INSULATED BAG AND FOLDABLE INSULATED BAG
20210387790 · 2021-12-16
Inventors
Cpc classification
A45F3/02
HUMAN NECESSITIES
B65D33/24
PERFORMING OPERATIONS; TRANSPORTING
B65D81/3897
PERFORMING OPERATIONS; TRANSPORTING
International classification
A45F3/02
HUMAN NECESSITIES
Abstract
A foldable insulated bag includes: a bag main body including a bottom surface portion and a side surface portion; a lid body attached to the bag main body; and a bottom surface insulating member and a side surface insulating member provided to the bag main body, wherein the side surface insulating member has an end portion, closer to the bottom surface insulating member, provided with a fold back portion that is configured to be provided to cover at least a part of the bottom surface insulating member during use of the insulated bag.
Claims
1. A foldable insulated bag comprising: a bag main body including a bottom surface portion and a side surface portion; a lid body attached to the bag main body; and a bottom surface insulating member and a side surface insulating member provided to the bag main body, wherein the side surface insulating member has an end portion, closer to the bottom surface insulating member, provided with a fold back portion provided to cover at least a part of the bottom surface insulating member during use of the insulated bag.
2. The insulated bag according to claim 1, wherein the fold back portion is provided to cover an end portion of the bottom surface insulating member.
3. The insulated bag according to claim 1, wherein the fold back portion has a length of 5 mm to 170 mm.
4. The insulated bag according to claim 1, wherein the fold back portion is formed over entire circumference of the side surface insulating member.
5. The insulated bag according to claim 1, wherein the fold back portion is notched at boundary regions among a first side surface insulating member, a second side surface insulating member, and a third side surface insulating member adjacent to each other.
6. The insulated bag according to claim 1, wherein the fold back portion covers 5% to 100% of a surface area of the bottom surface insulating member.
7. The insulated bag according to claim 1, wherein the fold back portion covers the bottom surface insulating member.
8. An insulated bag comprising: a bag main body including a bottom surface portion and a side surface portion; a lid body attached to the bag main body; a bottom surface insulating member and a side surface insulating member provided to the bag main body; and one or both of an extending portion extending in a vertical direction from the side surface insulating member and a step portion formed in the bottom surface insulating member for increasing a contact area between the side surface insulating member and the bottom surface insulating member during use of the insulated bag.
9. The insulated bag according to claim 8, wherein the extending portion covers an end portion of the bottom surface insulating member.
10. The insulated bag according to claim 8, wherein the extending portion has a length of 5 mm to 170 mm.
11. The insulated bag according to claim 8, wherein the extending portion is formed over entire circumference of the side surface insulating member.
12. The insulated bag according to claim 8, wherein the extending portion is notched at boundary regions among a first side surface insulating member, a second side surface insulating member, and a third side surface insulating member adjacent to each other.
13. The insulated bag according to claim 8, wherein the extending portion covers 5% to 100% of a surface area of the bottom surface insulating member.
14. The insulated bag according to claim 8, wherein the extending portion covers the bottom surface insulating member.
15. The insulated bag according to claim 8, wherein, when the extending portion and the step portion are provided, the step portion has a side surface in contact with a side portion of the extending portion.
16. The insulated bag according to claim 8, wherein, when the extending portion and the step portion are provided, the step portion is in contact with an upper portion of the extending portion and a side portion of the side surface insulating member.
17. The insulated bag according to claim 8, wherein the step portion has a side surface in contact with a side portion of the side surface portion insulating member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE SIGNS LIST
[0044] 1 foldable insulated bag [0045] 10 insulated bag [0046] 19 first side surface insulating member [0047] 20 second side surface insulating member [0048] 21 third side surface insulating member [0049] 22 fourth side surface insulating member [0050] 23 bag main body [0051] 24 bottom surface portion [0052] 25 side surface portion [0053] 26 bottom surface insulating member [0054] 27 lid body [0055] 28 side surface insulating member [0056] 28a side portion [0057] 29 fastener portion [0058] 30 extending portion [0059] 30a side portion [0060] 30b upper portion [0061] 31 front surface side surface [0062] 32 step portion [0063] 32a side portion [0064] 33 handle [0065] 34 end portion of bottom surface insulating member [0066] 35 rear surface side surface [0067] 37, 39 U-shaped handle [0068] 41 fold back portion [0069] 43, 45 hook-and-loop fastener [0070] 47 handle bundling loop-shaped grip [0071] 53 shoulder belt [0072] 54 both end portions [0073] 55 shoulder pad
DETAILED DESCRIPTION
[0074] Examples of my insulated bags will be described in detail with reference to the attached drawings. Elements common to a plurality of figures are denoted by the same reference numerals through the plurality of figures. For the sake of description, the figures are not necessarily drawn to scale.
[0075] One example of my foldable insulated bag will be described with reference to
[0076] A fastener portion surrounding the outer circumference of the bottom surface of the bag main body 23 extends along the outer circumference. The bottom surface of the bag main body 23 is coupled via a hinge member (not illustrated) made of a synthetic resin sheet (such as a nylon or polyester woven cloth, for example). The bottom surface can be opened closed by being pivoted with respect to the bag main body 23 about the hinge member. The bottom surface is configured to be arrangeable to be adjacent to a side portion of the outer surface of the bag main body 23 when the insulated bag 1 is folded. Similarly, a lid body 27 described later is also configured to be arrangeable to be adjacent to a side portion of the outer surface of the bag main body 23, when the insulated bag 1 is folded. The bag main body 23 is formed by a soft material to be foldable together with the insulating members.
[0077] The lid body 27 formed of the same material as the bag main body 23 is coupled to one side (a rear surface side surface 35 described later) via a hinge member (not illustrated) made of a synthetic resin sheet. The lid body 27 has a circumference edge portion provided with a fastener portion 29 that surrounds an upper portion outer circumference of the bag main body 23 when the storage port is covered by the lid body 27 (when the storage port is closed by the lid body 27). The fastener portion 29 extends along the outer circumference. The inner surface of the lid body 27 is provided with the insulating member accommodating the heat insulating material as an upper surface insulating member. The attachment of the heat insulating material to the lid body 27 may be implemented in various possible ways, and thus is not limited to a particular mode.
[0078] The insulated bag 1 may include a handle 33 including a pair of both end portions attached to the bag main body 23. The handle 33 is attached to upper portion outer circumferences of a front surface side surface 31 and the rear surface side surface 35 of the bag main body 23 as illustrated in
[0079] The insulated bag 1 may further include a shoulder belt 53 both end portions of which are attached to the bag main body 23. In this configuration, the shoulder belt 53 may be formed as a single thin belt-shaped shoulder belt 53 that is made of woven cloth or synthetic resin (molded product), fabric, leather, or the like and is spun between left and right side surfaces 49 and 51 of the bag main body 23 as illustrated in
[0080] The shoulder belt 53 of the insulated bag 1 has a length long enough for the center portion, in the longitudinal direction, to touch the ground when the shoulder belt 53 hangs down from the insulated bag 1 placed on the ground. A plate-shaped shoulder pad 55 having a dimension (length L) that is substantially ⅓ of the entire length of the shoulder belt 53 is attached to the center portion of the shoulder belt 53. Further details will be omitted.
[0081] Next, the foldable insulated bag 1 will be described more in detail with reference to
[0082] The fold back portion is thus provided so that the insulated bag can be easily folded, and the leakage of the cold air between the insulating members for the respective surfaces can be reliably reduced so that the cooling effect can be reliably improved.
[0083] It has been known that the cooling effect of the insulated bag depends on two factors: a thermal effect from the ground on which the insulated bag is placed; and leakage of the cold air from the internal of the insulated bag (leakage of the cold air from a portion around the bottom portion in particular). To reduce the impact of the former factor, the bottom portion insulating member may be made thick, but this approach is limited by restrictions in terms of weight and dimensions. On the other hand, regarding the latter, I found that effective prevention of the leakage of the cold air between the bottom surface insulating member and the side surface insulating member individually formed is important, and I found a specific measure to achieve this. The side surface insulating member 28 may be formed by forming a single plate-shaped insulating member, bending the insulating member, and appropriately coupling/bonding both end portions of the insulating member.
[0084] As illustrated in
[0085] The length of the fold back portion 41 may be 5 mm to 170 mm. I found that the leakage of the cold air in the insulated bag and a thermal effect from the ground can be suppressed with such a configuration. A test has revealed that the percentage of ice remaining after a predetermined period of time has increased by 7% or more.
[0086] With the fold back portion 41 having a length within such a range, when the insulated bag 1 is folded, the size after the folding based on the size of the box can be downsized. Thus, the insulated bag can be easily folded, and can have a reduced thickness in a folded state.
[0087] The fold back portion 41 may be configured to be formed over the entire circumference of the side surface insulating member 28. Thus, the cold air can be prevented from leaking between the bottom surface insulating member and the side surface insulating member, whereby the cooling effect can be further improved.
[0088] Next, the foldable insulated bag 1 will be described with reference to
[0089] The fold back portion 41 may cover the bottom surface insulating member 26. Thus, the leakage of the cold air in the insulated bag and a thermal effect from the ground can be more effectively suppressed.
[0090] The fold back portion 41 may cover 5% to 100% of the surface area of the bottom surface insulating member 26. Thus, the leakage of the cold air in the insulated bag and a thermal effect from the ground can be suppressed.
[0091]
[0092] As described above, when the insulated bag 1 is folded, the fold back portion 41 can be substantially parallel to the side surface insulating member 28 so that the insulated bag folded would not have the thickness unnecessarily increased.
[0093] Thus, the fold back portion is provided so that the insulated bag can be easily folded, and the leakage of the cold air between the insulating members for the respective surfaces can be reliably reduced so that the cooling effect can be reliably improved.
[0094] An example of my insulated bag is described with reference to
[0095] The lid body 27 formed of the same material as the bag main body 23 is coupled to one side (a rear surface side surface 35 described later) via a hinge member (not illustrated) made of a synthetic resin sheet (for example, nylon, polyester woven cloth or the like). The lid body 27 has a circumference edge portion provided with a fastener portion 29 that surrounds an upper portion outer circumference of the bag main body 23 when the storage port is covered by the lid body 27 (when the storage port is closed by the lid body 27). The fastener portion 29 extends along the outer circumference. The inner surface of the lid body 27 is provided with the insulating member accommodating the heat insulating material as an upper surface insulating member. The attachment of the heat insulating member to the lid body 27 may be implemented in various possible ways, and thus is not limited to a particular mode.
[0096] The insulated bag 10 may include a handle 33 including a pair of both end portions attached to the bag main body 23. The handle 33 is attached to upper portion outer circumferences of a front surface side surface 31 and the rear surface side surface 35 of the bag main body 23 as illustrated in
[0097] The insulated bag 10 may further include a shoulder belt 53 both end portions of which are attached to the bag main body 23. In this configuration, the shoulder belt 53 may be formed as a single thin belt-shaped shoulder belt 53 that is made of woven cloth or synthetic resin (molded product), fabric, leather, or the like and is spun between left and right side surfaces 49 and 51 of the bag main body 23 as illustrated in
[0098] The shoulder belt 53 of the insulated bag 10 has a length long enough for the center portion in the longitudinal direction to touch the ground, when the shoulder belt 53 hangs down from the insulated bag 10 placed on the ground. A plate-shaped shoulder pad 55 having a dimension (length L) that is substantially ⅓ of the entire length of the shoulder belt 53 is attached to the center portion of the shoulder belt 53. Further details will be omitted.
[0099] Next, an insulated bag 10 according to an example will be described more in detail with reference to
[0100] The bottom surface insulating member and the side surface insulating member do not need to be integrally formed, whereby insulating members for respective surfaces can be formed more easily and at a lower cost, and leakage of cold air between the insulating members for the respective surfaces can be reliably reduced so that the cooling effect can be improved.
[0101] It has been known that the cooling effect of the insulated bag depends on two factors: a thermal effect from the ground on which the insulated bag is placed; and leakage of the cold air from the internal of the insulated bag (leakage of the cold air from a portion around the bottom portion in particular). To reduce the impact of the former factor, the bottom portion insulating member may be made thick, but this approach is limited by restrictions in terms of weight and dimensions. On the other hand, regarding the latter, I found that effective prevention of the leakage of the cold air between the bottom surface insulating member and the side surface insulating member individually formed is important, and I found a specific measure to achieve this. The side surface insulating member 28 may be formed by forming a single plate-shaped insulating member, bending the insulating member, and appropriately coupling/bonding both end portions of the insulating member.
[0102] As illustrated in
[0103] The length of the extending portion 30 may be 5 mm to 170 mm. I found that the leakage of the cold air in the insulated bag and a thermal effect from the ground can be suppressed with this configuration.
[0104] In the insulated bag 10, the extending portion 30 may be configured to be formed over the entire circumference of the side surface insulating member 28. Thus, the cold air can be prevented from leaking between the bottom surface insulating member and the side surface insulating member, whereby the cooling effect can be improved.
[0105] Next, the insulated bag 10 according to an example will be described with reference to
[0106] The extending portion 30 may be provided to cover the bottom surface insulating member 26. Thus, the leakage of the cold air in the insulated bag and a thermal effect from the ground can be more effectively suppressed.
[0107] The extending portion 30 may cover 5% to 100% of the surface area of the bottom surface insulating member 26. Thus, the leakage of the cold air in the insulated bag and a thermal effect from the ground can be suppressed.
[0108] Next, the insulating member of the insulated bag 10 according to an example will be described with reference to
[0109] Next, the insulating member of the insulated bag 10 according to an example will be described with reference to
[0110] Next, the insulating member of the insulated bag 10 according to an example will be described by referring back to
[0111] The dimensions, material, and arrangement of each component described herein are not limited to those explicitly described in the examples, and each of these components can be modified to have any desirable dimensions, material, and arrangement that can fall within the scope of this disclosure. Components that are not explicitly described herein may be added to the described examples, and some of the components described in each example may be omitted.