Search alternatives:
significantly improved » significantly increased (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
improved decrease » improved urease (Expand Search), marked decrease (Expand Search)
significantly improved » significantly increased (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
improved decrease » improved urease (Expand Search), marked decrease (Expand Search)
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1981
Gradation composition of asphalt mixture.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1982
Results of the orthogonal test.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1983
Rutting test results.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1984
Technical Specifications of ZM Modifier.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1985
Gradation curve of asphalt mixture.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1986
Rutting test machine.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1987
Basic performance indicators of base asphalt.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1988
Rutting specimen.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1989
Orthogonal experimental design.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1990
Immersion Marshall test results.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1991
Fatigue life under different stress ratios.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1992
Freeze–thaw splitting test results.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1993
Preparation flowchart of ZM-modified asphalt.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1994
Immersion Marshall test equipment and specimens.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1995
Strength test results of semi-circular specimens.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1996
Bending test results of beam specimens.
Published 2025“…Experimental results show that the ZM modifier significantly improves the dynamic stability and rutting resistance of the mixture, with dynamic stability increasing to 5245 and rut depth decreasing to 2.26 mm at a dosage of 0.5%. …”
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1997
Cis-acting elements in the promoter of PtWRKYs.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1998
The Ka/Ks values of PtWRKY paralogous gene pairs.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1999
RNA-seq data of WRKY genes.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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2000
Analysis of PtWRKY genes.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”