The present disclosure relates to a biological safety cabinet and a clean bench used for environmental laboratory equipment, for example.
In this type of a conventional cabinet, for example, a biological safety cabinet includes a box-like body case; and an air conditioner to perform air conditioning in the interior of this body case. Air flows such that the air in the body case is circulated by the air conditioner, and a part or all of the air is discharged, so that substantially the same amount of air as the discharged air is drawn through a space of a worker's hand insertion portion that is provided between a front shutter provided for a front opening of the body case and a bottom plate.
Japanese Patent Application No. 2014-193463 is a prior document similar to this.
A biological safety cabinet or a clean bench (hereinafter, referred to as the “biological safety cabinet or the like) is required to maintain the interior of a body case under negative pressure or positive pressure using an air conditioner, to ensure cleanliness in the interior of the body case when a worker performs work inside the body case.
Further, in order not to significantly lower the cleanliness inside the body case except during work, it is common practice to fully lower a front shutter when work is interrupted or finished.
In such a case, when all the front opening is covered with the front shutter during the operation of the air conditioner such that the space of the worker's hand insertion portion is eliminated, positive pressure or negative pressure is applied to the front shutter and the front shutter may be damaged.
For this reason, the conventional biological safety cabinet or the like has a configuration in which the bottom plate and the front shutter are not in contact with each other when the front shutter is fully lowered. This may make it impossible to sufficiently maintain cleanliness in the interior of the body case, which may not ensure reliability as a biological safety cabinet or the like.
Thus, an aspect of the present disclosure is to maintain cleanliness in an interior a body case as well as reduce the load of a front shutter even in a state in which a biological safety cabinet or the like is not used, thereby ensuring reliability.
An aspect of the present disclosure is to include a box-like body case having an opening portion in its front face; an air conditioner configured to perform air conditioning in an interior of the body case; a bottom plate provided inside the opening portion; a front-side gas discharge portion provided in the bottom plate on a front face side in the body case; a front shutter movable in a vertical direction to cover the opening portion; a front shutter protector provided at a lower end of the front shutter; and a flexible portion provided to the front shutter protector, the flexible portion being configured to contact the bottom plate in front of the front-side gas discharge portion, when the front shutter is fully lowered, the flexible portion having a width substantially equal to a width of the opening portion; and a gap portion formed in a contact portion between the flexible portion and the bottom plate.
Hereinafter, an embodiment of the present disclosure will be described in detail with reference to accompanying drawings.
As illustrated in
The cabinet 1 includes a body case 2, an air conditioner 3, a bottom plate 4, a front shutter 5, and a front shutter protector 6.
The body case 2 is a box-like member including an opening portion 7 in a front face. A worker using the cabinet 1 performs work with his/her hand(s) being inserted from the opening portion 7 into the body case 2.
The opening portion 7 of the body case 2 is to be covered with the front shutter 5. The front shutter 5 is configured to be movable in a vertical (up-and-down) direction with respect to the cabinet 1. This front shutter 5 is moved to increase or reduce an opening region of the opening portion 7 in the body case 2.
In specific, for example, when a sample and/or equipment for experiment is placed into the body case 2, the front shutter 5 is moved upward to increase the opening region of the opening portion 7 so as to easily perform work.
Further, in the stage of performing work such as experiment after placing such a sample and/or equipment in the interior of the body case 2, the front shutter 5 is moved downward to reduce the opening region of the opening portion 7 so as to secure work environment necessary for such experiment in the interior of the body case 2.
That is, the opening region of the opening portion 7 is large enough to allow a worker to perform work with his/her hand(s) being inserted into the body case 2 from the opening portion 7 as well as small enough to allow bacteria, viruses, and/or the like handled by a worker to be kept in the interior of the body case 2.
The front shutter 5 is constituted by a transparent member such as a glass plate, and configured such that a worker, in a state of performing work such as an experiment, can perform work while visually checking the state inside the body case 2 through the front shutter 5.
The bottom plate 4 is provided on the bottom face side which is in the lower direction in the body case 2.
The bottom plate 4, which is, for example, a metal plate-like member, is formed by press working or the like, and is provided to be substantially orthogonal to the back plate.
The bottom plate 4 includes a work platform where an experiment or the like is performed.
Then, a back plate 8 is provided on the side opposite to the front shutter 5 in the body case 2. In other words, the back plate 8 is provided on the back face side which is in the rear direction in the body case 2.
The back plate 8 is, for example, a metal plate-like member, and the body case 2 formed by press working or the like further includes a pair of side plates, in the lateral (left-and-right) direction, substantially orthogonal to the back plate, and an upper face plate, in the upper direction, substantially orthogonal to the back plate.
Accordingly, a box-like work space is formed inside the body case 2.
The air conditioner 3 is installed on the top face side, which is the upper direction in the body case 2.
The air conditioner 3 is a device to send air into the interior of the body case 2, and includes a filter such as a High-Efficiency Particulate Air filter (HEPA).
Then, the air obtained by removing unwanted bacteria using this filter is sent into the body case 2, so that the environment inside the body case 2 is kept in an aseptic state.
Further, in the bottom plate 4, a front-side gas discharge portion 9 is provided on the front face side of the body case 2, and a back-side gas discharge portion 10 is provided on the lower side in the back plate 8.
The air sent into the interior of the body case 2 by the air conditioner 3 is discharged from the front-side gas discharge portion 9 and the back-side gas discharge portion 10 to the outside of the body case 2.
A flow arrangement plate 11 is provided below the air conditioner 3.
In specific, for example, the flow arrangement plate 11 is provided by fixing or supporting at three points, i.e., on the opening portion side which is in the front direction, on the back face side which is in the rear direction, and at the central portion which is the center between the opening portion side and the back face side, in the body case 2.
Here, the front shutter protector 6 according to an embodiment of the present disclosure will be described in more detail with reference to
As illustrated in
The hard portion 12 includes a mounting portion 12a for mounting the front shutter protector 6 to the front shutter 5.
The hard portion 12 is formed, for example, by molding a resin material such as Polyvinyl Chloride (PVC), Polymethyl Methaclylate (PMMA), Acrylonitrile/Ethylene-Propylene-Diene/Styrene (AES), or Acrylate Styrene Acrylonitrile (ASA).
The mounting portion 12a has, for example, a clip-like shape having an opening in its upper portion, and the mounting portion 12a is inserted from the opened upper portion toward the lower end surface of the front shutter 5. Then, the mounting portion 12a is configured, for example, to be press fitted to the lower end surface of the front shutter 5, so that the mounting portion 12a is mounted to the lower end surface of the front shutter 5.
As illustrated in
The flexible portion 13 is made of a material having flexibility such as rubber, soft polyvinyl chloride having a hardness of substantially 60 degrees, or soft polymethyl methacrylate resin, and contacts the bottom plate 4 while being bent when the front shutter 5 is fully lowered. In other words, the flexible portion 13 is configured to be bent to contact the bottom plate 4 in a state of being pressed thereagainst. This can reduce creation of a gap on a surface where the flexible portion 13 contacts the bottom plate 4.
It should be noted that a contact portion indicates a range, having a width substantially equal to the width of the opening portion 7 (see
Here, it is preferable that a material of the flexible portion 13 has a hardness less than the hardness of the material of the hard portion 12.
Then, it becomes possible to prevent foreign matter from the outside from entering the interior of the body case 2, in a state in which this product is not used by bringing the flexible portion 13 into contact with the bottom plate 4 when the front shutter 5 is fully lowered.
It should be noted that, in an embodiment of the present disclosure, the front shutter protector 6 is described as being constituted by the hard portion 12 and the flexible portion 13, but it is not limited thereto.
For example, a configuration may be such that the flexible portion 13 is formed directly in the front shutter 5 without using the hard portion 12.
In specific, a configuration may be such that a coupling portion and a coupled portion are formed in the front shutter 5 and the flexible portion 13, respectively, such that they are assembled by fitting or the like. Further, a configuration may also be such that, depending on the materials of the front shutter 5 and the flexible portion 13, they are coupled by bonding, welding, or the like.
Next, a gap formed by the bottom plate 4 and the flexible portion 13 will be described in detail with reference to
As illustrated in
This enables a configuration in which the outside air can be drawn into the body case 2 through the gap 15 that is formed by contact between the flexible portion 13 and the projection 14, during the operation of the air conditioner 3. It should be noted that, although omitted in
Further, the gap 15, through which the outside air is drawn into the body case 2, may be formed by providing a recess 16 as illustrated in
Further, as illustrated in
As has been described above, in an embodiment of the present disclosure, the opening portion 7 is configured such that the outside air is drawn therethrough into the body case 2 or the air inside the body case 2 is blown out therethrough by the air conditioner 3, and it is possible to maintain cleanliness in the interior the body case 2 and reducing the load of the front shutter 5, when the biological safety cabinet 1 or the like is not used.
Further, it is possible to connect the interior of the body case 2 and the exterior thereof with the gap 15, while maintaining a state in which the flexible portion 13 of the front shutter protector 6 and the bottom plate 4 are in contact with each other by fully lowering the front shutter 5, even during the operation of the air conditioner 3. That is, it is possible to draw the outside air into the body case 2 through the gap 15.
Thus, it is possible to maintain cleanliness in the body case 2 and reduce the load of the front shutter 5 when the biological safety cabinet 1 or the like is not used. As a result, it is possible to ensure reliability as a biological safety cabinet 1 or the like.
Next, the placement and shape of the projection 14 provided in the bottom plate 4 will be described in detail, with reference to
It is assumed that the positional relationship between the bottom plate 4 and the front shutter 5 slightly varies due to variations in assembly and the like. A sparsely shaded area in
In contrast to the virtual range 21, a densely shaded area in
Here, the projection 114a having a substantially elliptical shape is illustrated as an example, but the shape is not limited thereto, and its external shape is not restricted but may be, for example, a rectangular shape, a circular shape, an irregular shape, or the like.
Further, in the case in which the projection 114a greater than the virtual range 21 is too large and its existence becomes an obstacle, a plurality of projections 114b smaller than the virtual range 21 may be provided to be distributed more broadly than in the virtual range 21, as illustrated in
Here, two small circular projections 114b are arranged, but the shape and number are not limited thereto. Further, the projection(s) 114a and the projection(s) 114b may be provided in a mixed manner in the bottom plate 4.
Further, the bottom plate 4 is a part on which a worker using the cabinet 1 may place his/her arm(s) to perform work. Thus, as illustrated in
This enables the projections 14, 114a, 114b to be placed so as to avoid the worker's arm(s), thereby being able to remove annoyance caused by the worker's arm(s) touching the projections 14, 114a, 114b. The description is given with the five projections 114a, 114b illustrated at three positions in
In the examples of the placement and shape of the projections 114a, 114b illustrated in
Further, in an embodiment of the present disclosure, the biological safety cabinet 1 has been described as an example, but it is not limited thereto, and a clean bench or the like may be used. That is, the clean bench is configured such that the air in the body case 2 is blown out through the opening portion 7 of the cabinet 1 illustrated in
That is, when the front shutter is fully lowered, the air in a body case is blown out through a gap portion formed in a contact portion between the bottom plate and the flexible portion, thereby being able to maintain cleanliness in the interior a body case and reduce the load of a front shutter when the clean bench or the like is not used, which can ensure reliability.
As has been described above, in the biological safety cabinet and the clean bench according to an embodiment of the present disclosure, reliability can be ensured as a biological safety cabinet and a clean bench.
Accordingly, for example, the utilization as the biological safety cabinet and the clean bench used for environmental laboratory equipment is greatly expected.
As has been described above, embodiments of the present disclosure can ensure reliability as a biological safety cabinet or the like. That is, an opening portion is configured such that outside air is drawn therethrough into a body case or the air in the body case is blown out therethrough by an air conditioner, and it is possible to maintain cleanliness in the interior the body case and reduce the load of a front shutter when a biological safety cabinet or the like is not used.
Further, it is possible to maintain a state in which a flexible portion of a front shutter protector and a bottom plate are in contact with each other by fully lowering a front shutter, as well as to connect the interior of a body case and the exterior thereof with a gap portion, even during an operation of an air conditioner.
Accordingly, it is possible to maintain cleanliness in the interior a body case and reduce the load of a front shutter even when a biological safety cabinet or the like is not used. As a result, it is possible to ensure reliability as a biological safety cabinet or the like.
It should be noted that embodiments described above are intended for easy understanding of the present disclosure and are not in any way to be construed as limiting the present disclosure. The present disclosure may be modified and improved without departing from the scope of the disclosure, and equivalents thereof are also encompassed by the disclosure.
Number | Date | Country | Kind |
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2015-225346 | Nov 2015 | JP | national |
This is a continuation application of International Patent Application No. PCT/JP2016/083655 filed Nov. 14, 2016, which claims the benefit of priority to Japanese Patent Application No. 2015-225346 filed Nov. 18, 2015. The full contents of the International Patent Application are incorporated herein by reference.
Number | Name | Date | Kind |
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3025780 | Russell | Mar 1962 | A |
3874754 | Saunders | Apr 1975 | A |
3895570 | Eagleson, Jr. | Jul 1975 | A |
4249463 | Hornby | Feb 1981 | A |
5380244 | Tipton | Jan 1995 | A |
6036737 | Smith | Mar 2000 | A |
7048625 | Anezaki | May 2006 | B2 |
Number | Date | Country |
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S64-075834 | Mar 1989 | JP |
H02-144157 | Jun 1990 | JP |
2005-270820 | Oct 2005 | JP |
2008-114179 | May 2008 | JP |
2014-193463 | Oct 2014 | JP |
2015-077554 | Apr 2015 | JP |
Entry |
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International Preliminary Report on Patentability issued in International Patent Application No. PCT/JP2016/083655, dated Oct. 31, 2017; with English translation. |
Written Opinion of the International Searching Authority, issued in International Patent Application No. PCT/JP2016/083655, dated Dec. 27, 2016; with English translation. |
Number | Date | Country | |
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20180264459 A1 | Sep 2018 | US |
Number | Date | Country | |
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Parent | PCT/JP2016/083655 | Nov 2016 | US |
Child | 15982845 | US |