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Telephone number0510-87189500

Jiangsu Province Yixing Nonmetallic Chemical Machinery Factory Co.,Ltd

contact:Miss zhang 15961553272

Phone:0510-87189500

E-mail:yxhjc@yxhjc.com

Fax:0510-87185248

Address:Dingshu Town, Yixing, Jiangsu


National invention and utility patent 

No.Patent namePatent number
1大型耐高温扁平式陶瓷气流粉碎机2011102409584
2SiC/环氧树脂复合材料以及使用其制造泵构件的方法2011102857769
3电熔莫来石砖及其制备方法2011102857773
4抗热震性薄壁堇青石蜂窝陶瓷及其制备方法2011102857951
5高吸水率烟气脱硝蜂窝陶瓷载体及其制备方法2012100361161
6一种烟气过滤管及其制造方法2012100523594
7一种薄壁蜂窝陶挤出模的制造方法2013102007142
8一种大规格堇青石蜂窝陶载体的制备方法2013104504811
9智能陶瓷过滤机2015100573690
10大型耐高温双喷式陶瓷气流粉碎机2015104073326
11一种含尘气体净化方法'2015105577772
12一种用于导电粉尘的除尘方法2015105577804
13扁平式气流粉碎机粉碎喷嘴结构2015200780713
14陶瓷过滤机矿槽自动进料装置2015200780751
15高温陶瓷膜烟气管反吹喷嘴2015200780982
16扁平式气流粉碎机出料管结构2015200781330
17双端面机械密封结构2015200781345
18陶瓷坯体的微波干燥设备2015206659281
19一种柴油机用大规格堇青石蜂窝陶瓷载体2016101417552
20一种陶瓷载体的植皮方法2016101420413
21可反复涂覆的薄壁大规格蜂窝陶瓷载体模具的制造方法2016101481205
22蜂窝陶挤出模201620052316X
23一种圆柱形蜂窝陶瓷载体垂直度检测装置2016201910507
24一种陶瓷坯体微波干燥设备2016201917934
25一种带有导泥板的蜂窝陶挤出模2016201994644
26一种陶瓷生产用定量混料机2017200795629
27用于粉煤灰提取氧化铝工艺上的新型除尘装置2017210647731
28载体、壁流式泥坯切割装置2017210648039
29一种低孔密度蜂窝陶挤出模2017213501214
30双喷式气流粉碎机出料口安装结构2018202589620
31双喷式气流粉碎机粉碎喷嘴结构2018202589654
32一种耐热冲击性优异的堇青石质蜂窝陶瓷载体及其制备方法201910965696.4
33一种高效检测平板陶瓷膜支撑体表面缺陷装置201922218296.5
34耐腐蚀耐磨高温陶瓷泵2019222183008
35烟气除尘用陶瓷滤芯的固定密封结构201922220816.6
36一种泥料均匀挤出装置202020934826.6
37一种高强度薄壁蜂窝陶瓷模具202023067939X
38陶瓷平板膜水通量测试装置 '2020232760220
39陶瓷过滤机双滤桶双真空泵脱水排液装置202023337121.5
40陶瓷过滤器的脉冲反吹清灰装置CN201210177784.6
41带有旋转式喷吹管的脉冲反吹清灰装置CN201210242126.0
42用于高温气体过滤的过滤管及其制作装置和制作方法CN201310058575.4
43用于高温气体过滤的组合式过滤管及其过滤器CN201310147852.9

44

一种蜂窝状结构的陶瓷载体及其制备方法201911250898.7

45

低温常压烧结碳化硅复合陶瓷的制备方法、及其制得的碳化硅复合陶瓷制品和应用202010158425.0

46

一种用于蜂窝陶瓷的植皮泥料及其应用2021108358382

47

用于加工非对称 DPF 模具的分体式电极2021217568173

48

平板膜泡点智能检测装置2021228769354

49

一种蜂窝陶瓷载体废气净化处理装置2021225860182

50

一种直通式蜂窝陶瓷载体 2021225867656

51

一种非对称蜂窝陶瓷载体固定装置 202122586831X

52

一种大规格高承压薄壁堇青石蜂窝陶瓷载体的制备方法202210886637X

53

一种低变形超薄壁蜂窝陶瓷载体的制备方法202210807076X

54

用于陶瓷纤维过滤管内壁旋转渗滴负载催化剂的装置2022230900786


National, industrial, and enterprise’s product standards



No.Standard NameStandard NumberRecord NumberRecord Date
1PT type disc vacuum filterJB/T 10966—2010

2Honeycomb ceramicJC/T686—1998

3Acid brickGB/T8488—2001

4Acid-resistant ceramic containerHG/T3117—1998

5Porcelain rollQ/320282NA003—200914555—2009—Y20090909
6Straight brick and scorpion brick for dry absorption of dry sulphateQ/320282NA011—201015087—2010—H20100520
7Acid-resistant ceramic water ring vacuum pumpQ/320282NA013—201115912—2011—J20110804
8Corrosion resistant fanQ/320282NA014—200914556—2009—J20090909
9Acid-resistant ceramic pumpQ/320282NA015—200914557—2009—J20090909
10Corrosion resistant submerged pumpQ/320282NA017—200914558—2006—J20090909
11HTB series corrosion resistant pumpQ/320282NA020—201115913—2011—J20110804
12HTG type ceramic filterQ/320282NA021—200815914—2011—J20110804
13Acid-resistant and heat-resistant brickQ/320282NA022—201115915—2011—Q20110804
14TMG ceramic filter tubeQ/320282NA023—201115916—2011—J20110804
15HTF asymmetric ceramic membrane filter tubeQ/320282NA024—201115917—2011—J20110804


Publications 

1"Development and Application of Energy-efficient Ceramic Filters," Jiangsu Ceramics, 2000(2);

2. "Development and Application of Domestic HTG Ceramic Vacuum Filters," Nonferrous Equipment, 2001, No. 6;

3. Development of Al2O3 Ceramic Strips for Dry Suction Towers,” Jiangsu Ceramics, 2004.6, Vol. 37, No. 2;

4. “Development, Application and Development of HTG Vacuum Ceramic Filter,” Metal Mine, 2004.10, October Supplement;

5. "Application of HTG Ceramic Filter in Dewatering of Iron Concentrate," Mining Engineering, 2005.2, Volume 3, No. 1;

6. “Design of Engineering Plastic Pump Series Pumps and Applications in Mining and Other Industries,” Mining Express, 2005.4, Volume 21, No. 4;

7. "Selection and Use of HTG Ceramic Filters," Mining Express, 2005.5, Volume 21, Issue 5;

8. “Research on 600-hole/吋2 cordierite honeycomb ceramic carrier,” Jiangsu Ceramics, 2005.12, Vol. 38, No.6;

9. “Correct use of ceramic filters to increase their equipment capacity,” Mining Express, 2006.6, Volume 25;

10. "Factors Affecting the Capacity of Ceramic Filters," Metal Materials and Metallurgical Engineering, 2007.1, No. 1;

11. “Research and Development Status and Development Ideas of Ceramic Filters,” Modern Mining, 2010.2, No. 2;

12. “Problems and Improvement Measures of Ceramic Filter in Dehydration Test of Antimony Ore,” Modern Mining, 2011.8, No. 8;

13. "Improvement and Application of Disc Vacuum Filter," Metal Materials and Metallurgical Engineering, 2010.12, No.6