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机床立柱3D打印铸造工艺优化及工艺研究
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作者 陈龙 王立春 +2 位作者 郭亮 王世琴 薛正军 《铸造设备与工艺》 2023年第2期16-18,共3页
数控机床的立柱是机床的主要基础部件与受力部件,所以对立柱件的性能与尺寸精度都提出了一定的要求。其结构为三角形,在原生产工艺中,浇注充型过程中容易产生渣气孔,沙眼、夹砂等缺陷。尤其在顶面滑动座处渣气孔缺陷较严重,导致铸件质... 数控机床的立柱是机床的主要基础部件与受力部件,所以对立柱件的性能与尺寸精度都提出了一定的要求。其结构为三角形,在原生产工艺中,浇注充型过程中容易产生渣气孔,沙眼、夹砂等缺陷。尤其在顶面滑动座处渣气孔缺陷较严重,导致铸件质量问题报废率较高。本文主要通过采用虚拟制造技术进行工艺优化,通过3D打印方式造型,铸造成型。生产结果表明,改进后的工艺方案能够有效解决浇注过程中的渣气孔问题。 展开更多
关键词 立柱 气孔 渣气孔 3D打印
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土壤水分充足条件下羊草和大针茅光合速率午间降低的原因 被引量:11
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作者 杜占池 杨宗贵 《植物生态学与地植物学学报》 CSCD 北大核心 1989年第2期106-11,共1页
本文研究了典型草原地带两个主要建群种,羊草和大针茅在没有土壤水分胁迫情况下的光合作用日进程,并分析了光合午间降低的原因。光合作用日进程为午前高峰型;午间,光合速率有所下降。光合午间降低的主要原因是大气湿度减小,引起叶片含... 本文研究了典型草原地带两个主要建群种,羊草和大针茅在没有土壤水分胁迫情况下的光合作用日进程,并分析了光合午间降低的原因。光合作用日进程为午前高峰型;午间,光合速率有所下降。光合午间降低的主要原因是大气湿度减小,引起叶片含水量和气孔传导率下降所致。午间温度和光强升高,导致光呼吸速率增大是次要原因。CO_2浓度降低和光合产物积累对光合午间降低也起一定作用。而生物节律与光合午间降低没有关系。 展开更多
关键词 光合作用 午间降低 羊草 大针茅
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BAK1 plays contrasting roles in regulating abscisic acid-induced stomatal closure and abscisic acid-inhibited primary root growth in Arabidopsis 被引量:3
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作者 Jinping Deng Lingyao Kong +7 位作者 Yinhua Zhu Dan Pei Xuexue Chen Yu Wang Junsheng Qi Chunpeng Song Shuhua Yang Zhizhong Gong 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2022年第6期1264-1280,共17页
The mechanisms that balance plant growth and stress responses are poorly understood, but they appear to involve abscisic acid(ABA) signaling mediated by protein kinases. Here, to explore these mechanisms, we examined ... The mechanisms that balance plant growth and stress responses are poorly understood, but they appear to involve abscisic acid(ABA) signaling mediated by protein kinases. Here, to explore these mechanisms, we examined the responses of Arabidopsis thaliana protein kinase mutants to ABA treatment. We found that mutants of BRASSINOSTEROID INSENSITIVE 1-ASSOCIATED RECEPTOR KINASE 1(BAK1) were hypersensitive to the effects of ABA on both seed germination and primary root growth. The kinase OPEN STOMATA 1(OST1) was more highly activated by ABA in bak1 mutant than the wild type. BAK1 was not activated by ABA treatment in the dominant negative mutant abi1-1 or the pyr1 pyl4 pyl5 pyl8 quadruple mutant, but it was more highly activated by this treatment in the abi1-2 abi2-2 hab1-1 loss-of-function triple mutant than the wild type. BAK1 phosphorylates OST1 T146 and inhibits its activity. Genetic analyses suggested that BAK1 acts at or upstream of core components in the ABA signaling pathway, including PYLs, PP2 Cs,and Sn RK2 s, during seed germination and primary root growth. Although the upstream brassinosteroid(BR) signaling components BAK1 and BR INSENSITIVE 1(BRI1) positively regulate ABAinduced stomatal closure, mutations affecting downstream components of BR signaling, including BRASSINOSTEROID-SIGNALING KINASEs(BSKs)and BRASSINOSTEROID-INSENSITIVE 2(BIN2), did not affect ABA-mediated stomatal movement. Thus,our study uncovered an important role of BAK1 in negatively regulating ABA signaling during seed germination and primary root growth, but positively modulating ABA-induced stomatal closure, thus optimizing the plant growth under drought stress. 展开更多
关键词 abscisic acid BAK1 primary root growth stomatai closure
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