CN211225160U - Feeding device for nursing liquid bottle caps of contact lenses - Google Patents
Feeding device for nursing liquid bottle caps of contact lenses Download PDFInfo
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- CN211225160U CN211225160U CN201922059834.0U CN201922059834U CN211225160U CN 211225160 U CN211225160 U CN 211225160U CN 201922059834 U CN201922059834 U CN 201922059834U CN 211225160 U CN211225160 U CN 211225160U
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- bottle
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Abstract
The utility model relates to a contact lens preparation field, concretely relates to contact lens nursing liquid bottle lid loading attachment. A contact lens nursing liquid bottle cap feeding device comprises: a spiral ascending track from the tray bottom to the tray opening is arranged in the vibrating tray, and the width of the bottom surface of the track is consistent with that of the bottle cap D; the first stop lever, the step descending step, the pendulum type hook, the bottom notch of the track and the second stop lever are sequentially distributed along the rotating motion direction of the bottle cap; the utility model discloses advantage for prior art is: the utility model discloses in bottle lid loading attachment can effectively filter the removal mode of bottle lid to improve the efficiency of material loading.
Description
The technical field is as follows:
the utility model relates to a contact lens technical field, concretely relates to contact lens nursing liquid bottle lid loading attachment.
Background art:
with the continuous updating and upgrading of contact lenses and the increasing of lens varieties, the auxiliary products around the contact lenses are also in endlessly, and the nursing liquid is one of the products. The nursing liquid has functions of nursing, cleaning, disinfecting, storing, washing, wetting, removing protein and the like, can remove grease and dust on the lens, and can form a moisturizing layer on the surface of the lens, so that the wearing comfort of the lens is improved.
The nursing liquid is filled after being produced according to the raw material proportion, the filling process is complex in procedure and multiple in steps, and the cover is an important part. In the actual production process, the full-automatic production line is generally adopted for the filling of the care solution, so the requirement on the equipment is higher, if the connection between the equipment is not smooth, or the design of the equipment is unreasonable, the smoothness and the efficiency of the whole filling process are influenced, especially in the bottle cap feeding process, the production efficiency of the care solution is influenced if the speed cannot keep up with the speed. Under the circumstances, a reasonably designed feeding device for the nursing liquid bottle caps of the contact lenses is needed, so that the feeding efficiency of the bottle caps is improved, and the production efficiency of the nursing liquid is further improved.
The invention content is as follows:
the utility model aims at providing a contact lens nursing liquid bottle lid loading attachment. The specific technical scheme is as follows:
a contact lens care solution cap loading device, comprising: the vibration disc 1 is internally provided with a spiral ascending track from the disc bottom to the disc opening, and the widths of the bottom surfaces 2 and 3 of the tracks are consistent with the diameter of the big end of the bottle cap; the first stop lever 4, the step descending step 5, the pendulum type hook 6, the bottom notch 7 of the track and the second stop lever 8 are sequentially distributed along the rotating motion direction of the bottle cap;
one end of the first stop lever is close to but not connected with the side wall 11 of the vibration disc, the included angle between the other end of the first stop lever and the side wall of the vibration disc is 15-30 degrees, the linear distance between the first stop lever and the bottom surface of the track is larger than D and smaller than H, the first stop lever is used for enabling the bottle cap to fall down and keeping single-layer movement, the bottle cap is prevented from being stacked, and therefore the bottle cap is prevented from falling out of the vibration disc;
the spiral track is divided into two sections by the step-down steps, and a vertical height difference exists between the two sections;
the pendulum type hook is positioned above the lower stage track of the step descending step, the vertical distance between the lowest point of the hook and the lower stage track of the hook is consistent with H, and the horizontal distance between the lowest point of the hook and the higher stage track of the hook is less than d; the hook is used for hooking the bottle cap which is overturned in front of the lower step type descending step to enable the bottle cap to move vertically; when the bottle cap with the upward big head passes through the step-type descending step and the pendulum type hook, the distance between the hook and the bottom surface of the track below the hook is just consistent with H, the hook cannot hook the bottle cap, and the bottle cap keeps moving forwards vertically; the bottle cap with the big end facing downwards and the big end facing backwards, similarly, the hook can not hook the bottle cap, and the bottle cap keeps moving forwards in an upright way; only the bottle cap with the forward big end is provided, the hook can just hook the upper edge of the bottle mouth and take the bottle cap upright, so that the bottle cap changes the state on the track and moves forwards in an upright state;
the second gear rod is positioned right above the notch on the bottom surface of the track and is fixed on the side wall of the vibration disc by using supports 12 and 13; the design goal is that only the bottle cap with the big end upward is allowed to pass through, the bottom of the bottle cap with the big end upward is supported by the bottom surface of the incomplete track, one side of the top is fixed by the side wall, and the other side of the top is fixed by the second stop lever; the width of the bottom surface of the incomplete track is smaller than D/2, and the vertical distance between the second stop lever and the support of the bottom surface of the track is equal to H; the bottle cap with the big end facing forwards or backwards has the advantages that the second stop lever cannot fix the side face because the height of the bottle cap cannot reach H, and when the bottle cap passes through the gap of the bottom face, the gravity center of the bottle cap is unstable because the width of the bottom face is smaller than D/2 and the bottle cap rolls out of the gap; when the bottle cap with the downward big end passes through the gap of the bottom surface, the width of the bottom surface is smaller than D/2, the gravity center of the bottle cap is unstable and inclines towards the second blocking rod, and the bottle cap cannot lean against the second blocking rod after being inclined because the second blocking rod has a small distance from the second blocking rod, and finally falls out of the gap; only the bottle cap with the big end facing upwards can pass through the bottle cap.
One of the preferable schemes further comprises: a third bar 14, one end of which is fixed on the outer edge of the first-level track of the step-down step, and the other end of which extends along the edge, and which is used for preventing the bottle cap from falling out of the track when the bottle cap descends the step-down step.
The second preferred embodiment further comprises: one end of a fourth stop lever 15 is fixed on the side wall of the vibration disc between the uppermost layer and the second layer of the track, the other end of the fourth stop lever extends into the vibration disc, the fourth stop lever is parallel to the second layer of the track, and the distance between the fourth stop lever and the second layer of the track is consistent with the height of the bottle cap; the stop lever is used for keeping the bottle caps moving in a single layer, and the bottle caps are prevented from being accumulated at the position.
Preferably, the third method further comprises: a base 17 located at the lower part of the vibratory pan.
The utility model discloses advantage for prior art is:
(one) the utility model discloses in bottle lid loading attachment can effectively filter the removal mode of bottle lid to improve the efficiency of material loading.
(II) the utility model discloses in bottle lid loading attachment simple structure, low cost and fault rate are low, can effectively reduce the manufacturing cost of nursing liquid and improve production efficiency.
Description of the drawings:
fig. 1 is a schematic structural view of a bottle cap feeding device in an embodiment of the present invention; in the figure, 1 represents, 2 and 3 respectively represent a track bottom surface, 4 represents a first stop lever, 5 represents a step-down step, 6 represents a pendulum type hook, 7 represents a track bottom surface notch, 8 represents a second stop lever, 9, 10 and 11 respectively represent vibration disk side walls, 12 and 13 respectively represent a bracket, 14 represents a third stop lever, 15 represents a fourth stop lever, 16 represents a vibration disk edge, and 17 represents a base.
Fig. 2 is a schematic structural view of the bottle cap of the present invention; in the figure, the big end is open, D represents the diameter of the end face of the big end, the small end is closed, D represents the diameter of the end face of the small end, and H represents the height of the bottle cap.
The specific implementation mode is as follows:
example (b):
a contact lens care solution cap loading device, comprising: the vibration disc 1 is internally provided with a spiral ascending track from the disc bottom to the disc opening, and the widths of the bottom surfaces 2 and 3 of the tracks are consistent with the diameter of the big end of the bottle cap; the bottle cap comprises a first stop lever 4, a step descending step 5, a pendulum type hook 6, a track bottom notch 7, a second stop lever 8, a third stop lever 14, a fourth stop lever 15 and a base 17 which are sequentially distributed along the rotating motion direction of the bottle cap;
one end of the first stop lever is close to but not connected with the side wall 11 of the vibration disc, the included angle between the other end of the first stop lever and the side wall of the vibration disc is 15-30 degrees, the linear distance between the first stop lever and the bottom surface of the track is larger than D and smaller than H, the first stop lever is used for enabling the bottle cap to fall down and keeping single-layer movement, the bottle cap is prevented from being stacked, and therefore the bottle cap is prevented from falling out of the vibration disc;
the spiral track is divided into two sections by the step-down steps, and a vertical height difference exists between the two sections;
the pendulum type hook is positioned above the lower stage track of the step descending step, the vertical distance between the lowest point of the hook and the lower stage track of the hook is consistent with H, and the horizontal distance between the lowest point of the hook and the higher stage track of the hook is less than d; the hook is used for hooking the bottle cap which is overturned in front of the lower step type descending step to enable the bottle cap to move vertically; when the bottle cap with the upward big head passes through the step-type descending step and the pendulum type hook, the distance between the hook and the bottom surface of the track below the hook is just consistent with H, the hook cannot hook the bottle cap, and the bottle cap keeps moving forwards vertically; the bottle cap with the big end facing downwards and the big end facing backwards, similarly, the hook can not hook the bottle cap, and the bottle cap keeps moving forwards in an upright way; only the bottle cap with the forward big end is provided, the hook can just hook the upper edge of the bottle mouth and take the bottle cap upright, so that the bottle cap changes the state on the track and moves forwards in an upright state;
the second gear rod is positioned right above the notch on the bottom surface of the track and is fixed on the side wall of the vibration disc by using supports 12 and 13; the design goal is that only the bottle cap with the big end upward is allowed to pass through, the bottom of the bottle cap with the big end upward is supported by the bottom surface of the incomplete track, one side of the top is fixed by the side wall, and the other side of the top is fixed by the second stop lever; the width of the bottom surface of the incomplete track is smaller than D/2, and the vertical distance between the second stop lever and the support of the bottom surface of the track is equal to H; the bottle cap with the big end facing forwards or backwards has the advantages that the second stop lever cannot fix the side face because the height of the bottle cap cannot reach H, and when the bottle cap passes through the gap of the bottom face, the gravity center of the bottle cap is unstable because the width of the bottom face is smaller than D/2 and the bottle cap rolls out of the gap; when the bottle cap with the downward big end passes through the gap of the bottom surface, the width of the bottom surface is smaller than D/2, the gravity center of the bottle cap is unstable and inclines towards the second blocking rod, and the bottle cap cannot lean against the second blocking rod after being inclined because the second blocking rod has a small distance from the second blocking rod, and finally falls out of the gap; only the bottle cap with the big end facing upwards can pass through the bottle cap.
One end of the third stop lever is fixed on the outer edge of the first-level track of the step-type descending step, the other end of the third stop lever extends out of the edge, and the third stop lever is used for preventing the bottle cap from falling out of the track when descending the step-type descending step.
One end of the fourth stop lever is fixed on the side wall of the vibration disc between the uppermost layer and the second layer of the track, the other end of the fourth stop lever extends into the vibration disc, the fourth stop lever is parallel to the second layer of the track, and the distance between the fourth stop lever and the second layer of the track is consistent with the height of the bottle cap; the stop lever is used for keeping the bottle caps moving in a single layer, and the bottle caps are prevented from being accumulated at the position.
Claims (4)
1. A contact lens care solution bottle cap loading device, the device comprising: a spiral rising track from the tray bottom to the tray opening is arranged in the vibrating tray (1), and the width of the bottom surfaces (2 and 3) of the track is consistent with that of the bottle cap D; the bottle cap comprises a first stop lever (4), a step descending step (5), a pendulum hook (6), a track bottom notch (7) and a second stop lever (8), which are sequentially distributed along the rotating motion direction of the bottle cap;
one end of the first stop lever is close to but not connected with the side wall (11) of the vibration disc, the included angle between the other end of the first stop lever and the side wall of the vibration disc is 15-30 degrees, the linear distance between the first stop lever and the bottom surface of the track is larger than D and smaller than H, the first stop lever is used for enabling the bottle cap to fall down and keeping single-layer movement, the bottle cap is prevented from being stacked, and therefore the bottle cap is prevented from falling out of the vibration disc;
the spiral track is divided into two sections by the step-down steps, and a vertical height difference exists between the two sections;
the pendulum type hook is positioned above the lower stage track of the step descending step, the vertical distance between the lowest point of the hook and the lower stage track of the hook is consistent with H, and the horizontal distance between the lowest point of the hook and the higher stage track of the hook is less than d; the hook is used for hooking the bottle cap which is overturned in front of the lower step type descending step to enable the bottle cap to move vertically;
the second gear lever is positioned right above the notch on the bottom surface of the track and is fixed on the side wall of the vibration disc by using brackets (12 and 13); the design goal is that only the bottle cap with the big end upward is allowed to pass through, the bottom of the bottle cap with the big end upward is supported by the bottom surface of the incomplete track, one side of the top is fixed by the side wall, and the other side of the top is fixed by the second stop lever; the width of the bottom surface of the incomplete track is smaller than D/2, and the vertical distance between the second stop lever and the support of the bottom surface of the track is equal to H.
2. The contact lens care solution cap loading apparatus according to claim 1, further comprising: and one end of the third stop lever (14) is fixed at the outer edge of the first-level track of the step-down step, and the other end of the third stop lever extends out along the edge, and the third stop lever is used for preventing the bottle cap from falling out of the track when descending down the step-down step.
3. The contact lens care solution cap loading apparatus according to claim 1, further comprising: one end of a fourth stop lever (15) is fixed on the side wall of the vibration disc between the uppermost layer and the second layer of the track, the other end of the fourth stop lever extends into the vibration disc, the fourth stop lever is parallel to the second layer of the track, and the distance between the fourth stop lever and the second layer of the track is consistent with the height of the bottle cap; the stop lever is used for keeping the bottle caps moving in a single layer, and the bottle caps are prevented from being accumulated at the position.
4. The contact lens care solution cap loading apparatus according to any one of claims 1 to 3, further comprising: a base (17) located at the lower part of the vibration plate.
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CN201922059834.0U CN211225160U (en) | 2019-11-26 | 2019-11-26 | Feeding device for nursing liquid bottle caps of contact lenses |
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CN201922059834.0U CN211225160U (en) | 2019-11-26 | 2019-11-26 | Feeding device for nursing liquid bottle caps of contact lenses |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112193772A (en) * | 2020-09-08 | 2021-01-08 | 神通科技集团股份有限公司 | Automatic loading equipment for piercing nail buckle for automobile |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112193772A (en) * | 2020-09-08 | 2021-01-08 | 神通科技集团股份有限公司 | Automatic loading equipment for piercing nail buckle for automobile |
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