CN106498268A - 节水便器排污阀门铸造材料 - Google Patents
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Abstract
本发明涉及卫生洁具技术领域,尤其涉及一种节水便器排污阀门铸造材料。由如下重量份的原料制成:球墨生铁100份、硅铁15份、废锡制品15份、废铝制品15份、铸造孕育剂5份以及阀门内壁防护涂料5份。节水便器排污阀门铸造材料以及排污阀门的铸造方法,通过合理选择铸造材料,使阀门的机械结构得到显著提升,从而极大地延长其使用寿命。
Description
技术领域
本发明涉及卫生洁具技术领域,尤其涉及一种节水便器排污阀门铸造材料。
背景技术
我国水资源短缺问题日益严重,据统计,冲洗便器用水约占人们日常用水的40%。现有的便器通常结构复杂,与水箱相连,通过水箱内的存水对大小便进行冲刷。现有的便器由于水箱需要存水,每次定量利用水箱中的水进行冲刷,会导致水资源的浪费。因此,有必要提供一种节水便器,以解决上述问题。
另外,作为节水便器的重要部件,排污阀门也是具有十分重要的作用。现有的排污阀门重要存在耐腐蚀性差、使用寿命短等缺陷。
发明内容
本发明要解决的技术问题是提供一种节水便器,以解决现有的便器会导致水资源的浪费的问题。同时,本发明还提供了一种节水便器排污阀门内壁防护涂料及其制备方法、节水便器排污阀门铸造材料以及排污阀门的铸造方法。
为解决上述技术问题,本发明采用的技术方案是:
一种节水便器,包括:盆体和与所述盆体连接的控制箱;所述控制箱设有与所述盆体的上端连通的进水管道、与所述盆体的下端连通的排污管道以及穿设于所述进水管道和排污管道上的控制阀门;所述控制阀门包括按键、与所述按键连接的进水阀门、与所述进水阀门连接的排污阀门;所述进水阀门垂直阻隔于所述进水管道上;所述排污阀门垂直阻隔于所述排污管道上;所述进水阀门与所述排污阀门通过连接杆连接;所述进水阀门上设有进水口;所述排污阀门上设有排污口。
所述按键下方设有弹簧。
所述进水口的直径等于所述进水管道的直径;所述排污口的直径等于所述排污管道的直径。
节水便器排污阀门内壁防护涂料,由如下重量份的原料制成:
环氧树脂50份、硅烷偶联剂10份、丙三醇15份、成膜剂5份、白炭黑10份、乌乐碱5份。
节水便器排污阀门内壁防护涂料的制备方法,步骤如下:
①、将环氧树脂50份、硅烷偶联剂10份加入至搅拌设备中,于50℃下搅拌30分钟,形成悬浮液;
②、将丙三醇15份、成膜剂5份依次加入至搅拌设备中,于45℃下搅拌30分钟;
③、将白炭黑10份、乌乐碱5份依次加入至搅拌设备中,于40℃下搅拌5分钟;
④、升温至75℃,以1000转/分钟的转速搅拌混合10小时,得到排污阀门内壁防护涂料。
节水便器排污阀门铸造材料,由如下重量份的原料制成:
球墨生铁100份、硅铁15份、废锡制品15份、废铝制品15份、铸造孕育剂5份以及阀门内壁防护涂料5份。
节水便器排污阀门的铸造方法,步骤如下:
①、将球墨生铁100份加入至电炉中,加热熔融;
②、再次加入硅铁15份、废锡制品15份、废铝制品15份,继续加热熔融;
③、将熔融铁水冲入铁水包中,并加入铸造孕育剂5份,然后进行扒渣;
④、使用除渣剂进行聚渣、保温;
⑤、将铁水注入阀门铸造模具中,进行浇铸,得到排污阀门;
⑥、对阀门内壁涂刷阀门内壁防护涂料,涂层厚度为2毫米。
本发明所具有的优点与效果是:
1)、节水便器,包括:盆体和与所述盆体连接的控制箱;所述控制箱设有与所述盆体的上端连通的进水管道、与所述盆体的下端连通的排污管道以及穿设于所述进水管道和排污管道上的控制阀门;所述控制阀门包括按键、与所述按键连接的进水阀门、与所述进水阀门连接的排污阀门;所述进水阀门垂直阻隔于所述进水管道上;所述排污阀门垂直阻隔于所述排污管道上;所述进水阀门与所述排污阀门通过连接杆连接;所述进水阀门上设有进水口;所述排污阀门上设有排污口;结构简单,采用特殊的控制阀门的设计,无需设置水箱,有效节约水资源。
2)、节水便器排污阀门内壁防护涂料及其制备方法,通过合理选择原料组成及制备方法,使阀门内壁得到有效防护,使其耐腐蚀性得到显著增强。
3)、节水便器排污阀门铸造材料以及排污阀门的铸造方法,通过合理选择铸造材料,使阀门的机械结构得到显著提升,从而极大地延长其使用寿命。
附图说明
下面结合附图对本发明作进一步详述:
图1为本发明的节水便器的结构示意图;
图2为图1中的进水阀门和排污阀门的结构示意图。
图中:盆体1、控制箱2、进水管道21、排污管道23、控制阀门22、按键221、进水阀门222、排污阀门224、连接杆223、进水口201、排污口202、弹簧220。
具体实施方式
实施例1
如图1至图2所示,本发明提供一种节水便器,包括:盆体1和与盆体1连接的控制箱2;控制箱2设有与盆体1的上端连通的进水管道21、与盆体1的下端连通的排污管道23以及穿设于进水管道21和排污管道23上的控制阀门22;控制阀门22包括按键221、与按键221连接的进水阀门222、与进水阀门222连接的排污阀门224;进水阀门222垂直阻隔于进水管道21上;排污阀门224垂直阻隔于排污管道23上;进水阀门222与排污阀门224通过连接杆223连接;进水阀门222上设有进水口201;排污阀门224上设有排污口202。按键221下方设有弹簧220。进水口201的直径等于进水管道21的直径;排污口202的直径等于排污管道23的直径。
本发明的节水便器在使用时,可按压按键221,使得进水阀门222和排污阀门224同时向下移动,进水口201与进水管道21连通,水进入盆体1对污物进行冲刷,排污口202与排污管道23连通,污物从排污管道23排出。
实施例2
节水便器排污阀门内壁防护涂料,由如下重量份的原料制成:
环氧树脂50份、硅烷偶联剂10份、丙三醇15份、成膜剂5份、白炭黑10份、乌乐碱5份。
节水便器排污阀门内壁防护涂料的制备方法,步骤如下:
①、将环氧树脂50份、硅烷偶联剂10份加入至搅拌设备中,于50℃下搅拌30分钟,形成悬浮液;
②、将丙三醇15份、成膜剂5份依次加入至搅拌设备中,于45℃下搅拌30分钟;
③、将白炭黑10份、乌乐碱5份依次加入至搅拌设备中,于40℃下搅拌5分钟;
④、升温至75℃,以1000转/分钟的转速搅拌混合10小时,得到排污阀门内壁防护涂料。
实施例3
节水便器排污阀门铸造材料,由如下重量份的原料制成:
球墨生铁100份、硅铁15份、废锡制品15份、废铝制品15份、铸造孕育剂5份以及阀门内壁防护涂料(实施例2制备)5份。
节水便器排污阀门的铸造方法,步骤如下:
①、将球墨生铁100份加入至电炉中,加热熔融;
②、再次加入硅铁15份、废锡制品15份、废铝制品15份,继续加热熔融;
③、将熔融铁水冲入铁水包中,并加入铸造孕育剂5份,然后进行扒渣;
④、使用除渣剂进行聚渣、保温;
⑤、将铁水注入阀门铸造模具中,进行浇铸,得到排污阀门;
⑥、对阀门内壁涂刷阀门内壁防护涂料(实施例2制备),涂层厚度为2毫米。
本发明不局限于上述实施例,实施例只是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
Claims (1)
1.一种节水便器排污阀门铸造材料,其特征在于,由如下重量份的原料制成:
球墨生铁100份、硅铁15份、废锡制品15份、废铝制品15份、铸造孕育剂5份以及阀门内壁防护涂料5份。
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