会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 79. 发明专利
    • Intermittent discharge quantity control method for granular powder
    • 颗粒粉末的间歇放电量控制方法
    • JPS5922819A
    • 1984-02-06
    • JP13113082
    • 1982-07-29
    • Denka Consult & Eng Co Ltd
    • FUJII SHIYUUZOUYANAGIHARA YASUOTAKASE ITARUTANIGUCHI KEIJIKOBAYASHI MINORU
    • B65G53/18B65G53/66
    • B65G53/66
    • PURPOSE:To control the intermittent discharge quantity of granular powder while holding the maximum solid-gas ratio, by supplying the primary gas and the secondary gas in the vicinity of an exhaust nozzle and a transport pipe, respectively and controlling the quantity of the primary gas in case of discharging granular powder from the exhaust nozzle connected to the transport pipe onto a fluid bed. CONSTITUTION:Granular powder is discharged onto a fluid bed 2 from a press-feeding container where an exhaust nozzle 3 connected to a transport pipe 6 is opened. In this case, a booster supply pipe 12 is divided into the secondary pipe 12a and the primary pipe 12b, the secondary pipe 12a being connected to a transport pipe 6, the primary pipe 12b being connected to an exhaust pipe 4 near the exhaust nozzle 3. A part Q3 of booster gas is supplied in order to lower the mixing ratio and pressure loss in the exhaust pipe 4 so that the discharge quantity of granular powder is increased, and Q3 is controlled to regulate the discharge quantity. A valve 15 for controlling the secondary booster quantity Q4 is operated in such a manner as to set up the optimum solid-gas ratio Mc determined in relation to the length of the transport pipe 6. The primary booster quantity Q3 is controlled within 5 to 50% to the total gas quantity Q2 of the booster by a control valve 14.
    • 目的:通过分别在排气喷嘴和输送管附近供给一次气体和二次气体来控制颗粒状粉末的间歇排放量,同时保持最大固体气体比例,并控制一次气体的量 在从与输送管连接的排气喷嘴将粒状粉末排出到流化床上的情况下。 构成:将粒状粉末从与输送管6连接的排气喷嘴3打开的加压容器排出到流化床2上。 在这种情况下,助力供给管12被分成二次管12a和主管12b,二次管12a与输送管6连接,主管12b与排气喷嘴3附近的排气管4连接 为了降低排气管4的混合比和压力损失,供给增压气体的第三部分Q3,使得粒状粉末的排出量增加,控制Q3来调节排出量。 用于控制二次助力量Q4的阀15以设定相对于输送管6的长度确定的最佳固气比Mc的方式操作。主增压量Q3被控制在5至50 %,通过控制阀14与增压器的总气体量Q2成比例。