Human body protection device
The human body protection device addresses maintenance challenges by enabling easy detachment and reattachment of components through deformable and friction-enhanced connections, ensuring efficient and reliable airbag deployment.
Patent Information
- Application Number
- JP2024068185
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-04-19
- Publication Date
- 2025-10-30
AI Technical Summary
Existing body protection devices with airbag systems require time and effort to maintain due to the need to detach and reattach components for washing, posing hygiene and usability challenges.
A human body protection device with a gas generator, airbag, and supply pipe connection system that allows for easy detachment and reattachment of components, utilizing deformable and friction-enhanced connections to maintain airtightness during activation.
Facilitates easy maintenance by allowing quick disconnection and reconnection of components, reducing maintenance time and preventing airbag misalignment during washing, while ensuring reliable deployment.
Smart Images

Figure 2025164319000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a body protection device. [Background technology]
[0002] Clothing equipped with an airbag device has been developed. Patent Document 1 discloses an airbag device in which an inflatable airbag is attached to clothing. Patent Document 2 discloses pants equipped with an airbag device. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] U.S. Patent No. 07017195 [Patent Document 2] Chinese Utility Model No. 211672531 Summary of the Invention [Problem to be solved by the invention]
[0004] A human body protection device that deploys an airbag to protect a human body is equipped with devices such as a gas generator that generates gas to inflate the airbag and a power source. Meanwhile, from a hygienic standpoint, it is preferable to wash clothing. It is not recommended to wash clothing with the above-mentioned devices attached. When washing clothing, removing the devices and the airbag connected to the devices from the clothing requires time and effort for clothing maintenance.
[0005] The technology of the present disclosure aims to provide a human body protection device that is easy to maintain. [Means for solving the problem]
[0006] The present disclosure for solving the above problems provides a human body protection device comprising: a gas generator that supplies gas; a base that can be attached to a human body; an airbag that is disposed on the base and inflates with the gas supplied from the gas generator; and a supply pipe that supplies the gas from the gas generator to the airbag, wherein the supply pipe has a connection provided between the gas generator and the airbag, and a first connection on the gas generator side and a second connection on the airbag side, the connection being such that the first connection on the gas generator side and the second connection on the airbag side can be repeatedly attached and detached from each other in a pre-activation state.
[0007] In addition, the connection portions may be connected in a state in which the first connection portion is inserted inside the second connection portion, and the first connection portion may be more likely to deform than the second connection portion when the same load is applied.
[0008] In addition, each of the first connection portion and the second connection portion may have a fibrous base cloth, and the fiber direction of the base cloth of the first connection portion may be different from the fiber direction of the base cloth of the second connection portion so that the first connection portion is more easily deformed than the second connection portion.
[0009] In addition, each of the first connection portion and the second connection portion may have a fibrous base fabric, and the fiber density of the base fabric of the first connection portion may be different from the fiber density of the base fabric of the second connection portion so that the first connection portion is more easily deformed than the second connection portion.
[0010] Further, each of the first connection portion and the second connection portion has a fibrous base fabric, and the base fabric has warp threads extending in the extension direction of the connection portion and weft threads extending in the radial direction of the connection portion, and the first connection portion has a fiber density of the warp threads so that the first connection portion is more easily deformed than the second connection portion. may be higher than the fiber density of the weft yarn.
[0011] The tip of the second connection portion may be provided with a groove portion split in the extending direction of the second connection portion.
[0012] Furthermore, the first connecting portion may expand in diameter when the gas is supplied from the gas generator to the connecting portion, thereby coming into contact with an inner wall of the second connecting portion.
[0013] Each of the first connecting portion and the second connecting portion may be formed to include a nylon base fabric that is coated with polyurethane.
[0014] In addition, the radial size of the first connecting portion may be larger than the radial size of the second connecting portion, and the first connecting portion may be pressed against the inner wall of the second connecting portion by the pressure of the gas flowing inside the supply pipe.
[0015] Furthermore, the connection portion may have an area in at least one of the first connection portion or the second connection portion that abuts against each other when the first connection portion and the second connection portion are connected, the area having a higher coefficient of friction than other parts of the connection portion.
[0016] Furthermore, the tip of the first connecting portion may be reduced in diameter, and the reduced diameter state of the tip may be maintained for at least a predetermined time after the gas generator starts to cause the gas to flow into the supply pipe.
[0017] The human body protection device may also include a retaining portion that maintains the first connection portion and the second connection portion in a connected state, and the retaining portion may have a first retaining portion attached to the first connection portion and a second retaining portion attached to the second connection portion, and the first retaining portion and the second retaining portion may be connected to each other to maintain the first connection portion and the second connection portion in a connected state. [Effects of the Invention]
[0018] According to the present disclosure, maintenance is easy. [Brief explanation of the drawings]
[0019] [Figure 1] FIG. 1 is a perspective view of the appearance of a protection device according to an embodiment. [Figure 2] FIG. 2 is a diagram showing a state before the protection device according to the embodiment is activated. [Figure 3] FIG. 3 is a diagram showing a state in which the protection device according to the embodiment is activated. [Figure 4] FIG. 4 is an enlarged view showing an equipment section and a supply pipe provided in the protection device according to the embodiment. [Figure 5] FIG. 5 is a diagram showing the configuration of a control unit provided in a protection device according to an embodiment. [Figure 6] FIG. 6 is an enlarged view showing a connection portion provided in the protection device according to the embodiment. [Figure 7] FIG. 7 is a diagram showing a first connection portion and a second connection portion provided in a protection device according to an embodiment. [Figure 8] FIG. 8 is a diagram showing fibers that form the base fabric of the first connection portion. [Figure 9] FIG. 9 is a diagram showing the fiber direction of the base fabric. [Figure 10] FIG. 10 is an enlarged view showing a holding portion provided in the protection device according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0020] Hereinafter, a human body protection device and an operation method thereof according to an embodiment of the present disclosure will be described with reference to the drawings. Note that the configurations and combinations thereof in the embodiments are merely examples, and additions, omissions, substitutions, and other modifications of the configurations are possible as appropriate without departing from the spirit of the present disclosure. The present disclosure is not limited by the embodiments, but is limited only by the claims.
[0021] <Embodiment> FIG. 1 is a perspective view of the exterior of a human body protection device 1 according to an embodiment. The human body protection device 1 is a wearable type of protection device worn by a person to be protected, and is a device for protecting the thighs of the wearer who is the protection target. The human body protection device 1 includes a base portion 2 worn so as to fit closely around the waist of the wearer, an airbag 3 as a protective device for protecting the thighs, an equipment portion 4 having equipment, etc., and a supply pipe 5 for supplying gas to the airbag 3. In this specification, the wearer who wears the human body protection device 1 and the person to be protected are treated as synonymous. Furthermore, terms related to directions used in this specification refer to directions that correspond to the front, back, left, right, and top and bottom of the wearer when the human body protection device 1 is worn on the wearer. For example, when referring to the left and right directions in this specification, it refers to directions that correspond to the left and right of the wearer when the human body protection device 1 is worn on the wearer.
[0022] The base part 2 is a pair of pants made of cloth that is fitted closely around the waist of the wearer, covering the waist and thighs of the wearer and extending downward from the waist. The upper part of the base part 2 is provided with a torso opening 10 that is open enough to fit the wearer's torso when the base part 2 is on the wearer. The lower part of the base part 2 is provided with two lower leg openings 11 that are open enough to fit one leg of the wearer when the base part 2 is on the wearer. The base part 2 may be clothing other than pants worn by the wearer.
[0023] When worn by a wearer, the human body protection device 1 has two airbags 3 mounted on the outside of a base section 2 corresponding to the thighs of both legs of the wearer. The human body protection device 1 also has an equipment section 4 mounted on the outside of the base section 2 above the airbags 3, and a supply pipe 5 connecting the equipment section 4 and the airbags 3. The supply pipe 5 extends downward from the equipment section 4 and branches into two along the way to supply gas to the airbags 3 mounted on both legs of the wearer.
[0024] Fig. 2 is a diagram showing a state before the human body protecting device 1 according to the embodiment is activated, and Fig. 3 is a diagram showing a state after the human body protecting device 1 according to the embodiment is activated.
[0025] The airbag 3 is a bag made of nylon (polyamide) that is configured to inflate and deploy when gas is supplied to it when the human body protection device 1 is activated. The airbag 3 is attached to the base 2 by bonding, welding, sewing, or the like so that the airbag 3 will not shift from the predetermined area that it protects when it deploys. In this embodiment, the predetermined area that the airbag 3 protects is the thighs.
[0026] The airbag 3 is in a deflated state before activation of the human body protection device 1. When the human body protection device 1 is worn by a wearer with the airbag 3 in a deflated state, the airbag 3 is disposed in a position facing the wearer's thighs.
[0027] When gas is supplied to the airbag 3 upon activation of the human body protection device 1, the airbag 3 inflates as shown in Fig. 3. The airbag 3 inflates upon activation of the human body protection device 1 to surround the thighs. This reduces the impact on the thighs of the wearer, for example, when the wearer falls.
[0028] In order to prevent excessive pressure on the waist and thighs of the wearer when the airbag 3 is inflated, for example, the airbag 3 is positioned so that the other areas are positioned closer to the wearer's skin than the areas that come into contact with the wearer's skin. The airbag 3 may be configured so as to be easily inflated.
[0029] Next, the equipment section 4 and the supply pipe 5 of the human body protection device 1 will be described. FIG. 4 is an enlarged view showing the equipment section 4 and the supply pipe 5 on the equipment section 4 side. The equipment section 4 includes a gas generator 4G that generates gas, an activation section 4S, and a fabric body 4B that wraps these. The equipment section 4 is detachably attached to the outside of the base section 2 above the airbag 3. For example, the equipment section 4 may be detachably attached using a male hook-and-loop fastener attached to the outside of the equipment section 4 and a female hook-and-loop fastener attached to the outside of the base section 2, or may be detachably attached using buttons or snaps attached to the equipment section 4 and the base section 2. The equipment section 4 need only be attached in a position that does not interfere with the inflation of the airbag 3, and does not have to be located above the airbag 3. The material of the fabric body 4B can be changed as appropriate.
[0030] The gas generator 4G is a device for supplying gas to the airbag 3 for inflating the airbag 3 when the human body protection device 1 is activated. The gas generator 4G may be a stored type that releases pressurized gas stored inside, or a hybrid type that combines the stored type with a pyrotechnic type that generates gas by burning a solid gas generating agent. A stored type gas generator 4G releases relatively low-temperature gas upon activation, making it less likely to experience volumetric shrinkage after introduction into the airbag 3. Furthermore, when the gas is supplied into the airbag 3, the gas undergoes adiabatic expansion, causing a momentary drop in temperature, but is then warmed by the surrounding heat. Therefore, a stored type gas generator 4G is preferable because it has the advantage of making it easier to maintain the inflation pressure of the airbag 3 after deployment.
[0031] The gas generator 4G has an enclosure 4GS that encloses pressurized gas and a gas outlet 4GE of the enclosure 4GS, with a supply pipe 5 connected to one end of the gas outlet 4GE. The gas outlet 4GE of the enclosure 4GS is provided with a valve 4GC that closes the gas outlet 4GE. Before the human body protection device 1 is activated, the enclosure 4GS is sealed by the valve 4GC. When the human body protection device 1 is activated, the valve 4GC of the gas generator 4G is opened, thereby connecting the interior of the enclosure 4GS to the supply pipe 5. This allows inflation gas (pressurized gas) to be discharged from the enclosure 4GS to the supply pipe 5, and the inflation gas is supplied to the airbag 3 through the supply pipe 5. The human body protection device 1 may be provided with an open valve that can release gas to the outside after the human body protection device 1 is activated.
[0032] Next, the starting unit 4S will be described. The starting unit 4S includes a power supply unit 4SE, a sensor 4SS, and a control unit 4SC, and is a device that inflates the airbag 3 by starting the gas generator 4G. The control unit 4SC is a control unit that operates by receiving power from the power supply unit 4SE and starts the gas generator 4G. The power supply unit 4SE may be, for example, a battery.
[0033] The control unit 4SC opens the valve element 4GC of the gas generator 4G when an activation condition for activating the human body protecting device 1 (gas generator 4G) is met. For example, the control unit 4SC may control an actuation mechanism such as an actuator capable of opening the valve element 4GC of the gas generator 4G to open the valve element 4GC. The means for opening the valve element 4GC of the gas generator 4G is not limited to this embodiment. For example, the valve element 4GC may be formed from a thin metal plate member, and the control unit 4SC may open the valve element 4GC by operating a cleaving mechanism that cleaves the valve element 4GC.
[0034] 5 is a diagram showing the configuration of the control unit 4SC. The control unit 4SC includes a processor 4SP, a storage unit 4SM, an input / output unit 4SG, etc. The processor 4SP comprehensively executes various arithmetic processing in the control unit 4SC. The processor 4SP may have an arithmetic processing unit such as a CPU (Central Processing Unit), a DSP (Digital Signal Processor), or an FPGA (Field-Programmable Gate Array), for example.
[0035] The storage unit 4SM includes, for example, a main storage unit and an auxiliary storage unit. The main storage unit of the storage unit 4SM includes, for example, a random access memory (RAM) or a read-only memory (ROM), and caches information such as programs and data used in arithmetic processing by the processor 4SP. The main storage unit of the storage unit 4SM may be formed integrally with the processor 4SP. The auxiliary storage unit of the storage unit 4SM includes a storage medium such as a volatile memory such as a RAM, a non-volatile memory such as a ROM, an erasable programmable read-only memory (EPROM), a hard disk drive (HDD), or a removable medium. The removable medium is, for example, an externally attachable, computer-readable recording medium such as a universal serial bus (USB) memory or an SD card. The auxiliary storage unit of the storage unit 4SM can store an operating system (OS), various programs, various tables, and the like, for executing the operation of the human body protecting device 1. The input / output unit 4SG is an interface that receives information (detection results, etc.) from various sensors such as the sensor 4SS, and outputs information (control signals, etc.) to various sensors and other devices. The human body protecting device 1 may further include a power switch, and a status signal of the power switch is also input to the input / output unit 4SG.
[0036] The sensor 4SS is a sensor for detecting that a predetermined activation condition is met. The predetermined activation condition is a condition under which the human body protecting device 1 should be activated, such as when a wearer wearing the human body protecting device 1 falls or when an acceleration greater than the acceleration applied during the wearer's normal movement is detected. The sensor 4SS may be, for example, an acceleration sensor or a gyro sensor (angular velocity sensor), or a combination of two or more types of sensors such as acceleration sensors and gyro sensors (angular velocity sensors). The sensor 4SS is not particularly limited as long as it can detect the activation condition, and a detection device other than the above-mentioned example sensors may also be used. The human body protecting device 1 includes the sensor 4SS, so that the activation unit 4S can activate the human body protecting device 1 at an appropriate timing before the wearer falls and strikes the lower back on the ground or floor.
[0037] The human body protecting device 1 may also have a wearing state detection sensor that detects a state of contact with the waist of the wearer. A plurality of wearing state detection sensors may be arranged inside the base unit 2. The control unit 4SC determines whether the base unit 2 is being worn by the wearer based on the detection signals of the wearing state detection sensors. For example, the control unit 4SC may determine that the base unit 2 is being worn when a plurality of wearing state detection sensors detect a state of contact with the waist of the wearer. The wearing state detection sensor may be, for example, a pressure-sensitive sensor.
[0038] The gas supplied from the gas generator 4G is supplied to the airbag 3 through a supply pipe 5 extending from the equipment section 4 to the airbag 3.
[0039] The supply pipe 5 is a pipe member for introducing gas (pressurized gas) discharged from the gas discharge port 4GE of the enclosure 4GS into the airbag 3 when the human body protecting device 1 is activated. In this embodiment, since the airbags 3 are provided one for each leg of the wearer, the tip side of the supply pipe 5 is branched into two branches 5L and 5R.
[0040] The material of the supply pipe 5 is preferably nylon (polyamide), the same as the airbag 3, or a material that is elastic and easily deformed by external forces, such as silicone rubber. However, it is preferable that the supply pipe 5 does not deform when gas passes through it, as with the airbag 3. The purpose of the deformation of the supply pipe 5 is to prevent any impact on the wearer when the wearer is pinched between the wearer and the ground or floor during a fall. The supply pipe 5 has a connection part 5C between the gas generator 4G and the airbag 3. The connection part 5C has a first connection part 5CA on the gas generator 4G side and a second connection part 5CB on the airbag 3 side, and they can be repeatedly attached and detached from each other before the human body protection device 1 is activated. The connection part 5C The extending direction is the same as the extending direction of the supply pipe 5, the first connecting portion 5CA, and the second connecting portion 5CB.
[0041] Each of the first connecting portion 5CA and the second connecting portion 5CB preferably has flexibility that allows it to easily deform when a load is applied. When a wearer wearing the human body protecting device 1 falls, the first connecting portion 5CA and the second connecting portion 5CB may become caught between the floor and the body. In this case, if the first connecting portion 5CA and the second connecting portion 5CB are made of metal or the like, there is a risk that the connecting portion 5C will dig into the wearer's body.
[0042] Each of the first connecting portion 5CA and the second connecting portion 5CB is preferably formed to include a polyurethane-coated nylon base fabric. The polyurethane-coated nylon base fabric is flexible, so even if the wearer falls and the connecting portion 5C is caught between the floor and the body, the connecting portion 5C is prevented from digging into the body of the person to be protected.
[0043] For example, elderly people can be cited as a target of protection. If an elderly person falls and breaks a bone in the lower body, their muscle strength weakens during the treatment period, and they often become bedridden. For this reason, it is important to prevent elderly people from breaking bones when they fall. The human body protecting device 1 according to this embodiment can prevent lower body fractures caused by a fall by the target of protection.
[0044] Furthermore, when a wearer wears the human body protection device 1 in daily life, it is preferable to wash the base portion 2 every few days or after use from a hygienic standpoint. On the other hand, the equipment portion 4 may malfunction if it gets wet. Therefore, when washing the base portion 2, the equipment portion 4 must be removed. In the case of a protection device in which the supply pipe does not have the connection portion 5C, the airbag or other components connected to the equipment portion must also be removed, which may increase maintenance efforts. Reattaching the equipment portion after washing is also cumbersome. If the removal and attachment of the equipment portion is time-consuming, there is a risk that the elderly or other protected individuals may stop wearing the human body protection device in their daily lives. Furthermore, if the airbag is removed from the base portion, there is a risk that it may not be attached to the correct attachment position when reattaching the airbag to the base portion, allowing it to deploy without shifting from the desired area to be protected.
[0045] In the human body protection device 1 according to this embodiment, the first connection portion 5CA and the second connection portion 5CB are repeatedly detachable from each other at the connection portion 5C. Therefore, when washing the human body protection device 1, the first connection portion 5CA and the second connection portion 5CB can be disconnected, and the supply pipe 5 and the equipment portion 4 above the first connection portion 5CA can be removed from the base portion 2. This eliminates the need to remove the entire human body protection device 1 from the base portion 2, reducing the time and effort required for removal and reattaching the human body protection device 1 to the base portion 2 and facilitating maintenance. Furthermore, in the human body protection device 1, because the airbag 3 is not removed from the base portion 2, it is possible to prevent the airbag 3 from shifting from the area to be protected when the human body protection device 1 is activated.
[0046] Preferably, the branch portions 5L and 5R, where the supply pipe 5 is branched into two, are provided at the second connection portion 5CB and branch closer to the airbag 3 than the connection portion 5C. If the branch portions 5L and 5R are provided at the first connection portion 5CA, two connection portions 5C are required, and in order to attach or detach the equipment portion 4, it is necessary to attach or detach each of the two connection portions 5C, which is time-consuming. By providing the branch portions 5L and 5R at the second connection portion 5CB, the equipment portion 4 can be attached or detached by attaching or detaching one connection portion 5C, making the attachment and detachment work easier.
[0047] 6 is an enlarged view of the connecting portion 5C. The connecting portion 5C is connected in a state where the first connecting portion 5CA is inserted into the second connecting portion 5CB. The gas supplied from the gas generator 4G passes through the connecting portion 5C in a state where the connecting portion 5C is connected.
[0048] As shown in FIG. 6 , the tip of the first connecting portion 5CA has a reduced diameter portion 6, and it is preferable that the reduced diameter state of the reduced diameter portion 6 be maintained for at least a predetermined time after the gas generator 4G starts to flow gas into the supply pipe 5. The reduced diameter portion 6 generates resistance to the flow of gas from the gas generator 4G to the connecting portion 5C, causing an increase in pressure inside the connecting portion 5C between the gas generator 4G and the reduced diameter portion 6. The increased pressure causes the reduced diameter state of the first connecting portion 5CA to be released, thereby enabling the first connecting portion 5CA to be tightly attached to the inner wall of the second connecting portion 5CB. The airtight performance of the connecting portion 5C is ensured by tightly attaching the first connecting portion 5CA to the inner wall of the second connecting portion 5CB. The reduced diameter portion 6 may be formed by, for example, sewing or welding the tip of the first connecting portion 5CA to be reduced in diameter.
[0049] 7(A) and 7(B) are views showing the first connecting portion 5CA and the second connecting portion 5CB in a state in which the connecting portion 5C has been removed. FIG. 7(A) is a view showing the first connecting portion 5CA. FIG. 7(B) is a view showing the second connecting portion 5CB. In the connecting portion 5C, it is preferable that at least one of the first connecting portion 5CA and the second connecting portion 5CB, which are in close contact with each other when the first connecting portion 5CA and the second connecting portion 5CB are connected, has a region with a higher coefficient of friction than the other portions of the connecting portion 5C. For example, a member with a higher coefficient of friction than the other portions may be attached to the outer wall of the first connecting portion 5CA, or a member with a higher coefficient of friction than the other portions may be attached to the inner wall of the second connecting portion 5CB.
[0050] If an area with a higher coefficient of friction than other areas is provided in the area where the first connecting part 5CA and the second connecting part 5CB are in close contact when the connecting part 5C is connected, the first connecting part 5CA and the second connecting part 5CB are prevented from shifting from each other and becoming disconnected while gas is passing through the connecting part 5C.
[0051] In this embodiment, a hook-and-loop fastener MT is attached to the outer wall of the first connection portion 5CA and the inner wall of the second connection portion 5CB. By connecting the hook-and-loop fasteners MT attached to the outer wall of the first connection portion 5CA and the inner wall of the second connection portion 5CB to each other, the first connection portion 5CA and the second connection portion 5CB are prevented from shifting from each other and from being released from their connected state while gas is passing through the connection portion 5C, and an amount of gas sufficient for the airbag 3 to inflate and deploy can be supplied into the airbag 3.
[0052] As shown in FIG. 7B, a groove 7 split in the extension direction of the second connection portion 5CB is provided at one end of the second connection portion 5CB. The provision of the groove 7 makes it easier to insert the first connection portion 5CA into the second connection portion 5CB, and the first connection portion 5CA and the second connection portion 5CB can be easily connected at the connection portion 5C. The first connection portion 5CA is inserted deeper than the groove 7. The groove 7 may also be provided with a diameter expansion limiting means to prevent further diameter expansion. For example, a string or cover may be attached to connect the ends of the two split grooves. To make it easier to insert the first connection portion 5CA, the end of the second connection portion 5CB may be expanded in diameter instead of the groove 7. In this case, the first connection portion 5CA is also inserted deeper than the expanded diameter portion.
[0053] The first connecting portion 5CA preferably has a property of being more easily deformed than the second connecting portion 5CB when the same load is applied. When gas is supplied to the connecting portion 5C, the pressure inside the connecting portion 5C increases due to the gas passing through the connecting portion 5C, causing the connecting portion 5C to expand. At this time, if the first connecting portion 5CA is more easily deformed than the second connecting portion 5CB, the first connecting portion 5CA is connected while inserted inside the second connecting portion 5CB, so that the outer periphery of the first connecting portion 5CA adheres closely to the inner wall of the second connecting portion 5CB. This allows the first connecting portion 5CA and the second connecting portion 5CB to adhere closely, maintaining airtightness inside the connecting portion 5C. For example, as disclosed in JP 2021-134795 A, the rigidity of the first connecting portion 11 can be made lower than the rigidity of the second connecting portion 21, so that the first connecting portion 11 deforms due to gas pressure when gas passes through and abuts against the second connecting portion 21. Therefore, even if first connecting portion 5CA and second connecting portion 5CB are not in close contact when human body protecting device 1 is not activated, the airtightness inside connecting portion 5C can be maintained by the internal pressure load of connecting portion 5C when human body protecting device 1 is activated.
[0054] The first connecting portion 5CA may be made of a material that is more elastic than the second connecting portion 5CB, so that it is more likely to deform than the second connecting portion 5CB when the same load is applied.
[0055] Furthermore, the first connecting portion 5CA and the second connecting portion 5CB may be made of the same material, and the thickness of the base fabric of the second connecting portion 5CB may be increased so that the amount of stretch of the second connecting portion 5CB is smaller than that of the first connecting portion 5CA. By making the amount of stretch of the second connecting portion 5CB smaller than that of the first connecting portion 5CA, the first connecting portion 5CA can be in close contact with the inner wall of the second connecting portion 5CB, maintaining airtightness.
[0056] Alternatively, the circumferential (radial) size of the first connecting portion 5CA may be made larger than the circumferential (radial) size of the second connecting portion 5CB, so that the first connecting portion 5CA is in tight contact with the inner wall of the second connecting portion 5CB while gas is passing through the connecting portion 5C. When the circumferential size of the first connecting portion 5CA is larger than the circumferential size of the second connecting portion 5CB, the pressure of the gas flowing inside the supply pipe 5 presses the first connecting portion 5CA against the inner wall of the second connecting portion 5CB, causing them to be in tight contact. This makes it possible to ensure airtightness of the connecting portion 5C.
[0057] Each of the first connecting portion 5CA and the second connecting portion 5CB may have a fibrous base fabric.
[0058] FIG. 8 is a diagram showing the fibers constituting the base fabric of the first connecting portion 5CA. The base fabric has warp threads 9X extending in the extension direction of the connecting portion 5C and weft threads 9Y extending in the circumferential direction of the connecting portion 5C. The fiber density of the warp threads 9X constituting the base fabric of the first connecting portion 5CA may be higher than the fiber density of the weft threads 9Y. The weft threads 9Y extending in the circumferential direction of the connecting portion 5C have a force that resists the force that expands the connecting portion 5C in the circumferential direction. Therefore, by reducing the number of weft threads 9Y compared to the warp threads 9X and suppressing the force that resists the force that expands the connecting portion 5C in the circumferential direction, the first connecting portion 5CA becomes more easily deformed in the circumferential direction and can be tightly attached to the inner wall of the second connecting portion 5CB by the pressure of the gas flowing inside the supply pipe 5.
[0059] The fiber direction of the base fabric of the first connecting portion 5CA may be different from the fiber direction of the base fabric of the second connecting portion 5CB. FIG. 9 is a diagram showing the fiber direction of the base fabric. For example, it is preferable that the fibers of the base fabric of the first connecting portion 5CA extend in a lattice pattern in the extension direction of the connecting portion 5C, and the fibers of the base fabric of the second connecting portion 5CB extend in the extension direction of the connecting portion 5C and in the circumferential direction. The fibers extending in the circumferential direction of the second connecting portion 5CB have a force that resists the force that causes the second connecting portion 5CB to expand in the circumferential direction. Therefore, when the first connecting portion 5CA is inserted deeper than the groove portion 7 of the second connecting portion 5CB, the first connecting portion 5CA is more likely to expand in diameter than the second connecting portion 5CB, which has fibers extending in the circumferential direction, and can be tightly attached to the inner wall of the second connecting portion 5CB by the pressure of the gas flowing inside the supply pipe 5.
[0060] The fiber density of the base fabric of the first connecting portion 5CA may be different from the fiber density of the base fabric of the second connecting portion 5CB. For example, the fiber density of the base fabric of the first connecting portion 5CA may be lower than the fiber density of the second connecting portion 5CB. In this case, the higher the fiber density, the higher the mechanical strength. Therefore, the first connecting portion 5CA is more easily deformed than the second connecting portion 5CB, and can be tightly attached to the inner wall of the second connecting portion 5CB by the pressure of the gas flowing inside the supply pipe 5.
[0061] The human body protecting device 1 may include a holding portion 8 (see FIG. 4) that maintains the first connecting portion 5CA and the second connecting portion 5CB in a connected state. Before activation, the first connecting portion 5CA is simply inserted inside the second connecting portion 5CB. Therefore, without the holding portion 8, the first connecting portion The connection between the first connecting portion 5CA and the second connecting portion 5CB is easily broken. The holding portion 8 is made of fabric and includes a first holding portion 8A attached to the outer periphery of the first connecting portion 5CA by adhesive, welding, sewing, or the like, and a second holding portion 8B attached to the outer periphery of the second connecting portion 5CB by adhesive, welding, sewing, or the like. FIG. 10 is an enlarged view of the holding portion 8. The holding portion 8 includes a connecting portion 8C at the tip of the first holding portion 8A facing the second connecting portion 8B and at the tip of the second holding portion 8B facing the first connecting portion 8A. The first holding portion 8A and the second holding portion 8B can be connected to each other by the connecting portion 8C, and by being connected to each other, the first connecting portion 5CA and the second connecting portion 5CB can be maintained in a connected state. The material of the holding portion 8 can be changed as appropriate. The holding portion 8 only needs to be attached so as to cover the vicinity of the first connecting portion 5CA and the second connecting portion 5CB, and may also be attached to the entire outside of the supply pipe 5.
[0062] The connecting portion 8C may be any fastener such as a zipper, a button, a hook, or a hook-and-loop fastener, or any combination thereof, as long as the first holding portion 8A and the second holding portion 8B are detachable from each other. In this embodiment, the first holding portion 8A and the second holding portion 8B are connected by a zipper. That is, when removing the equipment portion 4 from the human body protecting device 1, the first connecting portion 5CA and the second connecting portion 5CB can be easily disconnected by disconnecting the connecting portion 8C. Conversely, when attaching the equipment portion 4 after washing the base portion 2, the first connecting portion 5CA is inserted into the second connecting portion 5CB, and the connecting portion 8C is connected.
[0063] In this embodiment, the human body protection device 1 is attached to the waist of the wearer to protect the thighs. However, the human body protection device 1 may be any device as long as it can be attached to the wearer so that the airbag 3 is deployed in the area to be protected without shifting. For example, the human body protection device may have a corset, a belt, or the like as its base.
[0064] Although the embodiments according to the present disclosure have been described above, each aspect disclosed in this specification can be combined with any other feature disclosed in this specification. [Explanation of symbols]
[0065] 1...Personal protection equipment 2. Base 3. Airbag 4...Equipment section 4B...Cloth body 4G Gas Generator 4GE Gas outlet 4GC··Valve body 4S...Start part 4SC··Control unit 4SE·Power supply section 4SS··sensor 5 · Supply pipe 5C··Connection 5CA··First connection part 5CB··Second connection part 5L, 5R branch section 6.Reduced diameter part 7...Bevel part 8...Holding part 8A...1st holding part 8B...Second holding part 8C··Connection 9X··Warp 9Y··Weft 10. Body opening 11. Lower limb opening MT··Hook and Loop Fastener
Claims
1. a gas generator for supplying gas; a base part that can be attached to the human body; an airbag disposed on the base portion and inflated by the gas supplied from the gas generator; a supply pipe that supplies the gas from the gas generator to the airbag; Equipped with the supply pipe has a connection portion provided between the gas generator and the airbag, wherein a first connection portion on the gas generator side and a second connection portion on the airbag side are repeatedly connectable to and disconnectable from each other in a pre-activation state; Human protection equipment.
2. the connection portion is connected in a state in which the first connection portion is inserted into the second connection portion, The first connection portion is more likely to deform than the second connection portion when the same load is applied. The body protection device according to claim 1.
3. each of the first connection portion and the second connection portion has a fibrous base fabric; The fiber direction of the base fabric of the first connection portion is different from the fiber direction of the base fabric of the second connection portion so that the first connection portion is more easily deformed than the second connection portion. The body protection device according to claim 2.
4. each of the first connection portion and the second connection portion has a fibrous base fabric; The fiber density of the base fabric of the first connection portion is different from the fiber density of the base fabric of the second connection portion so that the first connection portion is more easily deformed than the second connection portion. The body protection device according to claim 2.
5. each of the first connection portion and the second connection portion has a fibrous base fabric; The base fabric has warp yarns extending in an extension direction of the connection portion and weft yarns extending in a radial direction of the connection portion, The first connection portion has a higher fiber density of the warp yarns than the fiber density of the weft yarns so that the first connection portion is more easily deformed than the second connection portion. The body protection device according to claim 2.
6. A tip of the second connection portion is provided with a groove portion split in the extension direction of the second connection portion. The body protection device according to claim 2.
7. the first connecting portion expands in diameter when the gas is supplied from the gas generator to the connecting portion, thereby coming into contact with an inner wall of the second connecting portion; The body protection device according to claim 2.
8. Each of the first connecting portion and the second connecting portion is formed to include a nylon base fabric to which a polyurethane coating is applied. The body protection device according to claim 7.
9. The first connecting portion has a radial size larger than the radial size of the second connecting portion, the first connecting portion is pressed against an inner wall of the second connecting portion by the pressure of the gas flowing inside the supply pipe; The body protection device according to claim 7.
10. the connecting portion has a region in at least one of the first connecting portion and the second connecting portion, which are in contact with each other when the first connecting portion and the second connecting portion are connected, the region having a larger coefficient of friction than other portions of the connecting portion; The body protection device according to claim 7.
11. a tip end of the first connecting portion has a reduced diameter, and the reduced diameter state of the tip end is maintained for at least a predetermined time after the gas generator starts to flow the gas into the supply pipe; The body protection device according to any one of claims 1 to 10.
12. a holding portion that holds the first connection portion and the second connection portion in a connected state, the holding portion has a first holding portion attached to the first connection portion and a second holding portion attached to the second connection portion, and the first holding portion and the second holding portion are connected to each other to hold the first connection portion and the second connection portion in a connected state. The body protection device according to any one of claims 1 to 10.
Citation Information
Patent Citations
Anti-falling trousers
CN211672531U
Air bag inflation device
US7017195B2