首页> 外文会议>International Copper-Cobre Conference >DESIGNING AND IMPLEMENTING OF NOISE CONTROL METHOD DUE TO BALL CHARGE IN PRIMARY BALL MILLS OF SARCHESHMEH COPPER COMPLEX
【24h】

DESIGNING AND IMPLEMENTING OF NOISE CONTROL METHOD DUE TO BALL CHARGE IN PRIMARY BALL MILLS OF SARCHESHMEH COPPER COMPLEX

机译:铜料铜综合体主要球轧机丸电荷的设计与实现噪声控制方法

获取原文

摘要

There are 8 primary ball mills in the concentrator plant and their task is material crushing. At the time of balls charge to mills, a lot of noise is produced. This noise would affect all grinding areas. The aim of this research was a reduction about 16 dB at source sound power level (SWL was 129.1 dB). With considering two noise control principles, noise producer sources and propagation paths were specified. For removing and reducing of noise producer sources, rubbers with a thickness of 5-20 mm were used on the all inside surfaces of charge box, ball transferring box and exit canal. For increasing transmission loss and damping coefficient of charge box body, rubber with thickness of 1 cm at outside surface of box was used. For reduction of noise propagation a secondary metal cover was designed and made. This cover includes two parts and was set around the charge box. Glass wool (75 kg/m~3) with 10 cm thickness was used as acoustical absorbent between free space of two body's layers and from secondary cover side. The of the rest space was left empty. After installing of secondary cover on the ball charge box no.4, SWL showed a reduction about 16 dB. For studying of control system effect on noise reduction at points far from of charge place, measuring results at these points showed the maximum reduction 12.1 dB and the minimum 11.8 dB.
机译:集中器厂中有8个主要球磨机,其任务是材料压碎。在球充电时,产生大量噪音。这种噪音会影响所有研磨区域。该研究的目的是在源声功率水平下减少约16dB(SWL为129.1dB)。考虑到两个噪声控制原理,指定了噪声生产者来源和传播路径。为了去除和减少噪声生产者来源,厚度为5-20毫米的橡胶在充电箱,球转移箱和退出运河的所有内表面上使用。为了增加传输损耗和阻尼充电箱体系数,使用盒外表厚度为1cm的橡胶。为了减少噪声传播,设计并制造了二级金属盖。该盖板包括两部分,并设置在充电箱周围。玻璃羊毛(75 kg / m〜3),厚度为10厘米,用作两个身体层的自由空间和二级覆盖侧的声学吸收剂。剩下的空间留空了。在将辅助盖安装在球电荷箱1号后,SWL显示出约16dB的减少。为了研究对远离电荷地点的点的降噪控制系统影响,这些点的测量结果显示最大减少12.1dB和最小11.8 dB。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号