruder – Rheomex PTW25 | Thermo HAAKE Group | HL-013E |
The HAAKE Optical Testing system – OQT512 | Thermo HAAKE Group | HL-014E |
Technical Paper 1 – The Processibility Testing of Pourable Thermoset Compounds | Thermo HAAKE Group | HL-015E |
Technical Paper 2 – The Testing of the Flow and Cure Properties of Pourable Thermoset Compounds | Thermo HAAKE Group | HL-016E |
How to Relate Test Results to Problem in Fire Production | M.Schreyer | HL-017E |
Modern Test Methods for Characterising the Modern Behaviour of Polymers | W.Morio | HL-019E |
The Rheological Testing of Polymers Using a Modern Computerised Torque Rheometer | Thermo HAAKE Group | HL-022E |
Comparison of Several Rheometers Using 3PE Polymers to Link Their Results to Molecular Structure and Processibility | G.Schramm | HL-025E |
Computersied Extruder Capillary Rheometer Tests and Their Evaluation | G.Schramm | HL-026E |
Rheological Interpretation of Torque Rheometer Mixer Test Data | G.Schramm | HL-027E |
Proceedings of the China – Japan International Congress on Rheology | Peking University Press. Beijing China | HL-037 |
Blending & Rheological Measurement Combined | M.Schreyer | HL-040E |
The Measurement of the Complex Rheological Properties of Electro-Viscous Fluids | G.Shramm | HL-101 |
HAAKE introduces new Rheometers for ER Fluids | Thermo HAAKE Group | HL-104 |
Estsablishing the Test Weight for Mixer Tests | LR-01 | |
Test Parameters for Mixer Tests | LR-02 | |
Determination of the Resident Time for the Twin Scre Extruder | LR-03 | |
Helpful Data for Tests with Extruder Sensors | A.Frendel | LR-04 |
Investigation of the Influence of Two Types of Carbon Black on the Flow Behaviour of SAN | LR-05e | |
Investigation of the Flow Characteristics of PEPT at Different Temperatures | LR-06e | |
Energy Calculation In Mixers – Torque and Specific Mechanical Energy | LR-07e | |
Differentiating Rubber Compounds with the Same Mooney Viscosity | LR-08e | |
Investigation of PVC Dry Blends with Different Stabilizers | LR-09e | |
Differentiating PVC Dry Blend Batches with an Extruder Sensor | LR-10e | |
Flow and Cross-Linking Behaviour of Cross-Linking Polyethylene’s (XLPE) | LR-11 | |
The Curing Behaviour of Reaction Resin Compounds | LR-12e | |
Characterizing Masterbatches Using the Screen Life Test Method | LR-13e | |
Pigment Differentiation in Masterbatches | LR-14e | |
Testing the Flow Characteristics of Glass Fibre Reinforced TPU | LR-15e | |
Extruding Polymers: Viscosity and Die Swell Depending on the Extrusion / Shear Rate | LR-16e | |
Examining the Plastifying and Degradation Behaviour of PVC | LR-17e | |
Examining the Influence of Stabilizers on the Flow Characteristics of Polyamide | LR-18e | |
Differentiating PP Samples from Different Suppliers with the Same MFI Value | LR-19e | |
Testing the Flow Properties Of Acrylnitril-Butadiene-Styrol-Terpolymer (ABS) | LR-20e | |
Testing the Flow Behaviour of Two Batches of a Ceramic Injection Moulding Compound | LR-21e | |
Application of the Speed Program for the Differentiation of Two Natural Rubber Samples | LR-22e | |
Application of the Temperature Program for the Investigation of the Gelling Behaviour of Plastisols | LR-23e | |
Influence of the Incorporation Sequence of Different Components of the Same Recipe on the Energy Consumption of the Mixing Process | LR-24e | |
Multiwall Carbon Nanotubes / Polymer Composite Fibres | A.P.Presler, D.Jacques, T.Rantell, R.Andres | LR-25 |
Testing the Behaviour of Thermosetting Compounds with Respect to Flow and Rate of Cure Making Use of a Torque Rheometer | LR-26e | |
Innovative Solutions for Polymer Processing & Characterisation | LR-27e | |
Compounding – Processing – Rheological Testing: All in One Test Run | LR-28e | |
How to Relate the Results of a Torque Rheometer to Problems in Elastomer Processing | LR-29e | |
The Residual Current Operated Device & PolyLab | LR-30e | |
OQT512 – Applications When Used with the Blown-Film & Sheet, Tape and Ribbon Take-Off | LR-31e | |
Optimising Mixer Tests with the Help of the Worksheet Technique | LR-32e | |
Viscosity Measurement of LDPE Samples with the Same MFI Value | LR-33e | |
Characterisation of PVC-Compounds | LR-35e | |
In-Process Measurement At-Line Testing of 3 HDPE for Determining Film Quality and Simultaneous On-Line MFR/MVR Monitoring | LR-36e | |
Use of Modern PolyLab Torque Rheometer System for Material Characterisation | LR-37e | |
Production of a Blend of Two Different Concentrations by a Parallel Double Screw Extruder and a Further Processing Through a Melt Pump and Following Measurement of the Rheological Characteristics in Slot and Rod Capillary Dies | LR-38e | |
New Die Design for the Characterisation of the Extensional and Shear Properties of Polymers for Laboratory and On-line Use | A.Rutherford, P.Reinheimer, G.Chaidron, J.Nijman, H.Petri | LR-39 |
Rubber Testing. Kinetic Quality Control Of Rubber Carbon Black | LR-40 | |
A Collaborative Study of the Structural and Rheological Properties of EVOH/SMA Blends Produced by Reactive Extrusion | P.S.Hope, J.G.Bonner, J.E.Curry | LR-42 |
Mini-Lab Compounder and Reactor | LR-43 | |
Test Methods for Characterisation and Optimisation of Recycling Polymers | LR-44e | |
Determining Formulation and Predicting Processibility of “PIM” Feedstock | LR-45e | |
Conductivity Measurement for Rubber Compound Qualification | LR-46e | |
Evaluation of an Instrumentation Lab-Scale Extruder for Melt Extrusion | LR-47 | |
Influence of the Sample Weight on PVC Fusion Test | LR-48e | |
Filter Pressure Valve Test (FPV test) – A New Standard to Examine Master Batches, White and Carbon Black Colorants | LR-49e | |
Use of Bench-Top Twin Screw Extruders for Development of Powder Coatings | LR-50 | |
Recent Developments on Bench-Top Twin-Screw Compounders | A.Swanborough | LR-51 |
Degradation Tests – A New Test Procedure to Examine Polymers and Antioxidants with the HAAKE MiniLab | LR-52 | |
Online Colour Measurement in Polymer Compounding | LR-54 | |
Residence Time Measurements In Bench Top Twin-Screw Extruders | A.Swanborough | LR-55 |
Ceramics – Compounding of Feed Stock with PTW16XL and Sample Productions with MiniJet | I.A.Frendel | LR-56 |
The Piezo Axial Vibrator – New Perspectives for On-Line Viscosity Measurements on Polymer | Z.Schuppe, T.Geilen, J.Maia, J.Covac, H.Petri | LR-57 |
Small Scale Catheter Production | A.Wunsch, D.Haunch, I.A.Frendel | LR-58 |
Evaluating the Plasticisation Process of Different Soft-PVC Samples | A.Wunsch, I.Frend | LR-59 |
Correlation between Mixer Tests and the Extrusion Behaviour of PVC Dry Blends | M.Jahrling | LR-60 |
Measurement of the Irganox Content on Polypropylene Polymers during Extrusion | W.Becker, N.Eisenreich | LR-61 |
Nanocomposites – Examples on Compounding of Nanoclay Blends in Twin Screw Extruders | A.Wunsch, D.Haunch, I.A.Frendel | LR-62 |
Influence of the Incorporation Sequence of Different Components on the Energy Consumption of the Mixing Process with the HAAKE PolyLab QC | M.Jahrling | LR-65 |
Compounding of Carbon Nanotube (CNT) Suspensions with Polypropylene | J.Jahrling, D.Hauch | LR-68 |
Gas Phase Control of a Polymer Slurry Process for Solvent Acrylic and Water Borne Polymers | Marimex | MX003 |
Q: Does a Larger Fluid Reservoir Give Me More Cooling Capacity and Improved Temperature Stability? | PFTSmartNote01 | |
Q: I Plan On Using My Bath Circulator For External Circulation Only. Should I Get a Large Reservoir That Can Absorb The Heat For More Stability? | PFTSmartNote02 | |
Q: I Want To Use a Bath To Immerse My Vessels. How Do I Select The Right Size Bath For My Application? | PFTSmartNote03 | |
Q: How Do I Achieve the Best (Fastest) Time-to-Temperature from a Heated Bath Circulator? | PFTSmartNote04 | |
Q: I Need a Specific, Controlled Rate of Heating (i.e. Temperature Ramp). How Do I Ensure That My Heated Bath Circulator Will Be Able to Control to That Temperature Rate? | PFTSmartNote05 | |
Q: What Steps Can I Take to Ensure That My Heated Bath Circulator Can Actually Bring My Application to Setpoint Temperature ? | PFTSmartNote06 | |
Big Brother for Films | O.Hissman | OCS001 |
The Embedded Solution as a Symbiosis of Intelligent Hardware and Software | O.Hissman | OCS002 |
Film Inspection – A Question of Location | O.Hissman | OCS003 |
Online Quality control of Polymers and Extruded Films | O.Hissman | OCS004 |
Uncompromising Eyes | O.Hissman, G.Finn | OCS006 |
High-Quality Pharmaceutical Film | O.Hissman, A.Schnabel | OCS007 |
Complete Control | O.Hissman | OCS008 |
Standard Search for Specks….Film Inspection | H.Steen, O.Hissman | OCS009 |
Surface Smoothness Test for Power Cable Semi-Conductive Compounds (Semicons) | Cabot | OCS010 |
Online Polymer Analysis in Borealis: a Step Change in Process and Quality Control | Borealis | OCS011 |
Online Measurement of Contaminants on Polymer Pellets | A.Schnabel & O.Hissman | OCS012 |
“Live” Quality Control – Integrated Inspection | OCS/Borealis | OCS013 |
Rapid Evaluation of Pigment Dispersion Using a Bench Top Twin Screw Compounder | A.Swanborough | PRISM001 |
Recent Developments in Bench Top Twin Screw Compounders | A.Swanborough | PRISM002 |
Small Scale Twin-Screw Extruders for Polyolefins Compound | A.Swanborough | PRISM003 |
Viscoelastic Properties of Sterculia Striate Gum in the Presence of Sodium Chloride | A.F.deBrito, M.R.Sierakowski, F.Reicher, J.P.A.Feitosa, R.C.M.de Paula | RF-060902-BR-01 |
Rheology as a Tool for Immiscible Polymer Blends Characterisation: Interfacial Tension and Compatibilisation | P.H.P.Macaubas, N.Raymonde Demarquette | RF-110902-BR-01 |
Linear Viscoelastic Characterisation of High-Melt-Strength Polypropylenes over a Broad Range of Frequencies | C.He, P.Wood-Adams, J.M.Dealy, R.L.Sammler, T.P.Karjala | RF-110902-CA-01 |
Carboxymethyl Starch Gels for Ultrasonic Examinations | C.Seidel, W.M.Kulicke | RF-120902-DE-03 |
Rheological Study of the Sol-Gel Transition in Silica Alkoxides | RF-120902-FR-01 | |
Phase Morphology Development in Reactively Compatibilised Polyethylene Terephthalate/Elastomer Blends | W.Loyens, G.Greoninckx | RF-130802-SE-01 |
Estimating Interfacial Tension between Molten Polymers Using Fiber Instabilities | G.Palmer, N.Demarquette | RF-130902-BR-01 |
Optimization of the Rheological Characterisation for a Biodegradable, Cheap and Multipurpose Thermoplastic Made of Corn Flour | S.Brouuillet Fourman, C.Carrot, N.Mignard, F.Prochazka | RF-160702-FR-01 |
Effect of surface Modification on the Interfacial Tension Between the Melts of High-Density Polyethylene and Nylon 66 : Correlation Between Rheology and Morphology | H-J.Kim, Y.Seo | RF-190702-KR-01 |
Time-Tempertaure Studies of Gellan Polysaccharide Gelation in the Presence of High Levels of Co-Solutes | M.T.Nickerson, A.T.Paulson, R.A.Speers | RF-19020902-CA-01 |
Rheological Study of the Compatibilisation of PVC/PE Blends with Chlorinated Polyethylene | RF-190902-ES-02 | |
Enhanced Rheological Properties of Polyethylene/EPDM Modified Bituminous Binders | A.Perez-Lepe | RF-190902-ES-03 |
Alignment Mechanical Characterisation of Vapor Growth Carbon Nanofibers in Polyethylene | L.Lozano, V.Diaz | RF-190902-US-01 |
Controlling Gel Formation in Clay Dispersions via Water-Soluble Polymer : Viscoelasticity and Kinetics of Gel Formation | H.Sardinha, S.R.Bhatia | RF-190902-US-02 |
Rheological and Electrical Characterisation of Highly Conducting Polyaniline Gels | I.Gonzalez, M.Vecino | RF-200902-ES-02 |
Morphology Development by Reactive Compatibilisation and Dynamic Vulcanization of Nylon 6 / EPDM Blends with a High Rubber Fraction | J.Oderkerk, G.Groeninckx | RF-230802-SE-01 |
Investigation of Wave Interfacial Instabilities in Coextrusion Flows | M.Zatloukal | RF-260302-CZ-01 |
Gelling of Ceramic Suspensions Using an Algae-Derived Polymer | A.R.Studart, V.C.Pandolfelli, E.Tervoort, L.J.Gauckler | RF-260802-CH-01 |
The Cambridge Polymer Group Silly Putty “Egg” | Cambridge Polymer Group | Rheo009TP |
Quality Control in the Polymer Industry – Introduction to Cutting Edge Technologies and Their Application in the Polymer Industry | T.Kealy | Rheo023TP |
Rheology For The Rubber And Elastomer Industries: Introduction to the Influences Of Rheological and Process Parameters and Methods for Their Measurement | T.Kealy | Rheo024TP |
Current Possibilities for Extrusion and Mixing – Introduction to the Current Technologies for Measurement and Control Process Parameters | T.Kealy | Rheo026 |
Nano-Dispersion of Clay Makes Better, Cleaner Plastics | A.E. Messer | Rheo034 |
Rheoscope 1 The Correlation Between Flow and Structure | P.Reinheimer, D.Eidam, A.Colin, M.Lescanne | Rheo036 |
Rheoscope and Polarized Light Microscopy | P.Reinheimer | Rheo037 |
FAQ’s to RheoScope | Thermo HAAKE | Rheo038 |
New Die Design for the Characterization of the Extensional and Shear Properties of Polymers for Laboratory and On-Line Use | Ruthardt, Reinheimer, G.Chaidron, J.Nijman | Rheo041 |
Caber® Tests on Yield Stress Fluids | Cambridge Polymer Group | Rheo044 |
Through the Looking Glass. An alice in Wonderland View of Polymer Science | D.Solomon | Rheo045 |
Solving Rheological Application Problems with the Caber 1 Extensional Rheometer | J.Nijman, G.Moench, G.Braithwaite, G.Neal | Rheo046 |
New Technologies for the Investigation of Low-viscous Structural Fluids | S.Kim | Rheo047 |
QC Measurements for Liquid Food Products and Packaging | Rheo051 | |
On-Line Optical QC Measurements for Manufacturing Industries | T.Kealy | Rheo053 |
Polymer and Polymer Based Process Characterisation for Applications based Material and Extruder Optimisation | A.Swanborough, T.Kealy | Rheo054 |
Materials Testing for Polymer Processing Industries | T.Kealy | Rheo109 |
Instrument Application Note: Quality Control in the Polymer Industry | T.Kealy | Rheo177 |
Instrument Application Note: Current Possibilities for Extrusion and Mixing | T.Kealy | Rheo178 |
Tim’s Top Tips – Explanation and Evaluation of Compounding | T.Kealy | Rheo289 |
Tim’s Top Tips – Explanation and Evaluation of Processability | T.Kealy | Rheo290 |
Tim’s Top Tips – Explanation and Evaluation of Shark Skin | T.Kealy | Rheo291 |
Tim’s Top Tips – Explanation and Evaluation of Die Swell | T.Kealy | Rheo292 |
Tim’s Top Tips – How to Measure Flow & Viscosity | T.Kealy | Rheo364 |
Tim’s Top Tips – How to Measure Thixotropy | T.Kealy | Rheo366 |
Tim’s Top Tips – How to Measure Yield Stress | T.Kealy | Rheo368 |
Laboratory and Process Quality Control Techniques for Polymer Manufacturing and Polymer Processing Industries | T.Kealy | Rheo376 |
Optimising the Selection Of a Re-Circulating Chiller | S.Pratt | TNTCCHILLER1210 |
Customer Case Study – Vinyl Compounds Ltd “Using the Thermo Scientific PolyLab QC helps ensure consistent quality of our PVC compounds – across the board” |
R.Loynes | TS053 |
Polymer Package for HAAKE Rheometers | W.Marquardt | V125 |
Measuring Uncertainties at the VT550 | Kutschmann | V140 |
How to Select the Most Adequate Sensor for Your Application | G.Gonzalez | V166(NR) |
Understanding the Temperature-Time-Relationship for Thermosetting Systems | C.Gonzalez | V167E |
Rheological Investigation of Three Rubbers with Different Shore Factors with Respect to their Shape Stability before Curing | Eidam, Liehr | V169E |
Yield Point Measurements with Modern CS Rheometer | Liehr | V173E |
Intelligent Software in Rheometry with Snapshot Technology | W.Marquardt | V188 |
Rheological Tests on Thermoplastic Elastomers | E.Kutschmann | V191E |
HAAKE CaBER 1 – Molecular Weight Distribution – Polystyrene, Blends of Standards, Same MW, Different MWD | Thermo Haake Group | V212 |
HAAKE CaBER 1 – Polymer Solutions Polystyrene, Mw =1.8 Mio g/mol in Styrene Oligomers at Very Low Concentrations | Thermo Haake Group | V213 |
HAAKE CaBER 1 – Binary Polymer Mixtures Polystyrene Blends of Standards Mw =1.8 Mio g/mol + Mw =13 Mio g/mol | Thermo Haake Group | V214 |
HAAKE CaBER 1 – Reproducibility Newtonian Test Fluids E6000 and E40000 | Thermo Fisher Scientific Group | V215 |
Test Liquids | Thermo Fisher Scientific Group | V218 |
Cellusosic Derivatives in Capillary Break-Up – Influence of the MWD and Gel Particles | J.Plog | v219 |
Measurements on Selected (Semi-Solids) in a Wide Temperature Range using New Solids Clamp | K.Oldorp, J.Nijman, C.Kuchenmeister | V220 |
Solvent Trap & Double Cone System for Reproducible Results in Rheological Measurements of Low Viscous Volatile Fluids | A.Fischer | V229 |
Rheological Methods for Determining Molecular Weight & Molecular Weight Distribution | A.Fischer | V230 |
Improved Torque Sensitivity and Normal Force Resolution for Routine Measurements | A.Fischer | V231 |
Preparation of a Pressure Cell for Sensitive Measurements | K.Oldorp, U.Schultz | V233 |
Investigating the Processing Properties of Instant Release Film-coating Polymers in Aqueous Solutions by Means of Extensional Rheology | T.Agnese, T.Cech, W.Dejan, N.W.Rottmann, F.Soergel | V235 |
Automatic Detection of the Thermal Degredation of a Polymer | F.de Jong, K.Oldorp | V237 |
Detailed Analysis of Curing Reactions of Polyurethane Resins Using the Rheonaut Technology for Simultaneous Rheometry and FT-IR | M.Feustel, C.Kuchenmeister, J.Plog | V247 |
Influence of Preparation Method on Viscosity of Different Poloxamers | T.Agnese, T.Cech, M.G.Herting, F.Soergel | V249 |
Curing of an Acrylate Glue – Rheology with Simultaneous FTIR-Spectroscopy | K.Oldorp | V254 |
Enhanced Oil Recovery and Elongational Flow – The Thermo Scientific HAAKE CaBER 1 | K.Oldorp | V256 |
Monitoring Emulsions Morphology Under Shear via Simultaneous Rheometry and In-situ FI-IR Spectroscopy | K.Sugimoto, F.Soergel, M.Feustel | V257 |
Characterising Long-chain Branching in Polyethylene with Extensional Rheology | J.Plog, U.Schultz | V261 |
Tracking UV Curing Fast Reactions in a Rheometer Using the Fast Oscillation Mode | K.Oldorp | V263 |