Semiautomatic control pavement marking equipment
A technology for road marking and equipment, which is applied in the field of semi-automatic control of road marking equipment, can solve problems such as poor matching accuracy, and achieve the effects of improving quality, improving matching reliability, and improving matching accuracy
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Embodiment 1
[0036] Such as figure 1 , 2 As shown in and 3, a semi-automatically controlled road marking equipment includes a traveling mechanism 1, a powder bin 21, a resin bin 22, a feeding mechanism 3, a mixing and melting mechanism 4 and an output mechanism 5, and the feeding mechanism 3 includes powder The material transmission component 31 and the resin transmission component 32, the fillers and powders that are continuously and quantitatively input through the powder material transmission component 31 and the resin transmission component 32 respectively are initially mixed during the flow down process and simultaneously flow down simultaneously; the mixing and melting mechanism 4 includes a fixed set The mixing chamber 41 on the traveling mechanism 1, the melting part 42 for liquefying the resin flowing inside the mixing chamber 41, and the mixing part 43 arranged in the mixing chamber 41 for stirring and mixing the melted resin and filler again; The output mechanism 5 is arranged ...
Embodiment 2
[0038] The inventor believes that in order to better implement the technical solution, further specific implementation methods are necessary, so the inventor describes the second embodiment on the basis of the first embodiment.
[0039] Such as figure 1 , 2 As shown in and 3, a semi-automatically controlled road surface marking equipment includes a traveling mechanism 1 and a powder bin 21 and a resin bin 22 arranged on the traveling mechanism 1, and also includes:
[0040] Adding mechanism 3, said adding mechanism 3 includes a powder material transmission component 31 and a resin transmission component 32, the fillers and powders that are continuously quantitatively input through the powder material transmission component 31 and the resin transmission component 32 respectively are preliminarily mixed during the flowing process Simultaneous flow;
[0041] The mixing and melting mechanism 4, the mixing and melting mechanism 4 includes a mixing chamber 41 fixedly arranged on the...
Embodiment 3
[0048] Such as image 3 and 7 As shown, the parts identical or corresponding to those in the second embodiment adopt the reference numerals corresponding to the second embodiment. For the sake of simplicity, only the differences between the second embodiment and the second embodiment are described below; the difference between the third embodiment and the second embodiment The difference is that the powder conveying assembly 31 includes a material introduction pipe 311 which communicates with the mixing chamber 41 and has an airflow inside, and an airflow guide plate 312 arranged in the material introduction pipe 311, and the airflow passes through the airflow The guide plate 312 accelerates on one side to form a negative pressure zone 313 connected with the powder silo 21, wherein the airflow guide plate 312 extends along the flow direction of the airflow in the material introduction pipe 311, and the negative pressure zone 313 is located on the airflow guide plate 312 withi...
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