The present invention relates to a liquid level sensor switch for electrically detecting the drop of liquid level lower than a specified level.
In general, a typical liquid level sensor switch of this kind is installed for example in an oil reservoir of a portable power generator engine so as to be actuated upon detection of the specified low level of oil in the reservoir.
A conventional liquid level sensor switch is constructed, as shown in
When the portable power generator is used on a slope, the above-described liquid level switch cannot detect the specified level of the oil because the float 4 inclines aside with its center bore 3 abutting on the side surface of the guide 2 as shown in
Furthermore, when the float 4 inclines with its center round bore 3 abutting on the side surface of the guide 2, the float 4 may adhere to the guide 2 by the effect of surface tension of oil on the abutting center bore portion of the float 4 as shown in
Accordingly, an object of the present invention is to provide a liquid level sensor switch comprising a case, a rod type guide vertically extending from the inside bottom of the case, a float having a center bore loosely inserting therein the guide and freely movable up and down along the guide inside the case, an electrode plate attached to the ring-shaped bottom of the float and fixed contacts secured onto the inside bottom surface of the case to be opposite to each other with the guide between them, wherein the float moves down with the drop of oil in the case along the guide until it reaches the lowest position in which it can put the electrode plate into contact with both the fixed contacts to produce electrical signal for detecting the specified level of oil, and which is further provided with technical means for preventing incomplete contact of the electrode plate with one of the paired contacts having different heights when using the switch in the tilted state in which the float inclines aside with its center bore abutting on the side surface of the guide.
Specifically, the liquid level sensor switch according to the present invention uses the guide having a body tapered in the direction from the lower end to the top end or the float having the center bore whose diameter gradually increasing from the bottom side to the top side of the float.
The liquid level sensor switch according to the present invention is further provided with technical means for suppressing the surface tension of oil between the bore and guide when the float inclines aside with its bore abutting on the side surface of the guide.
Specifically, the liquid level sensor switch uses a combination of a cylindrically formed guide and a float having a center bore having a polygonal cross section or a combination of a guide having a polygonal cross section and a float having a round center bore.
The liquid level sensor switch according to the present invention uses a guide tapering toward the top end or a float having a center bore tapering toward the root end, which can absorb the variations in height of paired fixed contacts to assure the complete contact of an electrode plate with the both paired contacts even when the float inclines aside with its center bore abutting on the guide.
Furthermore, the liquid level sensor switch according to the present invention uses a combination of a guide having a round cross section and a float having a center bore formed of polygonal cross section or a combination of a guide having polygonal cross section and a float having a center bore formed of round cross section, wherein the float inclines aside with its center bore abutting on the guide by a small contacting surface which may reduce the effect of surface tension of oil on the contacting surface, preventing the float from adhering to the guide.
Referring to FIGS. 1 to 3, a liquid level sensor switch according to the first embodiment of the present invention comprises an open-top cylindrical case 1 formed of insulating synthetic resin, a rod type guide 2 extending upward from the center of the inside bottom of the case and a float 4 having a center bore 3 and movably mounted on the guide 2 with a gap s around the guide 2 in the center bore 3 to allow the float 4 to move up and down along the guide 2 inside the case 1. The float has an electrode plate 5 attached to its open bottom surface. Paired fixed contacts 6 and 7 are secured onto the inside bottom of the case 1 to be opposite to each other with the guide 2 between them. A case 1 is covered at its top with a case cover 8 having a window 9 formed therein for filling oil into the case.
In the liquid level sensor switch, the float 4 moves down with the drop of oil level in the case 1 until the electrode plate 5 of the float 4 makes contact with both the paired contacts 6 and 7 to turn on a bridged circuit between the contacts to output an electric signal indicating that the level of oil in the case 1 becomes lower than a specified level.
The liquid level sensor switch according to the present invention specifically adopts the guide 2 which body being gradually smaller in diameter toward its top end.
As shown in
In this embodiment, similarly with the preceding embodiment, the taper angle a of the center bore 3 of the float 4 is predetermined to be larger than the maximum inclination angle βmax formed between the paired fixed contacts 6 and 7 due to a maximum variation in height of the contacts. As shown in
In
This embodiment uses a combination of a cylindrical guide 2 and a float 4 having a center bore 3 of polygonal (e.g., octagonal) cross section as the above-mentioned technical means.
In the shown embodiment, when the guide 2 abuts against one of polygonal flat faces of the center bore 3 as shown in
When the guide 2 abuts against two of polygonal flat faces of the center bore 3 of the float as shown in
Consequently, when the float 4 inclines aside with its center 3 abutting on the guide 2, it cannot adhere to the guide by the surface tension of the liquid. The float 4 can smoothly move with a change in liquid level and can reliably detect the specified liquid level in the case.
Table 1 shows results of experiments with two groups of eight samples No. 1 to 8 of liquid level sensor switches, one group each using a combination of a cylindrical guide 2 and a float 4 having a round center bore 3 and the other group each using a combination of cylindrical guide 2 and a float 4 having octagonal center bore 3. Each sample was tested by measuring a level of oil at which the liquid level sensor switch was turned on while gradually draining oil from the case and by measuring a level of oil at which the switch was turned off while gradually refilling oil into the case. In Table 1, the differences between the measured levels (switching-ON level and switching-OFF level) are indicated as the result of the experiments with the samples.
In the case of using a combination of a float 4 having a round center bore 3 and a guide 2 having a polygonal (e.g., octagonal) cross-section can effectively suppress the effect of surface tension of liquid on the float 4 inclined with its center bore 3 abutting on the guide 2.
As is apparent from the foregoing, the liquid level sensor switch according to the present invention, which comprises a case incorporating a rod type guide vertically extending from the inside bottom of the case and a float having a center bore and movably mounted on the guide with a gap around the guide in the center bore for moving up and down along the guide with the rise and drop of liquid level in the case, an electrode plate 5 attached to the bottom surface of the float and paired fixed contacts secured to the inside bottom of the case in opposition to each other with the guide between them and which turns ON upon the detection of the specified low level of liquid in the case when float 4 reaches its low-level position with the electrode plate putted in contact with both the paired contacts, wherein the switch adopts the guide tapering upward from its bottom end or/and the float having a center bore being gradually larger in diameter from the bottom to the top and a combination of the cylindrical guide and the float having its polygonal center bore or a combination of the guide having polygonal cross section and the float having its round center bore. By the provision of the above-described simple technical means, the liquid level sensor switch according to the present invention can effectively operate in a tilted state with the float being inclined with its center bore abutting on the guide body with no fear of incomplete contact of the electrode plate with the paired fixed contacts due to variations in height of the contacts and no fear of adhering the float to the guide due to the effect of surface tension of liquid, thus offering the advantages in wide industrial applications.
Number | Date | Country | Kind |
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200851 | Jun 2005 | JP | national |