Container with hooking means for a steam hair cutting device
Patent Information
- Application Number
- CN202010036241.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2019-01-15
- Filing Date
- 2020-01-14
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2040-01-14
AI Technical Summary
该解决方案相对于容器的保持尤其显得不可靠并且具有意外拆卸的危险
[0045] According to the embodiment, the first position of the movable hook device is an idle position. Alternatively, the movable hook device naturally or by default remains stably held in its first position, i.e., in a position that ensures the container is hooked to the body of the hair-cutting device. This substantially improves the safety of the device, as the container remains hooked to the body of the hair-cutting device when the user is not operating it. For this purpose, preferably, the movable hook device includes a resilient restoring mechanism, preferably a coil spring, which ensures reliability, robustness, and low manufacturing cost. However, any other mechanism suitable for using the first position as the idle position, such as a ferromagnetic device, is certainly conceivable. In the preferred case where the movable hook device includes two buttons, advantageously, the resilient restoring mechanism is positioned between the two buttons to push and separate them. This allows for a simple, inexpensive, reliable, and highly effective construction from a mechanical perspective. Preferably, the movable hook device includes a cavity designed to house the resilient restoring mechanism. This cavity thus allows, on the one hand, the volume of the movable hook device to be limited by integrating the resilient restoring mechanism, and on the other hand, ensures the guidance and retention of the resilient restoring mechanism during movement, which improves overall reliability. Advantageously, when the movable hook device is in its second position, the two buttons are in contact, which allows for the formation of another second position stop to better withstand the force applied to the buttons by the user. This enhances the mechanical strength of the movable hook device and the reliability of the container.
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Figure CN111434266B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hairdressing equipment, and more preferably to the field of hairdressing equipment that evaporates liquid toward the hair, such as steam hairdressing equipment.
[0002] More specifically, the present invention relates to the field of hairdressing equipment, which includes an evaporation device, a body, and a container. The evaporation device is used to diffuse evaporating liquid toward the hair strands, and the container is detachable and used to hold the liquid to be evaporated and is assembled with the body so as to connect with the evaporation device to supply the liquid to be evaporated to the evaporation device.
[0003] The present invention also relates to the field of containers for hairdressing equipment, and more specifically to containers for containing liquid to be evaporated and assembled together with the body of hairdressing equipment, the containers being for connection to an evaporation device of the hairdressing equipment, the evaporation device being designed to evaporate the liquid and diffuse the evaporated liquid toward the hair. Background Technology
[0004] Numerous hairdressing devices are known to have the function of evaporating liquid towards the hair. In fact, it is known that evaporating liquid on the hair strands during a haircut allows for improved operational efficiency and results.
[0005] In order to perform this evaporation, known hairdressing devices are equipped with a container for holding the liquid to be evaporated. This container is usually detachable from the main body of the hairdressing device to facilitate its filling operation. Therefore, the user should frequently, usually at least once before each haircut, remove the container from the main body of the device, fill the container with liquid (e.g., water), and then assemble the container back into the main body of the hairdressing device to supply the main body with the liquid to be evaporated.
[0006] These hair-cutting devices are generally satisfactory to their users, especially for the haircut results. However, these devices have many drawbacks or hazards during operation, particularly during the assembly or disassembly of the container and the main body of the device.
[0007] In fact, if the container is not properly assembled with the main body of the equipment, there is a danger of liquid leakage during the hairdressing operation. These dangers are particularly increased by the fact that hairdressing equipment is operated by the user's hands and involves numerous movements associated with the hairdressing operation. Furthermore, the container may be accidentally detached from the hairdressing equipment. These leaks or detachment can cause problems for the user, ranging from getting their clothes wet to the risk of electric shock, as hairdressing equipment is typically electrical equipment.
[0008] To limit such hazards, different hooking principles for containers on the main body of hairdressing equipment have been provided.
[0009] For example, as seen in many commercially available devices or as illustrated in document WO2017008413, the first known solution aims to assemble the container onto the body of the hair clipper by sliding: the container should therefore slide within the body so that it can be assembled or disassembled. The container's retention is thus ensured in part by friction along the sliding direction. However, this solution is particularly limiting for the user, who must firmly grip the body of the hair clipper with one hand and the container with the other, applying a relatively large movement between their components to assemble or disassemble the container and body. This operation, in terms of amplitude and force (to overcome friction), therefore requires both hands and a large movement. Furthermore, with assembly and disassembly operations, the parts rubbing against each other wear down, gaps are created, and the reliability of the assembly decreases over time, posing a danger of accidental disassembly over time.
[0010] Another known solution involves equipping the main body of the device with a component whose elastic deformation allows for the assembly or disassembly of the container. Thus, the elasticity of this component, typically a tongue, simultaneously ensures the container remains in the hooked position and allows the user to elastically deform the tongue while applying force to the container during assembly or disassembly. This solution is particularly unreliable in terms of container retention and carries the risk of accidental disassembly. Furthermore, this solution is not durable over time, as the tongue wears down with assembly and disassembly, and gaps develop during assembly, increasing the risk of accidental disassembly. Moreover, the risk of the tongue breaking due to fatigue and forceful deformation is significant, resulting in the container no longer being held by the main body. Therefore, the reliability and durability of this solution are limited.
[0011] Therefore, there is a need to improve existing equipment, especially at the assembly points of containers and equipment bodies. Summary of the Invention
[0012] The purpose of this invention is to overcome the above-mentioned disadvantages.
[0013] The purpose of this invention is to provide a container for hairdressing equipment that is particularly reliable and robust.
[0014] The object of this invention is to provide a container for hairdressing equipment that is particularly durable.
[0015] The object of the present invention is to provide a container for hairdressing equipment that is particularly easy to operate, especially when assembling or disassembling the container with the hairdressing equipment.
[0016] The purpose of this invention is to provide a container for hairdressing equipment that is particularly intuitive and efficient to operate, especially when assembling or disassembling the container with the hairdressing equipment.
[0017] The object of the present invention is to provide a container for hairdressing equipment that is particularly compact and lightweight.
[0018] The purpose of this invention is to provide a hair-cutting device that is particularly reliable and robust.
[0019] The purpose of this invention is to provide a hair-cutting device that is particularly durable.
[0020] The purpose of this invention is to provide a hair-cutting device that is particularly easy to operate, especially during the assembly or disassembly of the container and the main body of the hair-cutting device.
[0021] The purpose of this invention is to provide a hair-cutting device that is particularly intuitive to operate and highly efficient, especially during the assembly or disassembly of the container and the main body of the hair-cutting device.
[0022] The object of the present invention is to provide a hair-cutting device that is particularly compact and lightweight.
[0023] These objectives are achieved by means of a container for holding liquid to be evaporated and for assembly with the body of a hair-cutting device, the container for connection to an evaporation device designed to evaporate the liquid and diffuse the evaporated liquid toward the hair, characterized in that the container includes a movable hook device comprising at least one hook mechanism designed to correspond to at least one complementary hook mechanism belonging to the body, so as to hook the container together with the body, the movable hook device moving between a first position ensuring the hooking of the container to the body and a second position allowing the user to assemble or detach the container and the body.
[0024] These objectives are also achieved by means of a hair-cutting device comprising an evaporating device, a body, and a container, the evaporating device being designed to evaporate liquid and diffuse the evaporated liquid toward the hair strands, the container being detachable and for holding the liquid to be evaporated and for assembly with the body for connection to the evaporating device, thereby supplying the liquid to be evaporated to the evaporating device, characterized in that the container is consistent with the above description.
[0025] The present invention therefore relates to two different products, in this case, a container for a hair-cutting device and a hair-cutting device, which are connected because the first product is designed to be connected to the second product.
[0026] Preferably, the liquid is water. However, the invention is not limited to this specific liquid, and the liquid may be, for example, oil, cosmetic products, or any other liquid product that can be sprayed onto the hair for hair treatment or to improve the efficiency of hairdressing operations. The liquid may, if necessary, be a mixture of water and other products, such as cosmetic products.
[0027] The term "evaporation" here can be understood in a broader sense. Therefore, the term represents any type of liquid spray, regardless of its nature, shape, or state. Thus, for example, a liquid can be evaporated, for instance, in the form of a sprayer, while simultaneously spreading in the form of multiple tiny droplets, preferably of a size visible only under a microscope.
[0028] Preferably, the term "evaporation" can also be understood in a strict physical sense, that is, as an operation that causes a liquid to transform into vapor. On the other hand, the term "evaporation" can be understood as a change of state: a liquid changing from a liquid state to a gaseous state. For example, in the preferred case where the liquid is water, this state change, i.e., the evaporation, occurs when the liquid reaches a temperature of 100°C under standard atmospheric pressure.
[0029] A container represents any type of containment that can be sealed to hold liquid, preferably water. Preferably, the container's capacity is between 5 ml and 500 ml, and advantageously between 15 ml and 100 ml. Preferably, the container is made of plastic material. Advantageously, the container comprises an upper and lower shell assembled together in a non-removable manner (e.g., by gluing or welding).
[0030] The container is detachable, meaning it can be freely assembled or disassembled (or hooked and unhooked) from the main body of the hairdressing equipment without damaging the container or the main body.
[0031] Specifically, the container can occupy a hook position. In this position, the container is fixed to the body of the hairdressing equipment: the container is thus connected to the body, advantageously in a sealed manner. This hook position allows the container to deliver the liquid contained within it to the hairdressing equipment, causing the evaporator to evaporate the liquid, which then diffuses towards the hair.
[0032] The container can also occupy a detached position. In this position, the container is not attached to the body. Preferably, the container is independent of the body and can be freely and easily operated by the user, for example, to fill the container, clean the container, etc.
[0033] The movable hook-and-loop device preferably refers to any movable device or mechanism that can move in multiple positions, allowing the container to be hooked (i.e., fixed) together with or to the body of the hairdressing equipment. To this end, the movable hook-and-loop device of the present invention includes at least one hook-and-loop mechanism designed to correspond to at least one complementary hook-and-loop mechanism belonging to the body, so as to hook the container together with the body. Thus, the two complementary hook-and-loop mechanisms are implemented as follows: on the one hand, a hook-and-loop mechanism, preferably a male hook-and-loop mechanism, fitted onto the movable hook-and-loop device; and on the other hand, a complementary hook-and-loop mechanism, preferably a female complementary hook-and-loop mechanism, fitted onto the body of the hairdressing equipment. The at least one hook-and-loop mechanism of the movable hook-and-loop device and the at least one complementary hook-and-loop mechanism of the body thus cooperate with each other to ensure hooking, i.e., fixing, between the container and the body. Preferably, the movable hook-and-loop device includes two hook-and-loop mechanisms designed to correspond to the two complementary hook-and-loop mechanisms belonging to the body, so as to hook the container and the body together at two different points, which enhances the mechanical strength of the hook.
[0034] The hooking device of the present invention interacts between a first position ensuring the container is hooked to the body and a second position allowing the user to assemble or detach the container and body. On the other hand, the first position of the movable hooking device corresponds to the hooked position of the container, as defined above. The second position of the movable hooking device corresponds to the unhooked position of the container, as defined above. Therefore, due to the movable hooking device of the present invention, the user can easily and quickly control the container to move from its hooked position to its unhooked position, or vice versa. Furthermore, the movable hooking device is embedded in the container, which allows the user to operate the movable hooking device with the same hand as when gripping the container. The movable hooking device allows the container to be moved from its hooked position to its unhooked position according to the user's intention. Therefore, the user can hook or unhook the container with one hand. Specifically, only the user's intentional action on the movable hooking device (the movable hooking device should change position between its two positions) allows the container to move from its hooked position to its unhooked position, which avoids any accidental detachment of the container from the body of the hairdressing device. This significantly enhances the comfort and safety of the hairdressing device.
[0035] Hairdressing equipment refers to any type of device that allows a user to perform hairdressing operations on hair (or, if necessary, on fur, such as in the case of animals). For example, hairdressing equipment can be a straightener that allows hair to be straightened, a curling iron that allows hair to be curled or wavy, or a multi-functional device that allows for a variety of different styles.
[0036] According to one embodiment, the hair-cutting device includes a first arm hinged to a second arm to form clamps movable between an open position and a closed position. The open position allows a user to insert a strand of hair into the device, while the closed position allows the user to apply pressure and, preferably, heat to the hair to perform shaping, typically straightening. Thus, the device forms a straightening clamp, and known devices will not be described in further detail here. Specifically, this type of device particularly includes at least one heated surface, and preferably two heated surfaces, disposed at the ends of the arms (or each arm) and for contacting the hair to transfer heat to it.
[0037] The main body preferably represents the portion of the hair-cutting device designed to house a container. According to one embodiment, the main body includes an evaporating device and advantageously includes first and second arms. However, an embodiment is conceivable in which the hair-cutting device includes a main body and an auxiliary body, the main body housing a removable container, the auxiliary body particularly including an evaporating device and advantageously including first and second arms. In this case, the main body and the auxiliary body are connected to each other by a cable designed to deliver liquid contained in the container of the main body toward the auxiliary body.
[0038] Advantageously, the body includes a cutout portion whose shape is complementary to at least a portion of the shape of the container and is designed to receive at least a portion of the container when the container is in the hook position, the cutout portion including the at least one complementary hook mechanism. Therefore, the container is at least partially located inside the body of the hairdressing device, which on the one hand allows for limiting the overall volume of the hairdressing device, and on the other hand allows for ensuring excellent retention of the container in its hook position.
[0039] According to a preferred embodiment, the movable hook device includes at least one button for direct user actuation to move the movable hook device from its first position to its second position, or vice versa. This allows for simpler and more intuitive use of the movable hook device, and thus the hair-cutting equipment. Advantageously, the button is designed as a switch that can be actuated by the user's fingers. Preferably, the movable hook device includes two buttons, which allows for force distribution and thus improves the ergonomics of the container and the hair-cutting equipment. Advantageously, the two buttons are coaxial and oriented in opposite directions so that they can be actuated by the user using a clamping movement between two fingers, such as between the thumb and forefinger. Indeed, for a person seeking to manipulate the target, this involves a natural and intuitive movement.
[0040] According to an advantageous embodiment, the movable hook device is translatably movable relative to the container. Alternatively, movement of the movable hook device results in translation of the movable hook device relative to the fixed container. This mode of movement of the movable hook device allows for simplicity, robustness, and ergonomics. In fact, due to this embodiment, a user can hold the container in the palm of their hand while simultaneously driving the translation of the movable hook device with one or more fingers of that hand.
[0041] Preferably, the container extends longitudinally along a first axis, and the movable hook device translates relative to the container along a second axis perpendicular to the first axis. This translational movement perpendicular to the container's longitudinal axis allows for a more efficient container because minimal force is required to hold it in the hand. In fact, the container's longitudinal axis is positioned within the palm of the hand, providing excellent hold, and the translational movement of the movable hook device perpendicular to the longitudinal axis is therefore significantly better oriented relative to the movement of the thumb and / or index finger of the hand holding the container.
[0042] According to this advantageous embodiment, the movable hook device includes a translational guide, and the container includes a complementary translational guide. The translational guide and the complementary translational guide cooperate with each other to guide the movable hook device translationally within the container. Therefore, the translational movement of the movable hook device is limited to a single translation guided by the container itself. This ensures easy movement, good ergonomics, and intuitiveness for the user, thus preventing incorrect operation.
[0043] According to this advantageous embodiment, preferably, the movable hook device includes a first stop at a first position, and the container includes a first complementary stop at a first position. The first stop and the first complementary stop at the first position cooperate to prevent the movable hook device from translating beyond the first position. Therefore, the translational movement of the movable hook device is limited by the container itself so as not to exceed the first position. This ensures easy movement, good ergonomics, and intuitiveness for the user, thus preventing erroneous operation. Furthermore, advantageously, the movable hook device includes a second stop at a first position, and the container includes a second complementary stop at a first position. The second stop and the first complementary stop at the first position cooperate to prevent the movable hook device from translating beyond the first position. Therefore, the translational movement of the movable hook device is doubly limited by the container itself. This ensures good mechanical strength and provides two stopping points, and in particular eliminates any danger of accidental disassembly of the movable hook device relative to the container.
[0044] According to this advantageous embodiment, preferably, the movable hook device includes a second position stop, and the container includes a second position complementary stop, the second position stop and the second position complementary stop cooperating with each other to prevent the movable hook device from translating beyond the second position. Therefore, the translational movement of the movable hook device is limited by the container itself so as not to exceed the second position. This ensures easy movement, good ergonomics, and intuitiveness for the user, thus preventing erroneous operation. In summary, when the two preferred configurations above are combined in this advantageous embodiment, the movement of the movable hook device is entirely determined by the container and limited within the container to translational movement between the first and second positions. This ensures easy movement, good ergonomics, and intuitiveness for the user, thus preventing erroneous operation.
[0045] According to the embodiment, the first position of the movable hook device is an idle position. Alternatively, the movable hook device naturally or by default remains stably held in its first position, i.e., in a position that ensures the container is hooked to the body of the hair-cutting device. This substantially improves the safety of the device, as the container remains hooked to the body of the hair-cutting device when the user is not operating it. For this purpose, preferably, the movable hook device includes a resilient restoring mechanism, preferably a coil spring, which ensures reliability, robustness, and low manufacturing cost. However, any other mechanism suitable for using the first position as the idle position, such as a ferromagnetic device, is certainly conceivable. In the preferred case where the movable hook device includes two buttons, advantageously, the resilient restoring mechanism is positioned between the two buttons to push and separate them. This allows for a simple, inexpensive, reliable, and highly effective construction from a mechanical perspective. Preferably, the movable hook device includes a cavity designed to house the resilient restoring mechanism. This cavity thus allows, on the one hand, the volume of the movable hook device to be limited by integrating the resilient restoring mechanism, and on the other hand, ensures the guidance and retention of the resilient restoring mechanism during movement, which improves overall reliability. Advantageously, when the movable hook device is in its second position, the two buttons are in contact, which allows for the formation of another second position stop to better withstand the force applied to the buttons by the user. This enhances the mechanical strength of the movable hook device and the reliability of the container.
[0046] According to one embodiment, the container includes a fixed supplementary hook device designed to cooperate with a complementary supplementary hook mechanism belonging to the body when the container is in the hooked position. Therefore, two additional complementary hook mechanisms can be used to improve the hooking of the container on the body of the hairdressing device: on one hand, a fixed, i.e., inactive and non-deformable supplementary hook device, preferably a male hook device embedded in the container; and on the other hand, a complementary supplementary hook mechanism embedded in the body of the hairdressing device, preferably a female complementary hook mechanism. The fixed supplementary hook device and the complementary supplementary hook mechanism thus cooperate with each other to ensure hooking, i.e., fixation, between the container and the body. Preferably, the fixed supplementary hook device and the complementary supplementary hook mechanism are arranged parallel to the longitudinal axis of the container, while the at least one hook mechanism and the complementary hook mechanism are arranged perpendicular to the longitudinal axis of the container. This allows for better distribution of hook points between the container and the body, and thus improves the mechanical strength of the hooking.
[0047] According to one embodiment, the container includes at least one guiding device, which, when the container is in the hooked position, is designed to cooperate with at least one complementary guiding device of the body. Alternatively, two complementary guiding devices are used to improve the hooking of the container on the body of the hairdressing device, and also to facilitate the assembly and disassembly of the container, while guiding the movement of the container: one is a preferred female guiding device embedded in the container, and the other is a preferred male complementary guiding device embedded in the body and preferably included in a cutout portion. Attached Figure Description
[0048] Figure 1 This is a perspective view of the hairdressing device according to the present invention.
[0049] Figure 2 yes Figure 1 The image shows a detailed view of the equipment, in which the container has been unhooked and removed.
[0050] Figure 3 yes Figure 1 A top-view perspective of the container of the equipment.
[0051] Figure 4 yes Figure 3 A 3D view of the container, in which the upper shell of the container has been hidden.
[0052] Figure 5 yes Figure 3 The container is shown from below in a three-dimensional view, in which the movable hook device has been hidden.
[0053] Figure 6 yes Figure 3 Another bottom-view perspective of the container.
[0054] Figure 7 yes Figure 5 Detailed images.
[0055] Figure 8 Is with Figure 7 A similar view, but in which all the parts are present.
[0056] Figure 9 yes Figure 3 A three-dimensional diagram of the container's movable hook device.
[0057] Figure 10 yes Figure 9 Another perspective view of the active hook device. Detailed Implementation
[0058] The embodiments of the invention shown in the various accompanying drawings are one embodiment in which the hair-cutting device of the invention is a steam straightener. Therefore, the container 2, which is also the object of the invention, is a container for the steam straightener. However, other embodiments, such as a steam curling iron, are entirely conceivable without departing from the scope of the invention.
[0059] As in Figure 1 As can be seen, the hair-cutting device includes a first arm 11, which is connected to a second arm 12 via a hinge 13 to form clamps movable between an open position and a closed position. The first and second arms 11 and 12 constitute a gripping mechanism for the user's hand. For this purpose, the first and second arms preferably form handles at least a portion of their length, which form gripping areas. The hair-cutting device in... Figure 1 The device is in the closed position. The hinge 13 is therefore positioned approximately at the ends of the first and second arms 11, 12. The structure and function of this type of hair-cutting device are known and therefore will not be described in further detail here. For example, each of the first and second arms 11, 12 is known to include a heated surface for contacting the hair. These heated surfaces are positioned at the ends of each of the first and second arms 11, 12, opposite the hinge 13. The hinge 13 is typically an axis around which the first and second arms are mounted.
[0060] like Figure 1 and Figure 2As shown, the hair-cutting device includes a main body 1 designed to house a container 2, as will be described in detail below. In another aspect, the container 2 is used for assembly with the main body 1. According to the illustrated embodiment, the main body 1 includes the first and second arms 11, 12. However, another alternative embodiment is conceivable, in which the hair-cutting device includes an auxiliary body different from the main body 1 that houses the container 2. The auxiliary body could therefore include the first and second arms 11, 12 and the hinge 13. The main body 1 and the auxiliary body are thus connected to each other by a cable for delivering liquid from the container 2 of the main body 1 toward the auxiliary body, and more precisely, for example, toward the first arm 11.
[0061] like Figure 2 As can be seen, advantageously, the body 1 includes a cutout portion 111, i.e., a recessed space in the body 1, the shape of which is complementary to at least a portion of the shape of the container 2. On the other hand, the cutout portion 111 forms a recessed cavity for at least a portion of the container 2. When the container 2 is in the hook position, the cutout portion 111 is therefore designed to receive at least a portion of the container 2, as will be described in detail below.
[0062] Preferably, the main body 1, or more precisely the hollowed-out portion 111, includes at least one complementary guide device 114, and advantageously includes two complementary guide devices 114, such as... Figure 2 As shown. The at least one complementary guide device 114 can therefore take the form of a semi-circular pin.
[0063] The hair-cutting device includes a container 2 for holding a liquid to be evaporated, such as preferably water. The container 2 is detachable, meaning it can be removed from the hair-cutting device. Figure 2 It is evident that Figure 2 The main body 1 of the hairdressing device is shown with container 2 removed. Container 2 is therefore used to assemble with the main body 1 of the hairdressing device.
[0064] Container 2 can occupy the hook position, such as in Figure 1 As can be seen, the container 2 is integrated into the main body 1 of the hair-cutting device, and is precisely at least partially disposed inside the hollowed-out portion 111. This allows for a more compact hair-cutting device with a container integrated in the first arm 11. The hook position of the container 2 corresponds to the working position of the hair-cutting device.
[0065] Container 2 can also occupy the unhooking position, such as in Figures 2 to 8 As can be seen, container 2 is detached from and independent of the main body 1 of the hairdressing device. When container 2 is in the disengaged position, it can be filled by the user, especially when removing it. Figure 5 and Figure 6 Visible after filler plug 26. More precisely, as Figure 4As can be seen, the filling plug 26 includes a filling hole plug 261 and a vent plug 262. The filling hole plug 261 is used to seal the filling hole of the container 2, and the vent plug 262 is used to seal the vent hole of the container during filling. In fact, to facilitate the filling operation, and more precisely to ensure that the container 2 is maintained at atmospheric pressure during filling, the container 2 is equipped with two holes: a hole with a larger diameter for receiving liquid, and another hole with a smaller diameter for ensuring venting, even if the filling hole is completely blocked by liquid or by a funnel or any other filling tube.
[0066] Advantageously, such as Figure 3 As can be seen, the container extends longitudinally along the first axis X-X', meaning that the container 2 generally has an elongated shape, such as a roughly rectangular shape, with chamfered corners. In fact, this longitudinal shape is particularly suitable for allowing the container 2 to be inserted into the body 1, and more specifically into the first arm 11, as... Figure 1 As shown, this maximizes the capacity of container 2. Preferably, the first arm 11 extends parallel to the first axis X-X'. Advantageously, the first arm 11 extends along the first axis X-X'. In this advantageous case, as shown, container 2 can therefore extend for more than half the length of the first arm 11, which allows for maximizing the capacity of container 2. Container 2 is thus fully integrated into the first arm 11 and thus forms a gripping area for the user's hand.
[0067] Container 2 also preferably includes Figure 5 The visible connecting device 25 is used to connect with Figure 2 The complementary connecting device 15, visible in and located within the main body 1, and more precisely within the hollowed-out portion 111, corresponds to this. As can be seen in these figures, the connecting device 25 is a male connecting device, in this case, part of a tube protruding from the container 2, while the complementary connecting device 15 is a female connecting device, in this case, a hole. When the container 2 occupies its hook position, the connecting device 25 and the complementary connecting device 15 fit together in a sealing manner to allow the main body 1 of the liquid supply equipment housed in the container 2, and more precisely, to supply the evaporation device, as will be described in detail later. Preferably, the connecting device 25 is located at the longitudinal end of the container 2, as shown in... Figure 5 It is visible in the image and extends longitudinally parallel to the first axis X-X'.
[0068] As in Figure 4As can be seen, container 2 advantageously includes a suction tube 251, which is hermetically connected to connecting device 25. The suction tube 251 extends freely inside container 2 and includes a suction end 252 at its free end, the mass of which is greater than the mass of the suction tube 251. This allows the suction tube 251 to be driven by gravity to where the liquid itself is driven by gravity during the movement of the hairdressing device. This ensures good suction of the liquid inside container 2, regardless of the fill level of container 2 and its position in space. The suction tube 251 is free inside container 2, i.e., the suction tube is flexible and can move within container 2. Regarding the ballast suction end 252, this allows for the resolution of the problem that some containers currently cannot suction all the liquid: on the other hand, it is impossible to empty the container, for example, when the water volume is reduced by half, suction becomes impossible. This therefore results in a lack of endurance for devices equipped with containers.
[0069] Container 2 also preferably includes a venting device 27, which vents in Figures 4 to 6 Visible and designed to prevent liquid from draining from container 2 while maintaining container 2 at atmospheric pressure. This venting device 27 solves the following technical problem: When liquid is drawn in by the suction tube 251, the amount of liquid inside container 2 decreases. However, container 2 is sealed, so the amount of liquid drawn in cannot be replaced by air. This results in a pressure drop inside container 2 as liquid is drawn in. After a certain period, the pressure drop becomes so large that drawing in more liquid becomes impossible. Therefore, it is impossible to draw in all the liquid contained in container 2, which limits the operating time of the hairdressing equipment equipped with the container.
[0070] The venting device 27 allows air to enter the interior of container 2 as the amount of liquid inside decreases, while preventing liquid from leaving container 2.
[0071] As in Figure 4 As can be seen, the venting device 27 includes an umbrella-shaped or mushroom-shaped valve. This shape allows the valve to remain compressed due to the weight of the liquid pressing against its cap or head, thus preventing liquid from draining from container 2. Conversely, when the pressure inside container 2 decreases, the external atmospheric pressure pushes the valve foot regardless of the weight of the liquid, allowing air to enter the interior of container 2. Once the pressure inside container 2 equalizes with the external (atmospheric) pressure, the valve returns to its initial position due to the weight of the liquid as described above.
[0072] like Figure 3 and Figure 4As can be seen, container 2 includes an upper shell 21 and a lower shell 22, which are ultimately and advantageously connected to each other in a sealed manner, for example by gluing or welding, i.e., they are non-removable. This assembly allows for the solution of the installation problem of container 2, while significantly facilitating, and even simply allowing, the installation of different components inside the container, especially the installation of the aforementioned suction tube 251.
[0073] As can be understood, the above-described devices, and in particular the suction tube 251 and the ventilation device 27, allow each to solve specific technical problems and can constitute the subject of the invention.
[0074] As in Figure 5 Visible and more specifically in Figure 7 As can be seen, container 2 advantageously includes a guide base 23, which preferably includes various rods that allow for different guiding and hooking functions, as will be described in detail below. The guide base 23 is advantageously located at the longitudinal end of container 2, preferably opposite the connecting device 25.
[0075] The hairdressing equipment includes an evaporation device designed to evaporate liquid and diffuse it toward the hair. The evaporation device may, for example, include an evaporation chamber in which, under the influence of heat, the liquid contained in container 2 is converted into vapor. The vapor then diffuses toward the hair, for example, through a distribution orifice. Such devices are known and therefore will not be described in more detail here. Another type of evaporation device may be a spray system that converts the liquid into fine droplets in the form of a sprayer without changing the liquid's state.
[0076] Therefore, container 2 is used to connect to the evaporator of the hairdressing device, which is designed to evaporate liquid and diffuse it toward the hair. Container 2 thus supplies the liquid to be evaporated to the evaporator. Preferably, the connection is sealed and is performed, in particular, by means of connection device 25 and complementary connection device 15. The hairdressing device, and more preferably the main body 1, may also include a flow generating device, such as a pump, and preferably a peristaltic pump, which allows the liquid contained in the container to be drawn through a suction tube 251 for conveying the liquid toward the evaporator.
[0077] According to the present invention, container 2 includes a movable hook device 3, such as in Figure 1 As can be seen in 3, 4, 6, and 8. On the other hand, the movable hook device 3 is embedded in the container 2, that is, the movable hook device 3 is connected to the container 2. This allows for better ergonomics for the user of the container 2 and therefore the hairdressing equipment, because the container 2 and the movable hook device 3 can be operated simultaneously with one hand.
[0078] As in Figure 10As can be seen, the movable hook device 3 includes at least one hook mechanism 333. More specifically, the movable hook device 3 preferably includes a foot 33, which itself includes a recess forming a rib at its end, the rib protruding from the foot 33 and for hooking with a complementary part; the rib thus forms the hook mechanism 333. On the other hand, the hook mechanism 333 is a male hook mechanism, which is generally rectangular in shape. Advantageously, as shown, the movable hook device 3 includes two hook mechanisms 333, which allows for an increase in the number of hook points between the container 2 and the body 1 and thus allows for increased mechanical strength of the hook. The two hook mechanisms 333 are advantageously perpendicular to the first axis X-X' of the container and symmetrical with respect to the midplane P, as shown in Figure 10 It is visible in the text.
[0079] The at least one hook mechanism 333 is designed to allow the container 2 to hook onto the body 1, i.e., to hold the container 2 in the hooked position. Preferably, the hook mechanism 333 is rigid, i.e., it cannot deform. This feature ensures the mechanical strength of the hook between the container 2 and the body 1, and thus avoids any danger of accidental disengagement. Furthermore, in contrast to currently known container hooking techniques based on the elastic deformation of such hook devices, the rigidity of the hook mechanism 333 of the present invention ensures the mechanical strength of the hook over time, including after multiple uses. In fact, the risk of the hook mechanism 333 breaking due to fatigue is eliminated. The reliability and lifespan of the hook mechanism 333, and therefore the container 2, and therefore the hairdressing equipment, are thus increased.
[0080] As in Figure 2 As can be seen, the main body 1, and more specifically the hollowed-out portion 111, includes at least one complementary hook mechanism 112. This complementary hook mechanism is designed to complement the hook mechanism 333, i.e., to cooperate with the hook mechanism to ensure the hooking of the container 2. (As shown in...) Figure 2 As can be seen, the complementary hook mechanism 112 is preferably a female hook mechanism, for example, comprising a generally rectangular cavity. This complementary hook mechanism 112 thus accommodates the male hook mechanism 333 to ensure hooking. The preferred generally rectangular shape of the hook mechanism 333 and the complementary hook mechanism 112 allows for the distribution of mechanical force over a certain length, which improves the mechanical strength of the hook between the container 2 and the body 1, especially during removal. Therefore, the at least one hook mechanism 333 is designed to correspond to the at least one complementary hook mechanism 112 belonging to the body 1 in order to hook the container 2 to the body 1. Preferably, the hollowed-out portion 111 advantageously includes the at least one complementary hook mechanism 112 near its corners, as in... Figure 2 Visible in the image. Preferably, the body includes two complementary hook mechanisms 112 along a second axis Y-Y' perpendicular to the first axis X-X'.
[0081] The movable hook device 3 moves between a first position ensuring that the container 2 is hooked to the body 1 and a second position allowing the user to assemble or detach the container 2 from the body 1. On the other hand, in order to move the container 2 from its hooked position to its unhooked position, the user should move the movable hook device 3.
[0082] More precisely, in order to bring or hold the container 2 into its hooked position, the movable hook device 3 should be brought into or held in its first position. The first position of the movable hook device 3 thus corresponds to the hooking position of the container 2, and therefore to the working position of the hairdressing equipment. To ensure the safety of the container's hooking and to limit user intervention, advantageously, the first position of the movable hook device 3 is an idle position. On the other hand, when the user is not moving, the movable hook device 3 is naturally in its first position, i.e., in the position that ensures the container 2 is hooked to the body 1 of the hairdressing equipment.
[0083] Conversely, in order to bring container 2 to its unhooked position, the movable hook device 3 should be brought to its second position, which will cause container 2 to unhook, as will be described in detail below.
[0084] In the different accompanying drawings, the movable hook device 3 is shown exactly in this second position.
[0085] Preferably, as can be seen in the various figures, the movable hook device 3 includes at least one button 31, and more preferably two buttons 31. A button is any part that is directly actuated by a user, preferably by the user's hand, and more precisely by at least one finger of the user. Preferably, the button 31 is a switch button designed to be actuated by a single finger of the user. The at least one button 31 is preferably rigidly connected to the hook mechanism 333, so that when the user actuates the at least one button 31, this causes the hook mechanism 333 to move, more precisely, to disengage from the complementary hook mechanism 112 (i.e., the hook mechanism 333 and the complementary hook mechanism 112 no longer engage with each other) and thus causes the movable hook device 3 to move from its first position to its second position, or vice versa. In another respect, the movable hook device 3 can therefore change position between the first and second positions.
[0086] Advantageously, the movable hook device 3 is translated relative to the container 2, that is, the movable hook device 3 moves relative to the container 2, which thus constitutes a fixed reference, by translational motion, and advantageously, moves only by translational motion.
[0087] Preferably, as in Figure 8As can be seen, the movable hook device 3 translates relative to the container 2 along a second axis Y-Y' perpendicular to the first axis X-X'. On the other hand, the translational movement of the movable hook device 3 is therefore performed perpendicular to the longitudinal direction of the container 2. In the preferred case where the movable hook device 3 includes two buttons 31, this means that the two buttons 31 translate along the second axis Y-Y'. This configuration offers a significant improvement in ergonomics because the user can operate the container 2 and its hook system with one hand. More precisely, the user can position the container 2 in the palm of their hand, with the first axis X-X' approximately perpendicular to their arm. The movable hook device 3, and especially the buttons 31, are thus ideally positioned so that they can be directly driven by the thumb and forefinger of the user holding the container.
[0088] As in Figure 9 and Figure 10 As can be seen, the movable hook device 3 includes a symmetrical plane P perpendicular to the second axis Y-Y'. Alternatively, plane P may include the first axis X-X'. The movable hook device 3 is therefore perfectly symmetrical with respect to plane P. The movable hook device includes two sub-assemblies distributed on either side of plane P and symmetrical with respect to plane P. Therefore, in the following description, only one sub-assembly is described; the other is a mirror image of the first sub-assembly.
[0089] The foot 33 of the movable hook device 3 is integrally connected to the button 31. Preferably, the foot 33 and the button 31 are integrally formed, that is, the foot 33 and the button are made of the same material and can be realized simultaneously with the button, for example, by machining or molding. However, the foot 33 can also be assembled with the button, for example, by welding. The foot 33 preferably has a generally inverted T shape. The vertical bar of the T is therefore connected to the button 31, while the horizontal bar of the T includes the hook mechanism 333.
[0090] Preferably, the movable hook device 3 includes a translation guide 331 advantageously formed by a vertical rod of the T-shaped foot 33. The container 2 is therefore included in... Figure 7 The translational guiding complementary device 231, which is advantageously formed by the rod of the guide base 23, is visible in the container 2. The translational guiding device 331 and the translational guiding complementary device 231 thus cooperate with each other to translate and guide the movable hook device 3 in the container 2, and more precisely in the guide base 23.
[0091] Preferably, such as Figure 8 As can be seen, translational guidance is achieved through a sliding connector, which is advantageously formed by a vertical rod of T and a horizontal rod of T, the vertical rod moving within the U-shaped space formed by the guide base 23, as in Figure 7 and Figure 8As can be seen, the horizontal bar abuts against the U-shape, and the length of the horizontal bar T is greater than the opening of the U. Preferably, the U formed in the guide base 23 opens outward, and the second axis Y-Y' is the axis of symmetry for the U-shaped space of the guide base 23. Furthermore, the button 31 is also designed to be pressed against the U of the guide base 23. Therefore, the specific shape of the movable hook device 3, in conjunction with the complementary shape of the guide base 23, and especially its foot 33, allows for a sliding connection to guide the movable hook device 3 in translation within the guide base 23 of the container 2 of the hairdressing device. Similar translational guidance can be envisioned without departing from the scope of the invention, which can be achieved by means of a dovetail-type device. Preferably, the sliding connection has an axis Y-Y'.
[0092] Preferably, the movable hook device 3 includes a first stop device 341 at a first position, such as... Figure 9 or Figure 10 As can be seen. More precisely, viewed from above the T-shape, button 31 has a horizontal bar of the T, which constitutes the part that the user would actuate with their finger, such as... Figure 9 As can be seen, button 31 advantageously includes a first protrusion 34 that protrudes from the vertical rod forming the button T in a direction similar to that of foot 33. Preferably, the protrusion 34 and foot 33 extend in parallel directions and advantageously in the same direction. Advantageously, the first protrusion 34 includes a generally flat surface perpendicular to the vertical rod forming the button 31 T, said surface forming a first stop device 341 in the first position. The first stop device 341 in the first position is therefore advantageously parallel to plane P.
[0093] Advantageously, button 31 includes protrusions that allow for improved contact quality between button 31 and the user's finger. These protrusions also allow for visual guidance of the user to position their finger to disengage container 2.
[0094] Preferably, the container 2 includes a first complementary stop device 232 at a first position, such as... Figure 7 As can be seen in the image. More precisely, the first complementary stop 232 in the first position is contained in a guide base 23, which forms a generally rectangular window in that position. The first complementary stop 232 in the first position is therefore formed by a rod parallel to the first axis X-X'. Preferably, the rod has a rectangular or square cross-section to provide a generally flat side surface and is particularly generally parallel to the side surface of the first stop 341 in the first position.
[0095] The first stop device 341 and the first complementary stop device 232 at the first position thus cooperate with each other to prevent the movable hook device 3 from translating outside the first position, and on the other hand, to provide a stop for the movable hook device 3 at the first position. Figures 7 to 10 As can be seen, the fit is advantageously a face-to-face type fit. This allows for good contact, which better distributes force and thus ensures a reliable, robust, and long-lasting stop in the first position. This allows for limiting the translational movement of the movable hook device 3 so that it does not exceed its first position. The good quality of the stop is more important than the above, and the first position can correspond to an idle position, i.e., a position occupied very frequently by the movable hook device 3.
[0096] Preferably, the movable hook device 3 includes, especially in Figure 9 and Figure 10 The first position second stop device 351 is visible in the image. More specifically, the button 31 advantageously includes a second protrusion 35, which protrudes from the vertical rod forming the T of the button 31 in a direction parallel and opposite to the direction of the foot 33. Preferably, the first protrusion 34 and the second protrusion 35 extend in parallel and opposite directions. On the other hand, the first and second protrusions 34, 35 extend on both sides of the vertical rod forming the T of the button 31, as shown in the image. Figure 9 As can be seen in the image. Preferably, the second protrusion 35 is parallel to plane P.
[0097] Preferably, container 2 includes Figure 7 The first position 233 is visible as a second complementary stop device 233. This first position second complementary stop device can therefore be formed by the wall of a recess directly implemented in the upper shell 21 of the container 2. Preferably, the first position second complementary stop device 233 extends longitudinally parallel to the first axis X-X'.
[0098] The first position second stop device 351 and the first position second complementary stop device 233 thus cooperate with each other to prevent the movable hook device 3 from translating outside the first position, and on the other hand, to provide a stop for the movable hook device 3 in the first position. Furthermore, this cooperation is advantageously a face-to-face type cooperation, and therefore has the same advantages as described above. The fact that the movable hook device includes two first position stop devices 341, 351, each cooperating with the two first position complementary stop devices 232, 233 of the container 2, thus allows for two first position stops for the movable hook device 3. This allows for a better distribution of contact pressure between the two stops, and thus improves the strength, reliability, and durability of the movable hook device 3. Furthermore, each of these stops allows the button 31 attached to the container to remain in place and allows for the prevention of accidental detachment of the movable hook device 3 from the container 2.
[0099] Preferably, the movable hook device 3 includes Figure 10A second position stop 332 is visible and advantageously formed by the foot 33. More precisely, the second position stop 332 is formed by a surface of the foot 33 that is substantially parallel to the first position stop 341 and preferably parallel to plane P. Thus, the second position stop 332 and the first position stop 341 form two parallel stops that restrict the translational movement of the movable hook device 3.
[0100] Preferably, container 2 includes Figure 7 The second position complementary stop device 234 is visible in the image. The second position complementary stop device 234 is therefore advantageously parallel to the first position first complementary stop device 232, for example, both being disposed on the same surface opposite the same rod of the guide base 23.
[0101] The second position stop device 332 and the second position complementary stop device 234 thus cooperate with each other to prevent the movable hook device 3 from translating outside the second position, so as to form a stop in the second position, especially when the user applies pressure on one or more buttons 31.
[0102] Preferably, as described above, plane P forms a symmetrical plane for the movable hook device. Therefore, the movable hook device includes two buttons 31, two feet 33, two first protrusions 34, two second protrusions, two translation guides 331, two second position second stop devices 332, two hook mechanisms 333, two first position first stop devices 341, and two first position second stop devices 351, each symmetrically distributed on both sides of plane P, as shown below. Figure 9 and Figure 10 As can be seen in the text.
[0103] Advantageously, the movable hook device 3 includes an elastic recovery device 32, in Figure 9 As can be seen, the elastic return mechanism is designed to hold the movable hook device 3 in its first position. The elastic return mechanism 32 is preferably a helical spring designed to keep the button 31 open. However, without departing from the scope of the invention, other return mechanisms are conceivable that allow the button 31 to remain open, i.e., to hold the movable hook device 3 in the first position. For example, an electromagnetic device could be considered, with the container 2 equipped with a magnet, and each of the buttons 31 made of a magnetic material (or vice versa). Preferably, as... Figure 9 As shown, the elastic return device 32 is disposed between the two buttons 31, which allows for a simple construction and allows the elastic return device 32, i.e., the coil spring, to transmit its full force to the buttons 31 and exclusively to the buttons 31. Preferably, the movable hook device 3 includes a cavity 312 designed to receive the elastic return device 32, as shown in... Figure 9As can be seen in the image. This allows ensuring that the elastic recovery device 32 remains in place and allows for guidance of the elastic recovery device when it deforms. The cavity 312 is advantageously formed by a groove that begins at the end of the button 31, i.e., from the free end of the vertical rod forming the button 31 (T), and preferably extends partially towards the interior of the button 31 along the second axis Y-Y'. Therefore, when the movable hook device 3 is in its second position, the two buttons 31 are in contact, and the volume of the movable hook device is zero because the movable hook device is completely integrated into the cavity 312, i.e., integrated inside the button 31. This allows for limiting the volume of the movable hook device 3. As shown in the image... Figure 9 As can be seen, the elastic recovery device extends longitudinally along the second axis Y-Y'.
[0104] Advantageously, such as in Figure 9 As can be seen, the second axis Y-Y' forms the axis of symmetry for the movable hook device 3.
[0105] As in Figure 8 As can be seen, the first axis X-X' forms a symmetry axis for guiding the base 23, and the plane P preferably forms a symmetry plane for guiding the base.
[0106] Preferably, the container 2 includes a replenishing hook device 221, which is fixed, i.e., non-movable and non-deformable. Figure 5 and Figure 6 As can be seen, the supplementary hook device advantageously includes a generally rectangular tongue that protrudes from the container in a direction parallel to the first axis X-X'. Preferably, the supplementary hook device 221 is located at the longitudinal end of the container 2 and advantageously opposite the movable hook device 3, which itself is located at the other longitudinal end of the container 2. This allows for maximum separation of the different hook points of the container 2 on the body 1, which improves the stability and mechanical strength of the hook of the container 2 relative to the body 1. Furthermore, in the preferred embodiment shown where the movable hook device 3 includes two hook mechanisms 333, three hook points are provided for the container 2 on the body 1, corresponding to balanced assembly. Moreover, the hook points can be arranged in a triangular configuration by the arrangement of the two hook mechanisms 333 on the second axis Y-Y' and the arrangement of the supplementary hook device 221 on an axis parallel to the first axis X-X', or, if necessary, by the arrangement on the first axis X-X'. The triangular arrangement of the hook points of container 2 on body 1 allows for improved stability and mechanical strength of the hook between container 2 and body 1, and thus improves the reliability of the hook between the two components.
[0107] Subject 1 is therefore included Figure 2The complementary hook mechanism 113 is visible in the image. The complementary hook mechanism 113 includes, for example, a generally rectangular groove that is formed inside the body 1 from the hollowed-out portion 111 in a direction parallel to the first axis X-X'.
[0108] The supplementary hook device 221 and the complementary supplementary hook mechanism 113 are therefore designed to engage integrally when the container 2 is in the hooked position. The supplementary hook device 221 is preferably a male hook device, and the complementary supplementary hook mechanism 113 is preferably a complementary female hook mechanism. The illustrated embodiment uses at least one complementary supplementary hook mechanism 113 that engages with at least one supplementary hook device 221; however, it is entirely conceivable to increase the number of these elements to enhance the mechanical strength of the hook.
[0109] like Figure 5 and Figure 6 As shown, container 2 includes at least one guide device 24, which, when the container is in the hook position, is designed to cooperate with at least one complementary guide device 114 of body 1. This allows for at least one guide mechanism between hook mechanism 333 and supplementary hook device 221, greatly facilitating the hooking operation of container 2 on body 1 while providing intermediate guidance for the user. Furthermore, guide device 24 and complementary guide device 114 allow for enhanced mechanical strength of the hook once container 2 is in the hook position, while preventing any translational movement of container 2 along the first axis X-X'. This allows for reduced load on hook mechanism 333 and supplementary hook device 221 along a third axis perpendicular to the first axis X-X', thus eliminating the need for pull-out protection. The strength and durability of the container are thus improved. The greater the length of container 2, the greater the involvement of this intermediate guide point. Preferably, guide device 24 is a female guide device, such as a hole or a side notch in the shape of a half-hole as shown. The complementary guide device 114 is therefore a complementary male guide device, which can take the form of a semi-circular pin (along the longitudinal direction), such as... Figure 2 As seen in the image. Advantageously, container 2 includes two guide devices 24, and body 1 includes two complementary guide devices 114.
Claims
1. A hair-cutting device comprising an evaporating device, a main body (1), and a container (2), the container being detachable and for containing liquid to be evaporated and for assembly with the main body (1) of the hair-cutting device, the container (2) being connected to the evaporating device of the hair-cutting device to supply the liquid to be evaporated to the evaporating device, the evaporating device being designed to evaporate the liquid and diffuse the evaporated liquid toward the hair, characterized in that, The container (2) includes a movable hook device (3) comprising at least one hook mechanism (333), the at least one hook mechanism being designed to correspond to at least one complementary hook mechanism (112) belonging to the body (1) in order to hook the container (2) together with the body (1), the movable hook device (3) moving between a first position ensuring hooking of the container (2) with the body (1) and a second position allowing the user to assemble or detach the container (2) and the body (1). The hair-cutting device includes a first arm (11), and the container (2) is integrated onto the first arm (11) of the main body (1) of the hair-cutting device, extending longitudinally along a first axis (X-X') of the first arm (11) to form a gripping area. At least one hook mechanism (333) of the movable hook device (3) is movable relative to the container (2) along a second axis (Y-Y') perpendicular to the first axis (X-X'). The container (2) includes at least one guide device (24) which, when the container is in the hook position, is designed to cooperate with at least one complementary guide device (114) of the body (1), the guide device (24) and the complementary guide device (114) preventing any translational movement of the container (2) along the first axis (X-X').
2. The hair-cutting device according to claim 1, characterized in that, The movable hook device (3) includes at least one button (31) for direct user-driven operation to move the movable hook device (3) from its first position to its second position, or vice versa.
3. The hair-cutting device according to claim 1 or 2, characterized in that, The movable hook device (3) includes two buttons (31).
4. The hair-cutting device according to claim 1 or 2, characterized in that, The movable hook device (3) moves relative to the container (2).
5. The hair-cutting device according to claim 4, characterized in that, The movable hook device (3) includes a translation guide device (331), and the container (2) includes a translation guide complementary device (231). The translation guide device (331) and the translation guide complementary device (231) cooperate with each other to translate and guide the movable hook device (3) in the container (2).
6. The hair-cutting device according to claim 4, characterized in that, The movable hook device (3) includes a first stop device (341) at a first position, and the container (2) includes a first complementary stop device (232) at a first position. The first stop device (341) at the first position and the first complementary stop device (232) at the first position cooperate with each other to prevent the movable hook device (3) from translating outside the first position.
7. The hair-cutting device according to claim 6, characterized in that, The movable hook device (3) includes a first position second stop device (351), and the container (2) includes a first position second complementary stop device (233). The first position second stop device (351) and the first position second complementary stop device (233) cooperate with each other to prevent the movable hook device (3) from translating outside the first position.
8. The hair-cutting device according to claim 4, characterized in that, The movable hook device (3) includes a second position stop device (332), and the container (2) includes a second position complementary stop device (234). The second position stop device (332) and the second position complementary stop device (234) cooperate with each other to prevent the movable hook device (3) from translating outside the second position.
9. The hair-cutting device according to claim 1 or 2, characterized in that, The first position of the movable hook device (3) is the idle position.
10. The hair-cutting device according to claim 9, characterized in that, The movable hook device (3) includes an elastic recovery device (32).
11. The hair-cutting device according to claim 10, characterized in that, The elastic recovery device (32) is a helical spring.
12. The hair-cutting device according to claim 10, characterized in that, The movable hook device (3) includes two buttons (31), and the elastic recovery device (32) is disposed between the two buttons (31).
13. The hair-cutting device according to claim 12, characterized in that, When the active hook device (3) is in its second position, the two buttons (31) are in contact.
14. The hair-cutting device according to claim 10, characterized in that, The movable hook device (3) includes a cavity (312) designed to house the elastic recovery device (32).
15. The hair-cutting device according to claim 1 or 2, characterized in that, The container (2) includes a fixed supplementary hook device (221) which is designed to cooperate with a complementary supplementary hook mechanism (113) belonging to the main body (1) when the container (2) is in the hook position.
16. The hair-cutting device according to claim 1 or 2, characterized in that, The main body (1) includes a hollow portion (111) whose shape is complementary to at least a portion of the shape of the container (2) and is designed to receive at least a portion of the container (2) when the container (2) is in a hook position, the hollow portion (111) including the at least one complementary hook mechanism (112).
17. The hair-cutting device according to claim 1 or 2, characterized in that, The first arm is connected to the second arm (12) via a hinge (13) to form a clamp that moves between an open position and a closed position.
Citation Information
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