Swaddle blanket for preventing moro reflex

The baby swaddle with pressure pad sections and adjustable fillers effectively prevents the Moro reflex, ensuring stability and comfort for newborns, facilitating sleep and feeding, and is easy to apply.

WO2025146903A1PCT designated stage expired Publication Date: 2025-07-10HAPPY TAILS INC
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
PCT/KR2024/015317
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-05
Filing Date
2024-10-08
Publication Date
2025-07-10

AI Technical Summary

Technical Problem

Existing baby swaddles fail to effectively prevent the Moro reflex, leading to instability and discomfort in newborns, which can interfere with sleep and feeding, and are often difficult to put on and take off.

Method used

A baby swaddle design featuring a fabric back part, a front part with pressure pad sections filled with particle-type fillers, and a detachable front separator, allowing for adjustable pressure distribution and easy application.

Benefits of technology

The design provides enhanced stability and comfort by evenly pressing the baby's body, reducing the Moro reflex, promoting better sleep and feeding, while being convenient to use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure KR2024015317_10072025_PF_FP_ABST
    Figure KR2024015317_10072025_PF_FP_ABST
Patent Text Reader

Abstract

Provided is a swaddle blanket for preventing the Moro reflex. The swaddle blanket comprises: a rear surface part made of fabric having elasticity; a front surface part overlapping the rear surface part and bonded to the rear surface part along an edge of the rear surface part to form an accommodation space between the front and rear surface parts to receive a baby's body except for the baby's head; and multiple pressing pad parts dispersedly arranged on the entire front surface part to divide the entire front surface part into multiple sections, and filled with particulate fillers capable of transferring pressure to the inside thereof.
Need to check novelty before this filing date? Find Prior Art

Description

Baby swaddle to prevent Moro reflection

[0001] The present invention relates to a baby swaddle for wrapping the outer body of a newborn baby or the like to provide a sense of stability, and more specifically, to a baby swaddle for preventing the Moro reflex that can more effectively wrap the body to prevent the Moro reflex.

[0002]

[0003] Newborns tend to react in a unique way to even the slightest stimuli. For example, they may suddenly extend their arms and legs or open and close their fingers in response to touch or sound. This reflex is known as the Moro reflex.

[0004] The Moro reflex is a normal response in babies and may disappear within a few months. However, excessive reflexes can be problematic. This is especially true if they frequently disrupt sleep, cause loss of balance, cause flipping, or interfere with feeding. Therefore, appropriate suppression of the reflex may be necessary.

[0005] In such cases, a baby wrapper can be utilized. It's known that properly wrapping a baby in a swaddle can help them feel reminiscent of the uterus they were in during their fetal life, thus calming them. These swaddles are typically made of the same fabric as a swaddle (e.g., Republic of Korea Utility Model No. 20-0483853).

[0006] However, conventional swaddles often fail to properly wrap the baby or compress the baby's body, reducing their effectiveness. This lack of stability can lead to accidents, such as sudden changes in position and flipping over. Furthermore, this can hinder adequate sleep or feeding, negatively impacting the baby's growth. Therefore, an alternative is urgently needed.

[0007] [Prior Art Literature]

[0008] (Patent Document 1) Republic of Korea Utility Model Registration No. 20-0483853, (July 3, 2017)

[0009]

[0010] The present invention is intended to solve such problems, and provides a baby swaddle for preventing the Moro reflex that can more effectively wrap around the baby's body to prevent the Moro reflex, and further provides a baby swaddle for preventing the Moro reflex that can effectively wrap around the baby's body and evenly press down to stabilize the baby, while also being convenient to put on and take off, thereby providing wearing convenience.

[0011] The technical problems of the present invention are not limited to the problems mentioned above, and other problems not mentioned will be clearly understood by those skilled in the art from the description below.

[0012]

[0013] The baby swaddle for preventing reflection of the baby according to the present invention comprises: a back portion made of fabric; a front portion overlapping the back portion and bonded to the back portion along a border of the back portion to form a space for receiving a body of a baby excluding a head between the back portion and the front portion; and a plurality of pressure pad portions dispersed throughout the entire front portion to divide the entire front portion into a plurality of zones and filled with a particle-type filler capable of transmitting pressure therein, wherein the front portion comprises two side plates bonded to each of both sides of the back portion; And a front separator formed by cutting a portion of the front part in the longitudinal direction of the baby's body, and a detachable connecting portion is disposed on both sides of the cut part, and the front separator is detachable from each side plate, and the detachable connecting portion includes a zipper strap that is opened and closed from top to bottom or from bottom to top by two sliders having opposite opening and closing directions, and six pressure pad parts, namely a first pressure pad part, a second pressure pad part, a third pressure pad part, a fourth pressure pad part, a fifth pressure pad part, and a sixth pressure pad part, are sequentially disposed on the front separator from the upper body side toward the lower body side of the baby, and the first pressure pad part is located on the baby's neck part, the second pressure pad part is located on the baby's chest part, the third and fourth pressure pad parts are located on the baby's stomach part, and the fifth and sixth pressure pad parts are located on the baby's lower body side, and the filling density of the particle-type filler filled in the pressure pad parts among the first to sixth pressure pad parts is, 2 It is characterized by its largest pressure pad.

[0014] The above-mentioned pressure pad portion can be independently formed between a plurality of grid portions arranged on the front portion in a first direction, which is the longitudinal direction of the baby's body, and a second direction intersecting therewith.

[0015] The plurality of above-mentioned pressure pad sections can change the filling density of the particle-type filler along the first direction or the second direction.

[0016] The first direction and the second direction may intersect at an angle without being orthogonal to each other.

[0017] The mass distribution of the front part may be formed asymmetrically with respect to the first direction or the second direction.

[0018] The front separator plate may be separated from the rear surface at the top and bottom, and an upper concave groove may be formed at the top of the front separator plate to wrap around the baby's neck.

[0019] It may further include a pair of side holes arranged between the back portion and the front portion and communicating with the receiving space to expose the baby's arms to the outside.

[0020] The above front separator plate can be replaced and its weight can be adjusted.

[0021] A flow hole that allows the flow of the particle-type filler can be formed between the adjacent pressure pad portions.

[0022]

[0023] The present invention provides a sense of security by evenly pressing the baby's body. Specifically, by filling the compartments with filler and adjusting the density of the filler, it is possible to apply appropriate pressure to each part of the body. This effectively reduces the newborn's response to the Moro reflex, allowing the baby to sleep comfortably, maintain a stable posture, and facilitate comfortable feeding. Furthermore, the present invention is also very convenient to put on and take off, offering a wearable advantage.

[0024]

[0025] Fig. 1 is a perspective view of a baby swaddle for preventing Moro reflection according to one embodiment of the present invention.

[0026] Figure 2 is a drawing showing the front part of the baby swaddle of Figure 1.

[0027] Figure 3 is a drawing showing the back surface of the baby swaddle of Figure 1.

[0028] Figure 4 is an operational diagram showing the structure and operation method of the front separator of the baby swaddle of Figure 1.

[0029] Figure 5 is a cross-sectional view taken along lines AA' and BB' of the baby swaddle of Figure 2.

[0030] Fig. 6 is a drawing illustrating the state of use of the baby swaddle of Fig. 1.

[0031] Fig. 7 is a drawing illustrating the internal structure of the pressure pad portion of a baby swaddle for preventing reflection according to another embodiment of the present invention.

[0032]

[0033] The present invention will be described below through examples, but the present invention is not limited to these examples. The present invention may be implemented in various forms without being limited to the following examples. However, these examples are provided to support the present invention, ensure complete disclosure of the present invention, and fully inform those skilled in the art of the scope of the present invention. The present invention is defined solely by the claims. Like reference numerals designate like elements throughout the specification.

[0034] Hereinafter, a baby swaddle for preventing sagging of the baby's diaper according to the present invention will be described in detail with reference to FIGS. 1 to 7. First, one embodiment of the present invention will be described with reference to FIGS. 1 to 6, and then another embodiment of the present invention will be described in detail with reference to FIG. 7.

[0035] Fig. 1 is a perspective view of a baby swaddle for preventing reflection according to one embodiment of the present invention, Fig. 2 is a drawing showing the front side of the baby swaddle of Fig. 1, and Fig. 3 is a drawing showing the back side of the baby swaddle of Fig. 1.

[0036] Referring to Fig. 1, the baby swaddle (1) (hereinafter, “baby swaddle”) for preventing Moro reflection according to the present invention includes a plurality of pressure pad parts (110) distributed throughout the entire front part (10). Each pressure pad part (110) wraps around the baby’s torso and closely adheres to the baby, transmitting pressure through the particle-type filler (see 110-1 of Fig. 5) inside.

[0037] The particle-type filler (110-1) is composed of spherical beads (e.g., polypropylene resin, etc.), which can self-regulate distribution and provide even pressure to the baby. In addition, since the filling is divided into multiple pressure pad sections (110), it prevents the baby from leaning to one side even if the baby's movements or posture change. Therefore, the particle-type filler evenly presses the baby's body, thereby enhancing the baby's sense of stability (see Fig. 6).

[0038] In addition, by adjusting the filling density of the particle-type filler (110-1) filled in the pressure pad part (110), the total weight of the filler can be increased or decreased (e.g., the weight of the total filler can be adjusted to 200 g, 400 g, etc.), and the filling density and / or filling amount can be differentiated between different pressure pad parts (110), so that the load can be changed according to the height difference of the baby through the change in filling density, or the pressure can be transmitted appropriately to the baby's body structure [e.g., the amount of filler can be distributed to a small amount around the neck (so as not to interfere with breathing), a large amount around the chest, and a small amount again around the stomach (so as not to interfere with digestion)]. Therefore, more effective prevention of the Moro reflex is possible, so that the baby can sleep comfortably.

[0039] Furthermore, since the front portion (10) of the present invention is formed to be openable in both the upper and lower directions or detachable when necessary (see Fig. 4), it is very convenient to put on or take off for a baby. Therefore, the present invention can be usefully applied to newborns who require prevention of the Moro reflex.

[0040] The baby swaddle (1) of the present invention is configured as follows. The baby swaddle (1) includes a back portion (see 20 in FIG. 3) made of fabric, a front portion (see 10 in FIG. 2) that overlaps the back portion (20) and is joined to the back portion (20) along the edge of the back portion (20) to form a space for receiving the baby's body excluding the baby's head between the back portion (20), and a plurality of pressure pad portions (see 110 in FIG. 2) that are dispersedly arranged throughout the front portion (10) to divide the entire front portion (10) into a plurality of zones and are filled with a particle-type filler (see 110-1 in FIG. 5) capable of transmitting pressure therein.

[0041] In one embodiment of the present invention, the pressure pad portion (110) can be independently formed between a plurality of grid portions (111) arranged on the front portion (10) in a first direction (D1), which is the longitudinal direction of the baby's body, and a second direction (D2) intersecting therewith, and the plurality of pressure pad portions (110) can have a filling density of a particle-type filler changed along the first direction or the second direction. At this time, the filling density refers to the number of particles per volume of the pressure pad portion, and if the volume or capacity of the pressure pad portion is the same, it can be adjusted by a difference in the filling amount. Therefore, the pressure pad portion (110) can be configured to provide pressure suitable for each part of the baby's body by adjusting the filling density and / or filling amount of the filler.

[0042] In addition, the baby swaddle (1) may include a front separator (11) formed by cutting a portion of the front part (10) in the length direction of the baby's body, and having detachable connecting parts (11b) arranged on both sides of the cut. The front separator (11) is a portion of the front part (10), but can be freely opened and closed in the up-and-down direction or separated by the detachable connecting parts (see Fig. 4), so it is very useful when adjusting the baby's posture or wearing condition to the swaddle or when removing the swaddle from the baby.

[0043] Furthermore, because it is detachable, the front divider (11) can be replaced and its weight adjusted. For example, front dividers of different weights (e.g., 300g, 450g, etc.) can be selectively combined according to the baby's physique or height, thereby adjusting the load applied to the baby. This makes it possible to provide a truly customized product for babies with different developmental stages or physiques.

[0044] Hereinafter, the configuration and operational effects of the present invention will be described in more detail based on one embodiment of the present invention.

[0045] Referring to FIG. 1, the present invention can be largely composed of a front portion (10), a back portion (20), and a plurality of pressure pad portions (110). The front portion (10) and the back portion (20) can be joined by a joint portion (30), and the joint portion (30) can be formed along the edge as illustrated. The joint portion (30) can be formed by a sewing line, etc., or by adding a reinforcing material to the edge and forming it by sewing, but is not limited thereto, and can be formed in various ways that allow the front portion and the back portion to be joined. The front portion (10) and the back portion (20) are joined in an overlapping state by the joint portion (30).

[0046] Referring to Fig. 3, the back portion (20) may be made of fabric. Since the back portion (20) is made of fabric, it may have elasticity, and the entire back portion may be elastically stretched and the tension of the baby swaddle (1) may be adjusted. Therefore, even if the front portion (10) has relatively reduced elasticity due to the inclusion of beads (i.e., the particle-type filler described above), the elasticity of the back portion (20) may be supplemented to enhance the elasticity of the entire swaddle. As illustrated, the back portion (20) may have a shape in which the lower portion is relatively wide, and through this, the baby's leg area, which moves a lot, may be wrapped without being exposed. The material of the back portion (20) is not limited as long as it is fabric, and various materials may be used. If necessary, a fabric mixed with elastic material may be used.

[0047] Referring to Fig. 2, the front part (10) can be formed in a shape substantially identical to the back part (20). Therefore, when the front part (10) and the back part (20) are combined in an overlapping state, a receiving space (see 1a of Fig. 5) that can receive the baby's body is formed therebetween. The front part can also be formed of fabric. As illustrated, the baby swaddle (1) has an upper hole (101) that exposes the baby's head, a side hole (102) that allows the baby's arms to be exposed, and a lower hole (103) that functions as a type of ventilation hole formed between the front part (10) and the back part (20). Therefore, when the baby's head is exposed through the upper hole (101), the baby's body, excluding the head, is received in the receiving space between the front part (10) and the back part (20) (see Fig. 6).

[0048] The side hole (102) is a part that is connected to the internal storage space and allows the baby's arms to be exposed to the outside. It is positioned between the back (20) and the front (10) and a pair is formed on each side of the swaddle. However, if necessary, the baby's arms can be introduced into the swaddle without being exposed through the side hole (102), so the side hole (102) can be used selectively. However, in this embodiment, an example in which the baby's arms are exposed through the side hole (102) is described (see Fig. 6).

[0049] The upper hole (101) can be formed at the upper part of the baby swaddle (1). The upper hole (101) and the lower hole (103) can be formed by a front separator (11) whose upper and lower parts are separated from the back part (20). That is, the front part (10) is joined along the edge with the back part (20), but the front separator (11) in the front part can be separated from the back part (20) at the upper and lower parts. Due to this structure, although the swaddle is a structure that wraps a baby, ventilation is advantageous, and when necessary, both the upper and lower parts can be opened to easily put the swaddle on the baby (see Fig. 4). The attaching and detaching structure of the front part (10) will be described first, and then the pressure pad part (110) filled with particle-type filler will be described in more detail.

[0050] Figure 4 is an operational diagram showing the structure and operation method of the front separator of the baby swaddle of Figure 1.

[0051] Referring to Fig. 2, the front portion (10) may include a front separator (11) and a side plate (12) joined to the back portion (20). As illustrated, the front separator (11) is formed by cutting a portion of the front portion (10) in the longitudinal direction of the baby's body, and a detachable connecting portion (11b) is positioned on both sides of the cut. Therefore, the remaining portion of the front portion (10) (i.e., the side plate) can be effectively attached or detached through the detachable connecting portion.

[0052] Referring to Fig. 4, the detachable coupling portion (11b) can be opened and closed from top to bottom or from bottom to top by two sliders (12b) whose opening and closing directions are opposite to each other. The detachable coupling portion may include a zipper strap that is opened and closed by such sliders. Since such a zipper strap is also formed on the side plate (12) that is coupled with the front separator (11), a detachable coupling portion (12a) can be formed in a corresponding form on the side plate (12). That is, the detachable coupling portion (11b) formed on the front separator (11) and the detachable coupling portion (12a) formed on the side plate (12) can be attached and detached by a zipper. Since such detachable coupling portions are illustrated in a coupled state in Fig. 1, both sides are indicated by symbols.

[0053] Referring to (a) of Fig. 4, the detachable joint part (11b) can be formed with a double zipper structure that allows for two-way opening and closing. That is, by moving two sliders (12b) with opposite opening and closing directions along the detachable joint part (11b) formed with a zipper strap, opening and closing is possible in either direction, from top to bottom or from bottom to top, as shown. Accordingly, the internal storage space (1a) can be accessed from either the upper side (the aforementioned upper hole side) or the lower side (the aforementioned lower hole side) of the front part (10). In addition, if necessary, the front separator (11) can be completely separated using a zipper structure as shown in Fig. 4 (b), thereby allowing easier access to the open interior. Therefore, when putting on a baby swaddle (1), the baby's posture can be maintained or the position can be adjusted with the storage space exposed so that the swaddle can be closely attached to the baby.

[0054] Moreover, since the front separator is of a detachable structure, the front separator (11) can be replaced and the weight can be adjusted as desired. That is, as described above, front separators of different weights (e.g., 300 g, 450 g, etc.) can be selectively attached to the front according to the baby's physique or height, etc., to adjust the load applied to the baby. For example, when providing a baby swaddle (1), the front separator (11) can be produced in multiple types with different weights and provided together, so that the user can select and use it according to the baby's physique or height, etc. Through this, it is possible to provide a practically customized product to babies with different developmental stages or physiques.

[0055] The slider (12b) is illustrated as being positioned on the zipper strap (detachable joint of the side plate) on the side of the side plate (12), but depending on the zipper structure, the slider can also be formed on the zipper strap (detachable joint of the front separator) on the side of the front separator (11), so the drawing is merely exemplary. In order to cover the slider (12b) when locked, a covering portion (see 12c in FIG. 2) may also be formed on one side of the detachable joint.

[0056] This front separator (11) does not have detachable parts formed at the top and bottom, so the top and bottom are not combined with other structures and remain separated. That is, as described above, the front separator (11) is separated from the back surface (20) at the top and bottom, and an upper concave groove (11a) is formed at the top to wrap around the baby's neck. As shown in Fig. 2, the upper concave groove (11a) is formed with an appropriate curve so as not to stimulate the baby's neck, and its size can be adjusted as needed. The shape and size of the upper hole (101) can also be adjusted using the upper concave groove (11a).

[0057] Referring to Fig. 2, the pressure pad portion (110) is distributed throughout the entire front portion (10), which includes the front separator (11) and the side plates (12). The pressure pad portion (110) divides the entire front portion (10) into a plurality of sections, and the interior is filled with a particle-type filler (e.g., polypropylene beads, etc.) capable of transmitting pressure. The front portion (10), like the back portion (20), can also be formed of an elastic fabric, and the pressure pad portion (110) can be configured by dividing the front portion (10). The front portion (10) can also have a space formed therein for filling the filler, and for this purpose, the fabric can be formed by overlapping layers. If necessary, each pressure pad portion (110) can be formed by inserting a separate pouch containing the filler into the front portion (10), for example. Hereinafter, the structure and operation effect of the pressure pad part (110) will be described in more detail with reference to FIGS. 2 and 5.

[0058] Figure 5 is a cross-sectional view taken along lines AA' and BB' of the baby swaddle of Figure 2.

[0059] [110a, 110b, 110c, 110d, 110e, 110f, 110a', 110b', 110c', 110d', 110e' of FIG. 5 all illustrate the pressure pad portion (110) of FIG. 2, and the alphabets and prime symbols described are merely for distinguishing the positions and arrangement order on the cross-section. Therefore, when describing a general pressure pad portion (110) without distinction of position or order depending on the context, even if only the pressure pad portion (110) is indicated, it means including all of 110a, 110b, 110c, 110d, 110e, 110f, 110a', 110b', 110c', 110d', 110e' of FIG. 5]

[0060] As illustrated in FIGS. 2 and 5, the pressure pad parts (110) are distributed throughout the entire front part (10). Since the pressure pad parts (110) are all formed independently, the fillers inside cannot be exchanged with each other. Therefore, as illustrated in FIG. 5, the particle-type filler (110-1) is individually maintained in each pressure pad part (110). As a result, even if the baby swaddle (1) is deformed due to being in close contact with the baby, problems such as the filler being pushed to one side are eliminated. Since the pressure pad parts (110) can be formed by dividing the front part (10), each can be individually deformed while being in close contact with the baby's body according to the deformation of the front part. When the pressure pad parts (110) are in close contact with the baby, the filler inside changes its distribution on its own to evenly pressurize the baby's skin.

[0061] Referring to Fig. 2, the pressure pad part (110) can be independently formed between a plurality of grid parts (111) arranged in the front part (10) in the first direction (D1), which is the longitudinal direction of the baby's body, and the second direction (D2) intersecting therewith. The grid part (111) can be formed as a sewing line or the like that divides the front part (10), but is not limited thereto and can be modified in various possible ways that can divide the pressure pad part (110). The grid part (111) determines the boundary of the pressure pad part (110) and is formed so that the filling material inside cannot move through the grid part (111). If necessary for this, the grid part (111) can also include a kind of partition structure (e.g., forming the boundary of the pressure pad part with fabric or another material) that divides the inside of the front part (10).

[0062] The first direction (D1) and the second direction (D2) in which the grid portions (111) are arranged may intersect at an angle without being orthogonal to each other. As a result, the pressure pad portions (110) partitioned between the grid portions (111) may be formed in a diamond shape as illustrated. As shown in Fig. 2, the diamond shape may be arranged so that the sharp part faces downward and may be arranged to gather toward the center in a left-right symmetrical shape. That is, the second direction (D2) may be formed symmetrically left-right with respect to the center of the front portion (10) as illustrated. The first direction (D1) and the second direction (D2) may intersect so that, for example, the angle between the grid portions arranged in each direction forms an acute angle.

[0063] Along the first direction (D1) or the second direction (D2), the filling density of the particle-type filler (110-1) of the plurality of pressure pad parts (110) can be changed. Therefore, as described above, by adjusting the filling density of the pressure pad parts (110) at different locations, it is possible for each pressure pad part (110) to provide appropriate pressure to each part of the baby's body at different locations.

[0064] For example, the point where the filling density is maximum along the first direction (see D1 of FIG. 2) can be formed on the upper body side of the baby's body. Referring to FIG. 5 (since FIG. 5 is a cross-section along lines A-A' and BB' of FIG. 2, both correspond to cross-sections in the first direction), the pressure pad portions may be sequentially arranged from the upper body side of the baby (the portion where the upper hole (101) is located) toward the lower body side, including a first pressure pad portion (110a, 110a'), a second pressure pad portion (110b, 110b'), a third pressure pad portion (110c, 110c'), a fourth pressure pad portion (110d, 110d'), a fifth pressure pad portion (110e, 110e'), and a sixth pressure pad portion (110f, 110f'). Among these, the point where the filling density of the particle-type filler (110-1) is maximum can be formed in the second pressure pad portion (110b, 110b') that is in close contact with the baby's chest.

[0065] Accordingly, the filling density of the second pressure pad portion (110b, 110b') located on the relatively wide and flat chest side of the baby's upper body can be maximized to apply appropriate pressure to the baby's chest area. In contrast, the first pressure pad portion (110a, 110a') located near the neck can induce the baby's breathing to proceed smoothly by reducing the filling density of the particle-type filler (110-1). In addition, the third pressure pad portion (110c, 110c') and the fourth pressure pad portion (110d, 110d') located on the stomach area can also induce the baby's digestion to proceed smoothly by reducing the filling density of the particle-type filler (110-1). The fifth pressure pad portion (110e, 110e') and the sixth pressure pad portion (110f, 110f') on the remaining lower body side can be configured to easily adhere to the lower body with relatively large movement by maintaining the same or decreasing the filling density as needed.

[0066] When the pressure pad part is pressed against the baby, the particle-type filler (110-1) of each pressure pad part is distributed in response to the baby's body curvature, etc., to provide uniform pressure overall. However, as in the example, if the filling density changes, the average pressure applied per unit area may change depending on the location of the pressure pad part. Therefore, by adjusting the filling density of the pressure pad part pressed against each body part in consideration of the baby's body structure as in the example, it is possible to closely apply appropriate pressure that provides a sense of stability without interfering with the baby's biological functions. Therefore, the baby can be appropriately wrapped and pressed without interfering with the baby's biological functions, so that the baby can be stabilized more effectively.

[0067] In this case, the mass distribution of the front part (10) can be formed symmetrically or asymmetrically depending on the filling density of each pressure pad part. In the example of Fig. 5, the filling density of the second pressure pad part (110b, 110b') located in the chest area (upper body side of the baby) is the maximum, and the filling density of the rest is lower than that, so the mass distribution of the front part (10) with respect to the first direction can be asymmetrical. In this way, by changing the filling density of the particle-type filler (110-1) to control the mass distribution of the front part (10), as described above, the baby's body can be wrapped more effectively to provide a sense of stability, so the Moro reflex can be prevented more effectively.

[0068] Referring to Fig. 2, the mass distribution according to the change in the filling density can be adjusted in the second direction (D2) as well as the first direction (D1) as exemplified. That is, if necessary, the filling density of each pressure pad part (110) can be adjusted in the first direction (D1) and / or the second direction (D2) to form the mass distribution of the front part (10) (symmetrical or) asymmetrical with respect to the first direction or the second direction. That is, the pressure pad parts (110) distributed in a plane over the entire front part (10) can be specified using the first direction (D1) and the second direction (D2) as a kind of coordinate axes, and the filling density of the pressure pad parts (110) at a specified point or its surrounding area can be appropriately adjusted to correspond to the baby's body. Accordingly, when the baby is pressed against the baby, appropriate pressure can be provided to each part by closely considering the baby's body curvature, the position of the limbs, the location of important organs such as the neck and stomach, etc. By adjusting the filling density of the particle-type filler (110-1) in this way, it is possible to provide an extremely suitable pressure when wrapping a baby in a baby swaddle (1).

[0069] Fig. 6 is a drawing illustrating the state of use of the baby swaddle of Fig. 1.

[0070] Referring to Fig. 6, the baby swaddle (1) of the present invention can be worn in a form that completely wraps around the body of a baby (E). When worn, the internal storage space (see 1a of Fig. 4) can be easily opened by utilizing the front separator (11) described above (see Fig. 4), so that the torso of the baby (E) can be placed in the exposed storage space and the front separator (11) can be reattached so that the body part of the baby (E) excluding the head can be conveniently wrapped inside the swaddle. That is, after the front separator (11) is attached, the body part of the baby (E) excluding the head is completely wrapped by the front part (10) and the back part (20) of the baby swaddle.

[0071] At this time, the baby's arms can be taken out of the swaddle through the side hole (102) as shown. If the baby feels suffocated, the arms can be exposed in this manner. However, if it is necessary to cover the baby's arms as well, it is also possible to insert the baby's (E) arms into the side hole (102) as described above and attach the front separator (11).

[0072] The front part (10) and the back part (20) are connected to each other, so they stretch elastically and wrap around the body of the baby (E). For example, more elasticity can be applied to the back part (20) side to make the front part (10) adhere to the body of the baby (E) and become deformed, and the pressure pad parts (110) distributed throughout the front part (10) also adhere to the body of the baby (E) at different locations and transmit pressure.

[0073] At this time, the particle-type filler (see 110-1 of FIG. 5) of each pressure pad section (110) described above wraps the baby's body with an appropriate load. Therefore, the baby (E) can feel much more stable than when the body is wrapped with the elasticity of a general cloth. Furthermore, the cloth can change shape depending on the wrapping form and apply unbalanced pressure to each part of the baby's body, but the particle-type filler (110-1) redistributes according to the curvature of the baby's body and applies pressure evenly, so it can transmit equal pressure to the baby.

[0074] In addition, since such pressure pad parts (110) are distributed and arranged throughout the front part (10), as shown, different pressure pad parts (110) can evenly provide pressure to each body part while in close contact with each body part. Moreover, since each pressure pad part (110) is independent, even if the front part (10) is deformed due to being in close contact with the baby's body, the filling material will not be biased to one side. Therefore, the effect of evenly pressing the entire body of the baby (E) can be obtained.

[0075] In addition, since each pressure pad part (110) is independent, when necessary, as described above, the filling density of each pressure pad part (110) can be adjusted to provide appropriate pressure to each body part such as the chest, neck, stomach, etc. of the baby (E). Therefore, in such a case, the baby wrapped in the swaddle can obtain a more enhanced sense of stability through the appropriate pressure. Therefore, by wrapping the baby in the baby swaddle (1) of the present invention, it is possible to more effectively prevent the Moro reflex and induce the baby to sleep soundly, and it is possible to stabilize the baby to maintain a posture or facilitate feeding.

[0076] Hereinafter, a baby swaddle for preventing sagging according to another embodiment of the present invention will be described in detail. Hereinafter, repeated explanations of the aforementioned parts will be omitted, and differences from the previous embodiment will be primarily described.

[0077] Fig. 7 is a drawing illustrating the internal structure of a pressure pad portion of a baby swaddle for preventing reflection according to another embodiment of the present invention. The internal structure is illustrated in an enlarged view of Fig. 7.

[0078] Referring to Fig. 7, a baby swaddle (1-1) (hereinafter, “baby swaddle”) for preventing Moro reflection according to another embodiment of the present invention may have a flow hole (110-2) formed between adjacent pressure pad sections (110) through which a particle-type filler (110-1) can flow. The size and position of the flow hole (110-2) can be adjusted, and thereby the amount of filler that can flow at one time can also be adjusted. The size and position of the flow hole (110-2) can be adjusted so that only a portion of the particle-type filler flows. Therefore, even if there is a flow hole, the filler is prevented from being excessively concentrated on one pressure pad section (110).

[0079] The flow hole (110-2) can be formed, for example, by partially separating a portion of the grid portion (111) described above. That is, a separated portion can be formed in a portion of the grid portion (111) that defines the pressure pad portion (110), thereby forming a flow hole (110-2) through which only a portion of the filling material can pass between the pressure pad portions (110). When the flow hole is formed in this way, the distribution of beads can be locally controlled between the two pressure pad portions according to the baby's movements, so that the swaddle can be made to adhere more closely to the baby.

[0080] The position of the flow hole (110-2) is not limited and can be modified in various ways. The flow hole (110-2) can be formed, for example, at the corner portion of the adjacent pressure pad portion (110), and the position can be changed as much as possible depending on the arrangement of the grid portion (111) and / or the deformation of the pressure pad portion (110). Therefore, the illustrated flow hole (110-2) is exemplary. For example, in the present embodiment, the flow hole (110-2) can be formed as shown in the lower enlarged view, but if the shape of the pressure pad portion is changed, the flow hole (110-2) can be modified in any other shape as shown in the upper enlarged view.

[0081] Preferably, the flow hole (110-2) is formed on the left or right side of the pressure pad part and is not perforated in the vertical direction to block the filling material from moving in the direction of gravity. For example, as shown in the enlarged view above, the direction of the diamond shape formed by the pressure pad part (110) can be changed and the flow hole (110-2) can be arranged on the left and right corners of the pressure pad part so that only a small amount of the filling material can naturally pass through the flow hole due to the shape of the pressure pad part. However, considering that most babies lie down, it is possible to form the flow hole (110-2) in another location as shown in the enlarged view below, so it is not necessary to be limited to the drawing.

[0082] That is, when necessary, an appropriate flow hole (110-2) corresponding to the shape and arrangement of the pressure pad portion (110) or the grid portion (111) can be formed so that the distribution of the filler material can be locally changed between the pressure pad portions. It is also possible to modify and apply the present invention in this way.

[0083] Although the embodiments of the present invention have been described with reference to the attached drawings, those skilled in the art will appreciate that the present invention can be implemented in other specific forms without altering its technical concept or essential characteristics. Therefore, the embodiments described above should be understood to be illustrative in all respects and not restrictive.

[0084] [Explanation of symbols]

[0085] 1, 1-1: Baby swaddle to prevent Moro reflex

[0086] 1a: Reception area 10: Front

[0087] 11: Front separator 11a: Top concave groove

[0088] 11b, 12a: Detachable joint 12: Side plate

[0089] 12b: Slider 12c: Cover

[0090] 20: Back surface 30: Joint

[0091] 101: Top hole 102: Side hole

[0092] 103: Lower Hall

[0093] 110, 110a, 110b, 110c, 110d, 110e, 110f, 110a', 110b', 110c', 110d',

[0094] 110e', 110f': Pressurized pad section

[0095] 110-2: Flow Hall

[0096] 110-1: Particle filler 111: Lattice part

[0097] D1: First direction D2: Second direction

Claims

1. Back surface made of fabric; A front part that overlaps the back part and is joined to the back part along the edge of the back part to form a space for receiving the body of the baby, excluding the head, between the back part and the front part; and It comprises a plurality of pressure pad sections, which are distributed over the entire front portion and divide the entire front portion into a plurality of zones, and are filled with a particle-shaped filler capable of transmitting pressure therein. The above front part, Two side plates each joined to each side of the back surface; and A part of the front part is formed by cutting along the length of the baby's body, and a detachable joint is arranged on both sides of the cut part, including a front separation plate that is detachable from each side plate. The above detachable joint includes a zipper strap that is opened and closed from top to bottom or from bottom to top by two sliders with opposite opening and closing directions, The above front separator has six pressure pads arranged sequentially from the upper body side to the lower body side of the baby, namely, the first pressure pad part, the second pressure pad part, the third pressure pad part, the fourth pressure pad part, the fifth pressure pad part, and the sixth pressure pad part. The first pressure pad is located around the baby's neck. The second pressure pad is located on the baby's chest, The third and fourth pressure pads are located on the baby's abdomen. The fifth and sixth pressure pads are located on the lower body of the baby. A baby swaddle for preventing Moro reflection, characterized in that the filling density of the particle-shaped filler filled in the pressure pad section among the first to sixth pressure pad sections is the greatest in the second pressure pad section.

2. In paragraph 1, The above-mentioned pressure pad part is a baby swaddle for preventing Moro reflection, each independently formed between a plurality of grid parts arranged on the front part in a first direction, which is the longitudinal direction of the baby's body, and a second direction intersecting therewith.

3. In paragraph 2, A baby swaddle for preventing reflection of the sagging skin, wherein the filling density of the particle-shaped filler changes along the first direction or the second direction, wherein the plurality of the pressure pad sections are formed in the same direction.

4. In paragraph 3, A baby swaddle for preventing reflection, wherein the first direction and the second direction intersect at an angle and are not orthogonal to each other.

5. In paragraph 3, A baby swaddle for preventing Moro reflection, wherein the mass distribution of the front part is formed asymmetrically with respect to the first direction or the second direction.

6. In paragraph 1, The above front separator is separated from the back part at the top and bottom, and a top concave groove is formed on the top of the front separator to wrap around the baby's neck, which is a baby swaddle to prevent Moro reflection.

7. In paragraph 1, A baby swaddle for preventing reflection, further comprising a pair of side holes positioned between the back portion and the front portion and communicating with the receiving space to allow the baby's arms to be exposed to the outside.

8. In paragraph 1, The above front divider is a baby swaddle that can be replaced and adjusted for weight to prevent reflection.

9. In paragraph 1, A baby swaddle for preventing reflection of the lining, wherein a flow hole through which the particle-type filler can flow is formed between the adjacent pressurized pad sections.

Citation Information

Patent Citations

  • Children's coveralls

    JP2017538872A

  • Inner wrapper that can separate beadfoam pouch

    KR102251738B1

  • Baby wrapper for preventing Moro reflex

    KR102698529B1

  • Infant sleep suit

    US20140325735A1

  • Wearable blanket with distributed weight system

    US20200196685A1