Environmental formation device and photographing device for environmental formation device
The photographing device for environment forming devices addresses camera durability issues by using a dual ventilation system to maintain fresh air flow and a heated transparent member, ensuring long-term operation in harsh environments.
Patent Information
- Application Number
- JP2024107988
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-10-02
- Estimated Expiration
- 2039-11-12
AI Technical Summary
Existing environmental testing devices face issues with camera durability due to exposure to harsh environments, and the mixing of fresh and heated air can damage the camera, reducing its lifespan.
A photographing device for environment forming devices, featuring a camera enclosed within an inner and outer tube member with ventilation spaces, where fresh air is blown through one space and exhausted through another, minimizing mixing with heated air, and includes a transparent member with a heating function to prevent condensation.
The device maintains camera longevity by ensuring fresh air is consistently blown to the camera, keeping it within operational temperature and humidity ranges, reducing malfunctions and preventing condensation.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an imaging device for an environment creating device that is attached to the environment creating device to capture images of the inside of the environment creating device. [Background technology]
[0002] An example of an environment creating device is an environmental testing device, which has a test chamber (environment creating chamber) and can artificially create a predetermined environment, such as a temperature environment (e.g., high or low temperature) or a humidity environment (e.g., high or low humidity), within the test chamber. The test chamber of the environmental test device is a substantially sealed space, and the inside may not be visible. In the field of environmental testing equipment, there is a demand for taking pictures of the conditions inside a test room with a camera and monitoring them from outside, or for continuously taking pictures and recording the conditions inside a test room. Patent Document 1 discloses an environmental testing device in which a camera is inserted into a test chamber. In the environmental testing device disclosed in Patent Document 1, an air intake tube and an air exhaust tube are connected to a case containing the camera, and dry air is supplied into the case. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Utility Model Application Publication No. 6-43552 Summary of the Invention [Problem to be solved by the invention]
[0004] The environmental testing device disclosed in Patent Document 1 has a camera placed inside the test chamber, so that it is possible to photograph the state inside the test chamber. However, there is a concern that the environmental testing device disclosed in Patent Document 1 may reduce the durability of the camera. In other words, the test chamber of an environmental testing device is often subject to harsh environments, including high and low temperatures, and cameras placed in the test chamber are exposed to such harsh environments. Cameras are precision instruments, and their usable temperature and humidity ranges are limited. The temperature in the test chamber during environmental testing often exceeds the usable temperature range of the camera.
[0005] Temperature countermeasures are also taken in the environmental testing device disclosed in Patent Document 1. That is, in the environmental testing device disclosed in Patent Document 1, as described above, an air intake tube and an air exhaust tube are connected to the case housing the camera, and dry air is supplied into the case. However, with the structure disclosed in Patent Document 1, fresh air and air after heat exchange are mixed inside the case, and there is a possibility that the area around the camera cannot be covered with fresh air. Therefore, with the configuration disclosed in Patent Document 1, there is a concern that the camera may be damaged early.
[0006] SUMMARY OF THE INVENTION The present invention focuses on the above-mentioned problems of the prior art, and aims to develop an image capturing device for an environment creating device that has few camera failures and can be used for a long period of time. [Means for solving the problem]
[0007] An aspect for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, an outer tube member that covers the inner tube member, and a blower, a first ventilation space is formed inside the inner tube member, a second ventilation space is formed between the inner tube member and the outer tube member, and air is blown by the blower toward the camera through either the first ventilation space or the second ventilation space and exhausted through the other of the first ventilation space or the second ventilation space. A specific embodiment for solving the above-mentioned problems is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, an outer tube member that covers the inner tube member and has one end sealed, and a port for supplying gas from the outside, the interior of the inner tube member forming a first ventilation space, and a second ventilation space formed between the inner tube member and the outer tube member, the camera is disposed such that a size of the cross section of the camera in the radial direction of the inner cylindrical member is smaller than an inner diameter of the inner cylindrical member, and a gap is provided between an inner wall of the inner cylindrical member and a portion of the camera located inside the inner cylindrical member at the one end side of the inner cylindrical member; The port is provided at a position connected to the first ventilation space or the second ventilation space, and is configured so that gas supplied from the port flows toward the camera via one of the first ventilation space or the second ventilation space, passes through the gap, and generates an air flow that is exhausted via the other of the first ventilation space or the second ventilation space, and is exhausted via the other of the first ventilation space or the second ventilation space. attitude The imaging device for an environment forming device is characterized by the above. Another specific embodiment for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through-hole that connects the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tubular member, an outer tubular member that covers the inner tubular member and has one end closed, and a port for supplying gas from the outside, the inside of the inner tubular member forming a first ventilation space, and the space between the inner tubular member and the outer tubular member forming a second ventilation space, the port being , and is provided at a position connected to the first ventilation space or the second ventilation space, and is configured so that gas supplied from the port flows toward the camera via either the first ventilation space or the second ventilation space, passes through the gap, and an air flow is generated in which the air is exhausted via the other of the first ventilation space or the second ventilation space, and is exhausted via the other of the first ventilation space or the second ventilation space, and the camera is an imaging device for an environment forming device, characterized in that the radial size of the inner tube member at the camera cross section is smaller than the inner diameter of the inner tube member.
[0008] The photographing device for an environment forming device of this embodiment is used by being attached to an environment forming device having a through-hole. The photographing device for an environment forming device of this aspect has an outer tube member, and the inner tube member is located inside the outer tube member. In the photographing device for an environment forming device of this aspect, the outer tube member with the inner tube member built in is inserted into the through-hole of the environment forming device. The air is then blown toward the camera via either the first ventilation space or the second ventilation space by the blower. The air blown toward the camera is mostly fresh air. The blown air is then exhausted via the other of the first ventilation space or the second ventilation space. This reduces the chance of the fresh air mixing with the heated air after heat exchange, allowing fresh air to be blown toward the camera.
[0009] Another aspect for solving a similar problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, an outer tube member that covers the inner tube member, and a blower, a first ventilation space is formed inside the inner tube member, a second ventilation space is formed between the inner tube member and the outer tube member, the camera is located at a position on the tip side of the first ventilation space or the second ventilation space, and the blower is located at a position on the base side of the first ventilation space or the second ventilation space.
[0010] In this embodiment of the photographing device for an environment changing device, the camera is located at the tip end of the first ventilation space or the second ventilation space, and the blower is located at the base end of the first ventilation space or the second ventilation space. Therefore, the air blown by the blower is introduced from the base end of the first ventilation space or the second ventilation space and blown toward the camera installed at the tip end. The air blown toward the camera is fresh air. The blown air is exhausted via the other of the first ventilation space or the second ventilation space. Therefore, there is little mixing of the fresh air with the heated air after heat exchange, and fresh air can be blown toward the camera.
[0011] Yet another aspect for solving a similar problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, and an outer tube member that covers the inner tube member, a first ventilation space being formed inside the inner tube member, a second ventilation space being formed between the inner tube member and the outer tube member, and air being blown toward the camera through either the first ventilation space or the second ventilation space and exhausted through the other of the first ventilation space or the second ventilation space. Another specific aspect for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, and an outer tube member that covers the inner tube member, the inside of the inner tube member forming a first ventilation space, and the space between the inner tube member and the outer tube member forming a second ventilation space, the camera is disposed such that a size of the cross section of the camera in the radial direction of the inner cylindrical member is smaller than an inner diameter of the inner cylindrical member, and a gap is provided between an inner wall of the inner cylindrical member and a portion of the camera located inside the inner cylindrical member at the one end side of the inner cylindrical member; Gas is supplied from the outside and sent toward the camera via one of the first ventilation space or the second ventilation space, Through the gap The air is exhausted through the other of the first ventilation space and the second ventilation space. attitude The imaging device for an environment forming device is characterized by the above. Another specific aspect for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the photographing device for the environment forming device having a camera, an inner tube member, and an outer tube member that covers the inner tube member, a first ventilation space is formed inside the inner tube member, a second ventilation space is formed between the inner tube member and the outer tube member, gas is supplied from the outside and blown towards the camera through either the first ventilation space or the second ventilation space, and is exhausted through the other of the first ventilation space or the second ventilation space, the camera being a photographing device for an environment forming device characterized in that the radial size of the inner tube member at the camera cross section is smaller than the inner diameter of the inner tube member.
[0012] In this embodiment, as in the above embodiment, air is blown toward the camera through either the first ventilation space or the second ventilation space. The air blown toward the camera is fresh air. The blown air is exhausted through the other of the first ventilation space or the second ventilation space. Therefore, there is little mixing of the fresh air with the heated air after heat exchange, and fresh air can be blown toward the camera.
[0013] In each of the above-described aspects, it is desirable that a transparent member be attached to the tip portion, and that the transparent member have a temperature raising function.
[0014] According to this aspect, by increasing the temperature of the transparent member, it is possible to prevent condensation and fogging on the transparent member.
[0015] In each of the above aspects, it is desirable that illumination is provided at or near the tip.
[0016] According to this aspect, photography can be performed while illuminating the interior of a testing room or the like.
[0017] In the above aspect, it is desirable that the illumination be arranged in a ring shape around the light entrance portion of the camera.
[0018] According to this aspect, the lighting is less likely to be captured by the camera.
[0019] In each of the above-mentioned aspects, it is desirable that the environment forming device has a main body side engagement portion, the photographing device for the environment forming device has a connecting member, the connecting member has an opening and a photographing device side engagement portion, the photographing device side engagement portion is engageable with the main body side engagement portion, and the outer tube member and the inner tube member are inserted into the opening.
[0020] The environmental testing device to which the photographing device for an environment changing device of this aspect is attached has a main body side engaging portion. The photographing device for the environment forming device of this aspect can be fixed to the environment forming device by utilizing the main body side engaging portion.
[0021] An embodiment of the environmental testing device is an environmental forming device that has an environmental forming chamber that can be adjusted to a predetermined environment, and a through hole that connects the environmental forming chamber to the outside, and any of the above-mentioned environmental forming device photographing devices is attached to the through hole.
[0022] The environmental testing device of this embodiment can photograph the inside of the environmental forming chamber. Another specific aspect for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the environment forming device having a main body side engagement portion, the photographing device for the environment forming device having a main body portion and an attachment member, the main body portion having a camera and a tubular portion that holds the camera, the attachment member having a connecting member with a photographing device side engagement portion that can engage with the main body side engagement portion and a mounting bracket with an opening, the attachment member can be fixed to the through hole of the environment forming device by engaging the photographing device side engagement portion with the main body side engagement portion, and the camera can be attached to the environment forming device with the main body portion fixed to the attachment member and the tubular portion inserted into the through hole. Another specific aspect for solving the above-mentioned problem is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole connecting the environment forming chamber to the outside, the environment forming device having a main body side engagement part, the photographing device for the environment forming device having a main body part in which a camera, an inner tube member, and an outer tube member that covers the inner tube member and has one end closed, an attachment part, and a port for supplying gas from an external blower, the interior of the inner tube member forming a first ventilation space, and a second ventilation space forming between the inner tube member and the outer tube member, and the first ventilation space or the second ventilation space is blown by the blower. the mounting member has a connecting member with an imaging device side engaging portion that can engage with the main body side engaging portion, and a mounting bracket having an opening; the mounting member can be fixed to the location of the through hole of the environment forming device by engaging the imaging device side engaging portion with the main body side engaging portion; and the camera can be attached to the environment forming device with the main body part fixed to the mounting member and the tubular part inserted into the through hole. [Effects of the Invention]
[0023] The photographing device for an environment changing device of the present invention has few camera failures and can be used for a long period of time. [Brief explanation of the drawings]
[0024] [Figure 1] 1 is a perspective view of an environmental testing device to which an imaging device for an environment forming device according to an embodiment of the present invention is attached. [Figure 2] 2 is a schematic cross-sectional view of a through-hole portion of the environmental testing device of FIG. 1. [Figure 3] 2 is a perspective view of the tip portion of the photographing device for the environment changing device of FIG. 1, showing the state in which the sealing glass is removed and the inside of the cylindrical body is observed. FIG. [Figure 4] 1 is a perspective view of an image capturing device for an environment changing device according to an embodiment of the present invention, observed from the rear side. [Figure 5] 5 is an exploded perspective view of the photographing device for the environment changing device of FIG. 4. FIG. [Figure 6] 10A and 10B are perspective views of a through-hole portion illustrating a procedure for attaching the photographing device for the environment forming device to the environment forming device. [Figure 7] FIG. 7 is a perspective view of a through-hole portion showing a step subsequent to FIG. 6. [Figure 8] FIG. 8 is a perspective view of a through-hole portion showing a step subsequent to FIG. 7. [Figure 9] FIG. 2 is a perspective view of the environmental testing device before the photographing device for the environment changing device is attached. [Figure 10] FIG. 10 is an explanatory diagram showing the internal structure of the environmental testing device of FIG. DETAILED DESCRIPTION OF THE INVENTION
[0025] Further embodiments of the present invention will be described below. First, a brief description will be given of the environment forming device to which the photographing device 1 for the environment forming device is attached. Specifically, the environment forming device is an environment testing device, and will be referred to hereinafter as the environment testing device 100. The photographing device 1 for the environment forming device may also be abbreviated as the photographing device 1.
[0026] The environmental testing device (environment forming device) 100 artificially creates, for example, a high temperature environment, a low temperature environment, a high humidity environment, or the like. The environmental testing device 100 is equipped with an environmental adjustment system as shown in Fig. 10. The environmental testing device 100 is equipped with a test chamber (environment creating chamber) 3, a cooler 5, a heater 6, a humidifier 7, and a blower 8. The test chamber (environment creating chamber) 3 is configured as part of an insulated tank formed using an insulating wall 2. The environmental testing device 100 has an air flow path 10 that communicates with the test chamber 3, and the air flow path 10 is provided with an evaporator 11 of the cooling device 5, a heater 6, a humidifier 7, and a blower 8. A temperature sensor 12 and a humidity sensor 13 are also provided on the outlet side of the air flow path 10. In the environmental testing device 100, the components in the air flow path 10, the temperature sensor 12, and the humidity sensor 13 constitute an air conditioning device 15.
[0027] The environmental testing device 100 creates a desired temperature and humidity environment in the test room 3 using the air conditioning device 15 .
[0028] 9 and 10, the environmental testing device 100 has a through hole 101 that connects the test chamber 3 with the outside. The through hole 101 is called a cable hole and is a hole for inserting electric wires for a sensor or the like.
[0029] In the environmental test, the test object 16 is placed in the test chamber 3 and exposed to a harsh environment, and changes therein are observed. In environmental testing, sensors 17 may be attached to the DUT 16 to observe the progression of changes in the DUT 16 during the test. For example, strain gauges may be attached to observe changes in the external shape, or electrodes may be attached to measure changes in resistance. Alternatively, temperature sensors may be attached to measure the surface temperature of the DUT 16. Furthermore, electric wires may be attached to pass electricity through the DUT 16.
[0030] The through hole 101 is provided mainly for the purpose of inserting the electric wire as described above. Therefore, when there is no need to insert the electric wire, a lid 102 is attached to the through hole 101 as shown in FIG. In this embodiment, the through-hole 101 is made of a tubular member 105 as shown in Figures 2, 5, 6, and 7, and one end of the through-hole 101 protrudes outside the test chamber 3. An external thread (main body side engagement portion) 106 is formed on a protruding portion 107 of the tubular member 105. The tubular member 105 also has flanges 110 and 111, and the insulating wall 2 of the test chamber 3 is sandwiched between the flanges 110 and 111. The lid 102 is formed with an internal thread 109 as shown in FIG. The lid 102 is attached to the environmental testing device 100 by engaging its own internal threads 109 with external threads (engaging portion on the main body side) 106 on the environmental testing device 100 side.
[0031] Next, the photographing device 1 will be described. 5, the photographing device 1 is made up of a cylindrical body portion 20, a blower unit 21, a cover member 22, and an attachment member 23. In this embodiment, the cylindrical body portion 20, the blower unit 21, and the cover member 22 are integrated to form a main body portion 25. 2 and 3, the cylindrical body 20 has an outer cylindrical member 30, an inner cylindrical member 31, a camera unit 32, and a sealing glass (transparent member) 33. Note that Fig. 2 conceptually explains the internal structure of the imaging device 1, and each part is simplified for ease of illustration. Also, part of the mounting member 23 is omitted.
[0032] The outer tubular member 30 is a tube made of a heat-resistant and cold-resistant material. The outer tubular member 30 may be made of a heat-insulating material. In particular, if the outer tubular member 30 is long, it is desirable that it be made of a heat-insulating material. The outer cylindrical member 30 has an outer diameter substantially equal to the inner diameter of the through-hole 101 of the environmental testing device 100, and is a tube with an outer diameter that can be inserted into the through-hole 101 with almost no gap. The inner cylindrical member 31 is a tube whose outer diameter is considerably smaller than the inner diameter of the outer cylindrical member 30. The entire length of the inner cylindrical member 31 is shorter than the entire length of the outer cylindrical member 30.
[0033] The camera unit 32 is composed of a camera 36, a hood member 37, and an illumination member 38. The camera 36 is a small digital camera that can take both moving and still images. The camera 36 has a light entrance section 51 and can take an image by taking in light from the light entrance section 51. The hood member 37 is a tube with a black inner surface. 3, the illumination member 38 has, for example, light-emitting elements 50 arranged in a circular ring shape. The light-emitting elements 50 are, for example, LEDs and are point light sources. The illumination member 38 has a donut-shaped substrate on which a large number of light-emitting elements 50, which are point light sources, are attached. The number of light emitting elements 50 is arbitrary, but preferably a plurality. For example, it is recommended that the number be three or more, and it is desirable that they be arranged in a ring shape with intervals between them, but it is also possible to use only one light source. The illumination member 38 is not limited to a point light source, but may be a surface light emitter or a linear light emitter. The light emitting principle is not limited to an LED. The illumination member 38 is not limited to one made of the light emitting element 50.
[0034] The light entrance portion 51 of the camera and the surrounding area in front of it are covered by a hood member 37. The hood member 37 surrounds the light entrance portion 51 of the camera concentrically. The lighting member 38 is located further outside the hood member 37. The lighting member 38 surrounds the hood member 37 concentrically. The camera unit 32 is an integrated unit of the camera 36, hood member 37, and lighting member 38, and can be handled as a single component.
[0035] The positional relationship between the camera 36, the hood member 37 and the lighting member 38 is important. The hood member 37 is selected to have an inner diameter and length that prevent the light from the illumination member 38 from directly entering the camera 36 and that is outside the viewing angle of the camera 36.
[0036] The sealing glass (transparent member) 33 is glass called heater glass, and has a temperature raising function. Specifically, the sealing glass (transparent member) 33 is a transparent heat-resistant glass to which a film-like heater (not shown) is attached, and generates heat when a current is applied to the lead wire 53 .
[0037] The cylindrical body 20 has an inner cylindrical member 31 and a camera unit 32 built in the inside of an outer cylindrical member 30, and a sealing glass (transparent member) 33 attached to the tip of the outer cylindrical member 30. The outer cylindrical member 30 and the inner cylindrical member 31 are arranged concentrically, and the outer cylindrical member 30 covers the outer periphery of the inner cylindrical member 31. The tip side of the inner cylindrical member 31 is housed within the outer cylindrical member 30, as shown in FIG. On the other hand, the base end side of the inner cylindrical member 31 protrudes from the base end side of the outer cylindrical member 30 as shown in FIG. The inside of the inner tubular member 31 functions as a first ventilation space 40. A gap is formed between the outer tubular member 30 and the inner tubular member 31, and a second ventilation space 41 is formed by this gap.
[0038] The camera unit 32 is provided inside the outer cylindrical member 30 at the tip of the inner cylindrical member 31. A gap 42 is provided between the inner surface of the tip opening of the inner cylindrical member 31 and the camera 36. The camera 36 is also installed on an extension of the center line of the inner cylindrical member 31. The sealing glass (transparent member) 33 is attached to the tip of the outer tubular member 30 via a sealing member 43 such as an O-ring. The tip side of the outer tubular member 30 is sealed by the sealing glass (transparent member) 33 in an airtight state. The distance between the sealing glass (transparent member) 33 and the camera unit 32 is such that even if light from the light emitting element 50 is reflected on the surface of the sealing glass (transparent member) 33, it will not be incident on the camera .
[0039] 2, the blower unit 21 has a small blower 48. The blower unit 21 has the blower 48 attached to a support member 45. The blower 48 is an axial flow blower having propeller-shaped blades 46. The blades 46 are rotated by a motor 47. 2, the blower unit 21 is installed at the base end of the inner cylindrical member 31. The position of the blades 46 is generally contained within the area of the opening circle of the inner cylindrical member 31 and does not protrude into the second ventilation space 41 side.
[0040] As shown in FIG. 5, the cover member 22 is a rectangular case with one side open and the other five sides covered with walls. That is, the cover member 22 has a front wall 60, an upper wall 61, a lower wall 62, and left and right side walls 63, 65. The rear side of the cover member 22 is open. The front wall 60 of the cover member 22 has an intake opening 70. The top wall 61 and the bottom wall 62 of the cover member 22 have exhaust openings 71 formed therein.
[0041] A locking fitting 72 is provided on the left and right side walls 63, 65 of the cover member 22. The locking fitting 72 is a pulling-side member of a locking member equipped with a toggle mechanism. The above-mentioned cylindrical body portion 20 and blower unit 21 are fixed to a cover member 22 by screws or the like (not shown), and the cylindrical body portion 20, blower unit 21 and cover member 22 are integrated to form a main body portion 25.
[0042] Next, the mounting member 23 will be described. As shown in FIGS. 5 and 7, the mounting member 23 is composed of a mounting bracket 73 and a connecting member 75. As shown in FIGS. 5 and 7, the mounting bracket 73 is a generally concave bracket, and has a front wall 76 that faces the front wall 60 of the cover member 22, and left and right side walls 77, 78. A large opening 66 is provided in the center of the front wall 76 . The left and right side walls 77, 78 are provided with locking pieces 80.
[0043] The coupling member 75 is a circular member provided with an opening 81, and like the cover 102, an internal thread (imaging device side engagement portion) 108 is formed on the inner surface.
[0044] The mounting member 23 is attached to a tubular member 105 that forms the through-hole 101 of the environmental test device 100 . Specifically, the opening 66 of the mounting bracket 73 is aligned with the protruding portion 107 of the tubular member 105 protruding from the environmental testing apparatus 100, and the coupling member 75 is engaged with the external threads 106 of the tubular member 105 from the outside. That is, the internal threads 108 of the coupling member 75 are engaged with the external threads 106 of the tubular member 105 to attach the coupling member 75 to the protruding portion 107 of the tubular member 105, and the mounting bracket 73 is sandwiched between the coupling member 75 and the flange 110 of the tubular member 105. Sealing members 82 and 83 such as O-rings are interposed between the flange 110 and the mounting bracket 73, and between the mounting bracket 73 and the connecting member 75.
[0045] The procedure for attaching the photographing device 1 is as shown in FIGS. First, the mounting member 23 is attached to the tubular member 105 that forms the through-hole 101 of the environmental testing device 100. That is, the existing lid 102 is removed from the tubular member 105 of the environmental testing device 100 as shown in FIG. 7, the sealing member 82, the mounting bracket 73, the sealing member 83, and the connecting member 75 are sequentially attached to the protruding portion 107 of the tubular member 105, and the connecting member 75 is tightened to fix the mounting bracket 73.
[0046] In this way, the mounting bracket 73 is fixed to the outer end of the tubular member 105 as shown in FIG. Thereafter, the main body 25 is attached to the mounting bracket 73. Specifically, the cylindrical portion 20 of the main body 25 is inserted into the through-hole 101 of the environmental test device 100. The cylindrical portion 20 of the main body 25 is inserted into the opening 81 of the connecting member 75 and the opening 66 of the mounting bracket 73, and reaches the through-hole 101 of the environmental testing device 100. The outer cylindrical member 30 and the inner cylindrical member 31 of the cylindrical portion 20 are both inserted into the opening 81 of the connecting member 75, the opening 66 of the mounting bracket 73, and the through-hole 101.
[0047] The main body 25 of the photographing device 1 is attached to the mounting bracket 73 with the concave sides of the cover member 22 and the mounting bracket 73 facing each other. Then, the main body 25 is integrated with the mounting member 23 by engaging the locking fittings 72 provided on the side walls 63, 65 of the cover member 22 with the locking pieces 80 of the mounting bracket 73. As a result, the imaging device 1 is attached to the environmental test device 100 with the cylindrical portion 20 inserted into the through-hole 101.
[0048] FIG. 2 is a cross-sectional view showing an outline of the state in which the image capturing device 1 is attached to the environmental testing device 100. As shown in FIG. The blower unit 21 of the main body 25 of the imaging device 1 is located outside the thermally insulated tank. Most of the cylindrical part 20 is located inside the through-hole 101 that penetrates the thermally insulated wall 2, and its tip is located in a position facing the test chamber 3. The test chamber 3 and the inside of the outer cylindrical member 30 of the main body 25 are separated by a sealing glass (transparent member) 33, and an airtight state is maintained between the two. The light entrance portion 51 of the camera 36 in the main body 25 faces the test chamber 3. The illumination member 38 also faces the test chamber 3.
[0049] Next, the functions of the photographing device 1 will be described. An environmental test is carried out using the environmental test device 100 of this embodiment, and the state inside the test room 3 during the test is photographed by the photographing device 1. That is, similar to known environmental tests, the inside of the test chamber 3 is adjusted to a desired high temperature or low temperature environment, and the article is placed therein to carry out the environmental test.
[0050] When taking a photograph, the lighting member 38 of the photographing device 1 is turned on. The lighting member 38 faces the testing chamber 3, and the light emitted by the lighting member 38 illuminates the objects in the testing chamber 3. Here, the camera unit 32 has a hood member 37, and the hood member 37 surrounds the light entrance portion 51 of the camera . As a result, the light from the illumination member 38 is blocked by the hood member 37, preventing it from directly entering the camera 36. The hood member 37 is configured to be sufficiently large relative to the light entrance portion 51 of the camera 36, and to have a short overall length, so that the hood member 37 does not enter the field of view of the camera 36 and does not appear in the image. Furthermore, the illumination member 38 is disposed so as to surround the outside of the hood member 37 in an annular shape, so there is little concern that reflected light will enter the light entrance portion 51.
[0051] When the inside of the test room 3 is in a high temperature environment or a low temperature environment, the motor 47 of the blower unit 21 of the imaging device 1 is driven. The outside air is drawn in through the intake opening 70 of the cover member 22 by the blower 48 of the blower unit 21. The outside air passes through the first ventilation space 40 formed inside the inner cylindrical member 31 and is blown directly onto the camera 36.
[0052] Because the tip of outer tube member 30 of main body 25 is sealed with sealing glass (transparent member) 33, the blown air passes through the area of camera 36, enters second ventilation space 41 formed between outer tube member 30 and inner tube member 31, and returns to the base end side of tube portion 20. The air is then exhausted from exhaust opening 71 of cover member 22. That is, in this embodiment, the interior of imaging device 1 is divided into an outflow path that starts at blower 48, passes through first ventilation space 40 and gap 42 in inner tube member 31, and reaches the space around camera 36, and a return path that runs from the space around camera 36, passes through second ventilation space 41 formed between outer tube member 30 and inner tube member 31, and reaches exhaust opening 71, making it difficult for air to stagnate.
[0053] Therefore, with the imaging device 1 of this embodiment, fresh outside air is always blown onto the camera 36, and the ambient temperature of the camera 36 falls within a certain allowable range. The same is true for humidity; the humidity around the camera 36 is approximately the same as the humidity of the outside air, and falls within a certain allowable range. Therefore, the camera 36 is less likely to malfunction.
[0054] When the test chamber 3 is adjusted to a low temperature environment, the heater of the sealing glass (transparent member) 33 is energized to maintain the surface temperature of the sealing glass (transparent member) 33 at a temperature higher than the temperature inside the test chamber 3. As a result, the inner and outer surfaces of the sealing glass (transparent member) 33 are prevented from frosting or fogging.
[0055] In the photographing device 1 of this embodiment, the camera 36, the hood member 37, and the lighting member 38 are one camera unit 32. In addition, in the photographing device 1 of this embodiment, the air blowing unit 21 is also unitized. Therefore, the imaging device of this embodiment has high compatibility with parts and can be applied to various types of environmental testing devices. That is, the through-hole 101 in which the image capturing device 1 is attached is a cable hole, and there are cases where cable holes with the same inner diameter are used in a plurality of environmental test devices. Furthermore, the length of the through-hole 101 depends on the thickness of the heat insulating wall 2, and may differ depending on the use, capacity, grade, etc. of the environmental testing device.
[0056] In case the diameter of the cable hole is the same but the thickness of the insulation wall is different, by preparing multiple tubes for the outer tube member 30 and the inner tube member 31 that differ only in length, it is possible to complete an imaging device 1 that is suitable for each environmental testing device 100 by selecting a tube according to the length of the through hole 101 and combining the camera unit 32, the air blowing unit 21 and the cover member 22.
[0057] In the imaging device described above, the air blowing unit 21 is attached to the base end side of the inner tubular member 31, and the first ventilation space 40 formed by the inner tubular member 31 serves as a flow path for blowing air toward the camera 36. The present invention is not limited to this configuration, and the air blowing unit 21 may be attached to the base end side of the second ventilation space 41 formed between the outer tubular member 30 and the inner tubular member 31. With this configuration, the blown air passes through the second ventilation space 41 and is blown toward the camera 36, and is exhausted using the first ventilation space 40 formed by the inner tubular member 31 as a flow path for returning air.
[0058] Alternatively, a blower may be installed at a location away from the environmental testing device 100, and the blower may be connected to the first ventilation space 40 or the second ventilation space 41 by a duct or the like. Air may also be blown using a blower device other than a blower. For example, air compressed by a compressor may be supplied to the imaging device. When the temperature inside the test chamber 3 is low, dehumidified air may be supplied to the imaging device. It is also possible to supply preheated or cooled air to the imaging device to prevent condensation, etc. Instead of air, other gases such as nitrogen may be supplied to the imaging device.
[0059] When adopting a configuration for supplying gas from the outside, it is recommended to provide a port that connects to the first ventilation space 40 or the second ventilation space 41. For example, the port may be provided in the cover member 22, or a port that connects to the first ventilation space 40 or the second ventilation space 41 may be provided on a separate board, and the board may be fixed to the main body 25 of the imaging device or attached to the side of the environmental testing device 100.
[0060] In the embodiment described above, the imaging device 1 is attached to the environmental testing device 100 using the existing external thread (main body side engagement portion) 106 provided on the protrusion 107 of the tubular member 105, but the imaging device 1 may also be attached using other methods. For example, the imaging device may be attached directly to the side of the environmental test apparatus 100 using fastening elements such as bolts. The imaging device may also be attached to the side of the environmental testing device 100 using adhesive or a magnet.
[0061] In the above-described embodiment, an environmental testing device has been used as an example, but the subject matter of the present invention is not limited to environmental testing devices, and can be widely used in devices that perform heating processes such as ovens, and environment-forming devices such as storage cabinets with air conditioning functions.
[0062] In the embodiment described above, the image capturing device 1 is attached to the cable hole, but other through-holes may also be utilized. For example, the image capturing device 1 may be attached to a through-hole through which a rod or arm for applying an external force to an object in the test chamber 3 is inserted, a through-hole for connecting an external air conditioning device to the test chamber 3 with a duct, or a through-hole for inserting a sensor.
[0063] The embodiment described above is a photographing device for an environment forming device used in an environment forming device, the environment forming device having an environment forming chamber that can be adjusted to a predetermined environment and a through hole that connects the environment forming chamber to the outside, the environment forming device having a main body side engagement part, the photographing device for the environment forming device having a camera, a camera holding member that holds the camera, and a connecting member, the connecting member having an opening and a photographing device side engagement part, the photographing device side engagement part being engageable with the main body side engagement part, and the camera being able to be fixed to the environment forming device by engaging the photographing device side engagement part with the main body side engagement part when the camera is inserted into the through hole. [Explanation of symbols]
[0064] 1. Photography device (photography device for environmental formation device) 3. Testing Room (Environmental Formation Room) 20 Cylinder part 21 Blower unit 22 Cover member 23 Mounting material 25 Main body 30 outer cylinder member 31 Inner cylinder member 32 Camera unit 33 Sealing glass (transparent material) 36 Camera 37 Hood member 38 Lighting components 40 First ventilation space 41 Second ventilation space 48 Blower 50 Light-emitting element 73 Mounting bracket 75 Connecting member 100 Environmental testing equipment (environmental forming equipment) 101 Through hole 105 Tubular member 106 External thread (engagement part on main body side) 108 Internal thread (imaging device side engagement part)
Claims
1. An imaging device for an environment forming device used in an environment forming device, the environment forming device including an environment forming chamber that can be adjusted to a predetermined environment, and a through hole that connects the environment forming chamber to the outside, The photographing device for the environment creating device includes a camera, an inner cylindrical member, an outer cylindrical member that covers the inner cylindrical member and has one end closed, and a port for supplying gas from the outside, A first ventilation space is formed inside the inner tubular member, and a second ventilation space is formed between the inner tubular member and the outer tubular member, the camera is disposed such that a size of the cross section of the camera in the radial direction of the inner cylindrical member is smaller than an inner diameter of the inner cylindrical member, and a gap is provided between an inner wall of the inner cylindrical member and a portion of the camera located inside the inner cylindrical member at the one end side of the inner cylindrical member; The port is provided at a position that is connected to the first ventilation space or the second ventilation space, An imaging device for an environmental forming device, characterized in that the gas supplied from the port flows toward the camera via either the first ventilation space or the second ventilation space, passes through the gap, and generates an air flow that is exhausted via the other of the first ventilation space or the second ventilation space, and is exhausted via the other of the first ventilation space or the second ventilation space.
2. An imaging device for an environment forming device used in an environment forming device, the environment forming device including an environment forming chamber that can be adjusted to a predetermined environment, and a through hole that connects the environment forming chamber to the outside, The photographing device for the environment forming device includes a camera, an inner cylindrical member, and an outer cylindrical member that covers the inner cylindrical member, A first ventilation space is formed inside the inner tubular member, and a second ventilation space is formed between the inner tubular member and the outer tubular member, the camera is disposed such that a size of the cross section of the camera in the radial direction of the inner cylindrical member is smaller than an inner diameter of the inner cylindrical member, and a gap is provided between an inner wall of the inner cylindrical member and a portion of the camera located inside the inner cylindrical member at the one end side of the inner cylindrical member; An imaging device for an environmental forming device, characterized in that gas is supplied from the outside and blown toward the camera through either the first ventilation space or the second ventilation space, passes through the gap, and is exhausted through the other of the first ventilation space or the second ventilation space.
3. 3. The photographing device for an environment changing device according to claim 1, wherein a transparent member is attached to the tip, and the transparent member has a temperature raising function.
4. 4. The photographing device for an environment changing device according to claim 1, wherein a light is provided at or near the tip.
5. 5. The photographing device for an environment changing device according to claim 4, wherein the lighting is disposed in a ring shape around the light incident portion of the camera.
6. The environment creating device has a main body side engaging portion, the photographing device for the environment changing device has a connecting member, the connecting member having an opening and a photographing device side engaging portion, 6. An imaging device for an environment forming device according to claim 1, wherein the imaging device side engaging portion is engageable with the main body side engaging portion, and the outer tube member and the inner tube member are inserted into the opening.
7. An environment forming device comprising an environment forming chamber that can be adjusted to a predetermined environment, and a through hole connecting the environment forming chamber to the outside, wherein a photographing device for an environment forming device according to any one of claims 1 to 6 is attached to the through hole.
Citation Information
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