Perfume containing ingredients that induce attraction in the opposite sex and method for producing the same

KR103012877B1Active Publication Date: 2026-09-01노주은
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Patent Information

Application Number
KR1020240109856
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2026-09-01
Estimated Expiration
2044-08-16

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Abstract

The present invention provides a method for manufacturing perfume. The method for manufacturing perfume comprises: a step of operating a manufacturing apparatus; and a step of manufacturing perfume through said manufacturing apparatus, wherein the perfume is a mixture comprising 18-22 parts by weight of a fragrance raw material including 18-22 parts by weight of phenylethyl alcohol, 18-22 parts by weight of 4-dioxacycloheptadecane 5,17-dione, 6-10 parts by weight of citronellol, 4-8 parts by weight of hydroxycitronellal, 18-22 parts by weight of linalyl acetate, 1-5 parts by weight of 3-(3,4-methylenedioxyphenyl) 2-methylpropanal, 1-5 parts by weight of alpha-isomethylionone, and 18-22 parts by weight of beta-pinene; It may include 78-82 parts by weight of perfume ingredients comprising 42-46 parts by weight of cypress water, 38-42 parts by weight of broccoli water, 1-5 parts by weight of isopropyl isostearate and 1-5 parts by weight of Fibersol-2.
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Description

Technology Field

[0001] The present invention relates to a perfume containing a component that generates attraction to the opposite sex and a method for manufacturing the same. Background Technology

[0002] Fragrance is utilized in various fields, including mental stability, stress relief, and pest control. It is known that scents can relax and soothe the brain, or conversely, stimulate it, and help reduce distracting thoughts and improve concentration. Furthermore, it can contribute to inducing attraction between the opposite sex. The problem to be solved

[0003] The problem that the present invention aims to solve is to provide a scent that can contribute to reducing stress and inducing a favorable impression of the other person.

[0004] In addition, the perfume composition as well as the safe physical means for obtaining it are specifically provided.

[0005] The problems of the present invention are not limited to those mentioned above, and other problems not mentioned will be clearly understood by those skilled in the art from the description below. means of solving the problem

[0006] According to one aspect of the present invention, the present invention comprises a method for manufacturing a perfume, the step of operating a manufacturing apparatus; and the step of manufacturing a perfume through said manufacturing apparatus, wherein the perfume is a mixture comprising 18-22 parts by weight of a fragrance raw material including 18-22 parts by weight of phenylethyl alcohol, 18-22 parts by weight of 4-dioxacycloheptadecane 5,17-dione, 6-10 parts by weight of citronellol, 4-8 parts by weight of hydroxycitronellal, 18-22 parts by weight of linalyl acetate, 1-5 parts by weight of 3-(3,4-methylenedioxyphenyl) 2-methylpropanal, 1-5 parts by weight of alpha-isomethylionone, and 18-22 parts by weight of beta-pinene; It may include 78-82 parts by weight of perfume ingredients comprising 42-46 parts by weight of cypress water, 38-42 parts by weight of broccoli water, 1-5 parts by weight of isopropyl isostearate and 1-5 parts by weight of Fibersol-2.

[0007] According to another aspect of the present invention, the present invention comprises a method for manufacturing perfume, the step of operating a manufacturing device; and the step of manufacturing perfume through said manufacturing device, wherein the manufacturing device comprises: a storage module including a plurality of storage tanks storing different fragrance liquids; a discharge control means for controlling the discharge amount of fragrance liquid discharged from said storage tanks; an injection module including a buffer tank that is detachably coupled to said discharge control means and stores the fragrance liquid discharged from said storage tanks; and a discharge control means for controlling the discharge amount of fragrance liquid discharged from said buffer tanks, and a fire extinguishing unit is provided in a manufacturing line where said manufacturing device is located so that fire extinguishing on the manufacturing line can be performed.

[0008] Additionally, the fire-fighting unit comprises a main unit including: a central body; a nozzle body positioned above the central body and spraying fluid; a first interlocking body connected to one side of the central body via a first bar and equipped with a first moving means; and a second interlocking body connected to the other side of the central body via a second bar and equipped with a second moving means.

[0009] The central body above can spray fluid while moving via the first moving means and the second moving means.

[0010] Additionally, the apparatus further includes an auxiliary unit that sprays a fluid for fire suppression and, when the main unit is housed inside, assists the fluid spraying state of the main unit, wherein the auxiliary unit comprises a base body, a first upward body provided on one side of the base body, and a second upward body provided on the other side of the base body and forming an internal space with the first base body and the first upward body, and the main unit is positioned in the internal space and can spray fluid while performing an operation for position change.

[0011] Additionally, the first interlocking body may include a first auxiliary body, a 1_1 moving body located at the bottom of the first auxiliary body and operating to move the first auxiliary body in the left-right direction, and a 1_2 moving body located on one side of the first auxiliary body and operating to move the first auxiliary body up and down, and the second interlocking body may include a second auxiliary body, a 2_1 moving body located at the bottom of the second auxiliary body and operating to move the second auxiliary body in the left-right direction, and a 2_2 moving body located on one side of the second auxiliary body and operating to move the second auxiliary body up and down.

[0012] Additionally, when the main unit is located on the line rather than in the internal space, it performs fire suppression while autonomously navigating a pre-set section; when located in the internal space, the first_2 movable body of the first auxiliary body operates to contact the inner wall of the first upward body via the first bar in the central body and move upward; and when located in the internal space, the second_2 movable body of the second auxiliary body operates to contact the inner wall of the second upward body via the second bar in the central body and move upward, wherein the central body presses the first auxiliary body and the second auxiliary body outward via the first bar and the second bar, so that the first_2 movable body and the second_2 movable body are in close contact with the inner walls of the first upward body and the second upward body, respectively.

[0013] Additionally, the first upward body includes a first lower body and a first fluid body that flows upward from the first lower body via a third bar, and the second upward body includes a second lower body and a second fluid body that flows upward from the second lower body via a fourth bar, and the first fluid body and the second fluid body may be provided with an exterior made of an elastic material.

[0014] In addition, the first fluid body and the second fluid body can each spray fluid into the periphery while moving up and down from the first lower body and the second lower body, respectively.

[0015] In addition, the central body rotates the nozzle body in a circumferential direction, and the nozzle body is equipped with an emerging body that moves in and out from the inside to the outside, so that fluid can be sprayed in a diagonal direction.

[0016] In addition, the base body is provided with a mounting module to which a central body is mounted, and the mounting module includes a connecting bar that extends vertically from the base body and a mounting fixing part provided on the upper part of the connecting bar to which the central body is mounted and fixed, and the mounting fixing part is provided with a cooling means to cool the central body in contact, so that the fluid sprayed from the central body is sprayed as a cooled fluid. Brief explanation of the drawing

[0017] FIG. 1a is a flowchart sequentially illustrating a method for manufacturing perfume according to one embodiment of the present invention. Figure 1b is a table showing the components according to Figure 1. FIG. 1c is an exemplary diagram illustrating a manufacturing apparatus according to FIG. 1. FIG. 2 is an exemplary diagram illustrating a storage module and an discharge control means constituting the present invention. FIG. 3 is an exemplary diagram illustrating an injection module and a discharge control means constituting the present invention. FIG. 4 is an exemplary diagram illustrating a displacement module constituting the present invention. FIG. 5 is an exemplary diagram illustrating a fixing pressure member and a fixing stopper constituting the present invention. FIG. 6 is an exemplary diagram illustrating the curvature change state of an elastic piece constituting the present invention. FIG. 7 is an exemplary diagram illustrating a control module constituting the present invention. FIG. 8 is an exemplary diagram illustrating a method for manufacturing a customer-customized perfume using a customer-customized perfume manufacturing device according to one embodiment of the present invention. FIGS. 9 to 14 are schematic diagrams illustrating the main configuration of a manufacturing apparatus according to FIG. 1c. Specific details for implementing the invention

[0018] Referring to FIGS. 1a and 1b, a method for manufacturing perfume according to one embodiment of the present invention comprises, in S110, preparing raw materials. In S120, raw materials are introduced into a manufacturing device. In S130, the manufacturing device into which the raw materials have been introduced is operated. In S140, the manufacturing device is operated to mix the raw materials inside. The perfume is a mixture comprising 18-22 parts by weight of fragrance raw materials including 18-22 parts by weight of phenylethyl alcohol, 18-22 parts by weight of 4-dioxacycloheptadecane 5,17-dione, 6-10 parts by weight of citronellol, 4-8 parts by weight of hydroxycitronellal, 18-22 parts by weight of linalyl acetate, 1-5 parts by weight of 3-(3,4-methylenedioxyphenyl) 2-methylpropanal, 1-5 parts by weight of alpha-isomethylionone, and 18-22 parts by weight of beta-pinene; It may comprise 78-82 parts by weight of a perfume ingredient comprising 42-46 parts by weight of cypress water, 38-42 parts by weight of broccoli water, 1-5 parts by weight of isopropyl isostearate, and 1-5 parts by weight of Fibersol-2. Additionally, it may further comprise the components described in 1b.

[0019] FIG. 1c is an example diagram illustrating a manufacturing apparatus according to FIG. 1. Referring to FIG. 1c, the manufacturing apparatus (1) analyzes a perfume recipe included in a sample determined by the customer to determine the type and combination ratio of the fragrance liquid, and after the amount of fragrance liquid to be discharged is determined according to the determined combination ratio and the manufacturing volume determined by the customer, the fragrance liquid is discharged into a container to manufacture a perfume having the scent required by the customer. To this end, the customer-customized perfume manufacturing device (1) according to the present invention comprises: a storage module (10) including a plurality of storage tanks (11) storing different fragrance liquids; a discharge control means (20) for controlling the discharge amount of fragrance liquid discharged from the storage tanks (11); an injection module (30) including a buffer tank (31) that is detachably coupled to each of the plurality of storage tanks (11) and stores the fragrance liquid discharged from the storage tanks (11); a discharge control means (40) for controlling the discharge amount of fragrance liquid discharged from the buffer tanks (31); a displacement module (50) for moving a container (T) in which the fragrance liquid discharged from the buffer tanks (31) is received; a quantitative check module (60) provided in the displacement module (50) for detecting the weight of the fragrance liquid received in the container (T); and a control module (70) for controlling the operation of each module.

[0020] The above storage module (10) includes a plurality of storage tanks (11) spaced apart from each other and each storing a different fragrance liquid, and a frame (not shown in the drawing) on ​​which the storage tanks (11) are arranged. Each storage tank (11) is a container formed to have a predetermined storage space inside, and the stored fragrance liquid is discharged through one side, preferably having a discharge pipe (12) at the bottom for discharging the fragrance liquid. Here, the storage tank (11) may be made of a transparent glass bottle or synthetic resin material so that the amount of stored fragrance liquid can be checked from the outside, and preferably, it may be made of a polyethylene synthetic resin material that is not affected by physical or chemical influences while storing the fragrance liquid, and a scale may be printed on the outer surface to check the stored volume.

[0021] The discharge pipe (12) provided in the storage tank (11) is formed in the shape of a hollow rod with a hollow center and is installed to communicate with the interior of the storage tank (11) at one end. Here, the discharge pipe (12) may be made of either a metal pipe or a synthetic resin tube, and a packing member (not shown in the drawing) is further installed at the connection point with the storage tank (11) to prevent leakage of the fragrance liquid. Meanwhile, a plurality of storage tanks (11) are arranged with spacing between them, and the arrangement may be in a vertical or horizontal form as shown in the drawing, or in a circular or multi-layered form.

[0022] The above discharge control means (20) provides discharge pressure for discharging the fragrance liquid stored in the storage tank (11) through the discharge pipe (12), and includes a discharge pressure pipe (21) connected to a pressure tank (not shown in the drawing) to receive discharge pressure, and a discharge valve (22) that controls the movement of discharge pressure moving in the discharge pressure pipe (21). The discharge pressure pipe (21) connects the storage tank (11) and the pressure tank, is formed in the shape of a hollow tube, and is made of a flexible synthetic resin material that allows for angle changes depending on the installation location. A packing means (not shown in the drawing) to prevent leakage is further installed at the connection point where the discharge pressure pipe (21) is connected to the storage tank (11).

[0023] The above discharge valve (22) controls the movement of discharge pressure moving through the discharge pressure pipe (21) so that the fragrance liquid stored in the storage tank (11) is discharged through the discharge pipe (12) in an amount determined by the discharge volume. Such discharge control means (20) can be installed in each of the plurality of storage tanks (11), and the plurality of storage tanks (1

[0024] 1) When classified into groups having similar scents, they can be installed in a many-to-one manner for multiple storage tanks (11) constituting the group.

[0025] The injection module (30) receives the fragrance liquid discharged from the storage tank (11) and temporarily stores it, and discharges it to the outside when the weight of the stored fragrance liquid matches a determined discharge value. It includes a buffer tank (31) for temporarily storing the fragrance liquid and a discharge pipe (32) installed on one side of the buffer tank (31) for discharging the temporarily stored fragrance liquid to the outside.

[0026] The buffer tank (31) is preferably made of a polyethylene synthetic resin material that is not subject to physical or chemical influences, as with the storage tank (11) described above, and may have a scale printed on its outer surface to check the temporarily stored volume. A portion of the discharge pipe (12) is inserted through the top of the buffer tank (31), and a discharge pipe (32) for discharging the temporarily stored fragrance liquid is installed at the bottom. Additionally, a packing means (not shown in the drawing) to prevent leakage is installed at the joint where the discharge pipe (12) is connected and at the joint where the discharge pipe (32) is connected.

[0027] In addition, it is preferable that the inner wall of the buffer tank (31) be formed in a diagonal shape that is gradually sloped downward toward the discharge pipe (32) so that the fragrance liquid can be concentrated toward the bottom, that is, toward the discharge pipe (32). Furthermore, a weight sensing sensor (311) is additionally installed in the buffer tank (31) to detect the amount of fragrance liquid discharged from the storage tank (11), and by detecting the amount of fragrance liquid discharged into the buffer tank (31) through the weight sensing sensor (311), the amount of fragrance liquid discharged according to the determined combination ratio can be provided.

[0028] The discharge pipe (32) is formed in the shape of a hollow tube and discharges the fragrance liquid temporarily stored inside the buffer tank (31) into a container moved by the displacement module (50) described later. Meanwhile, the buffer tank (31) is installed to be movable via a lifting means (34) to prevent the fragrance liquid from scattering outside the container and to provide discharge safety during the process of discharging the fragrance liquid into the container described later. The lifting means (34) includes a lifting frame (341) on which the buffer tank (31) is positioned and a lifting drive unit (342) for raising or lowering the lifting frame (341).

[0029] The lifting frame (341) may be configured to simultaneously lift the classified buffer tanks (31) after classifying the buffer tanks (31) by type or location of the fragrance liquid, and, for example, may be configured with an LM guide coupled to the buffer tank (31) to enable linear movement when rising or falling. The lifting drive unit (342) may be configured in a direct coupling manner directly coupled to one side of the lifting frame (341) or in an indirect coupling manner coupled through a power transmission means such as a belt or gear, and may be either a motor or a cylinder that provides lifting power while operating by an applied power source and signal.

[0030] The above discharge control means (40) is for controlling the discharge amount of fragrance liquid discharged from the buffer tank (31) and includes a discharge pressure pipe (41) connected to a discharge pressure tank (not shown in the drawing) in which discharge pressure is stored and receives discharge pressure, and a discharge valve (42) that controls the movement of discharge pressure moving through the discharge pressure pipe (41).

[0031] The discharge pressure pipe (41) connects the discharge pressure tank and the buffer tank (31) and is formed in the shape of a hollow tube through which discharge pressure can move internally. A packing means is further installed at the joint between the discharge pressure tank and the buffer tank (31) to prevent the discharge pressure moving from leaking out. The discharge valve (42) controls the discharge of the fragrance liquid stored in the buffer tank (31) by controlling the movement of the discharge pressure moving through the discharge pressure pipe (41).

[0032] Here, the discharge valve (42) controls the amount of pressure to be discharged according to the type or viscosity of the fragrance liquid temporarily stored in the buffer tank (31). The fragrance liquids have different viscosities depending on their respective components, and the amount of discharged by the same pressure may vary depending on the viscosity.

[0033] That is, the supply amount of pressure for discharge must be changed according to the viscosity of the fragrance liquid temporarily stored in the buffer tank (31) in order to accurately discharge the determined discharge amount. In the process of the control module (70) described later controlling the operation of the discharge valve (42), the operating time of the discharge valve (42) is adjusted according to the viscosity of the temporarily stored fragrance liquid so that an accurate discharge amount according to the determined discharge value can be discharged.

[0034] The displacement module (50) is for adjusting the position of a container (T) that receives a fragrance liquid discharged from the buffer tank (31), and includes an axis movement part (51) including an X-axis guide (511) installed below the buffer tank (31), a Y-axis movement part (52) including a Y-axis guide (521) movably arranged on the X-axis guide (511), and a plate (53) movably installed on the Y-axis guide (521) on which the container (T) is seated. Here, with reference to FIG. 4, the X-axis is the horizontal direction and the Y-axis is the vertical direction. The above X-axis moving part (51) is for moving the plate (53) in the X-axis direction, and the above Y-axis moving part (52) is for moving the plate (53) in the Y-axis direction. When the X-axis guide (511) constituting the X-axis moving part (51) is arranged in parallel at a mutually spaced position, the Y-axis guide (521) constituting the Y-axis moving part (52) is arranged in a direction that intersects the X-axis guide (511) at a right angle.

[0035] Here, the Y-axis guide (521) is movably positioned on the X-axis guide (511). To this end, the Y-axis guide (521) may be formed in a manner where a driving means is directly connected to one side, or in an indirect connection method through a power transmission means such as a belt, wire, or chain. Additionally, the driving means may comprise a driving motor, a rotating screw coupled to the driving motor with a moving spiral formed on its outer surface, and a moving block movably coupled to the rotating screw and fixed to the Y-axis guide (521). As another embodiment, it may be composed of a cylinder equipped with a rod through which the driving means enters and exits. Any modification of the specific structure is possible as long as the configuration allows the Y-axis guide (521) to be moved in a straight direction.

[0036] The above plate (53) is movably positioned on the Y-axis guide (521) and a container (T) is placed on its upper surface. Preferably, a fixing means (54) capable of fixing the container (T) placed on the upper surface is further provided. The fixing means (54) includes a fixing pressure member (541) that presses and fixes the outer surface of the container (T) and a fixing stopper (542) that supports the outer surface of the container (T) pressed by the fixing pressure member (541). Here, the fixing pressure member (541) and the fixing stopper (542) are preferably made of a soft elastic material to prevent the contacting container (T) from being damaged by friction, and examples include silicone, rubber, urethane, etc.

[0037] The above fixing means (54) prevents the position of the container (T) from changing due to vibrations and shocks that occur during the movement of the plate (53) or the Y-axis guide (521). Meanwhile, a moving groove (531) is further provided on the upper surface of the plate (53) to change the position of the fixing stopper (542) according to the shape of the container (T). As an example of the moving groove (531), as shown in the drawing, it is formed in a shape that intersects horizontally and vertically, so that the fixing stopper (542) is movably positioned. Through this moving groove (531), containers (T) having various shapes and capacities can be fixed in a seated state on a single plate (53). Since there is no need to replace the plate (53) depending on the container, there is no need to provide a plate corresponding to the container, and since there is no need for time required for plate replacement, there is an effect of reducing maintenance costs.

[0038] Meanwhile, when the above-mentioned fixing stopper (542) elastically supports the outer surface of the container (T), the gap between it and the container may vary depending on the shape of the container (T). If a gap occurs between the container and the fixing stopper (542), a problem may arise where the position of the container changes due to vibration or friction during the process of moving the container or injecting the fragrance liquid. To prevent this, the above-mentioned fixing stopper (542) is configured so that the curvature of its outer diameter can be adjusted, thereby preventing a gap from occurring between it and the container while elastically supporting the container. To this end, the above-mentioned fixing stopper (542) is installed on the upper surface of the plate (53) as shown in FIG. 6 and includes a body (55) having a hollow tubular body and a through hole (551) that communicates the inside and outside at a certain distance from top to bottom, and a control hole (552) formed through a position opposite to the through hole (551); an elastic piece (56) disposed inside the body (55), wherein an elastic support member (561) that contacts the container is disposed in the through hole (551) and a control member (562) for controlling the curvature of the elastic support member (561) is disposed in the control hole (552); and a control means (57) provided in the control member (562) for controlling the curvature of the elastic support member (561).

[0039] The above body (55) is formed in the shape of a hollow tubular body and is installed on the upper surface of the plate (53) or the moving groove (531). A through hole (551) and a control hole (552) are formed at positions facing each other in the horizontal direction, and the through hole (551) and the control hole (552) may be formed in multiple numbers spaced apart in the vertical direction depending on the number of elastic support members (561) arranged.

[0040] The step (S50) of supplying discharge pressure to a storage tank where the fragrance liquid determined for discharge is stored, thereby discharging a determined discharge volume into a buffer tank, involves operating the discharge control means to discharge the fragrance liquid stored in the storage tank into the buffer tank through a discharge pipe in the amount determined for discharge. In the step (S60) of detecting the volume of fragrance liquid discharged into the buffer tank and calculating a result value by comparing the detected volume of fragrance liquid with a determined discharge value, it is confirmed whether the volume of fragrance liquid discharged into the buffer tank is the correct amount compared to the discharge volume determined for perfume production.

[0041] In other words, perfume can only provide the scent required by the customer by blending multiple fragrances according to an accurate mixing ratio, and the amount of fragrance liquid selected to manufacture the perfume must be a precise quantity according to the mixing ratio and manufacturing volume. Therefore, through this step, it is verified whether the volume of fragrance liquid discharged into the buffer tank is a precise quantity according to the determined mixing ratio and manufacturing volume. The step (S70) of deciding whether to re-discharge or discard the fragrance liquid based on the calculated result is a step of adding the fragrance liquid stored in the buffer tank or discarding the fragrance liquid stored in the buffer tank based on the result calculated in the previous step. That is, this step further includes a step (S71) of supplying discharge pressure to the storage tank to re-supply the fragrance liquid to the buffer tank and supplying discharge pressure to the buffer tank to discharge the re-supply fragrance liquid into a container if the calculated result is confirmed to be less than the discharge value, and a step (S72) of disposing of the fragrance liquid stored in the corresponding buffer tank if the calculated result is confirmed to be more than the discharge value.

[0042] If the amount of fragrance liquid discharged into the buffer tank through this step is less than the discharge amount determined by the combination ratio, the discharge control means is reactivated to discharge additional fragrance liquid into the buffer tank; if the amount of fragrance liquid discharged into the buffer tank is greater than the discharge amount determined by the combination ratio, the fragrance liquid stored in the buffer tank is discarded. After discarding the fragrance liquid stored in the buffer tank, the process returns to the step (S40) of supplying discharge pressure into the interior of the buffer tank to clean the interior, and the process of discharging the fragrance liquid into the buffer tank is repeated.

[0043] The step (S80) of moving the container holding the fragrance liquid to the fragrance liquid discharge position via the next displacement module is a step of discharging the fragrance liquid from the buffer tank to the container while moving the container holding the fragrance liquid via the displacement module after the quantitative discharge of the fragrance liquid to the buffer tank is confirmed. In this step, the container is fixed in position by means of a fixing pressure port and a fixing stopper provided in the displacement module, thereby preventing displacement during the movement process.

[0044] The next quantitative verification step (S90) involves detecting the weight of the fragrance liquid dispensed into the container in real time and comparing it with a determined discharge value to verify whether the correct amount has been dispensed. In this step, the weight increasing as fragrance liquid is added to the container is detected in real time, and when multiple fragrance liquids are dispensed sequentially into the container, the sum of the corresponding fragrance liquids is compared with the sum of the fragrance liquids dispensed into the container.

[0045] Through this step, the exact amount of fragrance liquid dispensed into the container can be verified, thereby enabling the provision of a customized perfume desired by the customer.

[0046] FIGS. 9 to 14 are schematic diagrams illustrating the main configuration of the manufacturing apparatus according to FIG. 1c.

[0047] Referring to FIGS. 9 to 14, the manufacturing device may include: a storage module (10) comprising a plurality of storage tanks (11) storing different fragrance liquids; a discharge control means (20) for controlling the discharge amount of fragrance liquid discharged from the storage tanks (11); an injection module (30) comprising a buffer tank (31) that is detachably coupled to the discharge control means (20) and stores the fragrance liquid discharged from the storage tanks (11); a discharge control means (40) for controlling the discharge amount of fragrance liquid discharged from the buffer tanks (31); and a fire extinguishing unit (800) provided on a manufacturing line where the manufacturing device is located and for performing fire extinguishing on the manufacturing line.

[0048] Here, the firefighting unit (800) may include a main unit comprising: a central body (811); a nozzle body (812) positioned above the central body (811) and spraying fluid; a first interlocking body connected to one side of the central body (811) via a first bar (824) and equipped with a first moving means (822, 823); and a second interlocking body connected to the other side of the central body (811) via a second bar (834) and equipped with a second moving means (832, 833).

[0049] In addition, the central body 811) can spray fluid while moving via the first moving means (822, 823) and the second moving means (832, 833). It sprays fluid for fire suppression, and when the main unit is housed inside, it may further include an auxiliary unit to assist the fluid spraying state of the main unit.

[0050] The above auxiliary unit may include a base body (841), a first upward body (851) provided on one side of the base body (841), and a second upward body (852) provided on the other side of the base body (841) and forming an internal space (S) with the first base body (841) and the first upward body (851).

[0051] In addition, the main unit may be positioned in the internal space (S) and may spray fluid while performing an operation for position change. The first interlocking body may include a first auxiliary body (821), a 1_1 moving body (822) located below the first auxiliary body (821) and operating to move the first auxiliary body (821) in the left and right directions, and a 1_2 moving body (823) located on one side of the first auxiliary body (821) and operating to move the first auxiliary body (821) up and down.

[0052] The second interlocking body may include a second auxiliary body (831), a second_1 moving body (832) located below the second auxiliary body (831) and operating to move the second auxiliary body (831) in the left-right direction, and a second_2 moving body (833) located on one side of the second auxiliary body (831) and operating to move the second auxiliary body (831) up-down.

[0053] In addition, when the main unit is located on the line rather than in the internal space (S), it performs fire suppression while autonomously driving along a pre-set section, and when it is located in the internal space (S), the first_2 moving body (823) of the first auxiliary body (821) can operate to move upward by contacting the inner wall of the first upward body (851) via the first bar (824) in the central body (811).

[0054] In the state where it is located in the internal space (S), the second_2 moving body (833) of the second auxiliary body (831) can operate to move upward by contacting the inner wall of the second upward body (852) via the second bar (834) in the central body (811).

[0055] The central body 811) can press the first auxiliary body (821) and the second auxiliary body (831) outwardly through the first bar (824) and the second bar (834), thereby making the first_2 movable body (823) and the second_2 movable body (833) close contact with the inner walls of the first upward body (851) and the second upward body (852), respectively.

[0056] The first upward body (851) comprises a first lower body (851) and a first fluid body (853) that flows upward from the first lower body (851) via a third bar (852), and the second upward body (852) comprises a second lower body (861) and a second fluid body (863) that flows upward from the second lower body (861) via a fourth bar (862), and the first fluid body (853) and the second fluid body (863) may have an exterior made of an elastic material.

[0057] Additionally, the first fluid body (853) and the second fluid body (863) can spray fluid around the circumference while moving up and down from the first lower body (851) and the second lower body (861), respectively. The central body (811) rotates the nozzle body (812) in a circumferential direction, and the nozzle body (812) is equipped with an opening that moves in and out from the inside to the outside, allowing it to spray fluid in a diagonal direction.

[0058] In addition, the base body (841) is provided with a mounting module to which a central body (811) is mounted, and the mounting module includes a connecting bar (843) that extends up and down from the base body (841), and a mounting fixing part (842) provided on the upper part of the connecting bar (843) to which the central body (811) is mounted and fixed, and the mounting fixing part (842) is provided with a cooling means to cool the central body (811) in contact, so that the fluid sprayed from the central body (811) is sprayed as a cooled fluid.

[0059] The driving method of the physical configurations described above enables forward and backward movement and rotational movement based on motors, actuators, etc., and the shape and size of each component can be selected and provided in various ways depending on the installation site and the materials to be implemented. Although the present invention has been described with reference to the embodiments illustrated in the drawings, this is merely illustrative, and those skilled in the art will understand that various modifications and equivalent alternative embodiments are possible therefrom. Accordingly, the true technical scope of protection of the present invention should be determined by the technical spirit of the appended claims. Explanation of the symbols

[0060] 10 : Storage module 20 : Emission control means 30 : Injection module 40 : Discharge control means 50 : Displacement module

Claims

Claim 1 delete Claim 2 A method for manufacturing perfume comprises: a step of preparing raw materials; a step of introducing raw materials into a manufacturing device; and a step of operating the manufacturing device into which the raw materials have been introduced. The manufacturing device includes a step of operating to mix internal raw materials, and the manufacturing device comprises: a storage module (10) including a plurality of storage tanks (11) storing different fragrance liquids; a discharge control means (20) for controlling the discharge amount of fragrance liquid discharged from the storage tanks (11); an injection module (30) including a buffer tank (31) detachably coupled to the discharge control means (20) and storing the fragrance liquid discharged from the storage tanks (11); a discharge control means (40) for controlling the discharge amount of fragrance liquid discharged from the buffer tank (31); and a fire extinguishing unit (800) provided on a manufacturing line where the manufacturing device is located and for performing fire extinguishing on the manufacturing line, wherein the fragrance is a mixture comprising 18-22 parts by weight of phenylethyl alcohol, 18-22 parts by weight of 4-dioxacycloheptadecane 5,17-dione, and 6-10 parts by weight of citronellol. A method for manufacturing perfume comprising: 18-22 parts by weight of a fragrance raw material comprising 4-8 parts by weight of hydroxycitronellal, 18-22 parts by weight of linalyl acetate, 1-5 parts by weight of 3-(3,4-Methylenedioxyphenyl) 2-methylpropanal, 1-5 parts by weight of alpha-isomethylionone, and 18-22 parts by weight of beta-pinene; and 78-82 parts by weight of a perfume raw material comprising 42-46 parts by weight of cypress water, 38-42 parts by weight of broccoli water, 1-5 parts by weight of isopropyl isostearate, and 1-5 parts by weight of Fibersol-2. Claim 3 A method for manufacturing perfume according to claim 2, wherein the fire-resistant unit (800) comprises: a central body (811); a nozzle body (812) positioned above the central body (811) and spraying fluid; a first interlocking body connected to one side of the central body (811) via a first bar (824) and equipped with a first moving means (822, 823); and a second interlocking body connected to the other side of the central body (811) via a second bar (834) and equipped with a second moving means (832, 833); wherein the central body (811) sprays fluid while moving via the first moving means (822, 823) and the second moving means (832, 833). Claim 4 A method for manufacturing perfume according to claim 3, wherein the main unit is housed therein and further includes an auxiliary unit that sprays a fluid for fire suppression and assists the fluid spraying state of the main unit, wherein the auxiliary unit comprises a base body (841), a first upward body (851) provided on one side of the base body (841), and a second upward body (852) provided on the other side of the base body (841) and forming an internal space (S) with the first base body (841) and the first upward body (851), and wherein the main unit is positioned in the internal space (S) and sprays a fluid while performing an operation for position change. Claim 5 In claim 4, the first interlocking body comprises a first auxiliary body (821), a 1_1 movable body (822) located below the first auxiliary body (821) and operating to move the first auxiliary body (821) in a left-right direction, and a 1_2 movable body (823) located on one side of the first auxiliary body (821) and operating to move the first auxiliary body (821) up-down, and the second interlocking body comprises a second auxiliary body (831), a 2_1 movable body (832) located below the second auxiliary body (831) and operating to move the second auxiliary body (831) in a left-right direction, and a 2_2 movable body (833) located on one side of the second auxiliary body (831) and operating to move the second auxiliary body (831) up-down. Manufacturing method.

Citation Information

Patent Citations

  • Process for making fragrance compositions

    WO2017087258A1