烟草科技
煙草科技
연초과기
Tobacco Science & Technology
2015年
10期
84-88
,共5页
滤棒成型机组%双通道%刀盘%喇叭嘴%切割装置
濾棒成型機組%雙通道%刀盤%喇叭嘴%切割裝置
려봉성형궤조%쌍통도%도반%나팔취%절할장치
Filter maker%Twin filter rods%Cutoff blade carrier%Ledger%Cutoff device
为掌握双通道滤棒切割技术,分析了切割装置的结构原理,通过建立刀盘和旋转喇叭嘴的数学模型,推导了滤棒长度与刀盘倾斜角及喇叭嘴旋转直径之间的关系,并进行了仿真分析.结果表明:①双通道滤棒切割装置的设计首先需确定双通道中心间距、切刀宽度、刀盘直径和刀盘旋转中心位置;②滤棒长度决定刀盘倾斜角;③滤棒长度和刀盘倾斜角决定喇叭嘴旋转直径;④在Matlab软件中求解不同滤棒长度下刀盘倾斜角和喇叭嘴旋转直径,其计算值与G.D公司提供值偏差较小.以切刀、喇叭嘴和滤棒三者的空间交互运动建立的数学模型,其理论分析和计算结果是正确的,能够用于计算和设计不同滤棒长度规格的双通道滤棒切割装置.
為掌握雙通道濾棒切割技術,分析瞭切割裝置的結構原理,通過建立刀盤和鏇轉喇叭嘴的數學模型,推導瞭濾棒長度與刀盤傾斜角及喇叭嘴鏇轉直徑之間的關繫,併進行瞭倣真分析.結果錶明:①雙通道濾棒切割裝置的設計首先需確定雙通道中心間距、切刀寬度、刀盤直徑和刀盤鏇轉中心位置;②濾棒長度決定刀盤傾斜角;③濾棒長度和刀盤傾斜角決定喇叭嘴鏇轉直徑;④在Matlab軟件中求解不同濾棒長度下刀盤傾斜角和喇叭嘴鏇轉直徑,其計算值與G.D公司提供值偏差較小.以切刀、喇叭嘴和濾棒三者的空間交互運動建立的數學模型,其理論分析和計算結果是正確的,能夠用于計算和設計不同濾棒長度規格的雙通道濾棒切割裝置.
위장악쌍통도려봉절할기술,분석료절할장치적결구원리,통과건립도반화선전나팔취적수학모형,추도료려봉장도여도반경사각급나팔취선전직경지간적관계,병진행료방진분석.결과표명:①쌍통도려봉절할장치적설계수선수학정쌍통도중심간거、절도관도、도반직경화도반선전중심위치;②려봉장도결정도반경사각;③려봉장도화도반경사각결정나팔취선전직경;④재Matlab연건중구해불동려봉장도하도반경사각화나팔취선전직경,기계산치여G.D공사제공치편차교소.이절도、나팔취화려봉삼자적공간교호운동건립적수학모형,기이론분석화계산결과시정학적,능구용우계산화설계불동려봉장도규격적쌍통도려봉절할장치.
In order to master the cutoff device for twin filter rods in filter rod maker, the structure of the device was analyzed. The relationships of filter plug length with the inclination angle of cutoff blade carrier and the rotational diameter of ledgers were derived and a mathematic model was developed, simulation analysis was conducted as well. The results showed that: 1) The center-to-center distance between the twin filter rods, blade width and the diameter and rotary center location of blade carrier should be decided before designing. 2) Filter plug length decided the inclination angle of blade carrier. 3) Filter plug length and the inclination angle of blade carrier decided the rotational diameter of the ledgers. 4) The inclination angles of blade carrier and the rotational diameter of ledgers corresponding to various filter plug lengths were calculated with Matlab software, the calculated results were close to the values provided by G.D Corporation. The theoretical analysis and calculation results of the mathematic model were proved to be correct and applicable to designing the cutoff device for twin filter rods.