序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 一种增强金属焊管强度的方法 CN201610502932.5 2016-06-29 CN106048598A 2016-10-26 王诗斌
一种增强金属焊管强度的方法,步骤如下:(1)将焊接完成并经过回火的焊管送入预热炉进行预热处理;(2)将预热后的焊管送入声波清洗机进行超声清洗,完成后取出,烘干内外壁分;(3)将焊管一端封闭,从另一端向焊管内装入增强合金粉末,然后把焊管封闭,对焊管进行加热,使焊管内的增强合金粉末熔化,并对焊管进行离心运动,使熔化后的增强合金粘附在焊管内壁上,形成增强合金层;(4)将加工完成的焊管迅速冷却,然后对焊管表面进行等离子处理,然后进行静电喷涂防腐涂料,使焊管表面形成一层防腐层;(5)喷涂过后将焊管传输到烘烤房内,固化10~20分钟,然后自然冷却,把焊管两端切除,得到具有增强合金层的焊管。
2 用于罐的涂料组合物和涂覆方法 CN201110166266.X 2005-10-18 CN102390590B 2016-02-10 R·M·奥布赖恩; D·E·拉尔顿; R·A·斯拜恩达; G·K·巴特雷三世; R·H·伊梵斯
发明涉及用于罐的涂料组合物和涂覆方法,所述涂料组合物包括乳液聚合的胶乳聚合物,该乳液聚合的胶乳聚合物是通过将烯属不饱和单体组分与酸或酸酐官能的聚合物与胺,优选叔胺的盐的分散体结合而形成的。
3 将离聚物附着至金属的方法 CN201280011101.8 2012-03-07 CN103402655A 2013-11-20 B.A.斯米里伊; L.F.佩洛斯
发明公开了使用部分固化的环化物底漆将离聚物组合物粘结至金属的方法。所述方法可用于制备高度耐磨管状制品,诸如包括离聚物衬里层的管道。
4 大型管防腐涂层自动涂装工艺及其生产线 CN200910100679.0 2009-07-15 CN101607247A 2009-12-23 史岳明; 熊信勇
发明涉及到一种大型管防腐涂层自动涂装工艺及其生产线,该涂装工艺为钢管在钢管传送机构的传送下依次进入去湿除污机、自动抛丸机、预热烘房、喷漆房、漆膜固化房和冷却房各机构内,经过去污除湿、表面处理、预加热后进入喷漆、漆膜固化、和冷却工序;该生产线包括钢管传送机构、去湿除污机、自动抛丸机和预热烘房,所述自动抛丸机放置在所述去湿除污机和预热烘房之间,其特征在于:在所述的预热烘房之后还设置有喷漆固化单元,该喷漆固化单元由依次前后成直线分布的喷漆房、漆膜固化房和冷却房组成,其中喷漆房内设置有向钢管表面喷装防腐涂层的喷涂机,而所述的漆膜固化房内设有热循环系统。本发明是在一条生产线上连续自动化作业,生产效率高,涂装质量好,且避免了环境的污染。
5 一种抗静电改性PE虹吸排管材的制备工艺 CN201610665385.2 2016-08-06 CN106280588A 2017-01-04 宗良; 陈燕良; 沈鑫
发明公开了一种抗静电改性PE虹吸排管材的制备工艺,一种抗静电改性PE虹吸排水管材的制备工艺,其特征在于,包括以下步骤:1)将纳米化锌涂料涂在基管层上,形成抗静电涂层;2)将三元乙丙橡胶15-50wt.%,低密度聚乙烯15-50wt.%,乙烯基有机树脂20-55wt.%,引发剂0.1-2.0wt.%,抗氧剂0.05-1.0wt.%,硬脂酸0.1-1wt.%按重量份配制成浆料,一次均匀涂布于抗静电涂层的上表面,形成功能层;3)将涂布好的基管经过热固化,光固化制备而成;所述热固化的温度为80-120度、时间为10-30S;所述光固化的强度为80-120W/cm、剂量为100-400J/cm2、照射时间5-20S。本发明由纳米氧化锌构成的抗静电涂层具有良好的导电性,能够把管件表面的静电带走,从而达到驱除静电的效果,其除静电的效果非常稳定和极其良好。
6 大型管防腐涂层自动涂装工艺及其生产线 CN200910100679.0 2009-07-15 CN101607247B 2012-01-18 史岳明; 熊信勇
发明涉及到一种大型管防腐涂层自动涂装工艺及其生产线,该涂装工艺为钢管在钢管传送机构的传送下依次进入去湿除污机、自动抛丸机、预热烘房、喷漆房、漆膜固化房和冷却房各机构内,经过去污除湿、表面处理、预加热后进入喷漆、漆膜固化、和冷却工序;该生产线包括钢管传送机构、去湿除污机、自动抛丸机和预热烘房,所述自动抛丸机放置在所述去湿除污机和预热烘房之间,其特征在于:在所述的预热烘房之后还设置有喷漆固化单元,该喷漆固化单元由依次前后成直线分布的喷漆房、漆膜固化房和冷却房组成,其中喷漆房内设置有向钢管表面喷装防腐涂层的喷涂机,而所述的漆膜固化房内设有热循环系统。本发明是在一条生产线上连续自动化作业,生产效率高,涂装质量好,且避免了环境的污染。
7 用于罐的涂料组合物和涂覆方法 CN200580034914.9 2005-10-18 CN101040016A 2007-09-19 R·M·奥布赖恩; D·E·拉尔顿; R·A·斯拜恩达; G·K·巴特雷三世; R·H·伊梵斯
用于食品或饮料罐的涂料组合物,其包括乳液聚合的胶乳聚合物,该乳液聚合的胶乳聚合物是通过将烯属不饱和单体组分与酸或酸酐官能的聚合物与胺,优选叔胺的盐的分散体结合而形成的。
8 一种用于管接的涂层方法和涂有聚乙烯的铸铁管接 CN200580001792.3 2005-12-12 CN1905956A 2007-01-31 朴珍万
公开了一种用于连接管子以形成管道,例如供管道和排污管道的管接,特别地,一种在其内外表面涂有聚乙烯树脂管接。本发明涉及一种用于连接管子以形成管道的铸铁管接,例如L型弯头、T型支管、Y型支管和用于连接不同直径管子的异径接头。通过预处理过程、加热过程、涂层过程和冷却过程,在铸铁管接的内外表面涂上聚乙烯树脂。在涂层过程中,从充有聚乙烯树脂粉末的涂层箱下边将空气吹过过滤网,以使聚乙烯树脂粉末悬浮。将加热的管接插入涂层箱中,并旋转该管接,这样聚乙烯树脂将附着在管接上。其后,在冷却水中将管接冷却,以使涂层收缩并使管接表面有光泽。
9 一种塑瓷复合管 CN201510759274.3 2015-11-09 CN105384342A 2016-03-09 陈俊洁
发明公开了一种塑瓷复合管,其具体制作工艺如下:(1)钢管前处理;(2)在钢管的内外表面涂搪瓷釉,并干燥;(3)钢管与干燥后的搪瓷釉烧成;(4)对带有搪瓷釉的钢管表面进行静电喷塑;(5)将喷塑后的材料固化,即得到成品。本发明在钢管内外搪瓷后再静电喷塑的新工艺,其优点:1、从根本上解决了钢管腐蚀的问题,2、使用寿命大大延长,3、外面喷塑解决了搪瓷表面抗碰撞的问题,4、表面美观及色彩多样化。
10 用于罐的涂料组合物和涂覆方法 CN201110166266.X 2005-10-18 CN102390590A 2012-03-28 R·M·奥布赖恩; D·E·拉尔顿; R·A·斯拜恩达; G·K·巴特雷三世; R·H·伊梵斯
发明涉及用于罐的涂料组合物和涂覆方法,所述涂料组合物包括乳液聚合的胶乳聚合物,该乳液聚合的胶乳聚合物是通过将烯属不饱和单体组分与酸或酸酐官能的聚合物与胺,优选叔胺的盐的分散体结合而形成的。
11 用于罐的涂料组合物和涂覆方法 CN200580034914.9 2005-10-18 CN101040016B 2011-08-03 R·M·奥布赖恩; D·E·拉尔顿; R·A·斯拜恩达; G·K·巴特雷三世; R·H·伊梵斯
用于食品或饮料罐的涂料组合物,其包括乳液聚合的胶乳聚合物,该乳液聚合的胶乳聚合物是通过将烯属不饱和单体组分与酸或酸酐官能的聚合物与胺,优选叔胺的盐的分散体结合而形成的。
12 一种采用流化床涂布的无铬酸盐管材涂布的方法 CN03132847.4 2003-07-22 CN100509178C 2009-07-08 D·海恩里希; H·肖尔藤
描述一种用于采用流化床涂布的无铬酸盐涂布管材的连续系统。
13 无铬酸盐连续流化床管材涂布 CN03132847.4 2003-07-22 CN1488447A 2004-04-14 D·海恩里希; H·肖尔藤
描述一种用于采用流化床涂布的无铬酸盐涂布管材的连续系统。
14 Coating methods jump coating composition for cans JP2007538035 2005-10-18 JP2008516769A 2008-05-22 エヴァンズ,リチャード・エイチ; オブライエン,ロバート・エム; スパインダ,レイチェル・アン; バートリー,ジョージ・ケイ,サード; ラードン,ダニエル・イー
酸官能性もしくは酸無物官能性ポリマーとアミン(好ましくは第三アミン)との塩の水性分散液とエチレン性不飽和モノマー成分とを混合することによって形成されるエマルジョン重合ラテックスポリマーを含んだ食品用もしくは飲料用缶のためのコーティング組成物。
15 Method for applying no chromate coating on tubular article by fluidized bed dipping and applied tubular article JP2003200680 2003-07-23 JP2004105949A 2004-04-08 HEINRICH DIRK; SCHOLTEN HEINZ DR
PROBLEM TO BE SOLVED: To provide a new method which enables a continuous application of no chromate coating on a tubular article. SOLUTION: In order to apply no chromate coating on the tubular article by fluidized bed dipping using a meltable powder polymer as a coating agent, this method is to clean the tubular article in a pretreatment device, to apply a primer on the tubular article, to bake the primer by a medium frequency induction coil, to use the medium frequency induction coil for preheating of the tubular article, to coat by applying the fluidized bed dip coating bath, to avoid a powder deposition by a device comprising an air shower on the upper part of the tubular article in the fluidized bed dip coating bath, to avoid the powder shortage by a guide plate comprising the air shower on the lower part of the tubular article in the fluidized bed dip coating, to make the incompletely molten coating flat by using the medium frequency induction coil, to completely and smoothly melt in the melting section, to cool down the surface of the tubular article by the air shower at first and further to cool down the coating again by water cooling. COPYRIGHT: (C)2004,JPO
16 PIPE COUPLING THERMAL CLEANING AND COATING CURING OVEN AND METHOD US15049565 2016-02-22 US20170241013A1 2017-08-24 AZIZ A. JAMALUDDIN
Systems and methods for treating metal pipe couplings, including a frame and insulated panels attached to the frame forming an oven. A pre-heat zone and a bake zone inside the oven, the pre-heat zone separated from the bake zone by a shared oven wall. A combustion burner and recirculation blower are positioned in opposite ends of the oven in a pre-heat zone combustion/recirculation chamber. Another burner and recirculation blower pair are positioned in opposite ends of the oven in a bake zone combustion/recirculation chamber. Heated air supply plenums are fluidly connected to respective recirculation blowers, and include direction-adjustable nozzles to direct heated air generally downward onto pipe couplings moving through the preheat and bake zones. Return air plenums positioned in each of the pre-heat and bake zones each have an air inlet, and an outlet fluidly connected to respective combustion/recirculation chambers. Coating-cured metal pipe couplings made by the methods.
17 Coating compositions for aluminum beverage cans and methods of coating same US14918258 2015-10-20 US09415900B2 2016-08-16 Robert M O'Brien; Daniel E. Rardon; Rachael Ann Spynda; George K. Bartley; Richard H. Evans
A coating composition for a food or beverage can that includes an emulsion polymerized latex polymer formed by combining an ethylenically unsaturated monomer component with an aqueous dispersion of a water-dispersible polymer.
18 Additives To Increase Degradation Rate Of A Biodegradable Scaffolding And Methods Of Forming Same US14281811 2014-05-19 US20150328373A1 2015-11-19 Stephen D. Pacetti; Xiao Ma
Methods of making biodegradable polymeric devices, such as stents, with one or more modifications to alter the degradation rate, and the biodegradable polymeric devices are described. Modifications include blending of two polymers, one with a different degradation rate, inclusion of additives to alter the degradation rate, and the use of polymers of a high polydispersity.
19 Coating Compositions for Cans and Methods of Coating US12505236 2009-07-17 US20100178442A1 2010-07-15 Robert M. O'Brien; Daniel E. Rardon; Rachael Ann Spynda; George K. Bartley, III; Richard H. Evans; T. Howard Killilea; Carl Cavallin
A coating composition for a food or beverage can that includes an emulsion polymerized latex polymer formed by combining an ethylenically unsaturated monomer component with an aqueous dispersion of a water-dispersible polymer.
20 Coating compositions for cans and methods of coating US11253161 2005-10-18 US07592047B2 2009-09-22 Robert M. O'Brien; Daniel E. Rardon; Rachael Ann Spynda; George K. Bartley, III; Richard H. Evans
A coating composition for a food or beverage can that includes an emulsion polymerized latex polymer formed by combining an ethylenically unsaturated monomer component with an aqueous dispersion of a salt of an acid- or anhydride-functional polymer and an amine, preferably, a tertiary amine.
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