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Research Article

Preparation and Properties of Graft-Modified Bagasse Cellulose/Polylactic Acid Composites

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Figures & data

Figure 1. FT-IR spectra of BF, BC, GMA, and BC-GMA.

Figure 1. FT-IR spectra of BF, BC, GMA, and BC-GMA.

Figure 2. Mechanism of grafting GMA onto BC.

Figure 2. Mechanism of grafting GMA onto BC.

Figure 3. Effects of reaction time and BC fiber size on the grafting rate of BC.

Figure 3. Effects of reaction time and BC fiber size on the grafting rate of BC.

Figure 4. (a) TG and (b) DTG curves of BF, BC, BCC-GMA, and 30% BCC-GMA/PLA.

Figure 4. (a) TG and (b) DTG curves of BF, BC, BCC-GMA, and 30% BCC-GMA/PLA.

Figure 5. SEM images of (a) BF(850×), (b) BC(510×), (c) BCC(4100×), (d) BCC-GMA(3000×), (e) 10% BCC-GMA/PLA(1000×), (f) 30% BCC-GMA/PLA(1000×), and (g) 50% BCC-GMA/PLA(1500×).

Figure 5. SEM images of (a) BF(850×), (b) BC(510×), (c) BCC(4100×), (d) BCC-GMA(3000×), (e) 10% BCC-GMA/PLA(1000×), (f) 30% BCC-GMA/PLA(1000×), and (g) 50% BCC-GMA/PLA(1500×).

Figure 6. Stress – strain curves of BC-GMA/PLA composites: (a) different types of BC-GMA and (b) different BCC-GMA contents.

Figure 6. Stress – strain curves of BC-GMA/PLA composites: (a) different types of BC-GMA and (b) different BCC-GMA contents.

Figure 7. Radical polymerization mechanism of BCC-GMA/PLA.

Figure 7. Radical polymerization mechanism of BCC-GMA/PLA.

Figure 8. Objects printed with BCC-GMA/PLA wire.

Figure 8. Objects printed with BCC-GMA/PLA wire.
Supplemental material

Supplemental Material

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