Integrated ice making mold

Through the design of integrated ice making molds, the problems of complex structure and difficult demolding of existing ice making molds are solved, and low-cost and convenient ice cup model production and continuous refrigeration effects are achieved.

CN223295083UActive Publication Date: 2025-09-02DONGGUAN LIPIN SILICONE PROD CO LTD
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Patent Information

Application Number
CN202422255666.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-09-02
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing ice making molds have complex structures, many parts, difficult to demold, high cost, and inconvenient use, making it difficult to make and use ice cup models that match Stanley cups.

Method used

An integrated ice-making mold is used, which is composed of an ice-die core piece, including a mold core, a fastener and a handle part. The fastener is tightly assembled with the cup. The mold core and the inner wall of the cup form a mold cavity. The handle part is easy to release, and the mold is formed of silicone integrally.

Benefits of technology

It realizes simple and low-cost ice cup model production, which is easy to release. The ice cup model remains in the cup for sustainable refrigeration, which is extremely convenient to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated ice making mold, which is composed of an integrated ice mold core piece, the ice mold core piece comprises a mold core part, a fastening part and a handle part, the fastening part is integrally formed at the upper end of the mold core part and is used for being fastened and assembled with an opening at the upper end of a cup, the handle part is integrally formed at the upper end of the fastening part, and the outer diameter of the mold core part is smaller than the size of an inner cavity of the cup; after the ice mold core piece is inserted into a cup, the fastening part and an opening in the upper end of the cup are assembled in a fastening mode, the mold core part extends into an inner cavity of the cup, and a mold cavity used for forming an ice cup model is formed between the outer portion of the mold core part and the inner wall of the cup. The ice cup mold is composed of only one part, is ingenious in design, can be used for manufacturing and molding an ice cup model by being matched with an existing cup, and is few in part, simple in structure, low in mold opening cost and convenient to use; demolding can be driven through the handle part, operation is easy and convenient, and demolding is easy; the ice cup model does not need to be taken out relative to the cup in the later period, a user can directly pour drinks into the containing cavity of the ice cup model, and use is convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of ice making, in particular to an integrated ice making mould. Background Art

[0002] Recently, Stanley cups have become popular and are loved by consumers. Figure 6 shown.

[0003] In the hot summer, iced drinks are one of the means for many consumers to beat the heat. In order to make iced drinks with Stanley cups, ice cup models that can fit into Stanley cups are pre-made. The ice cup models have a cavity for holding drinks (such as water, juice, beer, soda, etc.). Compared with ice cubes, this ice cup model has a better cooling / chilling effect and a longer-lasting cooling / chilling effect.

[0004] Currently, molds used to make ice cup models on the market are generally two-piece or three-piece structures. For example, the structure of a two-piece mold is as follows: it includes a base mold and a cover body covering the base mold. The base mold is provided with a mold cavity with a shape adapted to a Stanley cup, and the cover body is provided to cover the mold cavity of the base mold. When in use, water is poured into the mold cavity of the base mold, and the cover body is placed, and then the mold is placed in a refrigerator. When the water freezes, the mold is removed, and the cover body is removed. The ice cup model formed in the bottom mold cavity is demolded and removed relative to the base mold. However, the ice cup model is relatively large in size and high in height, about 20 cm (because the Stanley cup is 23 cm), making it difficult to demold, that is, difficult to remove the ice cup model relative to the base mold.

[0005] In other words, existing molds for making ice cup models have many parts and a complex structure. Opening the mold is difficult and costly. Furthermore, the finished ice cup model is difficult to remove from the base mold, making it inconvenient to use. During use, the finished ice cup model must be placed inside a Stanley cup, making it inconvenient to use.

[0006] In view of this, the inventors propose the following technical solutions. Utility Model Content

[0007] The purpose of the utility model is to overcome the deficiencies of the prior art and provide an integrated ice-making mold.

[0008] In order to solve the above technical problems, the present invention adopts the following technical solution: the integrated ice-making mold is composed of an integrated ice mold core piece, the ice mold core piece includes a mold core part and a fastening part integrally formed at the upper end of the mold core part and used for fastening and assembling with the upper end opening of the cup, and a handle part integrally formed at the upper end of the fastening part, and the outer diameter of the mold core part is smaller than the size of the inner cavity of the cup; when the ice mold core piece is inserted into the cup, the fastening part is fastened and assembled with the upper end opening of the cup, the mold core part extends into the inner cavity of the cup, and a mold cavity for forming an ice cup model is formed between the outside of the mold core part and the inner wall of the cup.

[0009] Furthermore, in the above technical solution, the ice mold core is integrally formed of silicone.

[0010] Furthermore, in the above technical solution, the mold core portion is shaped larger at the top and smaller at the bottom.

[0011] Furthermore, in the above technical solution, the core portion includes a first core portion, a second core portion, and a third core portion connected in sequence from top to bottom, and the first core portion, the second core portion, and the third core portion are all in the shape of a cone with a larger top and a smaller bottom, so that the first core portion, the second core portion, and the third core portion all have a draft angle.

[0012] Furthermore, in the above technical solution, the outer diameter of the fastening portion is larger than the size of the upper opening of the cup, so that the fastening portion and the upper opening of the cup are tightly fitted by interference fit.

[0013] Furthermore, in the above technical solution, the upper end of the fastening portion is further formed with a blocking edge that protrudes outward and is used to block the edge of the upper opening of the cup.

[0014] Furthermore, in the above technical solution, there are two handle parts, which are symmetrically distributed on the upper end of the fastening part.

[0015] Furthermore, in the above technical solution, the fastening portion is provided with a groove from top to bottom, and a ventilation and drainage hole is provided downwardly at the bottom of the groove and passes through the lower end surface of the fastening portion, and the ventilation and drainage hole passes through the mold cavity.

[0016] Furthermore, in the above technical solution, a hollow groove is further provided in the core portion, and the hollow groove passes through the groove upward.

[0017] Furthermore, in the above technical solution, a retaining wall that is raised upward and in an annular shape is provided at the bottom of the groove, and the air-permeable drainage holes are distributed between the retaining wall and the inner wall of the groove.

[0018] After adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art: the present invention is composed of only one part and is cleverly designed. It can be used with an existing cup to produce a molded ice cup model. It has few parts, a simple structure, low mold opening cost, and is extremely convenient to use. Since the present invention is provided with a handle portion, it is convenient to hold the handle portion by hand and rotate it outward to pull it out when demolding, which makes the operation more convenient and easy to demold. After the ice mold core is removed from the ice cup model formed inside the cup, there is no need to remove the ice cup model relative to the cup. The user can directly pour the beverage into the cavity of the ice cup model, and then the ice cup model will continuously chill / refrigerate the beverage. It is extremely convenient to use and easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional diagram of the utility model;

[0020] Figure 2 It is a three-dimensional diagram of the present invention from another perspective;

[0021] Figure 3 It is a cross-sectional view of the utility model;

[0022] Figure 4 It is an assembly diagram of the utility model and the cup;

[0023] Figure 5 This is a cross-sectional view of the assembly of the utility model and the cup;

[0024] Figure 6 It is a three-dimensional image of the Stanley Cup. DETAILED DESCRIPTION

[0025] The present invention will be further described below with reference to specific embodiments and accompanying drawings.

[0026] See Figure 1-5 As shown, an integrated ice-making mold is used to make a shaped ice cup model with an existing cup.

[0027] The present invention is composed of an integrated ice mold core piece 1, which has only one part. The ice mold core piece 1 includes a core portion 11 and a fastening portion 12 integrally formed at the upper end of the core portion 11 and used for fastening and assembling with the upper end opening 21 of the cup 2, and a handle portion 13 integrally formed at the upper end of the fastening portion 12. The outer diameter of the core portion 11 is smaller than the size of the inner cavity of the cup 2. When the ice mold core piece 1 is inserted into the cup 2, the fastening portion 12 is fastened and assembled with the upper end opening 21 of the cup 2, the core portion 11 extends into the inner cavity of the cup 2, and a cavity 20 for forming an ice cup model is formed between the outer portion of the core portion 11 and the inner wall of the cup 2.

[0028] When in use, the present invention is directly inserted into an existing cup 2 (i.e., an existing Stanley cup), wherein the mold core portion 11 extends into the inner cavity of the cup 2, and the fastening portion 12 is fastened to the upper end opening 21 of the cup 2, so that the mold core portion 11 is suspended in the inner cavity of the cup 2, thereby forming a mold cavity 20 for forming an ice cup model between the outer portion of the mold core portion 11 and the inner wall of the cup 2. When the water in the mold cavity 20 is frozen into the ice cup model, the handle portion 13 is grasped by hand and rotated outwards relatively to be pulled out, so that the ice mold core piece 1 is pulled out relative to the ice cup model and falls off. At this time, the ice cup model still remains in the cup 2, and a cavity is formed in the ice cup model at the original position of the ice mold core piece 1. The user can directly pour a beverage (such as water, juice, beer, soda, etc.) into the cavity of the ice cup model, and then the ice cup model continuously chills / refrigerates the beverage, which is extremely convenient to use and easy to operate. In other words, the present invention is composed of only one part and has an ingenious design. It can be used with an existing cup to produce a molded ice cup model. It has few parts, a simple structure, low mold opening cost, and is extremely convenient to use. Since the present invention is provided with a handle portion 13, it is convenient to hold the handle portion 13 by hand and rotate it outward to pull it out when demolding, which makes the operation more convenient and easy to demold. After the ice mold core 1 is removed from the ice cup model formed inside the cup, there is no need to take the ice cup model out of the cup. The user can directly pour the beverage into the cavity of the ice cup model, and then the ice cup model will continuously chill / refrigerate the beverage. It is extremely convenient to use and easy to operate.

[0029] The ice mold core 1 is integrally formed from silicone, which is food grade silicone.

[0030] The core portion 11 is shaped larger at the top and smaller at the bottom, so that the core portion 11 has a certain draft angle, thereby enabling the core portion 11 to be quickly or more smoothly demolded relative to the formed ice cup model, that is, to facilitate ice removal. Specifically, the core portion 11 includes a first core portion 111, a second core portion 112, and a third core portion 113 connected in sequence from top to bottom, and the first core portion 111, the second core portion 112, and the third core portion 113 are all shaped like a cone with a larger top and a smaller bottom, so that the first core portion 111, the second core portion 112, and the third core portion 113 all have a draft angle, thereby enabling the core portion 11 to be quickly or more smoothly demolded relative to the formed ice cup model, and the operation is extremely convenient.

[0031] There are two handles 13 symmetrically distributed on the upper end of the fastening portion 12 , which are more convenient to hold with both hands and to use force to demould the ice mold core 1 relative to the formed ice cup model, making the operation more convenient.

[0032] The outer diameter of the fastening portion 12 is larger than the opening 21 at the top of the cup 2, allowing the fastening portion 12 to fit tightly with the opening 21 at the top of the cup 2 through an interference fit, thereby ensuring a tight seal and preventing leakage that could affect the quality of the ice cup mold. It is worth noting that the outer diameter of the fastening portion 12 is only slightly larger than the opening 21 at the top of the cup 2.

[0033] The upper end of the fastening portion 12 is further formed with a retaining edge 121 that protrudes outward and is used to retain the edge of the upper opening 21 of the cup 2. When the fastening portion 12 is inserted into the upper opening 21 of the cup 2, the retaining edge 121 retains the edge of the upper opening 21 of the cup 2, thereby ensuring the stability of the assembly structure and allowing the core portion 11 to be more stably positioned in a suspended manner within the inner cavity of the cup 2.

[0034] The fastening portion 12 has a groove 122 extending from top to bottom, and a ventilation hole 123 extending downward from the bottom of the groove 122 and extending through the lower end surface of the fastening portion 12 is formed. The ventilation hole 123 extends through the mold cavity 20. The design of the ventilation hole 123 allows air to be discharged when the mold core 1 is inserted into the cup and the mold cavity 20 is formed, ensuring smoother insertion of the ice mold core 1 into the cup. Excess water can also be discharged through the ventilation hole 123, ensuring the size of the formed ice cup model, thereby allowing the original cup lid to properly cover the upper opening of the cup and cover the ice cup model.

[0035] The core portion 11 is further provided with a hollow groove 110 , which passes through the groove 122 upward.

[0036] The bottom of the groove 122 is also provided with an upwardly protruding and annular retaining wall 124, and the air-permeable drainage holes 123 are distributed between the retaining wall 124 and the inner wall of the groove 122. It can prevent the air-permeable drainage holes 123 from discharging excessive water and prevent the water from falling into the hollow groove 110 in the core part 11, thereby facilitating the subsequent separation of the ice mold core piece 1 from the ice cup model, making demoulding easier.

[0037] The cup 2 described in this embodiment is the existing Stanley cup, and its structure is as follows: Figure 6 shown.

[0038] In summary, when in use, the present invention is directly inserted into the existing cup 2 (i.e., the existing Stanley cup), wherein the mold core portion 11 extends into the inner cavity of the cup 2, and the fastening portion 12 is fastened to the upper end opening 21 of the cup 2, so that the mold core portion 11 is suspended in the inner cavity of the cup 2, thereby forming a mold cavity 20 for forming an ice cup model between the outer portion of the mold core portion 11 and the inner wall of the cup 2. When the water in the mold cavity 20 is frozen into the ice cup model, the handle portion 13 is grasped by hand and rotated outward relative to it, so that the ice mold core member 1 is pulled out relative to the ice cup model and falls off. At this time, the ice cup model still remains in the cup 2, and a cavity is formed in the ice cup model at the original position of the ice mold core member 1. The user can directly pour a beverage (such as water, juice, beer, soda, etc.) into the cavity of the ice cup model, and the beverage is continuously chilled / refrigerated by the ice cup model, which is extremely convenient to use and easy to operate. In other words, the present invention is composed of only one part and has an ingenious design. It can be used with an existing cup to produce a molded ice cup model. It has few parts, a simple structure, low mold opening cost, and is extremely convenient to use. Since the present invention is provided with a handle portion 13, it is convenient to hold the handle portion 13 by hand and rotate it outward to pull it out when demolding, which makes the operation more convenient and easy to demold. After the ice mold core 1 is removed from the ice cup model formed inside the cup, there is no need to take the ice cup model out of the cup. The user can directly pour the beverage into the cavity of the ice cup model, and then the ice cup model will continuously chill / refrigerate the beverage. It is extremely convenient to use and easy to operate.

[0039] Of course, the above description is only a specific embodiment of the present invention and is not intended to limit the scope of implementation of the present invention. Any equivalent changes or modifications made based on the structure, features and principles described in the scope of the patent application of the present invention should be included in the scope of the patent application of the present invention.

Claims

1. Integrated ice making mold, characterized by: The ice mold core (1) comprises an integrated ice mold core (1), the ice mold core (1) comprising a mold core portion (11), a fastening portion (12) integrally formed at the upper end of the mold core portion (11) and used for fastening and assembling with an upper opening (21) of a cup (2), and a handle portion (13) integrally formed at the upper end of the fastening portion (12), and the outer diameter of the mold core portion (11) is smaller than the size of the inner cavity of the cup (2); when the ice mold core (1) is inserted into the cup (2), the fastening portion (12) is fastened and assembled with the upper opening (21) of the cup (2), the mold core portion (11) extends into the inner cavity of the cup (2), and a mold cavity (20) for forming an ice cup model is formed between the outer portion of the mold core portion (11) and the inner wall of the cup (2).

2. The integrated ice-making mold according to claim 1, characterized in that: The ice mold core (1) is integrally formed from silicone.

3. The integrated ice-making mold according to claim 2, characterized in that: The mold core portion (11) is shaped in a larger upper portion and smaller lower portion.

4. The integrated ice-making mold according to claim 3, characterized in that: The core part (11) includes a first core part (111), a second core part (112), and a third core part (113) connected in sequence from top to bottom, and the first core part (111), the second core part (112), and the third core part (113) are all in the shape of a cone with a larger top and a smaller bottom, so that the first core part (111), the second core part (112), and the third core part (113) all have a draft angle.

5. The integrated ice-making mold according to any one of claims 1 to 4, characterized in that: The outer diameter of the fastening portion (12) is larger than the size of the upper opening (21) of the cup (2), so that the fastening portion (12) and the upper opening (21) of the cup (2) are tightly fitted by interference fit.

6. The integrated ice-making mold according to claim 5, characterized in that: The upper end of the fastening portion (12) is further formed with a retaining edge (121) that protrudes outward and is used to retain the edge of the upper opening (21) of the cup (2).

7. The integrated ice-making mold according to any one of claims 1 to 4, characterized in that: There are two handle portions (13), which are symmetrically distributed on the upper end of the fastening portion (12).

8. The integrated ice-making mold according to any one of claims 1 to 4, characterized in that: The fastening portion (12) is provided with a groove (122) from top to bottom, and a ventilation and drainage hole (123) is provided downwardly at the bottom of the groove (122) and passes through the lower end surface of the fastening portion (12), and the ventilation and drainage hole (123) passes through the mold cavity (20).

9. The integrated ice-making mold according to claim 8, characterized in that: A hollow groove (110) is also provided in the core portion (11), and the hollow groove (110) passes through the groove (122) upwards.

10. The integrated ice-making mold according to claim 9, characterized in that: The bottom of the groove (122) is further provided with an upwardly protruding annular retaining wall (124), and the air-permeable drainage holes (123) are distributed between the retaining wall (124) and the inner wall of the groove (122).