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目的:改进弹药内表面喷涂方式及涂料种类,解决弹药装药环境适应性高低温贮存裂纹疵病的问题。方法采用高压无气喷涂技术进行弹体内表面喷漆,替代原有的空气喷涂。探讨涂料压力、涂料黏度、喷嘴移动速度等因素对涂层质量的影响,通过正交试验确定最佳工艺参数。采用直线加速器检测不同漆膜厚度的弹体装药环境适应性裂纹疵病情况。结果涂料压力为65 kg/cm2,涂料黏度为30 s,喷嘴移动速度为50 Hz,喷嘴孔径分别为0.51,0.71 mm时,弹药内表面漆膜具有较好的外观质量,漆膜厚度及附着力满足要求。膜层厚度为180μm的弹药经高、低温贮存试验,未出现裂纹。结论应用实践证明,高压无气喷涂工艺技术用于弹药卧式自动内表面涂装可行,具有一定的行业推广价值。

Objective To improve the spraying mode and paint variety of internal surface of ammunition, solve the problems of high environment adaptability of ammunition charge and crack flaw due to low-temperature storage. Methods A high pressure air-less spray technique was adopted to carry out spray painting of internal surface of ammunition, to substitute the original air spray mode. The effects of factors such as paint pressure, paint viscosity, nozzle movement speed on the coating quality were discussed, and the optimal process parameters were determined by orthogonal experiments. The situation of the environment adaptability of am-munition charge and the crack flaw of paint film with different thickness were tested by linear accelerator. Results The paint film of inner surface of ammunition had good appearance quality, the thickness of paint film and the adhesion met the requirements when the paint pressure was 65 kg/cm2 , the paint viscosity was 30 s, the nozzle movement speed was 50 Hz, the nozzle diameters were 0. 51 and 0. 71 mm, respectively. The ammunition with a paint film of 180μm thickness did not crack after the high-and low-tem-perature storage tests. Conclusion It was proved by application that the high-pressure airless spray technique used for horizontal automatic inner surface spraying of ammunition was feasible and worthy of spreading in industry.

参考文献

[1] 孙家利,夏克祥,方晓玲,吴强,王秋雨,殷微微.压制武器分步压装RL-F高能炸药工艺技术[J].兵工自动化,2013(10):44-45,65.
[2] 王秋雨,王连义,孙家利,宋瑞华.中大口径弹药包装全寿命标准化应用研究[J].包装工程,2011(23):83-85.
[3] 李正勇,孙丽华,宋瑞华,句广瑞,颜延荣.中大口径弹药表面防腐控制[J].装备环境工程,2013(01):105-107.
[4] 李红生,王文丽.高压无气喷涂设备的应用[J].材料保护,2004(04):51-52.
[5] 上海市化学化工学会;上海涂料公司.高压无气喷涂[M].北京:机械工业出版社,1991
[6] 冯继文 .气动式高压无气喷涂机结构创新设计[D].浙江大学,2010.
[7] 李红生,王文丽.高压无气喷涂工艺设备技术的应用[J].化工设备与防腐蚀,2004(04):33-35,47.
[8] 王祖芬.高压无气喷涂在工程施工中的应用[J].工程机械与维修,2000(06):83.
[9] 黄大江.无气喷涂技术及其应用[J].涂装与电镀,2008(01):16-22.
[10] 朱丽松;曹金才.高压无气喷涂设备及其发展[J].造船技术,1997(08):31-33.
[11] 沈国良,吕莉华.高压无气喷涂机的使用和保养[J].上海涂料,2006(06):27-29.
[12] 滕燕,王譞,孙中圣,路建萍.高压无气喷涂涂料雾化特性实验研究[J].表面技术,2011(06):68-70,100.
[13] 宋会江.扇形喷嘴的雾化特性研究[J].连铸,2011(03):31-33.
[14] 李敏风.无气喷涂工艺中专用喷嘴的选择[J].现代涂料与涂装,2007(04):32-36.
[15] 郗大光;龚允怡;彭志军 等.椭圆孔射流的雾化问题[J].内燃机学报,1996,11(04):370-377.
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