SUB-MUFFLER
    1.
    发明申请
    SUB-MUFFLER 有权
    辅助功能

    公开(公告)号:US20090242324A1

    公开(公告)日:2009-10-01

    申请号:US12094902

    申请日:2006-11-24

    IPC分类号: F01N1/24

    摘要: Provided is a sub-muffler which needs no heat resistant material such as SUS, and which can keep its durability and sound absorbing performance even when the sub-muffler is exposed to various corrosive components in the exhaust gas. At the same time, accomplished is a low-cost manufacture, which is a challenge that sub-mufflers and sound absorbing materials commonly face. Disclosed is a sub-muffler in which a perforated exhaust pipe is arranged, and caps and an out pipe are arranged outside the perforated pipe. Sound absorbing materials are filled in the space between the perforated exhaust pipe, and the caps and the out pipe. The sub-muffler is characterized in that, among the sound absorbing materials, at least part of the sound absorbing material of the perforated pipe side is a basalt fiber for high temperature.

    摘要翻译: 本发明提供一种不需要SUS等耐热材料的副消声器,即使在副消音器暴露于废气中的各种腐蚀性成分的情况下也能够保持其耐久性和吸声性能。 同时,完成了低成本制造,这是子消声器和吸音材料通常面临的挑战。 公开了一种其中布置有穿孔排气管的副消声器,并且在穿孔管的外侧设置有盖和出管。 吸声材料填充在穿孔排气管,盖和出管之间的空间中。 所述副消音器的特征在于,在所述吸声材料中,所述多孔管侧吸声材料的至少一部分为高温玄武岩纤维。

    Sub-muffler
    2.
    发明授权
    Sub-muffler 有权
    副消音器

    公开(公告)号:US07896129B2

    公开(公告)日:2011-03-01

    申请号:US12094902

    申请日:2006-11-24

    IPC分类号: F01N1/10 F01N13/14 F01N13/16

    摘要: Provided is a sub-muffler which needs no heat resistant material such as SUS, and which can keep its durability and sound absorbing performance even when the sub-muffler is exposed to various corrosive components in the exhaust gas. At the same time, accomplished is a low-cost manufacture, which is a challenge that sub-mufflers and sound absorbing materials commonly face. Disclosed is a sub-muffler in which a perforated exhaust pipe is arranged, and caps and an out pipe are arranged outside the perforated pipe. Sound absorbing materials are filled in the space between the perforated exhaust pipe, and the caps and the out pipe. The sub-muffler is characterized in that, among the sound absorbing materials, at least part of the sound absorbing material of the perforated pipe side is a basalt fiber for high temperature.

    摘要翻译: 本发明提供一种不需要SUS等耐热材料的副消声器,即使在副消音器暴露于废气中的各种腐蚀性成分的情况下也能够保持其耐久性和吸声性能。 同时,完成了低成本的制造,这是子消声器和吸音材料通常面临的挑战。 公开了一种其中布置有穿孔排气管的副消声器,并且在穿孔管的外侧设置有盖和出管。 吸声材料填充在穿孔排气管,盖和出管之间的空间中。 所述副消音器的特征在于,在所述吸声材料中,所述多孔管侧吸声材料的至少一部分为高温玄武岩纤维。

    Method for manufacturing basalt fiber
    3.
    发明授权
    Method for manufacturing basalt fiber 有权
    制造玄武岩纤维的方法

    公开(公告)号:US08037719B2

    公开(公告)日:2011-10-18

    申请号:US11454842

    申请日:2006-06-19

    IPC分类号: C03B37/02 C03C13/06

    摘要: Basalt filament is manufactured in such a manner that the fiber diameter can be controlled and the filament is not severed during the winding step. A network former and a glass modifier are formed and maintained with respect to basalt rock ore, and the crystallization and binding of basalt fiber are inhibited, the heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. The method includes the steps of: grinding basalt rock as a material; washing a resultant ground rock; melting the ground rock that has been washed; transforming a molten product into fiber; and drawing the fiber in an aligned manner, and winding it. The temperature of the molten product in the melting step is 1400 to 1650° C., and log η is 2.15 to 2.35 dPa·s and preferably 2.2 to 2.3 dPa·s, where η is the viscosity of the molten product.

    摘要翻译: 制造玄武岩丝,使得可以控制纤维直径,并且在卷绕步骤期间丝不被切断。 相对于玄武岩岩石矿形成并保持了网络成型体和玻璃改性剂,并且抑制了玄武岩纤维的结晶和结合,玄武岩纤维的耐热性能从传统的750℃大大提高到850或 900℃,并且比常规产品显着降低成本。 该方法包括以下步骤:将玄武岩岩石作为材料研磨; 清洗所得的地面岩石; 熔化被洗涤的地面岩石; 将熔融产物转化成纤维; 并以对准的方式绘制纤维,并将其卷绕。 熔融步骤中的熔融产物的温度为1400至1650℃, 为2.15〜2.35dPa·s,优选为2.2〜2.3dPa·s,其中& 是熔融产物的粘度。

    Basalt fiber material
    4.
    发明申请
    Basalt fiber material 有权
    玄武岩纤维材料

    公开(公告)号:US20060287186A1

    公开(公告)日:2006-12-21

    申请号:US11446136

    申请日:2006-06-05

    IPC分类号: C03C13/06

    CPC分类号: C03C13/06 C03C1/00

    摘要: A network former and a glass modifier are formed and maintained by using basalt rock ore, and the crystallization and binding of basalt fiber are inhibited The heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. Basalt fiber material having basalt rock as a raw material to which one or more kinds of oxide selected from Al2O3, SiO2, CaO, and MgO is added, and basalt fiber material having two kinds of basalt rock containing different amounts of elements as raw materials are provided.

    摘要翻译: 通过使用玄武岩矿石形成并维持网络成型体和玻璃改性剂,并且抑制玄武岩纤维的结晶和结合玄武岩纤维的耐热性能从传统的750℃大大提高到850或900℃ C.与常规产品相比,实现了显着的成本降低。 玄武岩纤维材料,其中以玄武岩岩石为原料,选自一种或多种选自Al 2 O 3,SiO 2,CaO, ,添加MgO,并且提供具有含有不同量的元素作为原料的两种玄武岩岩石的玄武岩纤维材料。

    Method for manufacturing basalt fiber
    5.
    发明申请
    Method for manufacturing basalt fiber 有权
    制造玄武岩纤维的方法

    公开(公告)号:US20070000721A1

    公开(公告)日:2007-01-04

    申请号:US11454842

    申请日:2006-06-19

    摘要: Basalt filament is manufactured in such a manner that the fiber diameter can be controlled and the filament is not severed during the winding step. A network former and a glass modifier are formed and maintained with respect to basalt rock ore, and the crystallization and binding of basalt fiber are inhibited, the heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. The method includes the steps of: grinding basalt rock as a material; washing a resultant ground rock; melting the ground rock that has been washed; transforming a molten product into fiber; and drawing the fiber in an aligned manner, and winding it. The temperature of the molten product in the melting step is 1400 to 1650° C., and logη is 2.15 to 2.35 dPa·s and preferably 2.2 to 2.3 dPa·s, where η is the viscosity of the molten product.

    摘要翻译: 制造玄武岩纤维,使得可以控制纤维直径,并且在卷绕步骤期间丝不被切断。 相对于玄武岩岩石矿形成并保持了网络成型体和玻璃改性剂,并且抑制了玄武岩纤维的结晶和结合,玄武岩纤维的耐热性能从传统的750℃大大提高到850或 900℃,并且比常规产品显着降低成本。 该方法包括以下步骤:将玄武岩岩石作为材料研磨; 清洗所得的地面岩石; 熔化被洗涤的地面岩石; 将熔融产物转化成纤维; 并以对准的方式绘制纤维,并将其卷绕。 熔融步骤中的熔融产物的温度为1400至1650℃,小麦粉为2.15至2.35dPa.s,优选为2.2至2.3dPa.s,其中η为熔融产物的粘度。

    Method for manufacturing basalt fiber
    6.
    发明授权
    Method for manufacturing basalt fiber 有权
    制造玄武岩纤维的方法

    公开(公告)号:US08501643B2

    公开(公告)日:2013-08-06

    申请号:US13137845

    申请日:2011-09-16

    IPC分类号: D04H3/02

    摘要: Basalt filament is manufactured such that the fiber diameter can be controlled and the filament is not severed during winding. A network former and a glass modifier are formed and maintained with respect to basalt rock ore, and the crystallization and binding of basalt fiber are inhibited, the heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. The method includes: grinding basalt rock as a material; washing a resultant ground rock; melting the ground rock that has been washed; transforming a molten product into fiber; and drawing the fiber in an aligned manner, and winding it. The temperature of the molten product in the melting step is 1400 to 1650° C., and log η is 2.15 to 2.35 dPa·s and preferably 2.2 to 2.3 dPa·s, where η is the viscosity of the molten product.

    摘要翻译: 制造玄武岩丝,使得可以控制纤维直径,并且在缠绕期间丝不被切断。 相对于玄武岩岩石矿形成并保持了网络成型体和玻璃改性剂,并且抑制了玄武岩纤维的结晶和结合,玄武岩纤维的耐热性能从传统的750℃大大提高到850或 900℃,并且比常规产品显着降低成本。 该方法包括:将玄武岩岩石作为材料研磨; 清洗所得的地面岩石; 熔化被洗涤的地面岩石; 将熔融产物转化成纤维; 并以对准的方式绘制纤维,并将其卷绕。 熔融步骤中的熔融产物的温度为1400至1650℃,log eta为2.15至2.35dPa·s,优选为2.2至2.3dPa·s,其中η为熔融产物的粘度。

    Method for manufacturing basalt fiber
    7.
    发明申请
    Method for manufacturing basalt fiber 有权
    制造玄武岩纤维的方法

    公开(公告)号:US20120104306A1

    公开(公告)日:2012-05-03

    申请号:US13137845

    申请日:2011-09-16

    IPC分类号: E04B1/84 C03B37/12

    摘要: Basalt filament is manufactured such that the fiber diameter can be controlled and the filament is not severed during winding. A network former and a glass modifier are formed and maintained with respect to basalt rock ore, and the crystallization and binding of basalt fiber are inhibited, the heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. The method includes: grinding basalt rock as a material; washing a resultant ground rock; melting the ground rock that has been washed; transforming a molten product into fiber; and drawing the fiber in an aligned manner, and winding it. The temperature of the molten product in the melting step is 1400 to 1650° C., and log η is 2.15 to 2.35 dPa·s and preferably 2.2 to 2.3 dPa·s, where η is the viscosity of the molten product.

    摘要翻译: 制造玄武岩丝,使得可以控制纤维直径,并且在缠绕期间丝不被切断。 相对于玄武岩岩石矿形成并保持了网络成型体和玻璃改性剂,并且抑制了玄武岩纤维的结晶和结合,玄武岩纤维的耐热性能从传统的750℃大大提高到850或 900℃,并且比常规产品显着降低成本。 该方法包括:将玄武岩岩石作为材料研磨; 清洗所得的地面岩石; 熔化被洗涤的地面岩石; 将熔融产物转化成纤维; 并以对准的方式绘制纤维,并将其卷绕。 熔融步骤中的熔融产物的温度为1400至1650℃, 为2.15〜2.35dPa·s,优选为2.2〜2.3dPa·s,其中& 是熔融产物的粘度。

    Basalt fiber material
    8.
    发明授权
    Basalt fiber material 有权
    玄武岩纤维材料

    公开(公告)号:US07767603B2

    公开(公告)日:2010-08-03

    申请号:US11446136

    申请日:2006-06-05

    IPC分类号: C03C13/06 C03C6/02

    CPC分类号: C03C13/06 C03C1/00

    摘要: A network former and a glass modifier are formed and maintained by using basalt rock ore, and the crystallization and binding of basalt fiber are inhibited The heat-resistance property of basalt fiber is greatly improved from the conventional 750° C. to 850 or 900° C., and significant cost reduction is achieved over conventional products. Basalt fiber material having basalt rock as a raw material to which one or more kinds of oxide selected from Al2O3, SiO2, CaO, and MgO is added, and basalt fiber material having two kinds of basalt rock containing different amounts of elements as raw materials are provided.

    摘要翻译: 通过使用玄武岩矿石形成并维持网络成型体和玻璃改性剂,并且抑制玄武岩纤维的结晶和结合玄武岩纤维的耐热性能从传统的750℃大大提高到850或900℃ C.与常规产品相比,实现了显着的成本降低。 以玄武岩岩石为原料的玄武岩纤维材料,添加选自Al2O3,SiO2,CaO,MgO中的一种以上的氧化物,以及含有不同量的元素的两种玄武岩岩石为原料的玄武岩纤维材料为 提供。