Air compressor
09915253 ยท 2018-03-13
Inventors
Cpc classification
F04B39/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/121
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/7793
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F04B41/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B35/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B41/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An improved air compressor includes a cylinder fitted with a piston body and an air storage container. The cylinder and the air storage container are detachably assembled to define an air chamber. A metal seat with a through hole is provided on top of the cylinder. A valve plug is spring-biased against the metal seat. The air storage container is provided with an elongated pressure indicator, which includes a transparent tube defining therein a first bore and a second bore, between which a tapered annular surface is formed. When the air pressure within the air storage container exceeds a predetermined pressure set for the air compressor, the elongated pressure indicator allows excess air to flow into the first bore of the transparent tube and pass through the tapered annular surface to be released to the ambient environment, so that objects can be prevented from damages due to excessive inflations.
Claims
1. In an air compressor that includes a main frame, a motor mounted to the main frame, and a cylinder fitted with a piston body and provided at the main frame, the motor capable of driving the piston body to conduct reciprocating motion within the cylinder for producing compressed air, wherein the improvement comprises: the cylinder has an open bottom, through which the piston body is fitted into the cylinder, and a top wall opposite to the open bottom, the top wall being not fully closed, wherein the cylinder is provided with a first flange at its surrounding wall, near its top wall, the first flange is provided with two opposite holding portions each defining a first recess; an air storage container has an open bottom and a closed top and defines therein an inner space terminating at the open bottom, the air storage container being provided at its open bottom with a second flange that is provided with two opposite holding portions each defining a second recess; whereby the air storage container is capable of being fitted over the cylinder and rotated about the cylinder to allow the second flange of the air storage container to slide in the first recesses of the cylinder and allow the first flange of the cylinder to slide in the second recess of the air storage container, so that the air storage container is detachably mounted to the cylinder, thereby sealing the cylinder and defining an air chamber therebetween, wherein the air storage container is provided with at least two outlets, one of which is connected with an elongated pressure indicator and another of which is connected with a hose provided with an air nozzle, wherein the elongated pressure indicator includes a transparent tube, a slider, a coiled compression spring, and a cap, wherein the transparent tube has a first segment and a second segment, the second segment being joined to one outlet of the air storage container and defining therein a second bore, the first segment being formed integrally with the second segment and having an open end and defining therein a first bore that communicates with the second bore and terminates at its open end, the first bore having a diameter greater than the second bore, a tapered annular surface formed between an inner surface of the first segment, which defines the first bore, and an inner surface of the second segment, which defines the second bore, a pressure-indicating scale being provided at an outer surface of the second segment; the slider is a generally hollow cylindrical body having a closed end and an open end and defining therein an inner space that terminates at the open end, the slider being provided with a first central tube that extends from an inner surface of its closed end and extends through its inner space; the coiled compression spring is fitted into the inner space of the slider, around the first central tube, one end of the coiled compression spring being urged against the inner surface of the closed end of the slider; the cap is provided with a second central tube and threadedly mounted to the open end of the first segment of the transparent tube; whereby the compressed air contained in the air storage container can flow into the inner space of the second segment via the outlet and thus force the slider to move along the second bore and the first bore towards the open end of the first segment of the transparent tube for measuring the pressure of the compressed air within the air storage container, and furthermore, when the closed end of the slider approaches the tapered annular surface of the transparent tube, the compressed air can be released into the ambient environment.
2. The air compressor of claim 1, wherein the first bore of the first segment has a radius of X, and the second bore of the second segment has a radius of Y, wherein X is greater than Y.
3. The air compressor of claim 1, wherein the first central tube of the slider defines a plurality of slits at its surrounding wall, along its lengthwise direction, the slider defines an annular groove at its surrounding wall, near its closed end, and a colored O-ring is fitted into the annular groove of the slider.
4. The air compressor of claim 1, wherein the coiled compression spring of the elongated pressure indicator slightly contacts the inner surface that defines the inner space of the slider.
5. The air compressor of claim 1, wherein the cap has an inner base, the second central tube extending from the inner base, the second central tube has a diameter less than the inner base such that an annular surface is formed between the inner base and the second central tube, the second central tube defining therein a central hole that extends from a bottom wall thereof to an open end (52) thereof, the bottom wall defining a vent, through which the compressed air from the air storage container can be released into the ambient environment, the diameter of the central hole of the second central tube being greater the external diameter of the first central tube of the slider, the external diameter of the second central tube of the cap being less than the internal diameter of the coiled compression spring, the other end of the coiled compression spring being urged against the annular surface between the inner base and the second central tube.
6. The air compressor of claim 1, wherein the first segment is provided at its open end with external threads while the cap is provided at its inner surface with internal threads corresponding to the external threads, whereby the compression of the coiled compression spring is adjusted by the depth of the cap being threadedly mounted to the open end of the first segment, so that the pressure of the compressed air can be measured more properly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(5)
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(10)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(11) Referring to
(12) The cylinder 6 has an open bottom 60, through which the piston body 76 can be fitted into the cylinder 6, and a top wall 61, on which a tubular projection 66 is formed (see
(13) A cylindrical air storage container 8 has an open bottom 81 and a closed top 88 and defines therein an inner space 82 terminating at the open bottom 81. A plurality of spaced-apart ribs 89 is provided at an inner surface of the air storage container 8. The air storage container 8 is provided at its open bottom 81 with a second flange 85 of appropriate thickness, which is provided with two opposite U-shaped holding portions 851, each of which defines a second recess 850. A central column 86 is provided at an inner surface of the closed top 88 of the air storage container 8 and extends downwardly at a predetermined distance. An annular protrusion 87 is provided at the inner surface of the closed top 88 of the air storage container 8, around the central column 86, thus defining an annular groove 80 therebetween.
(14) A valve plug 92, usually made of plastic, is placed on the metal seat 64 for sealing the second through hole 640 thereof. In operation, the valve plug 92 may be moved at a high frequency, which tends to increase the temperature of the metal seat 64. Since the metal seat 64 can undergo deformation due to high temperature, so that the sealing function of the valve plug 92 will not be affected. The air storage container 8 can be fitted over the cylinder 6 and rotated about the cylinder 6 to allow the second flange 85 of the air storage container 8 to slide in the first recesses 652 of the cylinder 6 and allow the first flange 65 of the cylinder 6 to slide in the second recess 850 of the air storage container 8, so that the air storage container 8 is detachably mounted to the cylinder 6, thereby sealing the cylinder 6 and defining an air chamber 99 therebetween (see
(15) The elongated pressure indicator generally includes a transparent tube 1, a slider 3, a coiled compression spring 4, and a cap 5, wherein the transparent tube 1 has a first segment 11 and a second segment 12. The second segment 12 is joined to the outlet 83 and defines therein a second bore 102. The first segment 11, which is formed integrally with the second segment 12, has an open end 112 provided with external threads 111 and defines therein a first bore 101 that communicates with the second bore 102 and terminates at its open end 112. As shown in
(16) The slider 3, which is a generally hollow cylindrical body, has a closed end 31 and an open end 32 and defines therein an inner space 30 terminating at the open end 32. The slider 3 is provided with a first central tube 37 that extends from an inner surface of its closed end 31 and extends through the inner space 30. The first central tube 37 of the slider 3 defines at its surrounding wall a plurality of slits 371 extending along its lengthwise direction. The slider 3 defines an annular groove 33 at its outer wall, near its closed end 31. A colored O-ring 34 is fitted into the annular groove 33 of the slider 3. The displacement of the slider 3 is generally proportional to the pressure of the compressed air within the air storage container 8. Thus, the total length (L) of the second bore 102 of the second segment 12 depends on the maximum pressure of the compressed air within the air storage container 8 to be measured (see
(17) As shown in
(18) As shown in
(19) In operation, as shown in
(20) As a summary, one feature of the present invention is that the air storage container 8 can be detachably mounted to the cylinder 6 to define an air chamber 99. A second feature of the present invention is that the first through hole 62 of the tubular projection 66 can reduce the motion resistance of the piston body 76 within the cylinder 6, so that the piston body 76 can be moved more smoothly. A third feature of the present invention is that the metal seat 64 can undergo high frequency movement of the valve plug 92 without deformation, so that the sealing effect of the valve plug 92 can be ensured. A fourth feature of the present invention is that the air storage container 8 is provided at an outlet thereof with an elongated pressure indicator, which can reflect the pressure of the compressed air within the air storage container 8, and furthermore, which allows excess compressed air to be released into the ambient environment without installing additional safety valves or pressure relief valves, so that objects, such as tires, can be prevented from being overly inflated.