Foam agent addition device, blowing foam formation machine, foam agent addition method and foam body production method

The foaming agent addition device addresses the challenges of liquid pump pulsation and excessive addition by controlling foaming agent addition based on the liquid pump's operation, ensuring precise and stable supply of a predetermined amount.

JP2025146956APending Publication Date: 2025-10-03SEKISUI CHEMICAL CO LTD
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Patent Information

Application Number
JP2025126208
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2021-07-07
Filing Date
2025-07-29
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

Conventional foaming agent addition devices face challenges in stabilizing the addition of foaming agents due to liquid pump pulsation, varying amounts of foaming agent addition, and excessive addition, particularly with carbon dioxide under high temperatures, making precise control difficult.

Method used

A foaming agent addition device that controls the addition of foaming agents based on the operation of the liquid pump rather than liquid pressure, using a metering pump and on-off valve system to ensure a predetermined amount is added, with a flow rate adjustment mechanism to prevent excess addition.

Benefits of technology

Stabilizes foaming agent supply, ensures accurate and controlled addition, and prevents excessive foaming agent addition by synchronizing with the liquid pump's operation, improving the precision and stability of the foaming process.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a foam agent addition device, a blowing foam formation machine, a foam agent addition method, and a foam body production method, capable of performing control not according to liquid pressure in a liquid channel, but according to a drive state of a liquid pump, for stably supplying a foam agent to liquid flowing in the liquid channel, without being impacted by any pulse of the liquid pump.SOLUTION: There is provided a foam agent addition device 10 for adding a foam agent E to liquid L1 which is supplied by a liquid pump 40 and flows in a liquid channel 30, and the foam agent addition device comprises: a pump drive detecting part 41 for detecting drive of the liquid pump 40; a foam agent container 11 for storing the foam agent E; a foam agent channel 12 for flowing the foam agent E supplied from the foam agent container 11; a foam agent measuring pump 50 for supplying a prescribed amount of the foam agent E to the liquid channel 12; an opening / closing valve 60 for controlling addition of the foam agent E to the liquid L1, by opening and closing; and an opening / closing valve control part 61 for controlling to open the opening / closing valve 60, according to a drive state of the liquid pump 40 detected by the pump drive detecting part 41.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a foaming agent adding device for adding a foaming agent to a liquid, a spray foaming machine, a foaming agent adding method, and a foam manufacturing method. [Background technology]

[0002] Conventionally, a widely known construction method involves mixing polyol and isocyanate on-site onto the roof, wall, floor, etc. of a building or structure, and then spraying and foaming the mixture to form polyurethane foam. One known method for enhancing the workability of polyurethane foam is, for example, adding a blowing agent as a third component when mixing two components, polyol and isocyanate (hereinafter referred to as the "froth method"). In the froth method, a blowing agent flow path connected to a liquid flow path for supplying polyol or isocyanate is provided, and a blowing agent addition device is generally used that adds a blowing agent such as carbon dioxide from a tank or the like to the polyol or isocyanate in the liquid flow path via the blowing agent flow path. The polyol or isocyanate to which a blowing agent such as carbon dioxide has been added in the blowing agent addition device is further mixed with the isocyanate or polyol and then discharged to the outside.

[0003] The liquid in the liquid flow path of a foaming agent addition device is generally supplied under pressure, and the foaming agent can be stably mixed with the liquid by being pressurized to a pressure higher than the liquid pressure in the liquid flow path and then added to the liquid flow path. Therefore, a device is used that measures the liquid pressure in the liquid flow path and the foaming agent pressure in the foaming agent flow path, and opens an on-off valve to add the foaming agent to the liquid when the foaming agent pressure is higher than the liquid pressure (see, for example, Patent Document 1). Also disclosed is a device that heats a foaming agent container to increase the foaming agent pressure to a pressure higher than the liquid pressure in the liquid flow path without using a foaming agent pump, and controls the addition of the foaming agent to the liquid based on the differential pressure between the foaming agent pressure and the liquid pressure (see, for example, Patent Documents 2 and 3). [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Patent No. 6395556 [Patent Document 2] Patent No. 5255239 [Patent Document 3] Patent No. 5255380 Summary of the Invention [Problem to be solved by the invention]

[0005] In conventional foaming agent addition devices, the foaming agent pressure must be higher than the liquid pressure as a condition for adding the foaming agent, and therefore the addition of the foaming agent is controlled while detecting the liquid pressure in the liquid flow path. However, in conventional foaming agent addition devices, the liquid flowing through the liquid flow path is supplied in a pulsating manner by a liquid pump, and therefore the liquid pressure in the liquid flow path is easily affected by the pulsation of the liquid pump, making it difficult to control the addition of the foaming agent using a control method that responds to the liquid pressure. Furthermore, in conventional foaming agent adding devices, the amount of foaming agent added varies depending on the pressure difference between the liquid pressure and the foaming agent pressure when the on-off valve is opened to add the foaming agent to the liquid, and on the time the on-off valve is open, making it difficult to quantitatively determine the amount of foaming agent added and to adjust the amount of foaming agent added. Furthermore, carbon dioxide is often used as the foaming agent to be added from the viewpoint of cost reduction. Carbon dioxide as an additive is easily vaporized, and the pressure of carbon dioxide in the foaming agent container tends to become higher than usual, especially under high temperatures such as in summer. In conventional foaming agent adding devices, a flow path is connected from the foaming agent container to an on-off valve that controls the amount of foaming agent added to the liquid. Therefore, when the pressure of the foaming agent in the foaming agent container becomes high, the pressure difference between the foaming agent and the liquid pressure in the liquid flow path increases, making it easy for excessive foaming agent to be added, and making it difficult to adjust the amount of foaming agent added.

[0006] Therefore, an object of the present invention is to provide a foaming agent addition device, a spray foaming machine, a foaming agent addition method, and a foam manufacturing method that are capable of stably supplying a foaming agent to a liquid flowing through a liquid flow path without being affected by the pulsation of the liquid pump by controlling the foaming agent in response to the drive of the liquid pump rather than the liquid pressure in the liquid flow path. Another object of the present invention is to provide a foaming agent adding device, a spray foaming machine, a foaming agent adding method, and a foam manufacturing method that are capable of supplying a predetermined amount (predetermined volume) of foaming agent to a liquid flowing through a liquid flow path by utilizing a foaming agent metering pump that supplies a predetermined amount of foaming agent to the liquid flowing through the liquid flow path. Another object of the present invention is to provide a foaming agent adding device, a spray foaming machine, a foaming agent adding method, and a foam manufacturing method that can prevent excessive foaming agent from being added to a liquid by providing a flow rate adjustment mechanism that adjusts the flow rate of the foaming agent in a flow path from a foaming agent container to an on-off valve that controls the amount of foaming agent added to the liquid. [Means for solving the problem]

[0007] The present invention is summarized as follows [1] to

[17] . [1] A foaming agent addition device for adding a foaming agent to a liquid supplied by a liquid pump and flowing through a liquid flow path, comprising: a pump operation detection unit that detects operation of the liquid pump; a foaming agent container that stores the foaming agent; a foaming agent flow path through which the foaming agent supplied from the foaming agent container flows; a foaming agent metering pump that supplies a predetermined amount of the foaming agent to the liquid flow path; an on-off valve that controls the addition of the foaming agent to the liquid by opening and closing; and an on-off valve control unit that controls the opening and closing of the on-off valve in accordance with the operation status of the liquid pump detected by the pump operation detection unit. [2] The blowing agent addition device according to [1], wherein the on-off valve control unit opens the on-off valve when the drive position of the liquid pump reaches a predetermined position. [3] The foaming agent addition device according to [1] or [2], wherein the on-off valve control unit controls the on-off valve to close when the predetermined amount of the foaming agent has been added to the liquid. [4] The blowing agent adding device according to any one of [1] to [3], wherein the blowing agent metering pump is a positive displacement pump. [5] The blowing agent adding device according to any one of [1] to [4], wherein the blowing agent metering pump is a reciprocating pump. [6] The blowing agent addition device according to any one of [1] to [5], further comprising a blowing agent pressure pump, provided upstream of the blowing agent metering pump, for increasing the pressure of the blowing agent flowing through the blowing agent flow path to a predetermined pressure. [7] The blowing agent adding device according to [6], wherein the blowing agent pressurizing pump is a pump that continuously pressurizes the blowing agent. [8] The blowing agent adding device according to [6] or [7], wherein the blowing agent pressure pump is either an axial pump or a gear pump. [9] The blowing agent addition device according to any one of [6] to [8], further comprising a blowing agent pressure gauge between the blowing agent pressure pump and the blowing agent metering pump, for measuring the pressure of the blowing agent flowing through the blowing agent flow path, wherein the blowing agent pressure pump pressurizes the blowing agent until the pressure value measured by the blowing agent pressure gauge reaches the predetermined pressure.

[10] The blowing agent adding device according to any one of [1] to [9], wherein the liquid contains a polyol or a polyisocyanate.

[11] The blowing agent adding device according to any one of [1] to

[10] , wherein the blowing agent contains carbon dioxide.

[12] The foaming agent addition device according to any one of [1] to

[11] , further comprising a liquid flow path pressure gauge that measures the pressure of the liquid flowing through the liquid flow path, and the on-off valve control unit controls the on-off valve not to open when the liquid pressure measured by the liquid flow path pressure gauge is lower than a predetermined value.

[13] The blowing agent addition device according to any one of [1] to

[12] , further comprising a flow rate adjusting mechanism for adjusting the flow rate of the blowing agent in the blowing agent flow path upstream of the on-off valve.

[14] The blowing agent addition device according to

[13] , wherein the flow rate adjustment mechanism is a second on-off valve that controls the flow rate of the blowing agent flowing in the blowing agent flow path upstream of the on-off valve by opening and closing.

[15] A foam spray machine equipped with the foaming agent adding device according to any one of [1] to

[14] .

[16] A foaming agent adding method for adding a foaming agent to a liquid supplied by a liquid pump and flowing through a liquid flow path, comprising the steps of: detecting the operation of the liquid pump with a pump operation detection unit; supplying a foaming agent contained in a foaming agent container to a foaming agent flow path; metering a predetermined amount of the foaming agent to be supplied to the liquid flow path with a foaming agent metering pump; and controlling the addition of the foaming agent to the liquid by opening and closing an on-off valve, wherein in the step of controlling the addition of the foaming agent by opening and closing the on-off valve, an on-off valve control unit controls the opening of the on-off valve in accordance with the operation status of the liquid pump detected by the liquid pump operation detection unit.

[17] The blowing agent adding method according to

[16] , comprising the step of increasing the pressure of the blowing agent flowing through the blowing agent flow path to a predetermined pressure with a blowing agent pressure pump, and adjusting the pressure in the blowing agent metering pump to the predetermined pressure, before the step of metering the blowing agent with the blowing agent metering pump.

[18] The method includes a step of measuring the pressure of the liquid flowing through the liquid flow path with a liquid pressure gauge, The foaming agent adding method according to

[16] or

[17] , wherein in the step of controlling the addition of the foaming agent by opening and closing an on-off valve, when the pressure measured by the liquid pressure gauge is lower than a predetermined value, the on-off valve is controlled not to open.

[19] A method for producing a foam, comprising the step of adding a foaming agent to a liquid flowing through a liquid flow path by the method for adding a foaming agent according to any one of

[16] to

[18] . [Effects of the Invention]

[0008] In the present invention, by controlling the blowing agent in accordance with the driving state of the liquid pump rather than the liquid pressure in the liquid flow path, it is possible to provide a blowing agent adding device, a spray foaming machine, a blowing agent adding method, and a foam manufacturing method that can stably supply a blowing agent to the liquid flowing through the liquid flow path without being affected by the pulsation of the liquid pump. Furthermore, the present invention can provide a foaming agent adding device, a foaming machine for spraying, a foaming agent adding method, and a foam manufacturing method that are capable of supplying a predetermined amount (predetermined volume) of foaming agent to a liquid flowing through a liquid flow path by utilizing a foaming agent metering pump that supplies a predetermined amount of foaming agent to a liquid flowing through a liquid flow path. Furthermore, the present invention provides a foaming agent adding device, a foaming machine for spraying, a foaming agent adding method, and a foam manufacturing method, which are capable of preventing excessive foaming agent from being added to a liquid by providing a flow rate adjusting mechanism for adjusting the flow rate of the foaming agent in a flow path from a foaming agent container to an on-off valve that controls the amount of foaming agent added to the liquid. [Brief explanation of the drawings]

[0009] [Figure 1] 1 is a schematic diagram showing a foaming agent addition device according to a first embodiment of the present invention. [Figure 2] FIG. 1 is a schematic diagram showing a foam spraying machine according to a first embodiment of the present invention. [Figure 3] 1 is a flowchart showing a foaming agent addition method according to a first embodiment of the present invention. [Figure 4] FIG. 4 is a schematic view showing a foaming agent adding device according to a second embodiment of the present invention. [Figure 5] 4 is a flowchart showing a foaming agent addition method according to a second embodiment of the present invention. [Figure 6] FIG. 10 is a schematic diagram (part 1) showing a foaming agent adding device according to a third embodiment of the present invention. [Figure 7] FIG. 10 is a schematic diagram (part 2) showing the foaming agent adding device according to the third embodiment of the present invention. [Figure 8] 10 is a flowchart (part 1) showing a method for adding a foaming agent according to a third embodiment of the present invention. [Figure 9] 10 is a flowchart (part 2) showing the foaming agent adding method according to the third embodiment of the present invention. [Figure 10] 10 is a flowchart illustrating a method for adding a foaming agent according to another embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0010] [First embodiment] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. The foaming agent adding device 10 according to the first embodiment is a device for mixing a foaming agent E into a liquid L1 flowing in a liquid flow path 30, as shown in FIG.

[0011] <Liquid> The liquid L1 is not particularly limited, but is preferably a foam raw material, which is a raw material for a foam. The blowing agent adding device 10 can produce a foam by mixing the foam raw material liquid L1 with a blowing agent E. Examples of foams include polyurethane foam, phenol foam, and polystyrene foam. Therefore, the liquid L1 can be any material that can be used as a raw material for these foams. Among the foams listed above, polyurethane foam is preferred from the viewpoints of ease of production, curing speed, and foamability. Furthermore, it is more preferable that the polyurethane foam is a rigid polyurethane foam. The use of a rigid polyurethane foam tends to improve self-adhesion, heat insulation, mechanical strength, and the like.

[0012] A urethane resin composition for forming polyurethane foam is generally prepared by mixing a first liquid containing a polyol with a second liquid containing a polyisocyanate. The urethane resin composition is foamed and cured by a blowing agent E mixed into the composition to form a polyurethane foam. The blowing agent E may be mixed into either the first liquid or the second liquid, but is preferably mixed into the first liquid from the standpoint of stability, etc. That is, the blowing agent adding device 10 preferably mixes the liquid blowing agent E into a liquid containing either a polyol or a polyisocyanate (first liquid or second liquid), but more preferably mixes the blowing agent E into a liquid containing a polyol (first liquid). The liquid (first liquid) containing the polyol is preferably a polyol composition containing a catalyst and a foam stabilizer in addition to the polyol, and may further contain a blowing agent. The blowing agent previously contained in the first liquid (polyol composition) in this way is also called an "internal blowing agent" to distinguish it from the above-mentioned blowing agent E.

[0013] The urethane resin composition for forming the polyurethane foam may contain a filler. When the urethane resin composition contains a filler, the flame retardancy of the resulting polyurethane foam is improved. It is preferable to mix the filler with a liquid (one-component or two-component) containing either a polyol or a polyisocyanate, but it is more preferable to mix the filler with a liquid (one-component) containing a polyol. The filler is contained as a solid component in the liquid raw material composition, and is generally a component present in the raw material composition in the form of particles or powder. The filler may be any component that is solid at room temperature (23° C.) and normal pressure (1 atmosphere) and does not dissolve in the liquid raw material composition. Examples of the filler include solid flame retardants and anti-settling agents. Examples of the solid flame retardant include red phosphorus-based flame retardants, boron-containing flame retardants, bromine-containing flame retardants, phosphate-containing flame retardants, chlorine-containing flame retardants, antimony-containing flame retardants, metal hydroxides, and needle-shaped fillers, and the solid flame retardant is preferably at least one selected from the group consisting of red phosphorus-based flame retardants, boron-containing flame retardants, and bromine-containing flame retardants.

[0014] In addition to the curing catalyst, foam stabilizer, and filler, the polyol composition may contain various additives such as a flame retardant (solid flame retardant, liquid flame retardant), an antioxidant, a heat stabilizer, a metal inhibitor, an antistatic agent, a crosslinking agent, a lubricant, a softener, and a pigment.

[0015] <Foaming agent> The internal blowing agent is not particularly limited, and examples thereof include hydrofluoroolefins (HFOs), hydrofluorocarbons (HFCs), hydrocarbons, and diethyl ether. Examples of the hydrofluoroolefins (HFOs) used as internal blowing agents include fluoroalkenes having approximately 3 to 6 carbon atoms, preferably 3 or 4 carbon atoms, and more preferably 3 carbon atoms. The hydrofluoroolefins may be hydrochlorofluoroolefins having chlorine atoms. Examples of hydrofluorocarbons (HFCs) include hydrofluorocarbons having approximately 1 to 4 carbon atoms, and the hydrofluorocarbons may have chlorine atoms. Examples of hydrocarbons include hydrocarbons having 2 to 5 carbon atoms. As hydrocarbons having 2 to 5 carbon atoms, hydrocarbons having 3 or 4 carbon atoms are preferred, and LPG containing propane and butanes as main components can also be used.

[0016] On the other hand, the blowing agent E may be any blowing agent that can be used for foaming using the froth method, and may be a blowing agent that becomes a gas at room temperature (23°C) and normal pressure (1 atm), preferably one with a boiling point of less than 0°C at normal pressure. The blowing agent E is not particularly limited, but examples include hydrofluoroolefin (HFO) and carbon dioxide. The froth method involves mixing blowing agent E, which becomes a gas at room temperature and normal pressure, with a foam raw material such as a liquid (one-component) containing polyol to foam the mixture. The liquid containing polyol may already contain a blowing agent (internal blowing agent), and in such cases, blowing agent E functions as a foaming assistant to improve foamability and workability.

[0017] In the present invention, it is preferable to use carbon dioxide as the blowing agent E. Carbon dioxide can be mixed into the liquid L1 in a liquid state by pressurization, as described below, thereby improving its miscibility with the liquid L1. Furthermore, the use of carbon dioxide reduces the environmental impact. However, carbon dioxide may be mixed into the liquid L1 in a supercritical or subcritical state. When carbon dioxide is used as the blowing agent E, carbon dioxide may be used alone, or a mixed gas of hydrofluoroolefin (HFO) and carbon dioxide may be used.

[0018] (Foaming agent adding device) The blowing agent addition device 10 will now be described in more detail. The foaming agent addition device 10 includes a pump drive detection unit 41, a foaming agent container 11 that stores a foaming agent E, a foaming agent flow path 12, a foaming agent metering pump 50, an on-off valve 60, and an on-off valve control unit 61. The foaming agent addition device 10 is a device for adding the foaming agent E to the liquid L flowing through the liquid flow path 30.

[0019] A liquid pump 40 is connected to the liquid flow path 30, and the liquid L1 filled in a container (not shown) such as a drum can is supplied to the liquid flow path 30 by the liquid pump 40 and delivered therefrom. The liquid pump 40 may be either a positive displacement or non-positive displacement pump, but is preferably a positive displacement pump. Positive displacement pumps have large pulsations, but the present invention makes it possible to stably supply the foaming agent even with large pulsations. The positive displacement pump may be either a reciprocating or rotary pump, but reciprocating pumps such as syringe pumps with a sealing mechanism on the drive side and plunger pumps with a sealing mechanism on the cylinder side are preferred. The positive displacement pump may also be a variable displacement or fixed displacement pump. Depending on the type of pump, liquid pump 40 periodically drives various drive parts such as a cylinder, gear, vane, and plunger by rotational or linear motion to repeatedly discharge fluid. For example, in a syringe pump, the cylinder repeatedly moves linearly between the bottom dead center and the top dead center.

[0020] The liquid L1 flowing through the liquid flow path 30 is pressurized to the discharge pressure. A liquid flow path pressure gauge 31 is connected to the liquid flow path 30, and the liquid pressure LP of the liquid L1 flowing through the liquid flow path 30 is measured by the liquid flow path pressure gauge 31. From the viewpoint of operational stability, the pressure of the liquid L1 flowing through the liquid flow path 30 is preferably 5 to 10 MPa.

[0021] The liquid pump 40 is provided with a pump drive detection unit 41. The pump drive detection unit 41 detects the drive of the liquid pump 40. The pump drive detection unit 41 transmits pump drive information DI relating to the detected drive of the liquid pump 40 to the on-off valve control unit 61. As described above, liquid pump 40 periodically drives the drive unit by reciprocating or rotating motion, and pump drive detector 41 can detect the position to which the drive unit is driven during that period. For example, a reciprocating pump such as a syringe pump reciprocates between bottom dead center and top dead center, and pump drive detector 41 can detect the position to which the pump's drive unit is driven during that reciprocating motion. Similarly, with a rotary pump, it is sufficient to detect the position to which the drive unit is driven during rotational motion. A sensor is used as pump drive detection unit 41. Specific examples of the sensor include a laser distance sensor that measures the drive position of the drive unit of liquid pump 40 as a distance, and a position sensor that detects that the drive unit of liquid pump 40 has reached a certain position (for example, top dead center or bottom dead center).

[0022] A pressure-resistant container, such as a known gas cylinder, is used as the foaming agent container 11. The foaming agent container 11 preferably stores the foaming agent E in a pressurized state. The foaming agent container 11 may also be equipped with a heater (not shown), and heating the foaming agent container 11 with the heater increases the internal pressure of the foaming agent container 11, making it easier to deliver the foaming agent E to the foam flow path 12 in a pressurized state.

[0023] As described above, the foaming agent flow path 12 is a path that supplies the foaming agent E from the foaming agent container 11 to the liquid flow path 30. The foaming agent flow path 12 may be equipped with a flow path cooling device (not shown) made up of a coolant or the like, which can cool the foaming agent E flowing through the foaming agent flow path 12. By cooling the foaming agent E in the foaming agent flow path 12, the foaming agent E becomes less likely to vaporize in each foaming agent flow path, and is more likely to be mixed with the liquid L in a liquid state. The temperature inside the blowing agent channel 12 is preferably maintained in the range of -20 to 20°C. The pressure inside the blowing agent channel 12 is preferably adjusted so that the pressure of the blowing agent E sent to the liquid channel 30 and the blowing agent metering pump 50 is in the range of 5 to 12 MPa. By adjusting the blowing agent E in the blowing agent channel 12 to be within the above range, it is easily supplied in a liquid state to the liquid channel 30. When the blowing agent E is supplied in a liquid state to the liquid channel 30, it is easily mixed with the liquid L1.

[0024] A foaming agent metering pump 50 is provided midway along the foaming agent flow path 12. The foaming agent metering pump 50 receives the foaming agent E flowing through the foaming agent flow path 12 and meters it, thereby supplying a predetermined amount (predetermined volume) of foaming agent E to the liquid flow path 30. The foaming agent metering pump 50 may be either a non-positive displacement or a positive displacement pump, but a positive displacement pump is preferred because it is easy to supply a constant amount of foaming agent and to vary the volume. As the positive displacement pump, a reciprocating pump such as a syringe pump or a plunger pump is preferred, and among them, a syringe pump is preferred because it has high metering accuracy for one shot amount and is also excellent for high-pressure transport. The blowing agent metering pump 50 may be of a variable displacement type or a fixed displacement type, but a variable displacement type is preferred. By varying the volume, it is possible to vary the predetermined amount of blowing agent E to be supplied. The volume variable control of the blowing agent metering pump 50 may be implemented by a known control device equipped with a CPU (microprocessor), memory, input ports, output ports, etc., and may be implemented by a personal computer or may be manually variable.

[0025] An on-off valve 60 is provided in the foaming agent flow path 12 downstream of the foaming agent metering pump 50. The on-off valve 60 controls the addition of the foaming agent E to the liquid L1 by opening and closing. When the on-off valve 60 is opened, the foaming agent E flowing through the foaming agent flow path 12 is supplied to the liquid L1. When the on-off valve 60 is closed, the supply of the foaming agent E to the liquid L1 is stopped. The on-off valve 60 is configured, for example, by a solenoid valve.

[0026] An on-off valve control unit 61 is connected to the on-off valve 60, which controls the opening and closing of the on-off valve 60. The on-off valve control unit 61 receives pump drive information DI of the liquid pump 40 from the pump drive detection unit 41, and controls the on-off valve 60 to open in accordance with the drive status of the liquid pump 40. Specifically, the on-off valve control unit 61 controls the on-off valve 60 to open when the drive position of the liquid pump 40 reaches a predetermined position (predetermined position). When the on-off valve 60 is opened, a predetermined amount of foaming agent E is supplied to the liquid flow path 30, as described above. As described above, the liquid pump 40 is driven periodically, and when the position (drive position) of the drive unit of the liquid pump 40 reaches a predetermined position and the on-off valve 60 opens, the foaming agent E is supplied to the liquid L at the same timing in that period. Here, the liquid pump 40 supplies the liquid L to the flow path 30 with approximately the same behavior (i.e., approximately the same pressure and the same flow rate) at the same timing in the period, so when a predetermined amount (i.e., a constant amount) of foaming agent is supplied to the flow path 30 at that timing, the supply of the foaming agent E to the liquid L becomes stable. In other words, in this embodiment, rather than controlling according to the liquid pressure in the liquid flow path 30, the opening / closing valve 60 is controlled to open when the drive part of the liquid pump 40 reaches a predetermined position (specified position), thereby enabling a stable supply of foaming agent E to the liquid L. Furthermore, by controlling the on-off valve 60 to open when the predetermined position is reached and then to close, the on-off valve is repeatedly opened and closed.

[0027] The predetermined position is not particularly limited, but when the liquid pump 40 is a reciprocating pump such as a syringe pump, it may be the top dead center, the bottom dead center, or a specific position therebetween, but is preferably either the top dead center or the bottom dead center. When the top dead center or the bottom dead center is reached, the pressure of the liquid L supplied to the liquid flow path 30 thereafter decreases. Therefore, if the predetermined position is the top dead center or the bottom dead center, the foaming agent E will be supplied at the timing when the pressure decreases, making it easier to mix the foaming agent E with the liquid L. Furthermore, in a reciprocating pump, the predetermined position does not have to be one location during one cycle in which the drive unit moves from top dead center to bottom dead center and then moves from bottom dead center to top dead center, but may be two or more locations; for example, both the top dead center and the bottom dead center may be set as predetermined positions. In addition, in the case of a rotary pump, the predetermined position may be set to, for example, a specific position n° (where n is any position from 0 to 360) within the rotation period (0 to 360°).

[0028] The on-off control unit 61 may control the on-off valve 60 to open once per cycle of the drive unit of the liquid pump 40, or may control the on-off valve 60 to open once per two cycles, or may control the on-off valve 60 to open once per n cycles (n is an integer of 3 or more). Furthermore, the on-off control unit 61 may control the on-off valve 60 to open multiple times per cycle of the drive unit of the liquid pump 40, for example, may control the on-off valve 60 to open once per half cycle. Note that opening the valve once per cycle means, for example, that if the top dead center is set to a predetermined position, the valve opens every time the top dead center is reached. The same applies to the bottom dead center. Furthermore, for example, if the predetermined position is a specific position between top dead center and bottom dead center, there is no need to open the on-off valve 60 in any case where the drive unit is at the predetermined position, and it is preferable to control the valve to open either when the drive unit moves from top dead center to bottom dead center or from bottom dead center to top dead center. Furthermore, in a double-acting pump having multiple drive units (for example, a double-acting plunger pump), the on-off valve may be controlled based on the drive of any one of the drive units, or may be controlled based on the drive of multiple drive units. When controlled based on the drive of multiple drive units, for example, the valve may be opened each time the drive unit of each drive unit is positioned at a predetermined position.

[0029] The on-off valve control unit 61 controls to close the on-off valve 60 when a predetermined amount of foaming agent E has been added from the foaming agent metering pump 50 to the liquid L1 in the liquid flow path 30. In this way, by closing the on-off valve 60 when a predetermined amount of foaming agent E has been added from the foaming agent metering pump 50 to the liquid L1 in the liquid flow path 30, it is possible to stably supply a predetermined amount (predetermined volume) of foaming agent E without adding excess foaming agent E to the liquid L1 flowing through the liquid flow path 30. Here, the on-off valve control unit 61 may measure the amount of foaming agent E delivered from the foaming agent metering pump 50, and when the delivered amount reaches a specified amount, determine that a predetermined amount of foaming agent E has been added to the liquid L1 and close the valve, or may close the valve after a certain time has elapsed since the valve was opened, thereby adding a predetermined amount of foaming agent E to the liquid L1. Moreover, the on-off valve control unit 61 may detect the operation of the foaming agent metering pump 50 and close the valve when it determines that the predetermined amount of foaming agent E metered by the foaming agent metering pump 50 has been added in its entirety.

[0030] The on-off valve control unit 61 also receives the liquid pressure LP of the liquid L1 flowing through the liquid flow path 30 measured by the liquid flow path pressure gauge 31, and controls the on-off valve 60 not to open when the measured pressure LP is lower than a predetermined value. By controlling the on-off valve control unit 61 not to open the on-off valve 60 when the measured pressure LP is lower than the predetermined value, it is possible to prevent the addition of the foaming agent E when the amount of liquid L1 flowing through the liquid flow path 30 is small. Examples of when the measured pressure LP is lower than the predetermined value include when the foaming agent addition device 10 is started up or stopped, and when the liquid flow path 30 is clogged. The predetermined value of the measured pressure LP is preferably lower than the pulsating fluctuation of the liquid pump 40, and may be set to, for example, 3 MPa.

[0031] The amount of blowing agent E supplied to the liquid L1 flowing through the liquid flow channels 30 is preferably 0.05 to 5.0%, more preferably 0.1 to 4.5%, and even more preferably 0.15 to 4.0%, in terms of volume ratio when blowing agent E is added to liquid L1. By keeping the amount of blowing agent E supplied within the above range, it becomes possible to incorporate an appropriate amount of blowing agent into polyol, etc., and to appropriately foam the polyurethane foam. The amount of blowing agent E supplied to the liquid L1 flowing through the liquid flow channels 30 is preferably adjusted depending on the blowing agent E used. For example, if the blowing agent E is carbon dioxide, the amount is preferably 0.2 to 2.0%, and if the blowing agent E is a mixed gas of hydrofluoroolefin and carbon dioxide, the amount is preferably 0.4 to 3.5%.

[0032] (Spray foaming machine) As shown in FIG. 2, the spray foaming machine 1 is equipped with the above-described blowing agent adding device 10. The spray foaming machine 1 in this embodiment is a device for forming polyurethane foam. However, the spray foaming machine in the present invention is not limited to a device for forming polyurethane foam, and may be a device for forming other foams. As described above, the polyurethane foam is preferably a rigid polyurethane foam. Furthermore, the spray foaming machine 1 is an on-site spray foaming machine, and is a device that is brought to a construction site where polyurethane foam is to be applied and forms polyurethane foam at the construction site.

[0033] The spray foaming machine 1 further comprises the above-mentioned liquid flow path 30 (hereinafter also referred to as the first liquid flow path 30) and liquid pump 40 (hereinafter also referred to as the first liquid pump 40) in addition to the blowing agent adding device 10. The spray foaming machine 1 also comprises a second liquid flow path 32 through which a liquid L2 separate from the above-mentioned liquid L1 flows, and a liquid pump 42 (hereinafter also referred to as the second liquid pump 42) that delivers the liquid L2 to the second liquid flow path 32. The first and second liquid pumps 40, 42 are connected to a liquid container (not shown) such as a drum, and deliver the liquids L1, L2 sucked from the liquid container to the first and second liquid flow paths 30, 32, respectively.

[0034] As described above, polyurethane foam can be formed by mixing a first liquid containing a polyol and a second liquid containing a polyisocyanate, followed by foaming and curing. Liquid L1 flowed through first liquid flow path 30 is one of the first liquid or the second liquid, and liquid L2 flowed through second liquid flow path 32 is the other of the first liquid or the second liquid. However, it is preferable that liquid L1 is the first liquid containing a polyol and liquid L2 is the second liquid containing a polyisocyanate.

[0035] The spray foaming machine 1 includes a spray gun 70. The spray gun 70 includes a discharge section 70A and a mixing section 70B. The first and second liquid flow paths 30, 35 merge in the mixing section 70B. The first and second liquids flowing through the first and second liquid flow paths 30, 32 are mixed in the mixing section 70B, and the resulting mixture (urethane resin composition) is sprayed from the discharge section 70A. In this case, the urethane resin composition may be sprayed onto the target surface, such as the roof, wall, or floor of a building or structure. The sprayed urethane resin composition foams and hardens to become polyurethane foam. The polyurethane foam is used, for example, as a heat insulating material.

[0036] In the above-described spray foaming machine 1, liquid L1, which is appropriately mixed with foaming agent E using the foaming agent adding device 10, is used as a raw material for polyurethane foam, so that polyurethane foam with good foamability and sprayability can be formed.

[0037] [How to add foaming agent] A method for adding the foaming agent E to the liquid L1 in the foaming agent adding device 10 in this embodiment will be described in detail with reference to the flowchart in Fig. 3. Note that the following describes the pressure, temperature, etc., taking the case where the foaming agent E is carbon dioxide as a specific example, but when the foaming agent E is another substance, the pressure, temperature, etc. may be set according to the properties of that substance.

[0038] First, in step S1, the operation of the liquid pump 40 is detected by the pump operation detection unit 41. Specifically, the pump operation detection unit 41 detects the operation position of the drive unit of the liquid pump 40, which is used to pressurize the liquid L1 flowing through the liquid flow path 30, and obtains pump operation information DI related to the detected operation of the liquid pump 40. The pump operation detection unit 41 is preferably a laser appliqué sensor that is capable of continuously measuring the operation position of the drive unit of the liquid pump 40. The obtained pump operation information DI is sent to the on-off valve control unit 61.

[0039] Next, in step S2, the blowing agent E contained in the blowing agent container 11 is supplied to the blowing agent passage 12. The temperature of the blowing agent E supplied to the blowing agent passage 12 is preferably maintained in the range of -20 to 20°C. In addition, the pressure inside the blowing agent passage 12 is preferably adjusted so that the pressure of the blowing agent E sent to the blowing agent metering pump 50 is in the range of 5 to 12 MPa.

[0040] Next, in step S3, a predetermined amount of foaming agent E to be supplied to the liquid flow path 30 is metered by the foaming agent metering pump 50.

[0041] Next, in step S4, the addition of the foaming agent E to the liquid L1 is controlled by opening and closing the on-off valve 60. In the process of controlling the addition of foaming agent E by opening and closing on-off valve 60, on-off valve control unit 61 controls to open on-off valve 60 in accordance with the driving status of liquid pump 40 detected by pump drive detection unit 41. Specifically, on-off valve control unit 61 receives pump drive information DI of liquid pump 40 from pump drive detection unit 41, and controls to open on-off valve 60 when the driving position of the drive unit in liquid pump 40 reaches a predetermined position (predetermined position).

[0042] However, the above steps are merely an example of control, and may be performed in any order as long as it is within the scope of the present invention. For example, step S1 may be performed simultaneously with step S2 or step S3, or may be performed after step S2 or step S3.

[0043] [Foam manufacturing method] A foam can be formed by using the blowing agent addition apparatus 10 according to the first embodiment of the present invention. The method for producing a polyurethane foam in this embodiment includes the above steps S1 to S4, and further includes a step of adding blowing agent E to liquid L1 flowing through liquid flow path 30 in the blowing agent addition apparatus 10, mixing the liquid L1 and liquid L2 in the spray foaming machine 1 to prepare a mixture, and discharging the mixture from the discharge device. Specifically, the method includes the following steps (1) to (5). (1) A step of detecting the operation of the liquid pump 40 by the pump operation detection unit 41 (2) Step of supplying the foaming agent E contained in the foaming agent container 11 to the foaming agent flow path 12 (3) A step of measuring a predetermined amount of foaming agent E to be supplied to the liquid flow path 30 by the foaming agent metering pump 50. (4) A step of controlling the addition of the foaming agent E to the liquid L1 by opening and closing the on-off valve 60. (5) A step of adding a foaming agent E to the liquid L1 flowing through the liquid flow path 30 in the foaming agent adding device 10, mixing the liquid L1 and the liquid L2 in the foam spraying machine 1, and discharging the mixture prepared from the discharging device.

[0044] As described above, in this embodiment, by providing pump drive detection unit 41 that detects the drive of liquid pump 40, the drive status of liquid pump 40 is detected and control is performed in accordance with the drive status of liquid pump 40. In this way, by performing control in accordance with the drive status of liquid pump 40 rather than control in accordance with the liquid pressure within liquid flow path 30, foaming agent E can be stably supplied to liquid L1 flowing through liquid flow path 30 without being affected by pulsation of liquid pump 40. In addition, in this embodiment, by using the foaming agent metering pump 50 that supplies a predetermined amount of foaming agent E to the liquid L1 flowing through the liquid flow path 30, a predetermined amount (predetermined volume) of foaming agent can be stably supplied to the liquid L1 flowing through the liquid flow path 30.

[0045] [Second embodiment] Next, a second embodiment of the present invention will be described in detail. The second embodiment differs from the first embodiment in that a foaming agent pressure pump 80 is provided in the foaming agent passage 12, as shown in FIG. 4. The differences between the first embodiment and the second embodiment will be described below. Furthermore, parts whose description will be omitted are the same as those in the first embodiment. Furthermore, in the following description, parts having the same configuration as those in the first embodiment will be denoted by the same reference numerals.

[0046] The foaming agent pressure pump 80 is provided upstream of the foaming agent metering pump 50 in the foaming agent flow path 12. The pressure of the foaming agent E flowing through the foaming agent flow path 12 is prone to change, such as being reduced by the suction of the foaming agent metering pump 50, and these pressure changes can cause the foaming agent E to vaporize or flow back. Therefore, the foaming agent pressure pump 80 pressurizes the foaming agent E flowing through the foaming agent flow path 12 to a predetermined pressure, making it possible to stably supply a constant amount of foaming agent E to the foaming agent metering pump 50 provided downstream. From the viewpoint of preventing the vaporization and backflow of the foaming agent E, the predetermined pressure is preferably 5 to 12 MPa. From the viewpoint of being able to supply the blowing agent E to the blowing agent metering pump 50 at a constant rate, the blowing agent pressure pump 80 is preferably a pump that can pressurize and supply the blowing agent E at a stable pressure, more preferably a pump that can continuously pressurize the blowing agent, and among these, it is preferably either an axial pump or a gear pump.

[0047] As shown in FIG. 4, the blowing agent adding device 10 of this embodiment may include a blowing agent pressure gauge 81 between the blowing agent pressure pump 80 and the blowing agent metering pump 50, which measures the pressure of the blowing agent E flowing through the blowing agent passage 12. In this case, the foaming agent E supplied to the foaming agent metering pump 50 may be pressurized by the foaming agent pressure pump 80 until the pressure measured by the foaming agent pressure gauge 81 reaches a predetermined pressure.

[0048] The blowing agent pressure pump 80 is preferably controlled by a pump control unit (not shown). The pressure value measured by the blowing agent pressure gauge 81 is sent to the pump control unit, which controls the blowing agent pressure pump 80 to continue supplying the blowing agent E to the blowing agent metering pump 50 when the pressure value is less than a predetermined pressure. When the pressure value reaches a predetermined pressure, the pump control unit controls the blowing agent pressure pump 80 to stop supplying the blowing agent E to the blowing agent metering pump 50. As described above, by controlling the pressure of the foaming agent E to be increased to a predetermined pressure using the foaming agent pressure gauge 81, it becomes possible to more stably supply the foaming agent E to the foaming agent metering pump 50 provided downstream.

[0049] As shown in the flowchart of FIG. 5, the method for adding the foaming agent E to the liquid L1 in the foaming agent adding device 10 in this embodiment includes a step of increasing the pressure of the foaming agent E flowing through the foaming agent flow path 12 to a predetermined pressure by the foaming agent pressure pump 80 before a step (step S3) of metering a predetermined amount of foaming agent E to be supplied to the liquid flow path 30 by the foaming agent metering pump 50. In the step of pressurizing the foaming agent E to a predetermined pressure by the foaming agent pressure pump 80, the pressure of the foaming agent E flowing through the foaming agent flow path 12 may be measured by a foaming agent pressure gauge 81 provided between the foaming agent pressure pump 80 and the foaming agent metering pump 50. By measuring the pressure by the foaming agent pressure gauge 81, the accuracy of pressurizing the foaming agent E to a predetermined pressure by the foaming agent pressure pump 80 can be improved, and the foaming agent E can be supplied more stably to the foaming agent metering pump 50 provided downstream.

[0050] As described above, in this embodiment, by providing the foaming agent pressure pump 80, a constant amount of foaming agent E can be stably supplied to the foaming agent metering pump 50, and the foaming agent metering pump 50 can stably supply a predetermined amount (predetermined volume) of foaming agent to the liquid L1 flowing through the liquid flow path 30.

[0051] However, the above steps are merely an example of control, and may be performed in any order as long as it is within the scope of the present invention. For example, step S1 may be performed simultaneously with step S2, step S10, or step S3, or may be performed after step S2, step S10, or step S3.

[0052] [Third embodiment] Next, a third embodiment of the present invention will be described in detail. The third embodiment differs from the first and second embodiments in that, as shown in FIGS. 6 and 7, a flow rate adjusting mechanism 90 for adjusting the flow rate of the foaming agent E is provided in the foaming agent flow path 12 upstream of the on-off valve 60. Differences between the first and second embodiments and the third embodiment will be described below. Parts for which description will be omitted are the same as those in the first and second embodiments. In the following description, members having the same configuration as those in the first and second embodiments will be denoted by the same reference numerals.

[0053] The flow rate adjustment mechanism 90 adjusts the flow rate of the blowing agent E to the blowing agent metering pump 50. The flow rate adjustment mechanism 90 can be a second on-off valve that controls the flow rate of the blowing agent E flowing in the blowing agent flow path 12 upstream of the on-off valve 60 by opening or closing it. The flow rate adjustment mechanism 90 supplies the blowing agent E flowing in the blowing agent flow path 12 to the blowing agent metering pump 50 by opening the second on-off valve. On the other hand, the flow rate adjustment mechanism 90 stops the supply of the blowing agent E to the blowing agent metering pump 50 by closing the second on-off valve. The second on-off valve is constituted by, for example, a solenoid valve.

[0054] An on-off valve control unit 61 that controls the opening or closing of the second on-off valve is connected to the flow rate adjustment mechanism 90. The on-off valve control unit 61 controls the flow rate adjustment mechanism (second on-off valve) 90 depending on the open / closed state of the on-off valve 60. Specifically, when the on-off valve 60 is open, the flow rate adjustment mechanism 90 is closed. When the on-off valve 60 is closed, the flow rate adjustment mechanism 90 is opened to supply the blowing agent to the blowing agent metering pump 50, and then the flow rate adjustment mechanism 90 is closed before the on-off valve 60 is switched back to open or at the same time as the on-off valve 60 is switched to open. In this way, by controlling the open / close state of the flow rate adjustment mechanism 90, it is possible to control the flow path from the blowing agent container 11 to the on-off valve 60 to be prevented from being directly connected. In other words, by controlling the flow rate control mechanism 90 to prevent the flow path from being directly connected from the foaming agent container 11 to the on-off valve 60, it is possible to prevent excessive addition of foaming agent E from the foaming agent container 11 to the liquid L1 even if the foaming agent pressure in the foaming agent container 11 becomes high.

[0055] The method of adding the foaming agent E to the liquid L1 in the foaming agent adding device 10 shown in FIG. 6 of this embodiment is shown in the flowchart of FIG. 8, and the method of adding the foaming agent E to the liquid L1 in the foaming agent adding device 10 shown in FIG. 7 is shown in the flowchart of FIG. 9. 8 and 9, the method includes a step (step S30) of closing the on-off valve 60 and opening the flow rate adjustment mechanism 90 before a step (step S2) of supplying the foaming agent E contained in the foaming agent container 11 to the foaming agent flow path 12. Then, a step (step S31) of closing the flow rate adjustment mechanism 90 before a step (step S4) of controlling the addition of the foaming agent E by opening and closing the on-off valve 60 is included.

[0056] However, the steps shown in the flowcharts of Figures 8 and 9 are merely examples of control, and may be performed in any order as long as it does not deviate from the gist of the present invention. For example, in the steps shown in the flowchart of Figure 8, step S1 may be performed simultaneously with step S30, step S2, step S3, step S31, or step S4, or may be performed after step S30, step S2, step S3, step S31, or step S4. In the steps shown in the flowchart of Figure 9, step S1 may be performed simultaneously with step S30, step S2, step S10, step S3, step S31, or step S4, or may be performed after step S30, step S2, step S10, step S3, step S31, or step S4.

[0057] As described above, in this embodiment, by providing the flow rate adjustment mechanism 90, it is possible to control the connection of the flow path from the foaming agent container 11 to the on-off valve 60, and even when the foaming agent container 11 is pressurized, it is possible to adjust the differential pressure between the foaming agent E and the liquid pressure in the liquid flow path 30. By adjusting the differential pressure between the foaming agent E and the liquid pressure in the liquid flow path 30, the foaming agent metering pump 50 can stably supply a predetermined amount (predetermined volume) of foaming agent to the liquid L1 flowing through the liquid flow path 30. Note that, although an example has been described in which the flow rate adjustment mechanism 90 in this embodiment is the second on-off valve, other mechanisms may be used as long as they are capable of adjusting the flow rate of the foaming agent E.

[0058] [Other embodiments] The foaming agent adding device, the spray foaming machine, the foaming agent adding method, and the foam manufacturing method described above in relation to the respective embodiments are merely examples of the present invention, and the present invention is not limited to the configurations of the above-described embodiments. Various improvements and modifications are possible within the scope of the spirit of the present invention, and components may be added as appropriate. For example, as shown in FIG. 10, the foaming agent addition method may include a step (step S20) of measuring the pressure of the liquid L1 flowing through the liquid flow path 30 with a liquid pressure gauge 31. When step S20 is included, in a step (step S4) of controlling the addition of foaming agent E to the liquid L1 by opening and closing the on-off valve 60, the on-off valve 60 may be controlled not to open if the measured pressure LP of the liquid pressure gauge 31 is lower than a predetermined value. By including step S20 in the foaming agent addition method, when the amount of liquid L1 flowing through the liquid flow path 30 is small, such as when the foaming agent addition device 10 is started or stopped, or when the liquid flow path 30 is clogged, foaming agent E is not added at a stable rate, and therefore control can be performed to prevent addition. The predetermined value of the measured pressure LP is preferably lower than the pulsation fluctuation of the liquid pump 40, and may be set to, for example, 3 MPa.

[0059] However, step S1 does not have to be performed in this order; for example, step S1 may be performed simultaneously with step S2, step S3, or step S20, or may be performed after step S2, step S3, or step S20.

[0060] Although the foaming agent adding device 10 in each embodiment is described as being provided with the liquid pressure gauge 31, the liquid pressure gauge 31 may be omitted. [Explanation of symbols]

[0061] 1. Spray foaming machine 10. Foaming agent adding device 11 Foaming agent container 12. Foaming agent flow path 30 liquid flow path (first liquid flow path) 31 Liquid flow path pressure gauge 32 second liquid flow path 40 Liquid pump (first liquid pump) 41 Pump drive detection unit 41 42 Liquid pump (second liquid pump) 50 Foaming agent metering pump 60 On-off valve 61 On-off valve control section 70 spray gun 70A discharge part 70B Mixing section 80 Foaming agent pressure pump 81 Foaming agent pressure gauge 90 Flow rate adjustment mechanism E. Foaming Agent L1, L2 liquid

Claims

1. A foaming agent adding device for adding a foaming agent to a liquid supplied by a liquid pump and flowing through a liquid flow path, comprising: a pump operation detection unit that detects operation of the liquid pump; a foaming agent container for containing the foaming agent; a foaming agent flow path through which the foaming agent supplied from the foaming agent container flows; a blowing agent metering pump for supplying a predetermined amount of the blowing agent to the liquid flow path; an on-off valve that controls the addition of the foaming agent to the liquid by opening and closing; an on-off valve control unit that controls the on-off valve to open in accordance with the driving state of the liquid pump detected by the pump drive detection unit.

2. 2. The foaming agent adding device according to claim 1, wherein the on-off valve control unit opens the on-off valve when a drive position of the liquid pump reaches a predetermined position.

3. 3. The foaming agent adding device according to claim 1, wherein the on-off valve control unit controls the on-off valve to close when the predetermined amount of the foaming agent has been added to the liquid.

4. 4. The blowing agent adding device according to claim 1, wherein the blowing agent metering pump is a positive displacement pump.

5. 5. The blowing agent adding device according to claim 1, wherein the blowing agent metering pump is a reciprocating pump.

6. The blowing agent adding device according to any one of claims 1 to 5, further comprising a blowing agent pressurizing pump, which is provided upstream of the blowing agent metering pump, for pressurizing the pressure of the blowing agent flowing through the blowing agent flow path to a predetermined pressure.

7. 7. The blowing agent adding device according to claim 6, wherein the blowing agent pressurizing pump is a pump that continuously pressurizes the blowing agent.

8. 8. The blowing agent adding device according to claim 6, wherein the blowing agent pressure pump is either an axial pump or a gear pump.

9. a blowing agent pressure gauge for measuring the pressure of the blowing agent flowing through the blowing agent flow path is provided between the blowing agent pressure pump and the blowing agent metering pump; 9. The blowing agent adding device according to claim 6, wherein the blowing agent pressure pump pressurizes the blowing agent until a pressure value measured by a blowing agent pressure gauge reaches the predetermined pressure.

10. The blowing agent adding device according to any one of claims 1 to 9, wherein the liquid contains a polyol or a polyisocyanate.

11. The blowing agent adding device according to any one of claims 1 to 10, wherein the blowing agent includes carbon dioxide.

12. a liquid flow path pressure gauge for measuring the pressure of the liquid flowing through the liquid flow path; The foaming agent addition device according to any one of claims 1 to 11, wherein the on-off valve control unit controls the on-off valve not to open when the liquid pressure measured by the liquid flow path pressure meter is lower than a predetermined value.

13. The blowing agent addition device according to any one of claims 1 to 12, further comprising a flow rate adjusting mechanism for adjusting a flow rate of the blowing agent in the blowing agent flow path upstream of the on-off valve.

14. 14. The blowing agent adding device according to claim 13, wherein the flow rate adjusting mechanism is a second on-off valve that controls, by opening and closing, the flow rate of the blowing agent flowing in the blowing agent flow path upstream of the on-off valve.

15. A foam spray machine comprising the foaming agent adding device according to any one of claims 1 to 14.

16. A foaming agent adding method for adding a foaming agent to a liquid supplied by a liquid pump and flowing through a liquid flow path, comprising: detecting the operation of the liquid pump with a pump operation detection unit; supplying a foaming agent contained in a foaming agent container to a foaming agent flow path; a step of metering a predetermined amount of the foaming agent to be supplied to the liquid flow path by a foaming agent metering pump; and controlling the addition of the foaming agent to the liquid by opening and closing an on-off valve, a blowing agent adding method, in which, in the step of controlling the addition of the blowing agent by opening and closing an on-off valve, an on-off valve control unit controls the on-off valve to open in accordance with the drive status of the liquid pump detected by the liquid pump drive detection unit.

17. 17. The method for adding a blowing agent according to claim 16, further comprising the step of increasing the pressure of the blowing agent flowing through the blowing agent passage by a blowing agent pressure pump to a predetermined pressure, and adjusting the pressure in the blowing agent metering pump to the predetermined pressure, before the step of metering the blowing agent by the blowing agent metering pump.

18. measuring the pressure of the liquid flowing through the liquid flow path with a liquid pressure gauge; 18. The foaming agent adding method according to claim 16 or 17, wherein in the step of controlling the addition of the foaming agent by opening and closing an on-off valve, when the pressure measured by the liquid pressure gauge is lower than a predetermined value, the on-off valve is controlled not to open.

19. A foam manufacturing method, comprising the step of adding a foaming agent to a liquid flowing through a liquid flow path by the foaming agent addition method according to any one of claims 16 to 18.

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