Ice sucker mold with vertical and horizontal placing functions
By designing an ice pop mold that can be placed both upright and horizontally, and by adopting detachable support components and a sealing structure, the problem of leakage and flavor transfer in existing molds has been solved, thus improving the user experience.
Patent Information
- Application Number
- CN202520130358.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing popsicle molds are prone to leakage and flavor mixing during use, and can only be placed upright, resulting in a poor user experience.
An ice pop mold with both upright and horizontal placement functions was designed, comprising a forming mold, a support component, a handle, and a sealing component. The support component is detachably connected and has a support surface for both upright and horizontal placement. A sealing structure is set between the handle and the forming mold to ensure no leakage and no cross-contamination of flavors.
It achieves a tight seal when the popsicle mold is placed upright or horizontally, preventing liquid leakage and cross-contamination of flavors, thus improving the user experience.
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Figure CN223772999U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ice lolly making tool technical field especially, it is ice lolly mould with vertical and lying function. BACKGROUND
[0002] Ice lolly is a kind of cold drink snack, i.e. ice cream frozen on stick, also commonly known as ice bar, ice cream, ice cream stick etc. More and more families will choose to make ice lolly at home, and the mould is a very important tool in the production process, the mould can help to fix the shape of ice lolly, and keep this shape during freezing until the ice lolly is completely solidified.
[0003] Ice lolly mould includes the box body with forming cavity and the holding stick for closing forming cavity, when making ice cream, first, liquid slurry is poured into forming cavity, then holding stick is covered on forming cavity, finally, ice cream forming mould is placed into refrigerator and frozen into shape. The holding stick of existing ice cream forming mould lacks sealing structure between forming cavity, is easy to leak, is easy to occur after being placed in refrigerator Flavor mixing, simultaneously, ice cream forming mould needs to keep the opening of forming cavity upwards, can only be vertically placed, and use experience is not good. UTILITY MODEL CONTENT
[0004] To overcome the problems in the related art, the utility model provides an ice lolly mould with vertical and lying function, which is not easy to leak and mix flavors, and can be vertically and horizontally placed.
[0005] The utility model aims to provide an ice lolly mould with vertical and lying function, comprising:
[0006] Forming mould has the forming cavity with top end opening;
[0007] Support piece is detachably connected with forming mould, and the support piece has the first support surface for vertically placing forming mould and the second support surface for horizontally placing forming mould;Specifically, the first support surface is arranged on the bottom surface of the support piece, and the second support surface is arranged on the circumferential surface of the support piece;
[0008] Handle has the cap for closing opening, and the cap is detachably connected with forming mould;
[0009] Sealing element is used to seal the connection between cap and opening.
[0010] In the preferred technical scheme of the utility model, the support piece includes a shell, and the first support surface and the second support surface are both planes;
[0011] The first support surface is arranged on the bottom surface of the support piece, and the second support surface is arranged on the circumferential surface of the support piece;
[0012] The second support surface is provided with one or two;
[0013] When the number of the second supporting surfaces is two, the two second supporting surfaces are symmetrically arranged.
[0014] In the preferable technical scheme of the present application, the top end and the bottom end of the shell are not closed, and the forming die is arranged in the shell.
[0015] In the preferable technical scheme of the present application, the handle comprises a handle body, a cap and a rod body connected in sequence from top to bottom.
[0016] The cap can be inserted into the opening.
[0017] The sealing member comprises a first sealing surface, and the first sealing surface is an opening peripheral sidewall.
[0018] In the preferable technical scheme of the present application, the bottom surface of the cap is provided with a ring-shaped brim, and the outer wall of the ring-shaped brim is located inside the outer periphery of the cap.
[0019] The sealing member comprises a second sealing surface, and the second sealing surface is a top surface of the forming die.
[0020] Specifically, after the handle is connected with the forming die, the first sealing surface is used to seal the outer peripheral side surface of the ring-shaped brim, and the second sealing surface is used to seal the outer periphery of the bottom surface of the cap.
[0021] In the preferable technical scheme of the present application, the forming die is made of a flexible thin sheet material; preferably, the material of the forming die is a food-grade silica gel member.
[0022] The forming die comprises a thickened edge portion, a transition connecting portion and a cavity portion connected in sequence from top to bottom.
[0023] The thickened edge portion is a sealing member, the inner side surface of the thickened edge portion serves as the first sealing surface, and the top surface of the thickened edge portion serves as the second sealing surface.
[0024] In the preferable technical scheme of the present application, the inner side surface of the thickened edge portion is provided with a sealing convex ring. Preferably, at least two sealing convex rings are arranged at intervals from top to bottom.
[0025] In the preferable technical scheme of the present application, the top surface of the transition connecting portion is connected with the bottom of the thickened edge portion.
[0026] The thickness of the transition connecting portion increases in the direction away from the thickened edge portion.
[0027] In the preferable technical scheme of the present application, a fixing clamp is further included, and the fixing clamp comprises an upper clamp ring and a lower clamp ring.
[0028] The thickened edge portion is clamped between the upper clamp ring and the lower clamp ring.
[0029] The upper clamp ring and the lower clamp ring are detachably connected.
[0030] The support is detachably connected with the upper clamping ring or the lower clamping ring.
[0031] In the preferred technical scheme of the utility model, the upper clamping ring bottom surface is uniformly distributed with a plurality of clamping claws, the thickened edge part is provided with a through hole for the clamping claw to pass through, and the lower clamping ring is provided with a buckle hole capable of being buckled with the clamping claw.
[0032] In the preferred technical scheme of the utility model, the upper clamping ring bottom surface is provided with an upper pressing rib, and / or the lower clamping ring top surface is provided with a lower pressing rib.
[0033] In the preferred technical scheme of the utility model, the lower clamping ring circumferential side surface is uniformly distributed with a plurality of clamping protrusions, and the support is provided with a plurality of clamping portions capable of being buckled with the clamping protrusions. Specifically, the clamping protrusions can be arranged on the outer circumferential side surface or the inner circumferential side surface of the lower clamping ring. Preferably, the lower clamping ring bottom surface extends downwardly outwardly to form an inner side plate, the inner side plate can be inserted into the inner wall of the support, and the clamping protrusions are arranged on the outer wall of the inner side plate.
[0034] In the preferred technical scheme of the utility model, the upper clamping ring bottom surface extends downwardly outwardly to form an outer side plate, the outer side plate can be inserted into the outer wall of the support, a plurality of clamping protrusions are uniformly distributed on the outer wall of the outer side plate, a plurality of clamping portions capable of being buckled with the clamping protrusions are arranged on the support, and the lower clamping ring is provided with a notch capable of avoiding the clamping protrusions. Specifically, the clamping protrusions can be arranged on the inner circumferential side surface of the lower side plate, so as to avoid the clamping portions from leaking outwardly and affecting the overall aesthetic appearance.
[0035] In the preferred technical scheme of the utility model, the upper clamping ring bottom surface is uniformly distributed with a pressing edge flange, the clamping claw is arranged on the pressing edge flange, the thickened edge part is provided with a pressing edge groove for accommodating the pressing edge flange, and the through hole is arranged on the groove bottom of the pressing edge groove.
[0036] The utility model discloses the beneficial effect is:
[0037] The support is detachably connected with the forming die, the support has a first support surface for vertically placing the forming die and a second support surface for horizontally placing the forming die, and the forming die can be vertically placed or horizontally placed; the handle is provided with a sealing structure between the handle and the forming die, so that the forming cavity is not easy to leak liquid and mix flavors; and the use experience of users is improved. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 It is the structure schematic diagram that ice lolly mould stands.
[0039] Figure 2 It is the structure schematic diagram that ice lolly mould lies.
[0040] Figure 3 It is the section view of ice lolly mould.
[0041] Figure 4 is a structural schematic diagram of the sealing structure.
[0042] Figure 5 is a sectional view of the forming die.
[0043] Figure 6 is a structural schematic diagram of the handle.
[0044] Figure 7 is a structural schematic diagram of the upper clamping ring.
[0045] Figure 8 is a structural schematic diagram of the lower clamping ring.
[0046] Reference signs:
[0047] 100, support; 110, first support surface; 120, second support surface; 200, fixing clamp; 210, upper clamping ring; 211, clamping jaw; 212, edge pressing flange; 213, clamping protrusion; 220, lower clamping ring; 221, clamping hole; 222, lower pressing rib; 223, notch; 300, handle; 310, handle body; 320, cap; 321, annular cap brim; 330, rod body; 400, forming die; 410, cavity part; 420, transition connecting part; 430, thickened edge part; 431, edge pressing groove; 432, through hole; 433, sealing protruding ring; 500, sealing member; 510, first sealing surface; 520, second sealing surface. DETAILED DESCRIPTION
[0048] Preferred embodiments of the present application will be described in more detail by referring to the attached drawings. Although the preferred embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments described herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to fully convey the scope of the present application to those skilled in the art.
[0049] Example 1
[0050] Example 1 provides an ice lolly mold with both standing and lying functions, which is not prone to liquid leakage and flavor mixing, and can be both standing and lying.
[0051] As shown in Figures 1-6 , an ice lolly mold with both standing and lying functions comprises:
[0052] The forming die 400 has a forming cavity with an open top end; specifically, the forming die 400 is made of a flexible thin sheet material for easy demolding; preferably, the material of the forming die 400 is food-grade silicone;
[0053] The support 100 is used to support the forming mold 400, and is detachably connected with the forming mold 400. The support 100 has a first support surface 110 for vertically placing the forming mold 400 and a second support surface 120 for horizontally placing the forming mold 400. Specifically, the first support surface 110 is arranged on the bottom surface of the support 100, and the second support surface 120 is arranged on the lateral surface of the support 100. When the forming mold 400 is vertically placed, the opening is in a horizontal state with the opening upward. When the forming mold 400 is horizontally placed, the opening is in an inclined state or a vertical state.
[0054] The handle 300 has a cap 320 used to close the opening, and the cap 320 is detachably connected with the forming mold 400. Specifically, the handle 300 includes a handle body 310, the cap 320 and a rod body 330 connected in sequence from top to bottom. The cap 320 can be inserted into the opening.
[0055] The sealing member 500 is used to seal the connection between the cap 320 and the opening.
[0056] The steps of using the ice pop mold to make ice pops are as follows:
[0057] The forming mold 400 is installed on the support 100.
[0058] The liquid slurry is first poured into the forming cavity.
[0059] The handle 300 is inserted into the forming cavity, and the cap 320 is inserted into the opening.
[0060] The ice pop mold is placed in the refrigerator in a vertically placed or horizontally placed manner to be frozen and formed.
[0061] After the frozen forming, the ice pop mold is taken out, the handle 300 is held to pull out the ice pop from the forming cavity, and the demolding is completed.
[0062] In actual application, the cap 320 is in an arc-shaped arch shape. Since the volume of the liquid slurry increases after being condensed into a solid, the groove formed on the bottom surface of the cap 320 can be used as expandable space during the condensation of the ice pop. Even if the liquid slurry is poured into the entire forming cavity during the making, the liquid slurry will extend to the expandable space when it is condensed into a solid, and the handle 300 will not be lifted up.
[0063] The support 100 and the forming mold 400 are detachably connected, the support 100 has the first support surface 110 for vertically placing the forming mold 400 and the second support surface 120 for horizontally placing the forming mold 400, the forming mold 400 can be vertically placed or horizontally placed, and the sealing structure between the handle 300 and the forming mold 400 can ensure that the forming cavity is liquid-tight and odor-tight, thereby improving the user experience.
[0064] In the embodiment, the support 100 includes a shell, and the first support surface 110 and the second support surface 120 are both flat surfaces.
[0065] In the embodiment, the second support surface 120 is provided with one or two; preferably, the second support surface 120 is provided with two, so as to give the ice lolly mold stacking function, and a plurality of ice lolly molds can be stacked through the second support surface 120; when the second support surface 120 is provided with two, the two second support surfaces 120 are symmetrically arranged, that is, two second support surfaces 120 are uniformly distributed on the circumferential surface of the support 100.
[0066] In the embodiment, the top end and the bottom end of the shell are not closed, and the forming mold 400 is sleeved in the shell. The open design enables the top end and the bottom end of the shell to form a convection, and the air between the forming mold 400 and the inner wall of the shell can flow when the forming mold 400 is taken out.
[0067] Embodiment 2
[0068] Embodiment 2 is further designed on the basis of embodiment 1.
[0069] As shown in Figures 3-4 Embodiment 2 is basically the same as embodiment 1, and the difference lies in that:
[0070] The material of the forming mold 400 is food-grade silica gel, and the sealing element 500 includes a first sealing surface 510, which is an open circumferential wall. After the handle 300 is inserted into the forming mold 400, the first sealing surface 510 can be attached to the outer circumferential surface of the cap 320 to form a seal, so as to prevent liquid leakage and odor leakage.
[0071] Embodiment 3
[0072] Embodiment 3 is further designed on the basis of embodiment 1.
[0073] As shown in Figures 3-6 Embodiment 3 is basically the same as embodiment 1, and the difference lies in that:
[0074] The material of the forming mold 400 is food-grade silica gel, and the cap 320 is provided with a ring-shaped brim 321 at the bottom surface, and the outer wall of the ring-shaped brim 321 is located inside the outer circumference of the cap 320.
[0075] The sealing element 500 includes a first sealing surface 510, which is an open circumferential wall.
[0076] The sealing element 500 includes a second sealing surface 520, which is the top surface of the forming mold 400.
[0077] When the handle 300 is inserted into the forming mold 400, the first sealing surface 510 can be attached to the outer circumferential side of the annular hat brim 321, and the second sealing surface 520 can be attached to the outer circumferential side of the bottom surface of the cap 320. The multiple sealing design can improve the sealing effect and ensure that the forming cavity is not liquid leakage and odor leakage.
[0078] Embodiment 4
[0079] In embodiment 4, the structure of the sealing member 500 is further designed on the basis of embodiment 3.
[0080] As shown in Figures 3-6 embodiment 4, embodiment 4 has basically the same features as embodiment 3, and the difference lies in that:
[0081] The forming mold 400 comprises a thickened edge portion 430, a transition connecting portion 420 and a cavity portion 410 connected in sequence from top to bottom;
[0082] The thickened edge portion 430 is the sealing member 500, the inner side of the thickened edge portion 430 is the first sealing surface 510, and the top surface of the thickened edge portion 430 is the second sealing surface 520.
[0083] In actual application, in order to improve the sealing effect, the inner side of the thickened edge portion 430 is provided with a sealing convex ring 433. Preferably, the sealing convex ring 433 is provided with at least two intervals from top to bottom. Preferably, the outer circumferential side of the annular hat brim 321 can be correspondingly provided with a ring groove for accommodating the sealing convex ring 433, so as to further improve the sealing effect and connection firmness.
[0084] In this embodiment, the top surface of the transition connecting portion 420 is connected to the bottom of the thickened edge portion 430; the thickness of the transition connecting portion 420 increases in the direction away from the thickened edge portion 430, and the thinning at the connection between the transition connecting portion 420 and the thickened edge portion 430 makes the connection part more easily deformed. The deformation of this part can make the formed ice lolly more easily separated from the wall surface of the forming cavity, so that the demolding is more easily.
[0085] Embodiment 5
[0086] In embodiment 5, the detachable structure of the ice lolly mold is further designed on the basis of embodiment 4.
[0087] As shown in Figures 1-8 embodiment 5, embodiment 5 has basically the same features as embodiment 4, and the difference lies in that:
[0088] The ice lolly mold with the functions of standing and lying also comprises a fixing clamp 200, the fixing clamp 200 comprises an upper clamp ring 210 and a lower clamp ring 220, and the fixing clamp 200 applies restriction to the forming mold 400 to facilitate demolding;
[0089] The thickened edge portion 430 is clamped between the upper clamp ring 210 and the lower clamp ring 220.
[0090] The upper clamp ring 210 and the lower clamp ring 220 are detachably connected.
[0091] The support 100 is detachably connected with the upper clamp ring 210 or the lower clamp ring 220.
[0092] In actual application, the detachable connection mode can be buckling, plug-in or threaded connection, preferably, the detachable connection mode is buckling.
[0093] In actual application, the forming die 400 has at least one forming cavity, each forming cavity is arranged at intervals along the length direction of the forming die 400, and the fixed clamp 200 is provided with a sleeve hole through which the forming cavity passes, and the sleeve hole and the forming cavity are arranged one by one.
[0094] In the embodiment, the bottom surface of the upper clamp ring 210 is uniformly distributed with a plurality of clamping claws 211, the thickened edge portion 430 is provided with a through hole 432 through which the clamping claw 211 passes, and the lower clamp is provided with a buckle hole 221 capable of being buckled with the clamping claw 211. Specifically, in order to improve the fixing effect on the forming die 400, the bottom surface of the upper clamp ring 210 is uniformly distributed with a pressing flange 212, preferably, the pressing flange 212 is a circular arc protrusion. The clamping claw 211 is arranged on the pressing flange 212, the thickened edge portion 430 is provided with a pressing groove 431 for accommodating the pressing flange 212, and the through hole 432 is arranged at the groove bottom of the pressing groove 431.
[0095] In use, the forming die 400 is clamped by the upper clamp ring 210 and the lower clamp ring 220, and then the fixed clamp 200 is connected with the support 100, so that the forming die 400 can be installed in the support 100.
[0096] The ice pop mold with the functions of standing and lying has a detachable split structure, and each component can be detached for cleaning, so that the edges and corners inside the mold can be cleaned in place.
[0097] In the embodiment, in order to improve the fixing effect on the forming die 400, the bottom surface of the upper clamp ring 210 is provided with an upper pressing rib, and / or the top surface of the lower clamp ring 220 is provided with a lower pressing rib 222.
[0098] The embodiment further provides a detachable connecting structure of the support 100 and the lower clamping ring 220. Specifically, the lower clamping ring 220 is provided with a plurality of clamping protrusions on the circumferential side surface, and the support 100 is provided with a plurality of clamping portions capable of buckling the clamping protrusions. Specifically, the clamping protrusions can be arranged on the outer circumferential side surface or the inner circumferential side surface of the lower clamping ring 220. Preferably, the lower clamping ring 220 is provided with an inner side plate extending downward from the outer circumferential surface, the inner side plate is capable of being inserted into the inner wall of the support 100, and the clamping protrusions are arranged on the outer wall of the inner side plate.
[0099] The embodiment further provides a detachable connecting structure of the support 100 and the upper clamping ring 210. Specifically, the upper clamping ring 210 is provided with an outer side plate extending downward from the outer circumferential surface of the bottom surface, the outer side plate is capable of being inserted into the outer wall of the support 100, the outer wall of the outer side plate is provided with a plurality of clamping protrusions 213, and the support 100 is provided with a plurality of clamping portions capable of buckling the clamping protrusions 213. To avoid the clamping portions from being exposed outside, affecting the overall aesthetic appearance, the clamping protrusions 213 can be arranged on the inner circumferential side surface of the lower side plate, and the lower clamping ring 220 is provided with notches 223 capable of avoiding the clamping protrusions 213.
[0100] The relative arrangement of components and steps, numerical expressions, and numerical values set forth in the embodiments are not intended to limit the scope of the present application, unless otherwise specifically stated. In all of the examples shown and discussed herein, any particular value should be interpreted as merely an example, and not as a limitation. Thus, other examples of example embodiments can have different values. It should be noted that like numbers and letters refer to like items throughout the several views of the drawings, and therefore, once an item is defined in one view, it need not be discussed further in subsequent views.
[0101] In the description of the present application, it should be understood that the orientation words such as "front, back, up, down, left, right", "transverse, vertical, perpendicular, horizontal" and "top, bottom" and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate and imply that the indicated device or element must have a specific orientation or be constructed and operated in a specific orientation, therefore, cannot be understood as a limitation on the scope of protection of the present application; the orientation words "inner, outer" refer to the inner and outer of the contour of each component itself.
[0102] For purposes of the description hereinafter, spatial
[0103] In addition, it is pointed out that, using "first", "second", etc. to define parts, only for the convenience of distinguishing the corresponding parts, if there is no further declaration, the above words have no special meaning, therefore cannot be understood as the limitation of the protection scope of the present application.
[0104] The preferred embodiments of the present application have been described above with the preferred embodiments; however, the present application can be variously changed and modified by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A popsicle mold with standing and lying functions, characterized in that, The ice lolly mould comprises: a mould (400) having a mould cavity with an open top; a support (100) detachably connected to the mould (400), the support (100) having a first support surface (110) for standing the mould (400) and a second support surface (120) for laying the mould (400); a handle (300) having a cap (320) for closing the opening, the cap (320) being detachably connected to the mould (400); a sealing member (500) for sealing the connection between the cap (320) and the opening.
2. The ice lolly mould according to claim 1, wherein: the first support surface (110) is arranged on the bottom surface of the support (100), and the second support surface (120) is arranged on the lateral surface of the support (100); one or two second support surfaces (120) are arranged; when two second support surfaces (120) are arranged, the two second support surfaces (120) are symmetrically arranged.
3. The ice lolly mould according to claim 1, wherein: the support (100) comprises a shell, the top end and the bottom end of the shell are not closed, and the mould (400) is sleeved in the shell.
4. The ice lolly mould according to claim 1, wherein: the handle (300) comprises a handle body (310), a cap (320) and a rod body (330) connected in sequence from top to bottom; the cap (320) is capable of being inserted into the opening; the sealing member (500) comprises a first sealing surface (510), and the first sealing surface (510) is a lateral wall of the opening.
5. The ice lolly mould according to claim 4, wherein: a ring-shaped brim (321) is arranged on the bottom surface of the cap (320), and the outer wall of the ring-shaped brim (321) is located inside the outer periphery of the cap (320); the sealing member (500) comprises a second sealing surface (520), and the second sealing surface (520) is the top surface of the mould (400).
6. The ice lolly mould according to claim 5, wherein: the mould (400) is made of a flexible thin sheet material; the mould (400) comprises a thickened edge portion (430), a transition connecting portion (420) and a cavity portion (410) connected in sequence from top to bottom; the thickened edge portion (430) is the sealing member (500), the inner side surface of the thickened edge portion (430) serves as the first sealing surface (510), and the top surface of the thickened edge portion (430) serves as the second sealing surface (520).
7. The ice lolly mould according to claim 6, wherein: a sealing convex ring (433) is arranged on the inner side surface of the thickened edge portion (430).
8. The ice lolly mould according to claim 6, wherein: the top surface of the transition connecting portion (420) is connected to the bottom of the thickened edge portion (430). The transition connection (420) thickness increases in the direction away from the thickened edge (430). 9.The popsicle mold with standing and lying functions according to claim 6, characterized in that: Further comprising a fixed clamp (200), the fixed clamp (200) comprises an upper clamp ring (210) and a lower clamp ring (220); The thickened edge (430) is clamped between the upper clamp ring (210) and the lower clamp ring (220); The upper clamp ring (210) and the lower clamp ring (220) are detachably connected; The support (100) is detachably connected with the upper clamp ring (210) or the lower clamp ring (220). 10.The popsicle mold with standing and lying functions according to claim 9, characterized in that: The upper clamp ring (210) is evenly distributed with a plurality of clamping claws (211) on the bottom surface, the thickened edge (430) is provided with a through hole (432) for the clamping claws (211) to pass through, and the lower clamp is provided with a buckle hole (221) capable of being buckled with the clamping claws (211).