Grant: HLJHDNY2114
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Grant: 202201011636
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Grant: 2022ZXJ05C01
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Grant: 22GDZY0105
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
National Natural Science Foundation of China, NSFC
Grant: 61801144, 61971156, 62201174
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Natural Science Foundation of Shandong Province
Grant: ZR2019MF035, ZR2019QF003, ZR2020MF141
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Heilongjiang University of Science and Technology, USTH
Grant: 000009020315
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Fundamental Research Funds for the Central Universities
Grant: HIT.NSRIF.2019081
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research
Special Fund Project for Science and Technology Innovation Strategy of Guangdong Province
Grant: -2021-zx-18, 2021GXSZ143
Funding text 1: This paper is supported by National Natural Science Foundation of China (NSFC) under grant No. 62201174.; Funding text 2: project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 3: This work was supported by grant of No. Pdjh2021b0744 from the special fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Political Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research project of Guangzhou basic research plan (general project) “Research on bonding mechanism of seawater and sand concrete based on thread characteristics of BFRP reinforcement”. And by grant of No. 22GDZY0105 from The 2022 Higher Education Scientific Research Planning Project of the Chinese Association of Higher Education “Research on the Construction of the National Qualifications Framework and the Implementation of the 1+X Certificate System”.; Funding text 4: cial fund for science and technology innovation strategy of Guangdong Province in 2021; and by grant of No. 2021GXSZ143 from The 2021 Guangdong Provincial Ideological and Polit-; Funding text 5: Acknowledgements. This work was financed by the Technological Project of Heilongjiang Province “The open competition mechanism to select the best candidates” (No. 2022ZXJ05C01), Funding for the Opening Project of Key Laboratory of Agricultural Renewable Resource Utilization Technology (No. HLJHDNY2114) and Heilongjiang University of Science and Technology the introduction of high-level talent research start-up fund projects (No. 000009020315).; Funding text 6: This work was supported partially by National Natural Science Foundation of China (Grant Nos. 61971156, 61801144), Shandong Provincial Natural Science Foundation, China (Grant Nos. ZR2019QF003, ZR2019MF035, ZR2020MF141), the Fundamental Research Funds for the Central Universities, China (Grant No. HIT.NSRIF.2019081).; Funding text 7: ical Education Project “Research on Accurate Ideological and Political Education in Colleges and Universities Based on Student Portrait Analysis”; and by grant of No. (GDPIC)-2021-zx-18 from the 2021 school level entrusted special project of Guangdong Polytechnic of Industry & Commerce; and by grant of No. 202201011636 from the 2022 basic and applied basic research