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[1] Zhang L., Wang X., "Microstructure and Mechanical Properties of Leather Composite Sponge Materials", Journal of Applied Polymer Science, 2020.
[2] Chen Y., Li J., "Effect of Crosslinking Degree on Aging Resistance of Polyurethane Foam", Polymers for Advanced Technologies, 2019.

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[3] Liu M., Zhao Q., "Compression Set Behavior of Leather Composite Sponge Materials", Polymer Testing, 2018.
[4] Wang H., Chen Z., "Fatigue Performance Evaluation of Automotive Seat Cushion Materials", Journal of Materials Science, 2019.
[5] Zhang R., Liang J., "Creep Characteristics Analysis of PU Foam Composites", Materials & Design, 2020.
[6] Huang X., Zhou T., "Thermal Stability Improvement of Leather Composite Foams", Polymer Degradation and Stability, 2021.

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[7] Kim S., Park J., "Dynamic Compression Fatigue Behavior of Automotive Seat Cushions", Journal of Applied Polymer Science, 2019.
[8] Lee C., Choi H., "Bending Fatigue Performance of Leather Composite Foams", Polymer Testing, 2020.
[9] Jung Y., Ryu K., "Impact Fatigue Resistance of PU Foam Composites", Materials & Design, 2021.
[10] Cho B., Hong J., "Vibration Fatigue Analysis of Automotive Seating Materials", Polymer Degradation and Stability, 2022.

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[11] Yang W., Xu F., "Thermal Cycling Effects on PU Foam Composites", Polymer Testing, 2020.
[12] Li J., Zhang H., "Humidity Aging Behavior of Leather Composite Materials", Journal of Applied Polymer Science, 2021.
[13] Wang L., Chen Y., "Ultraviolet Aging Resistance of Automotive Seat Materials", Materials & Design, 2022.
[14] Liu Q., Zhou X., "Corrosion Resistance Improvement of PU Foam Composites", Polymer Degradation and Stability, 2023.

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[15] Zhang X., Liu Y., "Integrated Testing Strategy for Automotive Seat Materials", Journal of Materials Science, 2022.

Æß¡¢²Î¿¼ÎÄÏ×

  1. Zhang L., Wang X., "Microstructure and Mechanical Properties of Leather Composite Sponge Materials", Journal of Applied Polymer Science, 2020.
  2. Chen Y., Li J., "Effect of Crosslinking Degree on Aging Resistance of Polyurethane Foam", Polymers for Advanced Technologies, 2019.
  3. Liu M., Zhao Q., "Compression Set Behavior of Leather Composite Sponge Materials", Polymer Testing, 2018.
  4. Wang H., Chen Z., "Fatigue Performance Evaluation of Automotive Seat Cushion Materials", Journal of Materials Science, 2019.
  5. Zhang R., Liang J., "Creep Characteristics Analysis of PU Foam Composites", Materials & Design, 2020.
  6. Huang X., Zhou T., "Thermal Stability Improvement of Leather Composite Foams", Polymer Degradation and Stability, 2021.
  7. Kim S., Park J., "Dynamic Compression Fatigue Behavior of Automotive Seat Cushions", Journal of Applied Polymer Science, 2019.
  8. Lee C., Choi H., "Bending Fatigue Performance of Leather Composite Foams", Polymer Testing, 2020.
  9. Jung Y., Ryu K., "Impact Fatigue Resistance of PU Foam Composites", Materials & Design, 2021.
  10. Cho B., Hong J., "Vibration Fatigue Analysis of Automotive Seating Materials", Polymer Degradation and Stability, 2022.
  11. Yang W., Xu F., "Thermal Cycling Effects on PU Foam Composites", Polymer Testing, 2020.
  12. Li J., Zhang H., "Humidity Aging Behavior of Leather Composite Materials", Journal of Applied Polymer Science, 2021.
  13. Wang L., Chen Y., "Ultraviolet Aging Resistance of Automotive Seat Materials", Materials & Design, 2022.
  14. Liu Q., Zhou X., "Corrosion Resistance Improvement of PU Foam Composites", Polymer Degradation and Stability, 2023.
  15. Zhang X., Liu Y., "Integrated Testing Strategy for Automotive Seat Materials", Journal of Materials Science, 2022.

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