Plastic cup capable of insulating heat

By designing adjustable insulation components, the problem of the distance between the insulation layer and the plastic cup in the existing plastic cup is fixed, achieving more effective thermal partitioning and liquid insulation effect that adapts to different temperatures.

CN222888816UActive Publication Date: 2025-05-23GUANGZHOU HAOYI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202420985213.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-08
Publication Date
2025-05-23
Estimated Expiration
2034-05-08

AI Technical Summary

Technical Problem

The distance between the heat insulation layer of the existing thermally insulated plastic cup and the plastic cup is fixed, resulting in the insulating layer being unable to effectively separate the heat of the liquid when the liquid temperature is too high, affecting the thermal insulation effect.

Method used

An adjustable thermal insulation assembly is designed, including multiple layers of thermal insulation and boosters. Through the cooperation of bolts and grooves, the user can freely adjust the distance between the thermal insulation and the plastic cup to form an air layer that adapts to different liquid temperatures.

Benefits of technology

Through adjustable thermal insulation components, the insulation effect of the plastic cup is improved, and the heat of the liquid can be more effectively blocked and adapted to liquids of different temperatures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a heat insulation plastic cup which comprises a main body and a heat insulation assembly arranged on the main body. The main body comprises a cup body and a cup cover; the heat insulation assembly comprises a first heat insulation layer, a second heat insulation layer, a third heat insulation layer, a fourth heat insulation layer, a first boosting piece, a second boosting piece, a third boosting piece, a fourth boosting piece, a first plug pin, a second plug pin, a third plug pin, a fourth plug pin, a first clamping position, a second clamping position and a third clamping position. According to the heat insulation plastic cup, the distance between the heat insulation layer and the plastic cup can be freely adjusted according to needs, and therefore the heat insulation effect of the plastic cup is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of daily necessities, in particular to a heat-insulating plastic cup. Background Art

[0002] A plastic cup is a container used to hold and keep liquids warm. Usually, a water cup is small in size and can be placed firmly on a table. Most existing insulated plastic cups have a layer of insulation material added to the inside or outside of the plastic cup, such as double-layer plastic or silicone. These insulation layers are usually separated from the plastic cup to form an air layer or vacuum layer to isolate heat.

[0003] However, the distance between the existing insulation layer and the plastic cup is fixed. When the temperature of the liquid in the plastic cup is too high, the air layer formed between the insulation layer and the plastic cup cannot effectively isolate the heat of the liquid, thereby affecting the insulation effect of the plastic cup. Utility Model Content

[0004] In order to solve the problem in the prior art that the distance between the heat insulating layer and the plastic cup is fixed, which affects the heat insulating effect of the plastic cup, the utility model proposes an insulated plastic cup, which can freely adjust the distance between the heat insulating layer and the plastic cup as needed, thereby improving the heat insulating effect of the plastic cup.

[0005] In order to solve the above technical problems, the technical solution adopted by the utility model is as follows: an insulated plastic cup comprises a main body and a heat insulating component, wherein the heat insulating component is arranged on the main body.

[0006] The main body comprises a cup body and a cup cover.

[0007] The thermal insulation assembly includes a first thermal insulation layer, a second thermal insulation layer, a third thermal insulation layer, a fourth thermal insulation layer, a first booster, a second booster, a third booster, a fourth booster, a first latch, a second latch, a third latch, a fourth latch, a first clamping position, a second clamping position and a third clamping position.

[0008] The cup body is configured as a hollow cylinder, the inner wall of the cup body is provided with a first thread, and the cup cover is provided with a second thread.

[0009] The outer wall of the cup body is provided with a groove.

[0010] One end of the first booster is connected to the upper and lower walls of the groove through a bolt, one end of the first booster close to the bolt is movably connected to the groove, and the other end of the first booster away from the bolt is movably connected to the first insulation layer.

[0011] One end of the second booster is connected to the upper and lower walls of the groove through a bolt, one end of the second booster close to the bolt is movably connected to the groove, and the other end of the second booster away from the bolt is movably connected to the second insulation layer.

[0012] One end of the third booster is connected to the upper and lower walls of the groove through a bolt, one end of the third booster close to the bolt is movably connected to the groove, and the other end of the third booster away from the bolt is movably connected to the third insulation layer.

[0013] One end of the fourth booster is connected to the upper and lower walls of the groove through a bolt, one end of the fourth booster close to the bolt is movably connected to the groove, and the other end of the fourth booster away from the bolt is movably connected to the fourth insulation layer.

[0014] The first booster member is provided with the first, second and third clamping positions, the second booster member is provided with the first, second and third clamping positions, the third booster member is provided with the first, second and third clamping positions, and the fourth booster member is provided with the first, second and third clamping positions.

[0015] The first latch is arranged on the first heat insulation layer, the second latch is arranged on the second heat insulation layer, the third latch is arranged on the third heat insulation layer, and the fourth latch is arranged on the fourth heat insulation layer.

[0016] The beneficial effects of the heat-insulating plastic cup of the utility model are as follows:

[0017] By setting up an adjustable insulation component, the user can freely adjust the distance between the insulation layer and the plastic cup as needed, so that the air layer formed between the insulation layer and the plastic cup can better adapt to the different liquid temperatures in the plastic cup, effectively isolate the heat of the liquid, and thus improve the insulation effect of the plastic cup. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the structure of a heat-insulating plastic cup of the utility model;

[0019] Figure 2 This is a partial structural schematic diagram of a heat-insulating plastic cup of the utility model;

[0020] Figure 3 This is a schematic diagram of a first embodiment of a heat-insulating plastic cup of the utility model;

[0021] Figure 4 This is a schematic diagram of a second embodiment of a heat-insulating plastic cup of the utility model;

[0022] Figure 5This is a schematic diagram of a third embodiment of a heat-insulating plastic cup of the utility model.

[0023] Among them, 1. main body; 101. cup body; 102. cup cover; 103. groove; 2. thermal insulation component; 201. first thermal insulation layer; 202. second thermal insulation layer; 203. third thermal insulation layer; 204. fourth thermal insulation layer; 205. first booster; 206. second booster; 207. third booster; 208. fourth booster; 209. first latch; 2010. second latch; 2011. third latch; 2012. fourth latch; 2013. first clamping position; 2014. second clamping position; 2015. third clamping position; 2016. bolt. DETAILED DESCRIPTION

[0024] The technical solution of the utility model will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0025] See also Figure 1-2 As shown, the utility model is a heat-insulating plastic cup, comprising a main body 1 and a heat-insulating component 2 , wherein the heat-insulating component 2 is arranged on the main body 1 .

[0026] The main body 1 includes a cup body 101 and a cup cover 102. The cup body 101 is configured as a hollow cylinder. The inner wall of the cup body 101 is provided with a first thread, and the cup cover 102 is provided with a second thread. The cup body 101 and the cup cover 102 are rotated to open and close via the first thread and the second thread. The cup body 101 and the cup cover 102 can be connected to or separated from each other. The outer wall of the cup body 101 is provided with a groove 103.

[0027] The thermal insulation component 2 includes a first thermal insulation layer 201, a second thermal insulation layer 202, a third thermal insulation layer 203, a fourth thermal insulation layer 204, a first booster 205, a second booster 206, a third booster 207, a fourth booster 208, a first latch 209, a second latch 2010, a third latch 2011, a fourth latch 2012, a first clamping position 2013, a second clamping position 2014 and a third clamping position 2015.

[0028] One end of the first booster 205 is connected to the upper and lower walls of the groove 103 through a bolt 2016, one end of the first booster 205 close to the bolt 2016 is movably connected to the groove 103, and the other end of the first booster 205 away from the bolt 2016 is movably connected to the first thermal insulation layer 201.

[0029] One end of the second booster 206 is connected to the upper and lower walls of the groove 103 through a bolt 2016, one end of the second booster 206 close to the bolt 2016 is movably connected to the groove 103, and the other end of the second booster 206 away from the bolt 2016 is movably connected to the second thermal insulation layer 202.

[0030] One end of the third booster 207 is connected to the upper and lower walls of the groove 103 through a bolt 2016, one end of the third booster 207 close to the bolt 2016 is movably connected to the groove 103, and the other end of the third booster 207 away from the bolt 2016 is movably connected to the third insulation layer 203.

[0031] One end of the fourth booster 208 is connected to the upper and lower walls of the groove 103 through a bolt 2016, one end of the fourth booster 208 close to the bolt 2016 is movably connected to the groove 103, and the other end of the fourth booster 208 away from the bolt 2016 is movably connected to the fourth thermal insulation layer 204.

[0032] The first booster 205 is provided with the first latching position 2013, the second latching position 2014 and the third latching position 2015, the second booster 206 is provided with the first latching position 2013, the second latching position 2014 and the third latching position 2015, the third booster 207 is provided with the first latching position 2013, the second latching position 2014 and the third latching position 2015, and the fourth booster 208 is provided with the first latching position 2013, the second latching position 2014 and the third latching position 2015.

[0033] The first latch 209 is disposed on the first heat insulation layer 201 , the second latch 2010 is disposed on the second heat insulation layer 202 , the third latch 2011 is disposed on the third heat insulation layer 203 , and the fourth latch 2012 is disposed on the fourth heat insulation layer 204 .

[0034] Example 1, see Figure 3 As shown, the first latch 209 passes through the first insulation layer 201 and is inserted into the first latch position 2013 of the second booster 206, the second latch 2010 passes through the second insulation layer 202 and is inserted into the first latch position 2013 of the third booster 207, the third latch 2011 passes through the third insulation layer 203 and is inserted into the first latch position 2013 of the fourth booster 208, and the fourth latch 2012 passes through the fourth insulation layer 204 and is inserted into the first latch position 2013 of the first booster 205.

[0035] Example 2, see Figure 4As shown, the first latch 209 passes through the first thermal insulation layer 201 and is inserted into the second latch position 2014 of the second booster 206, the second latch 2010 passes through the second thermal insulation layer 202 and is inserted into the second latch position 2014 of the third booster 207, the third latch 2011 passes through the third thermal insulation layer 203 and is inserted into the second latch position 2014 of the fourth booster 208, and the fourth latch 2012 passes through the fourth thermal insulation layer 204 and is inserted into the second latch position 2014 of the first booster 205.

[0036] Example 3, see Figure 5 As shown, the first latch 209 passes through the first thermal insulation layer 201 and is inserted into the third latch position 2015 of the second booster 206, the second latch 2010 passes through the second thermal insulation layer 202 and is inserted into the third latch position 2015 of the third booster 207, the third latch 2011 passes through the third thermal insulation layer 203 and is inserted into the third latch position 2015 of the fourth booster 208, and the fourth latch 2012 passes through the fourth thermal insulation layer 204 and is inserted into the third latch position 2015 of the first booster 205.

[0037] Through the heat insulation component 2, the user can freely adjust the distance between the heat insulation component 2 and the cup body 101 as needed, so that the air layer formed between the heat insulation component 2 and the cup body 101 can better adapt to the different liquid temperatures in the cup body 101, effectively cut off the heat of the liquid, thereby improving the heat insulation effect of the plastic cup. This working method solves the problem in the prior art that "the distance between the heat insulation layer and the plastic cup is fixed, and when the temperature of the liquid in the plastic cup is too high, the air layer formed between the heat insulation layer and the plastic cup cannot effectively cut off the heat of the liquid, thereby affecting the heat insulation effect of the plastic cup."

[0038] The specific steps during use are as follows: the user pulls out the first latch 209 , the second latch 2010 , the third latch 2011 and the fourth latch 2012 .

[0039] The user rotates the cup body 101 in a clockwise direction, so that the first booster 205, the second booster 206, the third booster 207 and the fourth booster 208, which are connected to the groove 103, rotate along with the rotation of the cup body 101, so that the end of the first booster 205 connected to the first thermal insulation layer 201 moves outward, the end of the second booster 206 connected to the second thermal insulation layer 202 moves outward, the end of the third booster 207 connected to the third thermal insulation layer 203 moves outward, and the end of the fourth booster 208 connected to the fourth thermal insulation layer 204 moves outward.

[0040] As the end of the first booster 205 connected to the first insulation layer 201 moves outward, the first insulation layer 201 moves outward along with the first booster 205 , so that the distance between the first insulation layer 201 and the cup body 101 gradually increases as the cup body 101 rotates.

[0041] As the end of the second booster 206 connected to the second heat insulation layer 202 moves outward, the second heat insulation layer 202 moves outward along with the second booster 206 , so that the distance between the second heat insulation layer 202 and the cup body 101 gradually increases as the cup body 101 rotates.

[0042] As the end of the third booster 207 connected to the third heat insulation layer 203 moves outward, the third heat insulation layer 203 moves outward along with the third booster 207 , so that the distance between the third heat insulation layer 203 and the cup body 101 gradually increases as the cup body 101 rotates.

[0043] As the end of the fourth booster 208 connected to the fourth insulation layer 204 moves outward, the fourth insulation layer 204 moves outward along with the fourth booster 208 , so that the distance between the fourth insulation layer 204 and the cup body 101 gradually increases as the cup body 101 rotates.

[0044] Until the distance between the insulation layer and the cup body 101, that is, the air layer formed between the insulation layer and the cup body 101, can effectively isolate the heat of the liquid in the cup body 101 to adapt to the temperature of the liquid in the cup body 101, the rotation of the cup body 101 is stopped.

[0045] The first latch 209 is inserted through the first thermal insulation layer 201 into the second latch position 2014 or the third latch position 2015 of the second booster 206, the second latch 2010 is inserted through the second thermal insulation layer 202 into the second latch position 2014 or the third latch position 2015 of the third booster 207, the third latch 2011 is inserted through the third thermal insulation layer 203 into the second latch position 2014 or the third latch position 2015 of the fourth booster 208, and the fourth latch 2012 is inserted through the fourth thermal insulation layer 204 into the second latch position 2014 or the third latch position 2015 of the first booster 205.

[0046] The beneficial effects of the heat-insulating plastic cup of the utility model are as follows:

[0047] By setting up an adjustable insulation component, the user can freely adjust the distance between the insulation component and the plastic cup as needed, so that the air layer formed between the insulation component and the plastic cup can better adapt to the different liquid temperatures in the plastic cup, effectively isolate the heat of the liquid, and thus improve the insulation effect of the plastic cup.

[0048] The utility model and its implementation methods are described above. This description is not restrictive. What is shown in the accompanying drawings is only one of the implementation methods of the utility model. The actual structure is not limited to this. In short, if ordinary technicians in this field are inspired by it, without departing from the inventive purpose of the utility model, they can creatively design structural methods and embodiments similar to the technical scheme, which should all fall within the protection scope of the utility model.

Claims

1. A heat-insulating plastic cup, characterized in that: It comprises a main body (1) and a heat insulation component (2), wherein the heat insulation component (2) is arranged on the main body (1); The main body (1) comprises a cup body (101) and a cup cover (102); The thermal insulation component (2) comprises a first thermal insulation layer (201), a second thermal insulation layer (202), a third thermal insulation layer (203), a fourth thermal insulation layer (204), a first booster (205), a second booster (206), a third booster (207), a fourth booster (208), a first latch (209), a second latch (2010), a third latch (2011), a fourth latch (2012), a first latch position (2013), a second latch position (2014), and a third latch position (2015).

2. The heat-insulating plastic cup according to claim 1, characterized in that: The cup body (101) is configured as a hollow cylinder, the inner wall of the cup body (101) is provided with a first thread, and the cup cover (102) is provided with a second thread.

3. The heat-insulating plastic cup according to claim 1, characterized in that: The outer wall of the cup body (101) is provided with a groove (103).

4. The heat-insulating plastic cup according to claim 3, characterized in that: One end of the first booster (205) is connected to the upper and lower walls of the groove (103) through a bolt (2016); one end of the first booster (205) close to the bolt (2016) is movably connected to the groove (103); and the other end of the first booster (205) away from the bolt (2016) is movably connected to the first heat insulation layer (201); One end of the second booster (206) is connected to the upper and lower walls of the groove (103) through a bolt (2016); one end of the second booster (206) close to the bolt (2016) is movably connected to the groove (103); and the other end of the second booster (206) away from the bolt (2016) is movably connected to the second heat insulation layer (202); One end of the third booster (207) is connected to the upper and lower walls of the groove (103) through a bolt (2016); one end of the third booster (207) close to the bolt (2016) is movably connected to the groove (103); and the other end of the third booster (207) away from the bolt (2016) is movably connected to the third heat insulation layer (203); One end of the fourth booster (208) is connected to the upper and lower walls of the groove (103) through a bolt (2016); one end of the fourth booster (208) close to the bolt (2016) is movably connected to the groove (103); and the other end of the fourth booster (208) away from the bolt (2016) is movably connected to the fourth thermal insulation layer (204).

5. The heat-insulating plastic cup according to claim 4, characterized in that: The first booster (205) is provided with the first clamping position (2013), the second clamping position (2014) and the third clamping position (2015); the second booster (206) is provided with the first clamping position (2013), the second clamping position (2014) and the third clamping position (2015); the third booster (207) is provided with the first clamping position (2013), the second clamping position (2014) and the third clamping position (2015); and the fourth booster (208) is provided with the first clamping position (2013), the second clamping position (2014) and the third clamping position (2015).

6. The heat-insulating plastic cup according to claim 4, characterized in that: The first latch (209) is arranged on the first thermal insulation layer (201), the second latch (2010) is arranged on the second thermal insulation layer (202), the third latch (2011) is arranged on the third thermal insulation layer (203), and the fourth latch (2012) is arranged on the fourth thermal insulation layer (204).