Full-automatic feeding device for medical care
A fully automatic and linked technology, which is applied in the direction of therapeutic feeding tubes, feeding bottles, grain processing, etc., and can solve the problems of time-consuming and energy-consuming feeding patients
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Embodiment 1
[0032] refer to Figure 1-6 , a fully automatic feeding device for medical care, comprising: a driving shell 101, a crushing shell 102 and a feeding shell 103, and the feeding shell 103, the crushing shell 102 and the driving shell 101 are detachably connected from left to right;
[0033]The interior of the drive housing 101 is provided with a linkage chamber 104 and a drive chamber 105 sequentially from left to right. A servo motor 106 is fixedly installed on the upper side of the drive chamber 105. A switching motor 107 is fixedly installed at the center of the drive chamber 105. The left side of the servo motor 106 is Both the main shaft and the switching motor 107 main shaft are fixedly connected with the linkage switching mechanism, and the left side of the linkage switching mechanism is movably connected with the peristaltic feeding mechanism. A linkage shaft 108 is fixedly installed in the upper and lower inner walls of the crushing shell 102, and the right end of the li...
Embodiment 2
[0035] Embodiment 2: the difference based on Embodiment 1 is;
[0036] The linkage switching mechanism includes: drive gear 201, rotating gear 202, spline shaft 203, shift lever 204, output gear 205, linkage gear set 206, drive shaft 207, crushing impeller 208 and shift fork 209, the left end of servo motor 106 The main shaft extends to the linkage chamber 104 and is fixedly connected to the axis of the driving gear 201, the lower side of the driving gear 201 is meshed with the upper side of the rotating gear 202, the axis of the rotating gear 202 is fixedly connected to the right side of the spline shaft 203, and the right side of the spline shaft 203 It is movably connected with the inner wall of the linkage chamber 104. The spline shaft 203 is located on the left side of the rotating gear 202 and is movably connected with a shift fork 209. The spline shaft 203 is located on the left side of the shift fork 209 and is movably connected with the axis of the output gear 205. Th...
Embodiment 3
[0039] Embodiment 3: the difference based on embodiment 1 is;
[0040] The negative pressure extraction mechanism includes: a rotating screw 301, a negative pressure extraction housing 302 and a moving ring 303, the left end of the linkage shaft 108 is movably connected with the right end of the rotating screw 301, the left end of the rotating screw 301 is movably connected with the inner wall of the negative pressure extraction chamber 110, and the rotation The screw rod 301 is screwed into the upper and lower sides of the moving ring 303 , the inner wall of the moving ring 303 is fixedly connected with the outer wall of the middle part of the negative pressure extraction shell 302 , and the left and right sides of the negative pressure extraction shell 302 are fixedly connected with the inner wall of the negative pressure extraction chamber 110 .
[0041] The peristaltic feeding mechanism includes: a peristaltic shaft 401, a rotating rod 402, a rotating roller 403 and a peris...
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