Wine chiller cold storage bin with axial waterproof structure and wine chiller

By adding shock-absorbing components and water-blocking seals to the rotating shaft assembly end of the wine cooler's refrigeration compartment, the problem of the rotating shaft being unable to rotate due to water vapor freezing was solved, achieving smooth rotation of the rotating shaft and extending the product's lifespan.

CN223678089UActive Publication Date: 2025-12-16GUANGDONG INVITOP TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423198008.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

The existing wine icer has a gap in the mounting position of the rotating shaft inside the refrigeration chamber. When water vapor enters, it freezes, causing the shaft to malfunction and affecting the electrical function.

Method used

First and second damping components are added to the two assembly ends of the rotating shaft. The damping components are provided with radially extending water-blocking seals to form a multi-seal structure to prevent water vapor from entering the gap, including a combination seal of an inner water-blocking ring, an outer water-blocking ring, and a limiting ring.

Benefits of technology

It effectively prevents water vapor from freezing, ensures smooth rotation of the shaft, and extends product lifespan and ensures normal operation of electrical appliances.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of electric appliances, and particularly relates to a wine chiller cold storage bin with an axial waterproof structure and a wine chiller, the wine chiller cold storage bin comprises a cold storage bin shell, a cold storage cavity and an opening communicated with the cold storage cavity are formed in the cold storage bin shell, and a rotating shaft arranged in the length direction of the cold storage cavity is arranged in the cold storage cavity; the tail end of the rotating shaft is a first assembling end, and the head end of the rotating shaft is a second assembling end used for being connected with a driving piece. A first damping part is further arranged between the first assembling end and the first mounting position, a second damping part is arranged between the second assembling end and the second mounting position, and the first damping part is further provided with a first water retaining sealing part which extends in the radial direction and abuts against the peripheral face of the rotating shaft. The second damping piece is also provided with a second water retaining sealing part which extends in the radial direction and abuts against the peripheral face of the rotating shaft. The axial waterproof water-retaining sealing part is additionally arranged, so that the problem that the rotating shaft cannot work due to the fact that steam freezes at the mounting position of the rotating shaft is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of electric appliances, especially relates to ice wine ware refrigeration bin with axial waterproof structure and ice wine ware. BACKGROUND

[0002] The ice wine ware is the electric appliance that the wine, beverage and so on drink are cooled in the inside refrigeration bin, and compared with the refrigerator, generally only the single bottle drink is cooled to reach the effect of fast cooling. At present, in order to improve the cooling efficiency, the ice wine ware still adds the drive shaft structure that auxiliary drink bottle rotates in the refrigeration cavity, and the bottle body in the refrigeration cavity is rotated by the shaft, thereby accelerating the cooling of the drink, and the current shaft is directly assembled in the refrigeration cavity, and there is a gap in the assembly position of the shaft and the refrigeration cavity, and in the use process of frequently taking and placing the refrigeration cavity, the internal environment will have water vapor, and when the refrigeration cavity works, the internal working temperature will reach below zero, if the water vapor enters the gap of the shaft assembly position and forms ice at the working temperature, the shaft will not rotate normally (i.e. the shaft is locked), thereby affecting the electric appliance function and normal use. SUMMARY

[0003] The utility model discloses a refrigeration bin with axial waterproof structure of ice wine ware, which increases a waterproof sealing part that can be axially waterproof, thereby preventing the problem of water vapor icing at the shaft mounting position and causing the refrigeration bin to fail to work.

[0004] Therefore, the utility model provides a refrigeration bin with axial waterproof structure of ice wine ware, which includes a refrigeration cavity shell, the refrigeration cavity shell is provided with a refrigeration cavity and an opening communicated with the refrigeration cavity, and a shaft is arranged in the refrigeration cavity along the length direction of the refrigeration cavity.

[0005] The end of the shaft is a first assembly end, and the first end of the shaft is a second assembly end used for being connected with a driving member.

[0006] The refrigeration cavity is provided with a first mounting position for embedding the first assembly end and a second mounting position for passing the second assembly end, a first damping member is further arranged between the first assembly end and the first mounting position, a second damping member is arranged between the second assembly end and the second mounting position, a first waterproof sealing part extending along the radial direction and abutting against the outer periphery of the shaft is further arranged on the first damping member, and a second waterproof sealing part extending along the radial direction and abutting against the outer periphery of the shaft is also arranged on the second damping member.

[0007] The refrigeration bin with axial waterproof structure of ice wine ware as described above is further provided with a rotating member between the first assembly end and the first damping member, so that the shaft can rotate relative to the first damping member through the rotating member.

[0008] The ice wine cooler storage bin with the axial waterproof structure as described above, the first damping member comprises a sleeve joint part and a limiting outer edge, the sleeve joint part is embedded into the first mounting position, and the limiting outer edge is located outside the first mounting position;

[0009] An installation hole is formed in the first damping member and extends from the limiting outer edge to the sleeve joint part, and the first assembly end is connected to the rotating member by being inserted into the installation hole;

[0010] The first water blocking sealing part at least comprises a first inner water blocking ring located in the installation hole and abutting against the outer periphery of the first assembly end.

[0011] The ice wine cooler storage bin with the axial waterproof structure as described above, the first water blocking sealing part further comprises a first outer water blocking ring located at the opening of the installation hole, and the first outer water blocking ring abuts against the outer peripheral surface of the rotating shaft close to the first assembly end.

[0012] The ice wine cooler storage bin with the axial waterproof structure as described above, an end surface of the limiting outer edge is provided with an annular recess formed by being recessed in the axial direction and towards the sleeve joint part, and the first water blocking sealing part further comprises an annular protrusion located at the outer periphery of the installation hole.

[0013] The ice wine cooler storage bin with the axial waterproof structure as described above, the outer peripheral surface of the rotating shaft close to the first assembly end is provided with a first limiting ring groove, a snap ring is arranged in the first limiting ring groove and clamped in the limiting groove, and a limiting ring is further arranged between the snap ring and the first damping member, the limiting ring is embedded in the annular recess and abuts against the annular protrusion.

[0014] The ice wine cooler storage bin with the axial waterproof structure as described above, the sleeve joint part and the limiting outer edge are integrally formed by using silica gel material.

[0015] The ice wine cooler storage bin with the axial waterproof structure as described above, the second damping member comprises a ring sleeve part, and the ring sleeve part is embedded into the second mounting position;

[0016] An installation through hole is formed in the second damping member and penetrates through the ring sleeve part, the second assembly end is connected to the driving member by being inserted into the installation through hole, and a second rotating member is further arranged between the second assembly end and the ring sleeve part.

[0017] The second water blocking sealing part at least comprises a second inner water blocking ring located in the installation through hole and abutting against the outer periphery of the second assembly end.

[0018] The ice wine cooler storage bin with the axial waterproof structure as described above, an end surface of the ring sleeve part is provided with a recess recessed in the axial direction thereof, and the second water blocking sealing part further comprises a second annular protrusion located outside the installation through hole and protruding outwardly;

[0019] The outer circumferential surface of the rotating shaft near the second assembly end is provided with a second limiting ring groove, the second limiting ring groove is provided with a second clamping ring clamped in the second limiting groove, and a second limiting ring is further arranged between the second clamping ring and the second damping part, and the second limiting ring is embedded in the recess and abuts against the second annular boss.

[0020] The utility model also provides an ice wine device, including the body, be equipped with the ice wine device refrigeration storehouse of having axial waterproof structure above.

[0021] The utility model discloses the following beneficial effects are obtained by implementing the embodiment:

[0022] The utility model provides an ice wine device refrigeration storehouse with axial waterproof structure, which increases a first damping part and a second damping part on two assembly parts of the rotating shaft. In addition to assembly with the rotating shaft, the damping part also has a water blocking sealing part extending radially to abut against the surface of the rotating shaft. This ensures that water vapor is difficult to enter the gap between the rotating shaft and the assembly part, preventing the rotating shaft from rotating due to ice formation at the assembly end. This greatly improves the service life of the product and ensures the normal operation of the electrical appliance. BRIEF DESCRIPTION OF DRAWINGS

[0023] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort.

[0024] Figure 1 It is a schematic view of the ice wine device refrigeration storehouse with axial waterproof structure of the utility model;

[0025] Figure 2 It is Figure 1 a schematic view of the internal structure;

[0026] Figure 3 It is a schematic view of the rotating shaft;

[0027] Figure 4 It is an exploded view of the first assembly end of the rotating shaft;

[0028] Figure 5 It is Figure 3 a sectional view;

[0029] Figure 6 It is Figure 5 an enlarged view of part A;

[0030] Figure 7 It is Figure 5 an enlarged view of part B. DETAILED DESCRIPTION

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] like Figures 1 to 7 As shown, this utility model embodiment provides a wine cooler with an axially waterproof structure, including a cooler housing 10. The cooler housing 10 has a cooler 101 and an opening 102 communicating with the cooler 101. In normal use, the beverage bottle is placed into the cooler 101 through the opening 102. After sealing the opening, the beverage can be cooled down in the cooler. In order to improve the cooling effect, the cooler 101 is provided with a rotating shaft 7 arranged along the length of the cooler 101. After the beverage bottle is placed in, the bottle body contacts the rotating shaft 7. Under the rotation of the rotating shaft 7, the bottle body will also rotate, so that the beverage is more evenly contacted with the cold air in the cooler 101, thereby improving the cooling efficiency.

[0033] In this design, the end of the rotating shaft 7 is a first assembly end 71, and the beginning of the rotating shaft 7 is a second assembly end 72 for connection with the driving component. Correspondingly, the refrigeration cavity 101 has a first mounting position for the first assembly end 71 to be inserted into and a second mounting position for the second assembly end 72 to pass through. To prevent moisture from entering the gap between the first assembly end 71 and the first mounting position or the gap between the second assembly end 72 and the second mounting position, a first shock absorber 81 is provided between the first assembly end 71 and the first mounting position, and a second shock absorber 82 is provided between the second assembly end 72 and the second mounting position. The first shock absorber 81 is also provided with a first water-blocking sealing part 810 extending radially and abutting against the outer peripheral surface of the rotating shaft 7, and the second shock absorber 82 is also provided with a second water-blocking sealing part 820 extending radially and abutting against the outer peripheral surface of the rotating shaft 7. This solution adds a first damping component and a second damping component to the two assembly ends of the rotating shaft. In addition to being assembled with the rotating shaft, the damping component also has a water-blocking sealing part that extends radially to abut against the surface of the rotating shaft. This ensures that water vapor cannot enter the gap between the assembly ends, thereby preventing water vapor from freezing at the assembly ends and causing the rotating shaft to be unable to rotate, and greatly improving the service life of the product.

[0034] In the scheme, the first assembly end 71 and the first damping part 81 are further provided with a rotating part 70, so that the rotating shaft 7 can rotate relative to the first damping part 81 through the rotating part 70. That is, the scheme can be regarded as the first assembly end 71 and the rotating part 70 connected in the first damping part 81 are assembled, so as not to be in direct contact with the first damping part 81, so that the rotation of the rotating part 70 is more smooth. As a preferred, the rotating part 70 of the scheme can adopt a bearing.

[0035] Further, as shown in Figure 6 The specific structure of the first damping part 81 is that the first damping part 81 includes a sleeve part 811 and a limiting outer edge 812, the sleeve part 811 is embedded into the first mounting position, and the limiting outer edge 812 is located outside the first mounting position; the first damping part 81 is provided with a mounting hole 801 extending from the limiting outer edge 812 to the sleeve part 811, and the first assembly end 71 is connected with the rotating part 70 by being inserted into the mounting hole 801; the structure is beneficial to rapid installation and positioning, and after the first damping part 81 is sleeved on the first assembly end 71, it is directly installed in the first mounting position, and the limiting outer edge 812 is abutted with the outer wall of the first mounting position, that is, the assembly is in place.

[0036] Moreover, the first water blocking sealing part 810 at least includes a first inner water blocking ring 8101 abutting with the outer periphery of the first assembly end 71 in the mounting hole 801. That is, after the first assembly end 71 is inserted into the mounting hole 801 for installation, the first inner water blocking ring 8101 is abutted with the first assembly end 71 to form the first axial sealing, mainly blocking water from entering the position where the rotating part 70 is assembled.

[0037] In the embodiment of the utility model, in order to further play the sealing and prevent water from entering, the first water blocking sealing part 810 further includes a first outer water blocking ring 8102 at the opening of the mounting hole 801, and the first outer water blocking ring 8102 is abutted with the outer periphery of the rotating shaft 7 close to the first assembly end 71. That is, the first outer water blocking ring 8102 abutting with the outer periphery of the rotating shaft 7 is arranged outside the first inner water blocking ring 8101, as the second axial sealing.

[0038] In addition, the end face of the limiting outer edge 812 described in this solution is provided with an annular recess formed along the axial direction and in the direction of the sleeve part 811. The first water-blocking sealing part 810 also includes an annular boss 8103 located on the outer periphery of the mounting hole 801 with an annular recess. Furthermore, a first limiting ring groove 78 is provided on the outer peripheral surface of the rotating shaft 7 near the first assembly end 71. A retaining ring 781 is provided on the first limiting ring groove 78 and is stuck in the limiting groove 78. A limiting ring 782 is also provided between the retaining ring 781 and the first shock absorber 81. The limiting ring 782 is embedded in the annular recess and abuts against the annular boss 8103. This solution also forms a third seal by the abutment of the limiting ring 782 and the annular boss 8103. In this way, water vapor needs to enter radially from the third seal to the first outer water baffle ring 8102, and then through the first inner water baffle ring 8101 to enter the assembly point of the first assembly end 71 and the rotating part 70, which greatly increases the difficulty of water vapor entering, thereby achieving a good axial sealing effect.

[0039] In order to achieve the above-mentioned shock absorption effect, the sleeve part 811 and the limiting outer edge 812 are integrally molded with silicone material.

[0040] The above mainly describes the structure of the first damping component 81. Similarly, the axial sealing structure of the second damping component 82 is similar to that of the first damping component 81.

[0041] Specifically, such as Figure 7 As shown, the second shock absorber 82 includes a ring sleeve 821, which is embedded in the second mounting position. The second shock absorber 82 has a mounting through hole 802 that penetrates the ring sleeve 821. The second assembly end 72 extends into the mounting through hole 802 and connects to the driving component. A second rotating component 700 is also provided between the second assembly end 72 and the ring sleeve 821. The second water-blocking sealing part 820 includes at least a second inner water-blocking ring 8201 located within the mounting through hole 802 and abutting against the outer periphery of the second assembly end 72. The end face of the ring sleeve 821 has a recessed position along its axial direction. The second water-blocking sealing part 820 also includes a second annular boss 8203 located outside the mounting through hole 802 and protruding outwards. Two seals are formed on the second shock absorber 82, providing sealing protection for the second assembly end 72.

[0042] Furthermore, a second limiting ring groove 79 is provided on the outer peripheral surface of the rotating shaft 7 near the second assembly end 72. A second retaining ring 791 is provided on the second limiting ring groove 79 and is engaged in the second limiting groove 79. A second limiting ring 792 is also provided between the second retaining ring 791 and the second shock absorber 82. The second limiting ring 792 is embedded in the recess and abuts against the second annular boss 8203.

[0043] The utility model also provides an ice wine device, including the organism, be equipped with the ice wine device refrigeration storehouse of having axial waterproof structure above-mentioned on the organism. Since the ice wine device has the structure of the refrigeration cavity, so the ice wine device also has the same beneficial effect.

[0044] The utility model provides an ice wine device refrigeration storehouse with axial waterproof structure, it increases first shock absorber and second shock absorber on two assembly parts of the pivot, and shock absorber has water baffle sealing part along the radial extension to the surface of the pivot in addition to assembling with the pivot, like this guarantees that water vapor is difficult to enter into the clearance of rotation, thereby prevent the phenomenon that water vapor freezes in the assembly end and causes the pivot to be unable to rotate, greatly promote the service life of product.

[0045] It should be understood that the utility model uses the terms "first", "second" and the like to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the utility model, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and is not intended to indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0046] The above is the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the technical field, several improvements and deformations can be made without departing from the principles of the utility model, and these improvements and deformations are also considered within the protection scope of the utility model.

Claims

1. A wine cooler chiller bin having an axial water proofing structure, characterized in that, The application relates to a refrigeration storage shell, which comprises a refrigeration cavity (101) and an opening (102) communicating with the refrigeration cavity (101), wherein a rotating shaft (7) is arranged along the length direction of the refrigeration cavity (101). The end of the rotating shaft (7) is a first assembly end (71), and the head of the rotating shaft (7) is a second assembly end (72) used for being connected with a driving member. A first mounting position for embedding the first assembly end (71) and a second mounting position for passing the second assembly end (72) are arranged in the refrigeration cavity (101), a first damping member (81) is arranged between the first assembly end (71) and the first mounting position, a second damping member (82) is arranged between the second assembly end (72) and the second mounting position, a first water-blocking sealing part (810) extending along the radial direction and abutting against the outer circumferential surface of the rotating shaft (7) is arranged on the first damping member (81), and a second water-blocking sealing part (820) extending along the radial direction and abutting against the outer circumferential surface of the rotating shaft (7) is arranged on the second damping member (82).

2. The ice wine cooler bin with axial waterproof structure according to claim 1, characterized in that, A rotating member (70) is arranged between the first assembly end (71) and the first damping member (81), so that the rotating shaft (7) can rotate relative to the first damping member (81) through the rotating member (70).

3. The ice wine cooler bin with axial waterproof structure according to claim 2, characterized in that, The first damping member (81) comprises a sleeve part (811) and a limiting outer edge (812), the sleeve part (811) is embedded into the first mounting position, and the limiting outer edge (812) is located outside the first mounting position. An installation hole (801) extending from the limiting outer edge (812) to the sleeve part (811) is arranged on the first damping member (81), the first assembly end (71) is inserted into the installation hole (801) and connected with the rotating member (70). The first water-blocking sealing part (810) at least comprises a first inner water-blocking ring (8101) abutting against the outer circumferential surface of the first assembly end (71) in the installation hole (801).

4. The ice wine cooler bin with axial waterproof structure according to claim 3, characterized in that, The first water-blocking sealing part (810) further comprises a first outer water-blocking ring (8102) located at the opening of the installation hole (801) and abutting against the outer circumferential surface of the rotating shaft (7) close to the first assembly end (71).

5. The ice wine cooler bin with axial waterproof structure according to claim 4, characterized in that, The end surface of the limiting outer edge (812) is provided with an annular recess formed in the axial direction and recessed towards the sleeve part (811), and the first water-blocking sealing part (810) further comprises an annular convex part (8103) located in the outer circumferential surface of the installation hole (801).

6. The ice wine cooler bin with axial waterproof structure according to claim 5, characterized in that, The outer circumferential surface of the rotating shaft (7) close to the first assembly end (71) is provided with a first limiting ring groove (78), a snap ring (781) is arranged in the first limiting ring groove (78), a limiting ring (782) is further arranged between the snap ring (781) and the first damping member (81), the limiting ring (782) is embedded in the annular recess and abuts against the annular convex part (8103).

7. The ice wine cooler bin with axial waterproof structure according to any one of claims 3-6, characterized in that, The sleeve part (811) and the limiting outer edge (812) are integrally formed by using silica gel material.

8. The ice wine cooler bin with axial waterproof structure according to claim 1, characterized in that, The second damping member (82) comprises a ring sleeve portion (821) embedded into the second mounting position; The second damping member (82) is provided with a mounting through hole (802) penetrating through the ring sleeve portion (821), the second assembly end (72) is inserted into the mounting through hole (802) to be connected with the driving member, and the second assembly end (72) is further provided with a second rotating member (700) between the ring sleeve portion (821). The second water blocking sealing portion (820) at least comprises a second inner water blocking ring (8201) located in the mounting through hole (802) and abutting against the outer periphery of the second assembly end (72).

9. The ice wine cooler bin with axial waterproof structure according to claim 8, characterized in that, The end surface of the ring sleeve portion (821) is provided with a recessed position recessed along the axial direction, and the second water blocking sealing portion (820) further comprises a second annular boss (8203) located outside the mounting through hole (802) and protruding outwardly; The outer periphery of the second assembly end (72) of the rotating shaft (7) is provided with a second limiting ring groove (79), the second limiting ring groove (79) is provided with a second clamping ring (791) clamped in the second limiting ring groove (79), and the second limiting ring (792) is further provided between the second clamping ring (791) and the second damping member (82), the second limiting ring (792) is embedded in the recessed position and abuts against the second annular boss (8203).

10. An ice wine server characterized by, The wine cooler comprises a machine body, and the machine body is provided with the ice wine cooler refrigeration compartment with the axial water-proof structure according to any one of claims 1-9.