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Published in: Rheologica Acta 7/2008

01-09-2008 | Original Contribution

Rheological properties of polyacrylates used as synthetic road binders

Authors: Gordon D. Airey, Musarrat H. Mohammed

Published in: Rheologica Acta | Issue 7/2008

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Abstract

Most adhesives and binders, including bitumen for asphalt mixture production, are presently produced from petrochemicals after the refining of crude oil. The fact that crude oil reserves are a finite resource means that in the future, it may become necessary to produce these materials from alternative and probably renewable sources. Suitable resources of this kind may include polysaccharides, plant oils and proteins. This paper deals with the synthesis of polymer binders from monomers that could, in future, be derived from renewable resources. These binders consist of polyethyl acrylate (PEA) of different molecular weight, polymethyl acrylate (PMA) and polybutyl acrylate (PBA), which were synthesised from ethyl acrylate, methyl acrylate and butyl acrylate, respectively, by atom transfer radical polymerisation. The rheological properties of these binders were determined by means of oscillatory testing using a dynamic shear rheometer and combinations of stress/strain, temperature and frequency sweeps. The results indicate that PEA can be produced to have rheological properties similar to that of ‘soft’ 100/150 penetration grade bitumen, PMA with similar rheological properties to that of ‘hard’ 10/20 penetration grade bitumen, while PBA, due to its highly viscous nature and low dynamic moduli, cannot be used on its own as a binder. The synthetic polymers were found to be thermo-rheologically simple, and the shift factors, used to produce the dynamic moduli master curves, were found to fit an Arrhenius function.

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Literature
go back to reference Airey GD (2002a) Use of black diagrams to identify inconsistencies in rheological data. Road Mater Pavement Des 3:403–424CrossRef Airey GD (2002a) Use of black diagrams to identify inconsistencies in rheological data. Road Mater Pavement Des 3:403–424CrossRef
go back to reference Airey GD (2002b) Rheological evaluation of ethylene vinyl acetate polymer modified bitumens. Constr Build Mater 16:473–487CrossRef Airey GD (2002b) Rheological evaluation of ethylene vinyl acetate polymer modified bitumens. Constr Build Mater 16:473–487CrossRef
go back to reference Airey GD (2003) Rheological properties of styrene butadiene styrene modified road bitumens. Fuel 82:1709–1719CrossRef Airey GD (2003) Rheological properties of styrene butadiene styrene modified road bitumens. Fuel 82:1709–1719CrossRef
go back to reference Airey GD, Brown SF (1998) Rheological performance of aged polymer modified bitumens. Assoc Asphalt Tech 67:66–100 Airey GD, Brown SF (1998) Rheological performance of aged polymer modified bitumens. Assoc Asphalt Tech 67:66–100
go back to reference Airey GD, Hunter AE (2003) Dynamic mechanical testing of bitumen—sample preparation methods. ICE Transport 156:85–92 Airey GD, Hunter AE (2003) Dynamic mechanical testing of bitumen—sample preparation methods. ICE Transport 156:85–92
go back to reference Airey GD, Rahimzadeh B, Collop AC (2002) Linear viscoelastic limits of bituminous binders. Assoc Asphalt Tech 71:89–115 Airey GD, Rahimzadeh B, Collop AC (2002) Linear viscoelastic limits of bituminous binders. Assoc Asphalt Tech 71:89–115
go back to reference Ahmad S, Haque MM, Ashraf SM, Ahmad S (2004) Urethane modified boron filled polyesteramide: a novel anti-microbial polymer from a sustainable resource. Eur Polym J 40:2097–2104CrossRef Ahmad S, Haque MM, Ashraf SM, Ahmad S (2004) Urethane modified boron filled polyesteramide: a novel anti-microbial polymer from a sustainable resource. Eur Polym J 40:2097–2104CrossRef
go back to reference Anderson DA, Christensen DW, Bahia HU, Dongre R, Sharma MG, Antle CE, Button J (1994) Binder characterisation, vol 3: physical properties, SHRP-A-369. National Research Council, Washington, DC Anderson DA, Christensen DW, Bahia HU, Dongre R, Sharma MG, Antle CE, Button J (1994) Binder characterisation, vol 3: physical properties, SHRP-A-369. National Research Council, Washington, DC
go back to reference ASTM (1986) Standard test method for viscosity of asphalt with cone and plate viscometer. ASTM D 3205-77. Annu Book ASTM Stand 4.03:468–472 ASTM (1986) Standard test method for viscosity of asphalt with cone and plate viscometer. ASTM D 3205-77. Annu Book ASTM Stand 4.03:468–472
go back to reference Barnes HA, Hutton JF, Walters K (1989) An introduction to rheology. Elsevier, Amsterdam Barnes HA, Hutton JF, Walters K (1989) An introduction to rheology. Elsevier, Amsterdam
go back to reference Christensen DW, Anderson DA (1992) Interpretation of dynamic mechanical test data for paving grade asphalt cements. Assoc Asphalt Tech 61:67–116 Christensen DW, Anderson DA (1992) Interpretation of dynamic mechanical test data for paving grade asphalt cements. Assoc Asphalt Tech 61:67–116
go back to reference Daga VK, Wagner NJ (2006) Linear viscoelastic master curves of neat and laponite-filled poly(ethylene oxide)–water solutions. Rheol Acta 45:813–824CrossRef Daga VK, Wagner NJ (2006) Linear viscoelastic master curves of neat and laponite-filled poly(ethylene oxide)–water solutions. Rheol Acta 45:813–824CrossRef
go back to reference Dickinson EJ, Witt HP (1974) The dynamic shear modulus of paving asphalts as a function of frequency. Trans Soc Rheol 18:591–605CrossRef Dickinson EJ, Witt HP (1974) The dynamic shear modulus of paving asphalts as a function of frequency. Trans Soc Rheol 18:591–605CrossRef
go back to reference Emengo FN, Chukwu SER, Mozie J (2002) Tack and bonding strength of carbohydrate-based adhesives from different botanical sources. Int J Adhes Adhes 22:93–100CrossRef Emengo FN, Chukwu SER, Mozie J (2002) Tack and bonding strength of carbohydrate-based adhesives from different botanical sources. Int J Adhes Adhes 22:93–100CrossRef
go back to reference Ferry JD (1980) Viscoelastic properties of polymers. Wiley, New York Ferry JD (1980) Viscoelastic properties of polymers. Wiley, New York
go back to reference Gaw WJ (1978) The measurement and prediction of asphalt stiffness at low and intermediate pavement service temperatures. Assoc Asphalt Tech 47:457–494 Gaw WJ (1978) The measurement and prediction of asphalt stiffness at low and intermediate pavement service temperatures. Assoc Asphalt Tech 47:457–494
go back to reference Goodrich JL (1988) Asphalt and polymer modified asphalt properties related to the performance of asphaltic concrete mixes. Assoc Asphalt Tech 57:116–175 Goodrich JL (1988) Asphalt and polymer modified asphalt properties related to the performance of asphaltic concrete mixes. Assoc Asphalt Tech 57:116–175
go back to reference Goodrich JL (1991) Asphaltic binder rheology, asphalt concrete rheology and asphalt concrete mix properties. Assoc Asphalt Tech 60:80–120 Goodrich JL (1991) Asphaltic binder rheology, asphalt concrete rheology and asphalt concrete mix properties. Assoc Asphalt Tech 60:80–120
go back to reference Griffen RL, Miles TK, Penther CJ, Simpson WC (1956) Sliding plate microviscometer for rapid measurements of asphalt viscosity in absolute units. ASTM Special Technical Publication 212:36 Griffen RL, Miles TK, Penther CJ, Simpson WC (1956) Sliding plate microviscometer for rapid measurements of asphalt viscosity in absolute units. ASTM Special Technical Publication 212:36
go back to reference Kaplan DL (1998) Biopolymers from renewable resources. Springer, Berlin, pp 1–3 Kaplan DL (1998) Biopolymers from renewable resources. Springer, Berlin, pp 1–3
go back to reference Lesueur D, Gerard JF, Claudy P, Letoffe JM, Planche JP, Martin D (1996) A structure-related model to describe bitumen linear viscoelasticity. J Rheol 40:813–836CrossRef Lesueur D, Gerard JF, Claudy P, Letoffe JM, Planche JP, Martin D (1996) A structure-related model to describe bitumen linear viscoelasticity. J Rheol 40:813–836CrossRef
go back to reference Marasteanu M, Anderson DA (1996) Time–temperature dependency of asphalt binders—an improved model. Assoc Asphalt Tech 65:408–448 Marasteanu M, Anderson DA (1996) Time–temperature dependency of asphalt binders—an improved model. Assoc Asphalt Tech 65:408–448
go back to reference Monismith CL, Alexander RL, Secor KE (1966) Rheological behaviour of asphalt concrete. Assoc Asphalt Tech 35:400–450 Monismith CL, Alexander RL, Secor KE (1966) Rheological behaviour of asphalt concrete. Assoc Asphalt Tech 35:400–450
go back to reference Pellinen TK, Biswas K, Rowe GM, Sharrock MJ (2003) Procedure for obtaining binder stiffness over a range of temperatures for mix stiffness predictive models. J Applied Asphalt Binder Tech 3:44–67 Pellinen TK, Biswas K, Rowe GM, Sharrock MJ (2003) Procedure for obtaining binder stiffness over a range of temperatures for mix stiffness predictive models. J Applied Asphalt Binder Tech 3:44–67
go back to reference Petersen JC, Robertson RE, Branthaver JF, Harnsberger PM, Duvall JJ, Kim SS, Anderson DA, Christensen DW, Bahia HU, Dongre R, Sharma MG, Antle CE, Button J, Glover CJ (1994) Binder characterisation and evaluation, vol 4: test methods, SHRP-A-370. National Research Council, Washington, DC Petersen JC, Robertson RE, Branthaver JF, Harnsberger PM, Duvall JJ, Kim SS, Anderson DA, Christensen DW, Bahia HU, Dongre R, Sharma MG, Antle CE, Button J, Glover CJ (1994) Binder characterisation and evaluation, vol 4: test methods, SHRP-A-370. National Research Council, Washington, DC
go back to reference Pink HS, Merz RE, Bosniack DS (1980) Asphalt rheology: experimental determination of dynamic moduli at low temperatures. Assoc Asphalt Tech 49:64–94 Pink HS, Merz RE, Bosniack DS (1980) Asphalt rheology: experimental determination of dynamic moduli at low temperatures. Assoc Asphalt Tech 49:64–94
go back to reference Planche JP, Lesueur D, Hines ML, King GN (1996) Evaluation of elastomer modified bitumens using SHTP binder specifications. Eurasphalt & Eurobitume Congress E&E.5.121, Strasbourg Planche JP, Lesueur D, Hines ML, King GN (1996) Evaluation of elastomer modified bitumens using SHTP binder specifications. Eurasphalt & Eurobitume Congress E&E.5.121, Strasbourg
go back to reference Schweyer HE, Smith LL, Fish GW (1976) A constant stress rheometer for asphalt cements. Assoc Asphalt Tech 45:53–72 Schweyer HE, Smith LL, Fish GW (1976) A constant stress rheometer for asphalt cements. Assoc Asphalt Tech 45:53–72
go back to reference Shields J (1976) Adhesives handbook. Butterworth, London Shields J (1976) Adhesives handbook. Butterworth, London
go back to reference Soenen H, De Visscher J, Vanelstraete A, Redelius P (2006) Influence of thermal history on rheological properties of various bitumen. Rheol Acta 45:729–739CrossRef Soenen H, De Visscher J, Vanelstraete A, Redelius P (2006) Influence of thermal history on rheological properties of various bitumen. Rheol Acta 45:729–739CrossRef
go back to reference Tsujimoto T, Uyama H, Kobayashi S (2004) Synthesis and curing behaviors of cross-linkable polynaphthols from renewable resources: preparation of artificial urushi. Macromolecules 37:1777–1782CrossRef Tsujimoto T, Uyama H, Kobayashi S (2004) Synthesis and curing behaviors of cross-linkable polynaphthols from renewable resources: preparation of artificial urushi. Macromolecules 37:1777–1782CrossRef
go back to reference Uyama H, Kuwabara M, Tsujimoto T, Kobayashi S (2003) Enzymatic synthesis and curing of biodegradable epoxide-containing polyesters from renewable resources. Biomacromolecules 4:211–215CrossRef Uyama H, Kuwabara M, Tsujimoto T, Kobayashi S (2003) Enzymatic synthesis and curing of biodegradable epoxide-containing polyesters from renewable resources. Biomacromolecules 4:211–215CrossRef
go back to reference Van der Poel C (1954) A general system describing the visco-elastic properties of bitumen and its relation to routine test data. J Appl Chem 4:221–236CrossRef Van der Poel C (1954) A general system describing the visco-elastic properties of bitumen and its relation to routine test data. J Appl Chem 4:221–236CrossRef
go back to reference Welty JR, Wicks CE, Wilson RE (1984) Fundamentals of momentum, heat and mass transfer, 3rd edn. Wiley, New York, pp 772–773 Welty JR, Wicks CE, Wilson RE (1984) Fundamentals of momentum, heat and mass transfer, 3rd edn. Wiley, New York, pp 772–773
Metadata
Title
Rheological properties of polyacrylates used as synthetic road binders
Authors
Gordon D. Airey
Musarrat H. Mohammed
Publication date
01-09-2008
Publisher
Springer-Verlag
Published in
Rheologica Acta / Issue 7/2008
Print ISSN: 0035-4511
Electronic ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-007-0250-3

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