The present invention relates to a sensor fixation device, and more particularly, to the one mounted on process system constituting equipment.
An operation detection device 2 as shown in
PTL 1: JP-A-2013-170686
The operation detection device 2 has a certain point to be improved as follows. The operation detection device 2 is constituted by the retaining member 4, the grip member 5, the U bolt 6, and the pair of nuts 7, which are independent from one another. In the case where the respective members are assembled for mounting, there may cause the problem of dropping the nuts 7 from the hand to be lost. Especially in the case of the process system constituting equipment, the mount space is likely to be limited. Furthermore, the temperature of the process system constituting equipment tends to be made high, which may cause loss of the nut 7.
It is an object of the present invention to provide a sensor fixation device capable of preventing loss of the mount nut.
Means for solving the aforementioned problem of the present invention, and advantageous effects derived therefrom will be described hereinafter.
The sensor fixation device according to the present invention is mounted on a mount portion of a process system constituting equipment, which is formed along a predetermined mount axis, and includes a body part disposed along an outer edge of the mount portion, having a first opening at one end and a second opening at the other end, a mount bolt which is inserted into the first opening and the second opening of the body part along a direction intersecting the mount axis in a mount state where the body part is disposed along the outer edge of the mount portion, and a mount nut for securing the mount bolt to the body part. The mount nut is rotatably retained with the body part so as to be screwed to the mount bolt.
The mount nut may be retained integrally with the body part. Accordingly, this makes it possible to prevent loss of only the mount nut resulting from dropping during the mount work.
In the sensor fixation device according to the present invention, the mount nut is rotatable in a direction intersecting an insertion direction of the mount bolt.
The mount nut may be disposed perpendicularly to the mount bolt irrespective of the angle at which the body part is disposed. This makes it possible to easily screw the mount bolt to the mount nut.
In the sensor fixation device, the body part includes a first side wall and a second side wall which face with each other at the other end in the mount state, while being perpendicular to the mount axis. The first side wall includes a predetermined first side wall opening. The second side wall includes a predetermined second side wall opening. The mount nut has a spherical shape disposed between the first side wall and the second side wall, which has a diameter longer than a distance between the first and the second side walls, and is configured to be engaged with the first and the second side wall openings.
The mount nut may be retained integrally with the body part. This makes it possible to prevent loss of only the mount nut by dropping during the mount work. Irrespective of the angle at which the body part is disposed, the mount nut may be perpendicularly disposed to the mount bolt. This makes it possible to easily screw the mount bolt to the mount nut.
Embodiments of the present invention will be described in detail referring to the drawings.
Referring to
Referring to
The sensor fixation body 110 is a member for fixing the vertical steam trap sensor S. The steam trap sensor S is configured to obtain an operation state of the steam trap.
As
The sensor fixation body 110 includes a connecting arm 113 extending to the left and right from the sensor mount opening 111. The connecting arm 113 has an opening (not shown) for connecting the mount body 130 (see
Referring to
The trap abutment protrusion 132 abuts on the trap opening T1 of the steam trap T in the mount state of the sensor fixation device 100. The sensor fixation device 100 is mounted on the trap opening T1 with three points including one end of the steam trap sensor S retained with the sensor fixation body 110, and each of the left and right trap abutment protrusions 132 of the mount body 130.
As
Referring to
The nut spherical part 173 is formed continuously from one end of the nut part 171. The nut spherical part 173 may be configured to have a part of a true sphere, for example, which allows smoother revolving or rotating motion. The nut spherical part 173 has a spherical outer shape with a diameter D longer than the length d between the first side wall 133a and the second side wall 133b of the nut mount portion 133 of the mount body 130. The nut spherical part 173 is interposed between the first side wall 133a and the second side wall 133b, and partially engaged with the first mount nut retaining opening 133a1 and the second mount nut retaining opening 133b1.
As a result, the mount nut 170 may be retained integrally with the mount body 130. Therefore, the use of the sensor fixation device 100 allows prevention of loss of only the mount nut 170 resulting from dropping during the mount work.
The mount nut 170 is rotatably retained in directions indicated by arrows a11 and a13 which intersect the trap opening axis JT as shown in
Accordingly, the use of the sensor fixation device 100 allows the mount nut 170 to be disposed perpendicularly to the mount bolt 150 irrespective of the angle at which the mount body 130 is disposed. This makes it possible to easily screw the mount bolt 150 to the mount nut 170.
(1) Mounting of sensor fixation device 100 on trap opening T1:
In the first embodiment as described above, the sensor fixation device 100 is disposed at the outer circumferential edge of the trap opening T1 using the sensor fixation body 110 and the mount body 130 so as to be mounted on the trap opening T1 of the steam trap T. However, arbitrary means may be employed without limitation so long as the sensor fixation device 100 is disposed along the outer edge of the trap opening T1.
Referring to a sensor fixation device 200 as shown in
Referring to a sensor fixation device 300 as shown in FIG. 7, it is possible to employ a short mount bolt 350 for a trap opening T5 with small diameter.
(2) Steam Trap T:
In the first embodiment as described above, the steam trap has been described as the process system constituting equipment. However, it is not limited to the one as described above so long as the process system constituting equipment of arbitrary type has a predetermined opening. For example, the pump, reducing valve, separator, filter and the like may be employed as various types of the fluid control equipment.
The sensor fixation device according to the present invention may be applied to the fixation device for mounting a predetermined sensor on the steam trap.
Number | Date | Country | Kind |
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2014-005506 | Jan 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2015/050301 | 1/7/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2015/107962 | 7/23/2015 | WO | A |
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Number | Date | Country | |
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20160377458 A1 | Dec 2016 | US |