MULTI-PURPOSE MULTI-DIRECTIONAL ROTATOR AND WORKING METHOD OF SAME
20230286116 ยท 2023-09-14
Inventors
Cpc classification
B25B13/50
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A multi-purpose multi-directional rotator includes: a half-hollowed housing, the interior thereof connected with a fixing pinhole plate, and retractable load rods inserted thereon; the fixing pinhole plate is inserted with a number of fixing pins; the top end of the fixing pin is connected with a spring, and the bottom end thereof is provided with a rubber sheet. The present invention can be used to rotate different shapes of objects through a number of fixing pins inside, and the fixing pins are in close contact with the object by pressing the half-hollowed housing to further squeeze the springs; thereafter, the retractable load rods are pulled out and moved to rotate the rotator, allowing the object to be rotated through the friction force without being limited by the appearance and shape of the object, which adequately meets the rotation needs of some worn and odd-shaped objects.
Claims
1. A multi-purpose multi-directional rotator, comprising: a half-hollowed housing, the interior thereof in connection with a fixing pinhole plate; retractable loads, perpendicularly inserted in said half-hollowed housing; said fixing pinhole plate, a number of fixing pins inserted thereon; and said fixing pins, the top end of each thereof connected with a spring, the bottom end of each thereof provided with a rubber sheet.
2. The rotator according to claim 1, wherein a upper half part of said half-hollowed housing is an approximately hemispherical body, and lower half part thereof is a cylindrical body, with the interior of said cylindrical body being in connection with said circular fixing pinhole plate.
3. The rotator according to claim 1, wherein said retractable load rods are fixed on said half-hollowed housing, and can be pulled out and retracted.
4. The rotator according to claim 1, wherein said fixing pinhole plate is inserted with a number of said fixing pins.
5. The rotator according to claim 1, wherein the top end of said fixing pin is connected with said spring, and the top end of said spring points to the approximately hemispherical upper part of said half-hollowed housing; the bottom end of said fixing pin is provided with a rubber sheet adapted to increase friction when in contact with an object; a insertion direction of said fixing pin points to the center of said approximately hemispherical body of the upper half part of said half-hollowed housing.
6. A working method of the multi-purpose multi-directional rotator according to claim 1, comprising: placing said multi-purpose multi-directional rotator on the top of an object to be rotated, allowing said rubbers on the bottom ends of said fixing pins to be attached on said object, and pressing said half-hollowed housing to further squeeze said fixing pins to tightly fit on said object; pulling out said retractable load rods need to be used on said multi-purpose multi-directional rotator to make said multi-purpose multi-directional rotator rotate to further rotate said object through the friction generated between the bottom ends of said fixing pins and said object; and returning said fixing pins to their original positions through said springs on the top ends of said fixing pins of said multi-purpose multi-directional rotator, and retracting said retractable load rods to their original positions after use for the convenience of next use.
7. A working method of the multi-purpose multi-directional rotator according to claim 2, comprising: placing said multi-purpose multi-directional rotator on the top of an object to be rotated, allowing said rubbers on the bottom ends of said fixing pins to be attached on said object, and pressing said half-hollowed housing to further squeeze said fixing pins to tightly fit on said object; pulling out said retractable load rods need to be used on said multi-purpose multi-directional rotator to make said multi-purpose multi-directional rotator rotate to further rotate said object through the friction generated between the bottom ends of said fixing pins and said object; and returning said fixing pins to their original positions through said springs on the top ends of said fixing pins of said multi-purpose multi-directional rotator, and retracting said retractable load rods to their original positions after use for the convenience of next use.
8. A working method of the multi-purpose multi-directional rotator according to claim 3, comprising: placing said multi-purpose multi-directional rotator on the top of an object to be rotated, allowing said rubbers on the bottom ends of said fixing pins to be attached on said object, and pressing said half-hollowed housing to further squeeze said fixing pins to tightly fit on said object; pulling out said retractable load rods need to be used on said multi-purpose multi-directional rotator to make said multi-purpose multi-directional rotator rotate to further rotate said object through the friction generated between the bottom ends of said fixing pins and said object; and returning said fixing pins to their original positions through said springs on the top ends of said fixing pins of said multi-purpose multi-directional rotator, and retracting said retractable load rods to their original positions after use for the convenience of next use.
9. A working method of the multi-purpose multi-directional rotator according to claim 4, comprising: placing said multi-purpose multi-directional rotator on the top of an object to be rotated, allowing said rubbers on the bottom ends of said fixing pins to be attached on said object, and pressing said half-hollowed housing to further squeeze said fixing pins to tightly fit on said object; pulling out said retractable load rods need to be used on said multi-purpose multi-directional rotator to make said multi-purpose multi-directional rotator rotate to further rotate said object through the friction generated between the bottom ends of said fixing pins and said object; and returning said fixing pins to their original positions through said springs on the top ends of said fixing pins of said multi-purpose multi-directional rotator, and retracting said retractable load rods to their original positions after use for the convenience of next use.
10. A working method of the multi-purpose multi-directional rotator according to claim 5, comprising: placing said multi-purpose multi-directional rotator on the top of an object to be rotated, allowing said rubbers on the bottom ends of said fixing pins to be attached on said object, and pressing said half-hollowed housing to further squeeze said fixing pins to tightly fit on said object; pulling out said retractable load rods need to be used on said multi-purpose multi-directional rotator to make said multi-purpose multi-directional rotator rotate to further rotate said object through the friction generated between the bottom ends of said fixing pins and said object; and returning said fixing pins to their original positions through said springs on the top ends of said fixing pins of said multi-purpose multi-directional rotator, and retracting said retractable load rods to their original positions after use for the convenience of next use.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0034] The following embodiments will further describe a multi-purpose multi-directional rotator and working method thereof according to the present invention in detail with reference to the accompanying drawings. Apparently, the described embodiments are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.
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[0037] The retractable load rods 1 are fixed on the half-hollowed housing 2, and retractable.
[0038] The fixing pinhole plate 3 is inserted with a number of the fixing pins 4.
[0039] The top end of the fixing pin 4 is connected with the spring 5, and the top end of the spring 5 points to the upper half part of the approximately hemispherical half-hollowed housing 2; the bottom end of the fixing pin 4 has a rubber sheet used to increase the friction when being contact with an object; the insertion direction of the bottom end of the fixing pin 4 points to the center of the approximate hemisphere of the upper half part of the half-hollowed housing 2.
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[0042] The specific embodiments described herein are intended to be illustrative of the invention only. Those skilled in the art to which the present invention pertains may make various modifications or supplements to the described specific embodiments or replace them in similar ways without departing from the protection scope of the present invention.