Heating disc buffer structure with glass container
By incorporating an elastic unit within the formula maker that springs into contact with the heating plate, the problem of glass containers being damaged during transport or drops is solved, thus ensuring the safety of the containers.
Patent Information
- Application Number
- CN202520188777.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-06
AI Technical Summary
The glass containers of existing formula makers are easily damaged by impacts during transportation or drops, lacking effective cushioning protection.
An elastic unit is installed inside the formula maker to elastically contact the heating plate, absorbing impact force and preventing damage to the glass container.
It effectively prevents glass containers from being damaged during transportation or accidental drops, improving the safety and reliability of the containers.
Smart Images

Figure CN223746225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of milk frother, concretely relates to a heating disc buffer structure with glass container. BACKGROUND
[0002] Milk frother is a kind of heating and heat preservation household appliance, commonly used for brewing milk powder for infants and young children.Most of the existing milk frother container is made of glass, compared with plastic box metal material, can prevent the container of milk frother from separating harmful substances and metal ions in the use process, improve the safety of milk frother.But most of the existing container is directly installed in the milk frother, and the container is easily impacted from the bottom of the milk frother when the milk frother is shaken or dropped during transportation, resulting in damage to the container.
[0003] In the prior art, such as the patent document with publication number CN118141235A, discloses a kind of milk frother, prevent temperature from being too high and causing cup body to burst by split type cup body.But the milk frother does not set up buffer device, directly install cup bottom on milk frother, glass-made cup body is easily damaged when milk frother is transported or dropped. SUMMARY
[0004] In view of the problems in the prior art, the utility model provides a kind of heating disc buffer structure with glass container, by the elastic unit of glass container abutment elastic abutment to heating disc, prevent milk frother from being shaken or accidentally dropped during transportation, cause glass container to be damaged by impact.
[0005] The utility model is realized as follows: a kind of heating disc buffer structure with glass container, be located in milk frother, the milk frother includes equipment main body, and heating assembly is coupled with the equipment main body, the heating assembly includes first shell, the buffer structure includes the second shell of fixed connection with the first shell, the second shell has hollow containing cavity, the bottom of the containing cavity is equipped with multiple elastic units, multiple the elastic unit is in the form of mechanical support and is commonly accepted heating disc;
[0006] Mechanical support form is evenly distributed or scattered distribution.
[0007] The containing cavity bottom is equipped with the limiting portion corresponding to elastic unit, one end of each elastic unit is constrained on the limiting portion, other end is along the direction perpendicular to the plane of heating disc, and is elastically abutted with the heating disc;It also includes glass container, the bottom of the glass container and the top of the heating disc are in abutment.The elastic unit is used to absorb the impact force caused by the heating disc when milk frother is impacted, to prevent the heating disc from impacting the glass container, and to prevent the glass container from being damaged.
[0008] Preferably, the limiting part is a mounting hole, the inner diameter of the mounting hole is matched with the outer diameter of the elastic unit, and the hole depth of the mounting hole is greater than or equal to half of the length of the elastic unit; or, the limiting part is a pin shaft, the outer diameter of the pin shaft is matched with the inner diameter of the elastic unit, and the height of the pin shaft is greater than or equal to half of the length of the elastic unit. The elastic unit can only deform along the depth direction of the mounting hole or the length direction of the pin shaft, preventing the elastic unit from bending and deforming, and further causing the elastic unit to come out of the mounting hole or the pin shaft, thereby improving the installation firmness of the elastic unit. Specifically, when the limiting part is a mounting hole, the top of the mounting hole gradually increases from bottom to top to form a guide part. The guide part is used to guide the installation of the elastic unit. Since the outer diameter of the elastic unit is matched with the inner diameter of the mounting hole, the axes of the two need to be in the same straight line during installation, which is relatively cumbersome. The guide part allows the elastic unit and the mounting hole to be installed when the axes of the two are not in the same straight line, simplifies the installation steps during installation of the elastic unit, and improves the installation convenience of the elastic unit.
[0009] Preferably, the device further comprises a guide mechanism matched with the glass container, the bottom of the guide mechanism is fixedly connected with the second shell, and the top is slidably connected with the side surface of the glass container. On the one hand, since the guide mechanism is slidably connected with the glass container from the side surface, when the impact force is transmitted from the second shell to the guide mechanism, the guide mechanism will slide relative to the glass container, preventing the impact force from acting vertically on the glass container, and further reducing the risk of damage to the glass container. On the other hand, when the elastic unit is compressed by impact, the glass container moves relative to the second shell, and the guide mechanism is used to guide the movement of the glass container, preventing the glass container from being misaligned during movement, and improving the smoothness of the elastic unit during buffering.
[0010] Specifically, the guide mechanism comprises oppositely arranged guide units, the guide units are in a semi-ring shape, the two ends of the guide units are fixedly connected with each other to form a guide ring, and the guide ring frames the glass container. The compatibility of the guide mechanism can be improved by adjusting the distance between the clamping units to make the guide mechanism compatible with glass containers of different sizes.
[0011] Specifically, the guide mechanism further comprises a first buffer unit in a strip shape, the first buffer unit surrounds the circumferential side of the glass container and is clamped between the glass container and the guide unit. The first buffer unit further absorbs the impact force transmitted by the guide mechanism to the glass container, further reducing the risk of damage to the glass container.
[0012] Specific, the glass container comprises first cavity and second cavity arranged upward and downward, the radial dimension of the first cavity is larger than the radial dimension of the second cavity, the guide unit is connected with the second cavity, so that the structure of the heating assembly is more compact, and then the radial dimension of the heating assembly is consistent upward and downward, and installation space is saved.
[0013] Specific, the second cavity is outwardly convex at the bottom, and forms an anti-disengagement part.
[0014] Specific, the second shell top is further provided with a second buffer unit, and the top of the second buffer unit is in abutment with the bottom of the first cavity.
[0015] Preferably, the elastic unit is provided with at least three, three points determine a plane in geometry, and at least three elastic units can make the support of the elastic unit to the heating disc more stable, so as to ensure that the heating disc can fully abut against the glass container, and the reliability of the heating disc is improved.
[0016] The beneficial effects of the utility model are as follows:
[0017] The utility model discloses a heating disc buffer structure with glass container, and the elastic unit is in elastic abutment with the heating disc abutting against the glass container, when the milk regulator shakes or accidentally falls during transportation, the elastic unit absorbs the impact force caused by the milk regulator shaking or falling to the heating disc, and prevents the glass container from being damaged by excessive impact force. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the heating assembly cross section view of being provided with the buffer structure of the utility model;
[0019] Figure 2 It is the a enlarged schematic view of Figure 1
[0020] Figure 3 It is the second shell schematic diagram of the buffer structure of the utility model;
[0021] Figure 4 It is the glass container schematic diagram of the buffer structure of the utility model;
[0022] Figure 5 It is the guide mechanism schematic diagram of the buffer structure of the utility model.
[0023] Reference signs:
[0024] 1, first housing; 2, second housing; 3, heating disc; 4, elastic unit; 5, glass container; 6, guide mechanism; 21, mounting hole; 22, guide portion; 51, first cavity; 52, second cavity; 53, anti-disengagement portion; 61, guide unit; 62, first buffer unit. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0026] As shown in the drawings, Figures 1-5 A heating disc buffer structure with a glass container is arranged in a milk frother. The milk frother comprises a device main body and a heating assembly coupled with the device main body. The heating assembly comprises a first housing 1. The buffer structure comprises a second housing 2 fixedly connected with the first housing 1. The second housing 2 has a hollow accommodating cavity. The bottom of the accommodating cavity is provided with a plurality of elastic units 4. The plurality of elastic units 4 jointly receive a heating disc 3 in a mechanical support form. The bottom of the accommodating cavity is provided with a limiting portion corresponding to each elastic unit. One end of each elastic unit 4 is constrained on the limiting portion, and the other end is elastically connected with the heating disc 3 in a direction perpendicular to the plane where the heating disc 3 is located.
[0027] In this embodiment, the mechanical support form is uniform distribution.
[0028] In this embodiment, the elastic unit 4 is provided with at least three. In geometry, three points determine a plane. At least three elastic units 4 can make the support of the elastic unit 4 to the heating disc 3 more stable, so as to ensure that the heating disc 3 can fully abut against the glass container 5 and improve the reliability of the heating disc 3.
[0029] In this embodiment, the elastic unit 4 is a compression spring.
[0030] In this embodiment, the limiting portion is a mounting hole 21. The inner diameter of the mounting hole 21 is matched with the outer diameter of the elastic unit 4. The hole depth of the mounting hole 21 is greater than or equal to half the length of the elastic unit 4. The elastic unit 4 can only deform along the depth direction of the mounting hole 21, so as to prevent the elastic unit 4 from bending and deforming and then being disengaged from the mounting hole 21, thereby improving the installation firmness of the elastic unit 4.
[0031] Specifically, the top of the mounting hole 21 gradually increases from bottom to top, forming a guide portion 22. The guide portion 22 is used to guide the installation of the elastic unit 4. Since the outer diameter of the elastic unit 4 is matched with the inner diameter of the mounting hole 21, the axes of the two need to be in the same straight line during installation, which is relatively cumbersome. The guide portion 22 allows the elastic unit 4 and the mounting hole 21 to be installed when their axes are not in the same straight line, simplifies the installation steps of the elastic unit 4 during installation, and improves the installation convenience of the elastic unit 4.
[0032] Further comprising a glass container 5, the bottom of which is in abutment with the top of the heating disc 3. The elastic unit 4 is used to absorb the impact force of the heating disc 3 when the milk warmer receives an impact, thereby preventing the heating disc 3 from impacting the glass container 5 and preventing the glass container 5 from being damaged.
[0033] In this embodiment, further comprising a guide mechanism 6 matched with the glass container 5, the bottom of which is fixedly connected with the second housing 2, and the top of which is slidably connected with the side surface of the glass container 5. On the one hand, since the guide mechanism 6 fixes the glass container 5 from the side, when the impact force is transmitted from the second housing 2 to the guide mechanism 6, the guide mechanism 6 will have a tendency to slide relative to the glass container 5, which can prevent the impact force from acting vertically on the glass container 5, further reducing the risk of damage to the glass container 5. On the other hand, when the elastic unit 4 is compressed by an impact, the glass container 5 moves relative to the second housing 2, and the guide mechanism 6 is used to guide the movement of the glass container 5, preventing the glass container 5 from being misaligned during movement, and improving the smoothness of the buffer of the elastic unit 4.
[0034] Specifically, the guide mechanism 6 comprises oppositely arranged guide units 61, which are semi-annular. The two ends of the guide units 61 are fixedly connected with each other, forming a guide ring, which frames the glass container 5. By adjusting the distance between the guide units 61, the guide mechanism 6 can be compatible with glass containers 5 of different sizes, improving the compatibility of the guide mechanism 6.
[0035] Specifically, the guide mechanism 6 further comprises a first buffer unit 62 in the form of a strip, which surrounds the circumferential side of the glass container 5 and is clamped between the glass container 5 and the guide units 61. The first buffer unit 62 further absorbs the impact force transmitted by the guide mechanism 6 to the glass container 5, further reducing the risk of damage to the glass container 5.
[0036] Specifically, the glass container 5 comprises a first cavity 51 and a second cavity 52 arranged in sequence, the radial dimension of the first cavity 51 is larger than that of the second cavity 52, and the guide unit 61 is connected with the second cavity 52, so that the structure of the heating assembly is more compact, and the radial dimension of the heating assembly is consistent, thereby saving the installation space.
[0037] Specifically, the second cavity 52 is outwardly convex at the bottom, and forms an anti-disengagement part 53. The anti-disengagement part 53 can prevent the glass container 5 from disengaging from the guide mechanism when the glass container 5 moves, and further improves the installation firmness of the glass container 5.
[0038] Specifically, the second housing 2 is further provided with a second buffer unit, and the top of the second buffer unit is in abutment with the bottom of the first cavity 51. The second buffer unit further reduces the impact force transmitted to the glass container 5, and further reduces the risk of damage of the glass container 5.
[0039] According to the disclosure and teaching of the above description, the person skilled in the art of the present application can also make changes and modifications to the above embodiments. Therefore, the present application is not limited to the specific embodiments disclosed and described above, and some modifications and changes of the present application should fall within the protection scope of the claims of the present application. In addition, although some specific terms are used in the present specification, these terms are only for convenience of explanation and do not constitute any limitation on the present application.
Claims
1. A heating disc buffer structure with a glass container, provided in a milk frother, the milk frother comprising a device main body, and a heating assembly coupled to the device main body, the heating assembly comprising a first shell, characterized in that, the buffer structure comprises a second shell fixed to the first shell, the second shell having a hollow accommodating cavity, the bottom of the accommodating cavity being provided with a plurality of elastic units, the plurality of elastic units collectively receiving the heating disc in a mechanical support form; the bottom of the accommodating cavity is provided with a limiting portion corresponding to each elastic unit, one end of each elastic unit being constrained on the limiting portion, and the other end being elastically abutted against the heating disc in a direction perpendicular to the plane on which the heating disc is located; and the buffer structure further comprises a glass container, the bottom of the glass container being abutted against the top of the heating disc.
2. The heat disc buffer structure with a glass container according to claim 1, characterized in that, the limiting portion is a mounting hole, the inner diameter of the mounting hole being matched with the outer diameter of the elastic unit, and the hole depth of the mounting hole being greater than or equal to half the length of the elastic unit; or, the limiting portion is a pin shaft, the outer diameter of the pin shaft being matched with the inner diameter of the elastic unit, and the height of the pin shaft being greater than or equal to half the length of the elastic unit.
3. The heat disc buffer structure with a glass container according to claim 2, characterized in that, when the limiting portion is the mounting hole, the top of the mounting hole gradually increases from bottom to top, forming a guide portion.
4. The heat disc buffer structure with a glass container according to claim 1, wherein, the buffer structure further comprises a guide mechanism matched with the glass container, the bottom of the guide mechanism being fixed to the second shell, and the top of the guide mechanism being slidably connected to the side surface of the glass container.
5. The heat disc buffer structure with a glass container according to claim 4, characterized in that, the guide mechanism comprises oppositely arranged guide units, the guide units being semi-annular, the two ends of the guide units being fixed to each other, forming a guide ring, and the guide ring frames the glass container.
6. The heat disc buffer structure with a glass container according to claim 5, characterized in that, the guide mechanism further comprises a first buffer unit in the form of a strip, the first buffer unit being wrapped around the circumferential side of the glass container and being clamped between the glass container and the guide unit.
7. The heat disc buffer structure with a glass container according to claim 5, wherein, the glass container comprises a first cavity and a second cavity arranged in an up-down manner, the radial dimension of the first cavity being greater than the radial dimension of the second cavity, and the guide unit being connected to the second cavity.
8. The heat disc buffer structure with a glass container according to claim 7, characterized in that, the circumferential bottom of the second cavity is outwardly protruded, forming an anti-falling portion.
9. The heat disc buffer structure with a glass container according to claim 7, wherein, the top of the second shell is further provided with a second buffer unit, the top of the second buffer unit being abutted against the bottom of the first cavity.
10. The heat disc buffer structure with a glass container according to claim 1, wherein, the elastic unit is provided with at least three.
Citation Information
Patent Citations
Milk mixing device
CN118141235A