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Automatic feeding and supplying system for reflective glass bead tanks
The invention relates to an automatic feeding and supplying system for reflective glass bead tanks; the system is characterized in that two glass bead tanks are arranged side by side in the left-right direction, a feeding connector is arranged in the center of the bottom of each glass bead tank, a pipe base is arranged at the upper end of each glass bead tank, a filter assembly is arranged at an upper port of each pipe base, a negative pressure connecting pipe is arranged at the top of each filter assembly, and the negative pressure connecting pipes are connected with a negative pressure system; the side part of the pipe base is connected with a feeding pipeline assembly and a positive-pressure high-pressure gas circuit interface; a pressure gauge and a positive-pressure ball valve are arranged at the positive-pressure high-pressure gas circuit interface; the feeding connector is connected with a single-line glass bead gun and a double-line glass bead gun assembly through a single-line glass bead pipeline conveying system and a double-line glass bead pipeline conveying system. Negative pressure feeding is adopted, the principle is scientific, the labor intensity of workers is relieved, reflective glass beads with different diameters can be stored for switching according to different construction requirements, and continuous manual material changing in the construction process is avoided; during construction, the reflective glass beads in the tank body are fed at a constant speed in an adjustable manner so as to adapt to different speed requirements during construction.
一种反光玻璃珠罐自动上料及供料系统,玻璃珠罐左右并排设置两个,玻璃珠罐底部中心处设有供料接口,每个玻璃珠罐上端设有管座,管座上端口设有过滤器组件,过滤器组件顶部设有负压连接管,负压连接管连接有负压系统,管座侧部连接有上料管路组件和正压高压气路接口,正压高压气路接口处设有压力表和正压球阀;供料接口通过单双线玻璃珠管路输送系统分别连接有单线玻璃珠枪和双线玻璃珠枪组件。本发明采用负压上料,原理科学,减轻人工劳动强度,可以针对不同的施工要求储存不同直径大小的反光玻璃珠来进行切换,避免了施工中人工不停的换料;在施工中使罐体内反光玻璃珠以匀速并可调节的方式进行供料,来适应施工时不同的速度要求。
Automatic feeding and supplying system for reflective glass bead tanks
The invention relates to an automatic feeding and supplying system for reflective glass bead tanks; the system is characterized in that two glass bead tanks are arranged side by side in the left-right direction, a feeding connector is arranged in the center of the bottom of each glass bead tank, a pipe base is arranged at the upper end of each glass bead tank, a filter assembly is arranged at an upper port of each pipe base, a negative pressure connecting pipe is arranged at the top of each filter assembly, and the negative pressure connecting pipes are connected with a negative pressure system; the side part of the pipe base is connected with a feeding pipeline assembly and a positive-pressure high-pressure gas circuit interface; a pressure gauge and a positive-pressure ball valve are arranged at the positive-pressure high-pressure gas circuit interface; the feeding connector is connected with a single-line glass bead gun and a double-line glass bead gun assembly through a single-line glass bead pipeline conveying system and a double-line glass bead pipeline conveying system. Negative pressure feeding is adopted, the principle is scientific, the labor intensity of workers is relieved, reflective glass beads with different diameters can be stored for switching according to different construction requirements, and continuous manual material changing in the construction process is avoided; during construction, the reflective glass beads in the tank body are fed at a constant speed in an adjustable manner so as to adapt to different speed requirements during construction.
一种反光玻璃珠罐自动上料及供料系统,玻璃珠罐左右并排设置两个,玻璃珠罐底部中心处设有供料接口,每个玻璃珠罐上端设有管座,管座上端口设有过滤器组件,过滤器组件顶部设有负压连接管,负压连接管连接有负压系统,管座侧部连接有上料管路组件和正压高压气路接口,正压高压气路接口处设有压力表和正压球阀;供料接口通过单双线玻璃珠管路输送系统分别连接有单线玻璃珠枪和双线玻璃珠枪组件。本发明采用负压上料,原理科学,减轻人工劳动强度,可以针对不同的施工要求储存不同直径大小的反光玻璃珠来进行切换,避免了施工中人工不停的换料;在施工中使罐体内反光玻璃珠以匀速并可调节的方式进行供料,来适应施工时不同的速度要求。
Automatic feeding and supplying system for reflective glass bead tanks
一种反光玻璃珠罐自动上料及供料系统
LI LINGQIN (Autor:in) / JIAN SHUAI (Autor:in) / ZHANG YU (Autor:in) / ZHAO YONGCHAO (Autor:in) / MA LONG (Autor:in)
15.02.2022
Patent
Elektronische Ressource
Chinesisch
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