Aseptic cleaning device of feeding bottle for department of obstetrics and gynecology in medical treatment
Technical Field
The invention relates to an aseptic cleaning device, in particular to a medical aseptic cleaning device for a feeding bottle for a gynaecology and obstetrics room.
Background
Various milk bottles, nipples, complementary food bowls and other devices can be used for pregnant women to feed infants in daily life, and as the shape of the milk bottles is small in bottle mouth and thin in bottle body, people cannot directly clean the inner wall of the milk bottle by hands, the brushes can be used as assistance to comprehensively clean the milk bottle.
The utility model provides a plastic feeding bottle is soft because the brush is often applied force when the staff uses the brush to clean the feeding bottle, so the bottle internal surface is very easily received the friction of brush hair and is produced thin scratch when wasing, and will form the scale at thin scratch department, and after the time is long, the scale blocking phenomenon can become more and more serious, this is except causing the perspective poor of feeding bottle, and the looks bad can also cause abluent difficulty, and lead to breeding of bacterium easily, consequently it is clean to the feeding bottle inner wall to rely on the even application of force of machine to design a medical gynaecology and obstetrics room that reduces the scratch production and the bacterium of feeding bottle inner wall and breed with feeding bottle aseptic cleaning device.
Disclosure of Invention
In order to overcome the defects that the cleaning force application of a hairbrush by hands is uneven, fine scratches are easy to generate and bacteria are easy to breed for a long time, the invention aims to provide the medical aseptic cleaning device for the nursing bottle for the gynaecology and obstetrics room, which is used for cleaning the inner wall of the nursing bottle by means of uniform force application of a machine and reducing the scratch generation and bacteria breeding on the inner wall of the nursing bottle.
The technical proposal is as follows: the utility model provides a medical treatment department of obstetrics is with aseptic cleaning device of feeding bottle, which comprises a base, first support frame, wash the frame, first backup pad, the second support frame, first pivot, the brush, the unloading pipe, rotary mechanism and protection machanism, base one side symmetry is equipped with first support frame, be connected with between the first support frame top and wash the frame, it is equipped with first backup pad to wash frame top one side, first backup pad top one side is equipped with the second support frame, second support frame one side movable is equipped with first pivot, first pivot bottom is equipped with and is used for carrying out clear brush to the feeding bottle, it is equipped with the unloading pipe that can discharge waste water to wash frame bottom one side, base top one side is equipped with rotary mechanism, be connected with protection machanism on the washing frame.
As a further preferable scheme, the rotating mechanism comprises a second supporting plate, a third supporting frame, an air cylinder, a first rack, a first gear and a first bracket, wherein the second supporting plate is arranged on one side of the top of the base, the third supporting frame is connected between two sides of the upper portion of the second supporting plate, the air cylinder is arranged on the upper portion of the third supporting frame, the first rack is connected on a telescopic rod of the air cylinder, and the first gear and the first bracket are arranged on the upper portion of the first rotating shaft.
As a further preferred scheme, the protection mechanism comprises a sliding rail, a protection plate, a fixing rod, a first spring, a second support and a movable plate, wherein the upper portion of the first support frame is connected with the sliding rail, the fixing rod is arranged in the sliding rail in a sliding mode, the first spring is connected between the fixing rod and the inner side of the sliding rail, the protection plate is connected between the fixing rods, one side of the first rack is connected with the second support, and two sides of the second support are connected with the movable plate.
As a further preferred scheme, still including spraying mechanism, spraying mechanism is including loading the frame, spout material pipe, shower nozzle, clamp plate, second spring, first oblique shape piece and sketch plate, and second backup pad top is equipped with the frame of loading, and the last slidingtype of loading is equipped with the clamp plate, is connected with the second spring between clamp plate and the top in the frame of loading, and the symmetry is equipped with spouts material pipe in the first backup pad, spouts material pipe one side and all is connected with the shower nozzle, and clamp plate upper portion both sides all are connected with first oblique shape piece, and fly leaf one side all is equipped with sketch plate.
As a further preferred scheme, the clamping mechanism comprises a second oblique block, a fixed plate, clamping plates, a third oblique block and a third spring, wherein the fixed plate is arranged at the top of the first support frame, the clamping plates are arranged on the inner side of the upper portion of the fixed plate in a sliding mode, the third spring is connected between the clamping plates and the outer side of the fixed plate, the third oblique block is connected on the outer side of the clamping plates, and the second oblique block is arranged on the outer side of the fixed rod.
As a further preferable scheme, the automatic cleaning device further comprises a discharging mechanism, wherein the discharging mechanism comprises a second rotating shaft, a baffle, a second gear, a third support and a second rack, the second rotating shaft is rotatably arranged at the bottom of the cleaning frame, the baffle is arranged in the middle of the second rotating shaft, the second gear is arranged at the lower part of the second rotating shaft, the third support is connected to a second oblique-shaped block on one side, and the second rack is arranged at the bottom of the third support.
As a further preferred scheme, the collecting mechanism comprises a movable rod, a placing plate, a collecting frame and a fourth spring, wherein the movable rod is symmetrically arranged on one side of the base, the placing plate is arranged between the movable rods in a sliding mode, the collecting frame is placed at the top of the placing plate, and the fourth spring is connected between the placing plate and the movable rod.
As a further preferable mode, a transparent window is arranged on the cleaning frame.
Compared with the prior art, the invention has the following advantages: 1. the first rotating shaft rotates to drive the brush to rotate so as to brush the milk bottle, and meanwhile, the protection plate moves rightwards to block the cleaning frame, so that water splashing is avoided, and meanwhile, bacterial attachment is reduced;
2. the pressing plate continuously moves up and down to squeeze the clear water to be sprayed to the feeding bottle through the spray head, the cleaning is assisted, the clear water is directly poured into the feeding bottle without hands, and meanwhile, the phenomenon that the feeding bottle is toppled due to suddenly increased water level can be avoided;
3. the clamping plate moves inwards to clamp the feeding bottle, so that the feeding bottle is prevented from being toppled by the force of the brush during cleaning, and cleaning is prevented from being influenced;
4. the baffle rotates and carries out continuous switch to the unloading pipe, cooperates washs and discharges of sewage, and is concentrated the discharge to sewage through collecting the frame afterwards.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a first part of the present invention.
Fig. 3 is a schematic perspective view of a second part of the present invention.
Fig. 4 is a schematic perspective view of a first part of the rotating mechanism of the present invention.
Fig. 5 is a schematic perspective view of a second part of the rotary mechanism of the present invention.
Fig. 6 is a schematic perspective view of a first part of the protection mechanism of the present invention.
Fig. 7 is a schematic perspective view of a second part of the protection mechanism of the present invention.
Fig. 8 is a schematic view of a first partial perspective of the spray mechanism of the present invention.
Fig. 9 is a schematic view of a second partial perspective of the spray mechanism of the present invention.
Fig. 10 is a schematic perspective view of a third portion of the spray mechanism of the present invention.
Fig. 11 is a schematic perspective view of a first portion of the clamping mechanism of the present invention.
Fig. 12 is a schematic view of a second partial perspective of the clamping mechanism of the present invention.
Fig. 13 is a schematic perspective view of a first part of the discharge mechanism of the present invention.
Fig. 14 is a schematic perspective view of a second part of the discharge mechanism of the present invention.
Fig. 15 is a schematic perspective view of a collecting mechanism according to the present invention.
Reference numerals in the figures: 1. base, 2, first support frame, 3, cleaning frame, 4, first support plate, 5, second support frame, 6, first rotation shaft, 7, brush, 8, blanking pipe, 9, rotation mechanism, 91, second support plate, 92, third support frame, 93, cylinder, 94, first rack, 95, first gear, 96, first support, 10, guard mechanism, 101, slide rail, 102, guard plate, 103, fixed rod, 104, first spring, 105, second support, 106, movable plate, 11, spraying mechanism, 111, charging frame, 112, spraying pipe, 113, spray head, 114, platen, 115, second spring, 116, first diagonal block, 117, abnormal plate, 12, clamping mechanism, 121, second diagonal block, 122, fixed plate, 123, clamp plate, 124, third diagonal block, 125, third spring, 13, discharge mechanism, 131, second rotation shaft, 132, baffle plate, 133, second gear, 134, third support, 135, second rack, 14, collection mechanism, 113, spray head, 114, pressing plate, 115, second spring, 116, fourth support frame, 144.
Detailed Description
It should be noted that in the various embodiments described, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained throughout the description can be transferred in a meaning to identical components having identical reference numerals or identical component names. The position specification, the upper, lower, lateral, etc. selected in the description are also referred to directly in the description and the figures shown and are transferred in the sense of a new position when the position is changed.
Example 1
1-15, Including base 1, first support frame 2, wash frame 3, first backup pad 4, second support frame 5, first pivot 6, brush 7, unloading pipe 8, rotary mechanism 9 and protection machanism 10, 1 left side front and back symmetry of base is equipped with first support frame 2, be connected with between the 2 tops of first support frame, wash frame 3 left side and be equipped with the transom, the convenient washing condition of observing, wash frame 3 top right side is equipped with first backup pad 4, first backup pad 4 top right side is equipped with second support frame 5, second support frame 5 left side activity is equipped with first pivot 6, first pivot 6 bottom is equipped with brush 7, wash frame 3 bottom right side is equipped with unloading pipe 8, 1 top right side of base is equipped with rotary mechanism 9, be connected with protection machanism 10 on the wash frame 3.
The rotary mechanism 9 comprises a second supporting plate 91, a third supporting frame 92, an air cylinder 93, a first rack 94, a first gear 95 and a first bracket 96, wherein the right side of the top of the base 1 is provided with the second supporting plate 91, the third supporting frame 92 is connected between the front side and the rear side of the upper portion of the second supporting plate 91, the air cylinder 93 is arranged on the upper portion of the third supporting frame 92, the first rack 94 is connected to the left side of a telescopic rod of the air cylinder 93, the first gear 95 and the first bracket 96 are arranged on the upper portion of the first rotating shaft 6, the first bracket 96 is located below the first gear 95, the first bracket 96 props against the second supporting frame 5, and the first gear 95 is matched with the first rack 94.
The protection mechanism 10 comprises a sliding rail 101, a protection plate 102, a fixed rod 103, a first spring 104, a second support 105 and a movable plate 106, wherein the sliding rail 101 is connected to the left side of the upper portion of the first support frame 2, the fixed rod 103 is arranged in the sliding rail 101 in a sliding manner, the first spring 104 is connected between the left side of the fixed rod 103 and the inner left side of the sliding rail 101, the protection plate 102 is connected between the fixed rods 103, the protection plate 102 is in sliding fit with the upper portion of the cleaning frame 3, the front side of the right portion of the first rack 94 is connected with the second support 105, and the movable plate 106 is connected to the front side and the rear side of the second support 105.
The blanking pipe 8 is plugged by using a tool, a worker can pull the first rotating shaft 6 upwards to move without contacting with the first rack 94, then the cylinder 93 is started to operate, the telescopic rod of the cylinder 93 stretches to drive the first rack 94 to move leftwards, the first rack 94 moves leftwards to drive the movable plate 106 to move leftwards to press the fixed rod 103 through the second bracket 105, the fixed rod 103 moves leftwards to drive the protection plate 102 to move leftwards without blocking the cleaning frame 3, the first spring 104 is compressed, the cylinder 93 is stopped to operate, the feeding bottle to be cleaned is placed into the cleaning frame 3, then the first rotating shaft 6 is stopped to be pulled, the first rotating shaft 6 moves downwards until the first bracket 96 abuts against the second bracket 5 to stop moving, at the moment, the first gear 95 contacts with the first rack 94, the brush 7 stretches into the feeding bottle, a certain amount of clean water is poured into the cleaning frame 3, the cylinder 93 is started to operate reversely, the telescopic rod of the air cylinder 93 shortens and drives the first rack 94 to move rightwards to contact with the first gear 95, then the first rotating shaft 6 is driven to rotate through the first gear 95, the first rotating shaft 6 rotates to drive the brush 7 to rotate to clean the feeding bottle, meanwhile, the first rack 94 moves rightwards to drive the movable plate 106 to move rightwards to not squeeze the fixed rod 103, the first spring 104 resets and drives the protection plate 102 to move rightwards through the fixed rod 103 to block the cleaning frame 3, splash in cleaning is blocked, during the cleaning process, workers can observe the cleaning condition through the transparent window, after cleaning is finished, the first rotating shaft 6 is driven to move upwards by repeating the operations, the brush 7 is driven to move upwards to not contact with the feeding bottle, the telescopic rod of the air cylinder 93 stretches to drive the protection plate 102 to not block the cleaning frame 3, the cleaned feeding bottle is taken out, and after all the operations are finished, the taking-out tool is not blocked the blanking pipe 8, and the sewage is automatically discharged.
The novel spraying device is characterized by further comprising a spraying mechanism 11, wherein the spraying mechanism 11 comprises a charging frame 111, a spraying pipe 112, spray nozzles 113, a pressing plate 114, a second spring 115, a first oblique block 116 and a special-shaped plate 117, the charging frame 111 is arranged at the top of the second supporting plate 91, a water adding pipe is connected to the left side of the charging frame 111, the pressing plate 114 is arranged on the charging frame 111 in a sliding mode, the second spring 115 is connected between the pressing plate 114 and the inner top of the charging frame 111, the spraying pipe 112 is symmetrically arranged on the first supporting plate 4 in a front-back mode, the spray nozzles 113 are all connected to the left side of the spraying pipe 112, the spray nozzles 113 are all located in the cleaning frame 3, the right side of the spraying pipe 112 is communicated with the charging frame 111, the front-back sides of the upper portion of the pressing plate 114 are all connected with the first oblique block 116, and the right side of the movable plate 106 is all provided with the special-shaped plate 117.
Still including clamping mechanism 12, clamping mechanism 12 is including second diagonal piece 121, fixed plate 122, splint 123, third diagonal piece 124 and third spring 125, first support frame 2 top all is equipped with fixed plate 122, the inboard all slidingtype in fixed plate 122 upper portion is equipped with splint 123, splint 123 all penetrate in the washing frame 3 and rather than slidingtype connection, be connected with third spring 125 between splint 123 all and the fixed plate 122 outside, splint 123 outside all is connected with third diagonal piece 124, the dead lever 103 outside all is equipped with second diagonal piece 121, second diagonal piece 121 all cooperates with homonymy third diagonal piece 124.
Opening a water adding pipe, injecting water into the charging frame 111 through the water adding pipe, closing the water adding pipe, moving the movable plate 106 leftwards to drive the special-shaped plate 117 to move leftwards to continuously contact with the first inclined block 116, and enabling the first inclined block 116 to be stressed to move downwards to drive the pressing plate 114 to move downwards, so that clear water is extruded to be sprayed to the feeding bottle from the spray head 113 through the spraying pipe 112, at the moment, the second spring 115 is stretched, and when the first inclined block 116 is not stressed any more, the second spring 115 resets and drives the pressing plate 114 to move upwards to reset through the first inclined block 116, so that the effect of automatic water spraying can be realized by reciprocation; the second inclined block 121 is propped against the third inclined block 124 in the initial state, and then the third spring 125 is driven to be compressed, when the fixing rod 103 moves leftwards to drive the second inclined block 121 to move leftwards and not press the third inclined block 124 any more, the third spring 125 resets and drives the clamping plate 123 to move outwards through the third inclined block 124, after the feeding bottle is placed, the fixing rod 103 moves rightwards to reset and drive the second inclined block 121 to press the third inclined block 124 again, the third inclined block 124 moves inwards to drive the clamping plate 123 to move inwards to clamp the feeding bottle, and the feeding bottle is prevented from toppling over during cleaning, and at the moment, the third spring 125 is compressed.
The discharging mechanism 13 comprises a second rotating shaft 131, a baffle 132, a second gear 133, a third bracket 134 and a second rack 135, the second rotating shaft 131 is rotatably arranged at the bottom of the cleaning frame 3, the second rotating shaft 131 is positioned at the front side of the discharging pipe 8, the baffle 132 is arranged in the middle of the second rotating shaft 131, the second gear 133 is arranged at the lower part of the second rotating shaft 131, the third bracket 134 is connected to the front side of the front side second oblique-shaped block 121, the second rack 135 is arranged at the bottom of the third bracket 134, and the second rack 135 is matched with the second gear 133.
The collecting mechanism 14 comprises a movable rod 141, a placing plate 142, a collecting frame 143 and a fourth spring 144, wherein the movable rod 141 is symmetrically arranged on the left side of the base 1, the placing plate 142 is arranged between the movable rods 141 in a sliding mode, the collecting frame 143 is placed at the top of the placing plate 142, and the fourth spring 144 is connected between the left side of the placing plate 142 and the movable rod 141.
The blanking pipe 8 is blocked by the baffle 132 in the initial state, the second inclined block 121 moves leftwards, the second rack 135 is driven to move leftwards through the third support 134, the second gear 133 is driven to rotate, the baffle 132 is driven to rotate rightwards through the second rotating shaft 131, 90 degrees is not blocked by the blanking pipe 8 any more, at this time, the fixing rod 103 moves leftwards to drive the protection plate 102 to move leftwards to block the cleaning frame 3 any more, after the feeding bottle is placed, the second inclined block 121 moves rightwards to drive the second gear 133 to reversely operate, the second gear 133 reversely rotates to drive the baffle 132 to reset to block the blanking pipe 8 again, the blanking pipe 8 is matched with cleaning, after the cleaning is finished, the second inclined block 121 moves rightwards again, the blanking pipe 8 is opened to finish automatic discharge of the waste water, the waste water moves downwards into the collecting frame 143, the worker manually pushes the movable rod 141 leftwards to drive the collecting frame 143 to move leftwards through the placing plate 142, no longer is located below the cleaning frame 3, at this time, the fourth spring 144 is compressed, the collecting frame 143 is taken out, the waste water is reset, the collecting frame 143 is driven to reset, the movable rod 141 is stopped, and the fourth spring 144 is pushed to drive the movable rod 141 to move rightwards through the reset plate 142 to reset through the placing plate 142.
The foregoing has outlined rather broadly the more detailed description of the application in order that the detailed description of the principles and embodiments of the application may be implemented in conjunction with the detailed description of the application that follows, the examples being merely intended to facilitate an understanding of the method of the application and its core concepts; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in accordance with the ideas of the present application, the present description should not be construed as limiting the present application in view of the above.