Low power rotation compressor
Abstract
A low power rotation compressor includes a base, a rotation disk, a piston structure, and a casing. When the rotation disk is rotated, the piston structure is moved by rotation of the rotation disk, to co-operate with the cylinder structure and the slide-way, to press the air contained in the air collection container of the casing into the pressure storage container of the casing, thereby producing a required pressure simultaneously. Thus, the low power rotation compressor may use a low power motor to obtain a higher pressure and a higher air exhaust rate, thereby increasing the efficiency and decreasing the cost.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A low power rotation compressor, comprising a base, a rotation disk, a piston structure, and a casing, wherein:
the base has a body having an inside formed with a hollow receiving space, the receiving space of the body of the base has an inside provided with a slide-way which is in turn formed with a first slope section, a rising section, and a second slope section; the rotation disk is rotatably mounted in the base, and includes a disk body rotatably mounted in the receiving space of the base, the disk body of the rotation disk has a periphery provided with multiple cylinder structures; the piston structure is mounted in each of the multiple cylinder structures of the disk body of the rotation disk to perform a reciprocating movement therein; and the casing is secured on the base, and has a surface provided with an air collection container, and a pressure storage container located opposite to the air collection container; when the rotation disk is rotated, the piston structure is moved by rotation of the rotation disk, and co-oper-operatethe cylinder structure and the slide-way, to press the air contained in the air collection container of the casing into the pressure storage container of the casing, thereby producing a pressure simultaneously.
2 . The low power rotation compressor in accordance with claim 1 , wherein the body of the base has a bottom formed with a circular hole communicating with the receiving space.
3 . The low power rotation compressor in accordance with claim 1 , wherein the receiving space of the body of the base has a top opening provided with an enlarged annular flange which has a periphery formed with multiple through holes, and the casing is rested on the enlarged annular flange of the base and has a periphery formed with multiple through holes aligning with the multiple through holes the enlarged annular flange of the base.
4 . The low power rotation compressor in accordance with claim 2 , wherein the bottom of the body of the base is provided with a protruding sleeve communicating with the circular hole of the body of the base.
5 . The low power rotation compressor in accordance with claim 2 , wherein the rotation disk includes a pivot shaft protruding from a bottom of the disk body and passing through the circular hole of the body of the base.
6 . The low power rotation compressor in accordance with claim 5 , wherein the pivot shaft of the rotation disk is provided with at least one ball bearing and at least one belt wheel.
7 . The low power rotation compressor in accordance with claim 1 , wherein the piston structure includes a spindle, a spring, an extension rod, at least one piston ring, and a wheel disk, the spindle is slidably mounted in each of the multiple cylinder structures of the disk body of the rotation disk and has a bottom formed with a mounting hole for mounting the extension rod, the spring is mounted on the spindle, the wheel disk is secured on a top of the spindle, and the at least one piston ring is mounted on a periphery of the wheel disk.
8 . The low power rotation compressor in accordance with claim 7 , wherein the top of the spindle is formed with a threaded portion, and the wheel disk has a bottom formed with a screw bore screwed on the threaded portion of the spindle.
9 . The low power rotation compressor in accordance with claim 7 , wherein each of the multiple cylinder structures of the disk body of the rotation disk has a bottom formed with a through hole for passage of the spindle of the piston structure.
10 . The low power rotation compressor in accordance with claim 1 , wherein the air collection container of the casing has an inside formed with a hollow air collection chamber, and has a periphery formed with an air inlet communicating with the air collection chamber.
11 . The low power rotation compressor in accordance with claim 1 , wherein the pressure storage container of the casing has an inside formed with a hollow storage chamber, and has a periphery formed with an air outlet communicating with the storage chamber.Join the waitlist — get patent alerts
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