CN106943955A - 固体原料投釜缓冲装置 - Google Patents
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Abstract
本发明涉及固体原料投釜缓冲装置,包括加料筒和设置在所述加料筒底部的缓冲件,所述加料筒顶部沿边缘面设有滑道;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片,所述半圆形阀片通过拉链与所述加料筒底部相连接,且所述拉链拉头上设有拉杆,所述拉杆沿加料筒竖直方向延伸至所述加料筒上方,所述拉杆一侧部设有横杆,所述横杆一侧部还设有滑杆,所述滑杆放置在所述滑道内;本发明的缓冲装置设计有缓冲件,给加入的料块一个缓冲作用,较大减少了亚麻仁油和亚麻仁油地溅起,节约了资源,减少了污染。
Description
技术领域
本发明涉及缓冲装置,尤其涉及固体原料投釜缓冲装置。
背景技术
在阳极电泳漆树脂合成生产过程中,反应釜中的亚麻仁油和亚麻仁油酸升温到160℃时,需要在反应釜人孔口加入280公斤(约11袋)原料2402#,2402#是块状固体,加入时会溅起高温状态的亚麻仁油和亚麻仁油酸,危害有两点:一是溅起的亚麻仁油和亚麻仁油酸粘连在搅拌轴和釜壁上,造成污染和浪费,给清洗釜壁增加难度;二是倾倒时会喷出一定量的刺激性气体,对操作工造成职业危害。
发明内容
本发明的目的就是针对上述现有技术存在的问题,提供操作简单、优化加料效果的固体原料投釜缓冲装置。
本发明所采用的技术方案是:固体原料投釜缓冲装置,包括有加料筒和设置在所述加料筒底部的缓冲件,所述加料筒顶部沿边缘面设有滑道;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片,所述半圆形阀片通过拉链与所述加料筒底部相连接,且所述拉链拉头上设有拉杆,所述拉杆沿加料筒竖直方向延伸至所述加料筒上方,所述拉杆一侧部设有横杆,所述横杆一侧部还设有滑杆,所述滑杆放置在所述滑道内。
所述拉链控制半圆形阀片的关闭状态和开启状态,且所述拉链前码和后码设置在所述加料筒内侧的中间,所述两个缓冲件的半圆形阀片下表面还通过一弹性装置相连接。
所述拉链、半圆形阀片和加料筒内壁上均涂有至少一层耐高温油漆,所述耐高温油漆由以下重量份原料组成:环氧树脂25-35份、有机硅树脂30-40份、铬铁黑25-35份、氯化石蜡8-11份、钛白粉6-8份、双乙酰苯胺12-15份、冰醋酸7-11份、纳米氧化铝9-13份、三聚磷酸铝7-12份、乙醇胺3-5份、卡波姆1-3份、水玻璃2-6份、添加剂5-10份。
进一步地,所述加料筒为漏斗形加料筒。
进一步地,所述两个缓冲装置的半圆形阀片一侧部通过铰链相连接。
进一步地,所述弹性装置为压缩弹簧。
进一步地,所述添加剂为硅酮化合物和季铵化合物的混合物。
本发明提供的固体原料投釜缓冲装置的有益效果是:本发明的缓冲装置设计有缓冲件,给加入的料块一个缓冲作用,较大减少了亚麻仁油和亚麻仁油地溅起,节约了资源,减少了污染;且本发明缓冲装置的加料筒设计为漏斗形,装置下半部分的直径与反应釜人孔口直径配合间隙比较小,较大减少了刺激性气味气体的溢出,优化了工作环境。
附图说明
图1为本发明的结构图。
图2为本发明半圆形阀片部分的结构图。
其中:1为漏斗形加料筒、2为滑道、3为半圆形阀片、4为拉链、6为拉杆、7为横杆、8为滑杆、9为压缩弹簧。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
实施例1
请参照图1-2,固体原料投釜缓冲装置,包括有漏斗形加料筒1和设置在漏斗形加料筒1底部的缓冲件,漏斗形加料筒1顶部沿边缘面设有滑道2;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片3,半圆形阀片3通过拉链4与加料筒1底部相连接,且拉链4拉头上设有拉杆6,拉杆6沿加料筒1竖直方向延伸至加料筒1上方,拉杆6一侧部设有横杆7,横杆7一侧部还设有滑杆8,滑杆8放置在滑道2内。
拉链4控制半圆形阀片3的关闭状态和开启状态,且拉链4前码和后码设置在漏斗形加料筒1内侧的中间,所述两个缓冲件的半圆形阀片下表面还通过一弹性装置相连接,所述弹性装置为压缩弹簧9,所述两个缓冲装置的所述半圆形阀片一侧部通过铰链相连接。
拉链4、半圆形阀片3和漏斗形加料筒1内壁上均涂有至少一层耐高温油漆,所述耐高温油漆由以下重量份原料组成:环氧树脂25份、有机硅树脂30份、铬铁黑25份、氯化石蜡8份、钛白粉6份、双乙酰苯胺12份、冰醋酸7份、纳米氧化铝9份、三聚磷酸铝7份、乙醇胺3份、卡波姆1份、水玻璃2份、添加剂5份;进一步地,所述添加剂为硅酮化合物和季铵化合物的混合物。
本发明的缓冲装置设计有缓冲件,给加入的料块一个缓冲作用,较大减少了亚麻仁油和亚麻仁油地溅起,节约了资源,减少了污染;且本发明缓冲装置的加料筒设计为漏斗形,装置下半部分的直径与反应釜人孔口直径配合间隙比较小,较大减少了刺激性气味气体的溢出,优化了工作环境。
实施例2
请参照图1-2,固体原料投釜缓冲装置,包括有漏斗形加料筒1和设置在漏斗形加料筒1底部的缓冲件,漏斗形加料筒1顶部沿边缘面设有滑道2;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片3,半圆形阀片3通过拉链4与加料筒1底部相连接,且拉链4拉头上设有拉杆6,拉杆6沿加料筒1竖直方向延伸至加料筒1上方,拉杆6一侧部设有横杆7,横杆7一侧部还设有滑杆8,滑杆8放置在滑道2内。
拉链4控制半圆形阀片3的关闭状态和开启状态,且拉链4前码和后码设置在漏斗形加料筒1内侧的中间,所述两个缓冲件的半圆形阀片下表面还通过一弹性装置相连接,所述弹性装置为压缩弹簧9,所述两个缓冲装置的所述半圆形阀片一侧部通过铰链相连接。
拉链4、半圆形阀片3和漏斗形加料筒1内壁上均涂有至少一层耐高温油漆,所述耐高温油漆由以下重量份原料组成:环氧树脂35份、有机硅树脂40份、铬铁黑35份、氯化石蜡11份、钛白粉8份、双乙酰苯胺15份、冰醋酸11份、纳米氧化铝13份、三聚磷酸铝12份、乙醇胺5份、卡波姆3份、水玻璃6份、添加剂10份;进一步地,所述添加剂为硅酮化合物和季铵化合物的混合物。
本发明的缓冲装置设计有缓冲件,给加入的料块一个缓冲作用,较大减少了亚麻仁油和亚麻仁油地溅起,节约了资源,减少了污染;且本发明缓冲装置的加料筒设计为漏斗形,装置下半部分的直径与反应釜人孔口直径配合间隙比较小,较大减少了刺激性气味气体的溢出,优化了工作环境。
实施例3
请参照图1-2,固体原料投釜缓冲装置,包括有漏斗形加料筒1和设置在漏斗形加料筒1底部的缓冲件,漏斗形加料筒1顶部沿边缘面设有滑道2;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片3,半圆形阀片3通过拉链4与加料筒1底部相连接,且拉链4拉头上设有拉杆6,拉杆6沿加料筒1竖直方向延伸至加料筒1上方,拉杆6一侧部设有横杆7,横杆7一侧部还设有滑杆8,滑杆8放置在滑道2内。
拉链4控制半圆形阀片3的关闭状态和开启状态,且拉链4前码和后码设置在漏斗形加料筒1内侧的中间,所述两个缓冲件的半圆形阀片下表面还通过一弹性装置相连接,所述弹性装置为压缩弹簧9,所述两个缓冲装置的所述半圆形阀片一侧部通过铰链相连接。
拉链4、半圆形阀片3和漏斗形加料筒1内壁上均涂有至少一层耐高温油漆,所述耐高温油漆由以下重量份原料组成:环氧树脂30份、有机硅树脂35份、铬铁黑30份、氯化石蜡10份、钛白粉7份、双乙酰苯胺14份、冰醋酸9份、纳米氧化铝11份、三聚磷酸铝10份、乙醇胺4份、卡波姆2份、水玻璃4份、添加剂8份;进一步地,所述添加剂为硅酮化合物和季铵化合物的混合物。
本发明的缓冲装置设计有缓冲件,给加入的料块一个缓冲作用,较大减少了亚麻仁油和亚麻仁油地溅起,节约了资源,减少了污染;且本发明缓冲装置的加料筒设计为漏斗形,装置下半部分的直径与反应釜人孔口直径配合间隙比较小,较大减少了刺激性气味气体的溢出,优化了工作环境。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
Claims (5)
1.固体原料投釜缓冲装置,其特征在于,包括加料筒和设置在所述加料筒底部的缓冲件,所述加料筒顶部沿边缘面设有滑道;所述缓冲件设置为两个,所述缓冲件包括一半圆形阀片,所述半圆形阀片通过拉链与所述加料筒底部相连接,且所述拉链拉头上设有拉杆,所述拉杆沿加料筒竖直方向延伸至所述加料筒上方,所述拉杆一侧部设有横杆,所述横杆一侧部还设有滑杆,所述滑杆放置在所述滑道内;
所述拉链控制半圆形阀片的关闭状态和开启状态,且所述拉链前码和后码设置在加料筒内侧的中间,所述两个缓冲件的半圆形阀片下表面还通过一弹性装置相连接;
所述拉链、半圆形阀片和加料筒内壁上均涂有至少一层耐高温油漆,所述耐高温油漆由以下重量份原料组成:环氧树脂25-35份、有机硅树脂30-40份、铬铁黑25-35份、氯化石蜡8-11份、钛白粉6-8份、双乙酰苯胺12-15份、冰醋酸7-11份、纳米氧化铝9-13份、三聚磷酸铝7-12份、乙醇胺3-5份、卡波姆1-3份、水玻璃2-6份、添加剂5-10份。
2.根据权利要求1所述的固体原料投釜缓冲装置,其特征在于,所述加料筒为漏斗形加料筒。
3.根据权利要求1所述的固体原料投釜缓冲装置,其特征在于,所述两个缓冲装置的半圆形阀片一侧部通过铰链相连接。
4.根据权利要求1所述的固体原料投釜缓冲装置,其特征在于,所述弹性装置为压缩弹簧。
5.根据权利要求1所述的固体原料投釜缓冲装置,其特征在于,所述添加剂为硅酮化合物和季铵化合物的混合物。
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