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圆锥破碎机上架体铸造工艺设计 被引量:1
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作者 孙爱新 李晓明 +3 位作者 王话 孙振国 金丽敏 康文 《铸造》 CAS CSCD 北大核心 2013年第1期77-79,共3页
圆锥破碎机上架体为大型铸钢件,质量要求高。为提高圆锥破碎机上架体的工艺出品率和产品合格率,通过对上架体铸件进行结构分析,采用模数法对大型半齿轮冒口补缩工艺进行计算,并通过增加外冷铁,改进浇注系统等措施对铸造工艺进行优化。... 圆锥破碎机上架体为大型铸钢件,质量要求高。为提高圆锥破碎机上架体的工艺出品率和产品合格率,通过对上架体铸件进行结构分析,采用模数法对大型半齿轮冒口补缩工艺进行计算,并通过增加外冷铁,改进浇注系统等措施对铸造工艺进行优化。最后生产出合格的上架体铸件,为今后此类铸件的生产提供了宝贵的经验。 展开更多
关键词 圆锥破碎机 上架体 大型铸钢件 冒口 铸造工艺
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圆锥破碎机上架体的改进
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作者 刘耀光 陈小波 《矿业工程》 CAS 2014年第1期41-42,共2页
破碎机是选矿生产中的关键设备,由于工况条件迥异,它在生产实际中会遇到不同的问题。本文主要介绍了针对破碎机在运行中的实际问题而进行的技术改进,提高了破碎机上架体的使用寿命。
关键词 圆锥破碎机 上架体 横梁 臂架帽
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CH890破碎机动锥衬板更换方法
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作者 岳洪 《冶金设备管理与维修》 2020年第1期1-3,6,共4页
介绍了山特维克CH890破碎机的工作原理,详细阐述了CH890破碎机动锥衬板的更换方法。
关键词 CH890破碎机 动锥衬板 上架体 给料筒 主轴
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Efficient and flexible memory architecture to alleviate data and context bandwidth bottlenecks of coarse-grained reconfigurable arrays 被引量:2
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作者 YANG Chen LIU Lei Bo +1 位作者 YIN Shou Yi WEI Shao Jun 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第12期2214-2227,共14页
The computational capability of a coarse-grained reconfigurable array(CGRA)can be significantly restrained due to data and context memory bandwidth bottlenecks.Traditionally,two methods have been used to resolve this ... The computational capability of a coarse-grained reconfigurable array(CGRA)can be significantly restrained due to data and context memory bandwidth bottlenecks.Traditionally,two methods have been used to resolve this problem.One method loads the context into the CGRA at run time.This method occupies very small on-chip memory but induces very large latency,which leads to low computational efficiency.The other method adopts a multi-context structure.This method loads the context into the on-chip context memory at the boot phase.Broadcasting the pointer of a set of contexts changes the hardware configuration on a cycle-by-cycle basis.The size of the context memory induces a large area overhead in multi-context structures,which results in major restrictions on application complexity.This paper proposes a Predictable Context Cache(PCC)architecture to address the above context issues by buffering the context inside a CGRA.In this architecture,context is dynamically transferred into the CGRA.Utilizing a PCC significantly reduces the on-chip context memory and the complexity of the applications running on the CGRA is no longer restricted by the size of the on-chip context memory.Data preloading is the most frequently used approach to hide input data latency and speed up the data transmission process for the data bandwidth issue.Rather than fundamentally reducing the amount of input data,the transferred data and computations are processed in parallel.However,the data preloading method cannot work efficiently because data transmission becomes the critical path as the reconfigurable array scale increases.This paper also presents a Hierarchical Data Memory(HDM)architecture as a solution to the efficiency problem.In this architecture,high internal bandwidth is provided to buffer both reused input data and intermediate data.The HDM architecture relieves the external memory from the data transfer burden so that the performance is significantly improved.As a result of using PCC and HDM,experiments running mainstream video decoding programs achieved performance improvements of 13.57%–19.48%when there was a reasonable memory size.Therefore,1080p@35.7fps for H.264high profile video decoding can be achieved on PCC and HDM architecture when utilizing a 200 MHz working frequency.Further,the size of the on-chip context memory no longer restricted complex applications,which were efficiently executed on the PCC and HDM architecture. 展开更多
关键词 memory architecture CGRA context cache cache prefetch data memory
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