BULK BAG WITH STAND TYPE PULLING UP RINGS
20210198011 · 2021-07-01
Inventors
- Een Suk PARK (Cheonan-si, KR)
- Hyun Seo LEE (Cheonan-si, KR)
- Hyun Jung LEE (Cheonan-si, KR)
- Hyun Ah LEE (Cheonan-si, KR)
Cpc classification
B65D88/1681
PERFORMING OPERATIONS; TRANSPORTING
B65D90/00
PERFORMING OPERATIONS; TRANSPORTING
B65D88/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Disclosed is a bulk bag having self-standing loops. The bulk bag is configured with a bag-shaped body having a reversed “U”-shaped loop protruding upwardly from an outside thereof and configured to flexibly stand upright by itself from a folded position upon unstacking of bodies, wherein the loop is coupled to the body at a position spaced downwardly apart from a top edge of the body by a predetermined distance, the loop having an air tube having a predetermined length and coupled to an outside of the loop. The loop is configured with a semicircular arc-shaped hook portion and “I”-shaped supporting portions respectively extending from opposite ends of the hook portion, and the air tube is coupled with the hook portion and an at least one supporting portion and is heat-treated and flexibly bent at a portion corresponding to a boundary point between the hook portion and the supporting portion.
Claims
1. A bulk bag having self-standing loops, the bulk bag comprising: a bag-shaped body 100 having a reversed “U”-shaped loop (200) protruding upwardly from an outside of the body, the loop (200) being coupled to the body (100) at a position spaced downwardly apart from a top edge of the body by a predetermined distance, the loop having an air tube (300) having a predetermined length and coupled to an outside of the loop, wherein the loop (200) is configured with a semicircular arc-shaped hook portion (210) and “I”-shaped supporting portions (220) respectively extending from opposite ends of the hook portion (210), and the air tube (300) is coupled with the hook portion (210) and an at least one supporting portion (220) and is heat-treated and flexibly bent at a portion corresponding to a boundary point between the hook portion (210) and the supporting portion (220).
2. The bulk bag of claim 1, wherein the air tube (300) has a margin portion (310) formed at a side thereof by extending along a longitudinal direction of the air tube, such that the margin portion (310) and the loop (200) are coupled to each other.
3. The bulk bag of claim 2, wherein the margin portion (310) and the loop (200) are coupled to each other by a zipper to allow replacement or recycling of the air tube (300).
4. The bulk bag of claim 1, wherein the loop (200) is divided into a non-fixed portion (200a) that is not fixed to the body (100) and extends downwardly from the top edge of the body by the predetermined distance, and a fixed portion (200b) fixed to the body (100) and extending downwardly from the non-fixed portion (200a), and the air tube (300) is coupled to the outside of the loop (200) to simultaneously pass across the non-fixed portion (200a) and the fixed portion (200b).
5. The bulk bag of claim 1, wherein the loop (200) is configured with the semicircular arc-shaped hook portion (210) and the “I”-shaped supporting portions (220) respectively extending from the opposite ends of the hook portion (210), and the air tube (300) is coupled to each of the supporting portions (22).
6. The bulk bag of claim 4, wherein the body (100) has a guide strip (110) at a portion thereof that corresponds to an upper side of the fixed portion (200b), the guide strip having a predetermined length and being coupled at opposite ends thereof to the body (100) so as to enclose the loop (22) and the air tube (300).
7. The bulk bag of claim 1, wherein the body (100) has an auxiliary loop (400) positioned inwardly of the loop (200) and coupled to a side portion of the body to protrude upwardly.
8. The bulk bag of claim 1, wherein the air tube (300) is comprised of a bundle of multiple tubes (330) such that even when a part of the tubes (330) is damaged, a supporting force acting on the loop (200) is maintained.
Description
DESCRIPTION OF DRAWINGS
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[0018]
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MODE FOR INVENTION
[0020] In the present invention, there is provided a bulk bag having self-standing loops, the bulk bag being configured with a bag-shaped body having a reversed “U”-shaped loop protruding upwardly from an outside thereof and configured to flexibly stand upright by itself from a folded position upon unstacking of bodies, wherein the loop is coupled to the body at a position spaced downwardly apart from a top edge of the body by a predetermined distance, the loop having an air tube having a predetermined length and coupled to an outside of the loop. The loop is configured with a semicircular arc-shaped hook portion and “I”-shaped supporting portions respectively extending from opposite ends of the hook portion, and the air tube is coupled with the hook portion and an at least one supporting portion and is heat-treated and flexibly bent at a portion corresponding to a boundary point between the hook portion and the supporting portion.
[0021] The scope of the present invention is not limited to the following embodiments and various changes and modifications from the spirit of the present invention defined in the following claims by those skilled in the art are also included in the scope of the present invention.
[0022] Hereinafter, a bulk bag having self-standing loops according to the present invention will be described in detail with reference to
[0023] As shown in
[0024] The body 100 has a reversed “U”-shaped loop protruding upwardly from an outside of the body 100, and multiple loops 200 are arranged along a side portion of the body 100. The forks of a forklift are inserted into the loops 200 protruding from the body 100 to transport the body 100. Furthermore, it is preferable that the multiple loops 200 are arranged along the side portion of the body 100 at respective positions corresponding to each other such that the body 100 is transported stably.
[0025] The loop has an air tube 300 having a predetermined length and coupled to an outside of the loop 200. The air tube 300 may have a structure capable of injecting or discharging air by a user. The air tube 300 in which the air has been injected allows the loop 200 to stand upright, so that as shown in
[0026] In particular, in the present invention, as shown in
[0027] As an example, as shown in
[0028] Meanwhile, the air tube 300 may be comprised of a single tube. However, as shown in
[0029] The air tube 300 may have an air injection portion 340 allowing air to be injected into the tubes 330. Although not shown in the drawings, a valve provided at each of the multiple tubes 330 communicates with the air injection portion 340 such that air is injected into the multiple tubes 300 through the air injection portion 340, and air pressure is adjusted to adjust a supporting force for the loop 200. Furthermore, although not shown in the drawings, the air tube 300 may have an air generating member provided therein, and the air generating member generates air due to a chemical reaction. Accordingly, the air tube 300 having no air injected thereinto is coupled to the loop 200, and then the air generating member is manipulated for air injection.
[0030] Meanwhile, as shown in
[0031] Furthermore, as shown in
[0032] Meanwhile, as shown in
[0033] First, as shown in
[0034] As shown in
[0035] Furthermore, as shown in
[0036] Meanwhile, the body 100 may have at least one guide strip 110 at a portion thereof where the loop 200 is coupled thereto, the guide strip having a predetermined length and being coupled at opposite ends thereof to the body 100 so as to enclose the loop 200 and the air tube 300. In particular, the guide strip 110 may be provided at an upper side of the portion of the body where the loop 200 is coupled thereto, that is, at an upper side of the fixed portion 200b, and serves to allow the air tube 300 and the loop 200 to be firmly secured without loosening and thus enhances self-standing ability of the loop 200 obtained from the air tube 300. In addition, the guide strip 110 serves to guide an operator to fill the bag with contents to at least the portion where the guide strip is provided such that the loops 200 can most effectively stand upright from a folded position upon unstacking of the multiple bodies 100.
[0037] Meanwhile, as shown in
[0038] As an example, when the body 100 is moved, auxiliary loops 400 as shown in
[0039] As another example, auxiliary loops 400 as shown in
TABLE-US-00001 <Description of the Reference Numerals in the Drawings> 100: body 110: guide strip 200: loop 200a: non-fixed portion 200b: fixed portion 210: hook portion 220: supporting portion 300: air tube 310: margin portion 320: flexible portion 330: tube 340: air injection portion 400: auxiliary loop