OSCILLATING SANDING MACHINE
20250162098 ยท 2025-05-22
Inventors
Cpc classification
International classification
Abstract
An oscillating sanding machine includes a base column, an oscillating sanding spindle, a conveying unit, a first driving unit, a second driving unit, and a third driving unit. The first driving unit is for driving a rotating shaft of the oscillating sanding spindle to rotate about an axis it extends and the second driving unit is for driving the oscillating sanding spindle to move to and fro along the axis and perform oscillation. The conveying unit is located under the oscillating sanding spindle and separated from the oscillating sanding spindle by a predetermined distance. The third driving unit is mounted on the base column and connected to the conveying unit, so as to drive the conveying unit. The oscillating sanding machine provides high-precision control and ensures surface uniformity of sanded workpieces.
Claims
1. An oscillating sanding machine, comprising: a base column; an oscillating sanding spindle, being installed on the base column; a conveying unit, being installed on the base column so that the conveying unit is located under the oscillating sanding spindle and separated from the oscillating sanding spindle by a predetermined distance; a first driving unit, being installed on the base column and connected to a rotating shaft of the oscillating sanding spindle so as to drive the oscillating sanding spindle to rotate about an axis thereof; a second driving unit, being installed on the base column and connected to the oscillating sanding spindle so as to drive the oscillating sanding spindle to move to and fro along the axis; and a third driving unit, being installed on the base column and connected to the conveying unit so as to drive the conveying unit.
2. The oscillating sanding machine of claim 1, wherein the conveying unit comprises a first axle, a second axle, a plurality of fixing members, a support plate, and a conveying belt, in which the support plate is mounted on the base column so that two laterals of the support plate are coupled to the first axle and the second axle through the fixing members, and the first axle is connected to the third driving unit, while the conveying belt is routed around the support plate, the first axle, and the second axle.
3. The oscillating sanding machine of claim 2, wherein the base column further comprises a baseplate, and the baseplate has an edge provided with a height adjuster that is coupled with the support plate, in which the height adjuster is formed by assembling a bolt to a rotating unit and used to make the conveying unit move upward or downward.
4. The oscillating sanding machine of claim 3, wherein the conveying unit is laterally provided with a plurality of positioning members, which serves to limit relative displacement between the conveying unit and the baseplate.
5. The oscillating sanding machine of claim 2, wherein the fixing members coupled to two ends of the second axle are each coupled to a respective incline-adjusting structure, and the incline-adjusting structures are used to adjust an incline angle of the second axle with respect to the level.
6. The oscillating sanding machine of claim 5, wherein each of the incline-adjusting structures comprises a first fixing section, a second fixing section, and an adjusting bolt, in which the first fixing section is provided at a lateral of the support plate, and the second fixing section is provided at a lateral of the fixing member so that the first fixing section and the second fixing section are at an identical altitude and the adjusting bolt is screwed into and passes through both of the first fixing section and the second fixing section.
7. The oscillating sanding machine of claim 1, wherein the oscillating sanding spindle is cased in a first casing part, and the first driving unit is partially cased in a second casing part, in which the first casing part and the second casing part are both fixed to the base column.
8. The oscillating sanding machine of claim 7, wherein the first casing part has an end thereof away from the first driving unit provided with a positioning hole that receives a bearing seat, and the bearing seat holds therein a bearing, in which the oscillating sanding spindle has one end thereof coupled with the bearing.
9. The oscillating sanding machine of claim 8, wherein a plurality of fixing screws is symmetrically arranged to fix the first casing part and the second casing part together, in which the fixing screws are used to finely adjust the first casing part and in turn the oscillating sanding spindle in terms of levelness.
10. The oscillating sanding machine of claim 1, wherein the second driving unit comprises a gear box, a cam, a link and a slider, in which the cam is coupled to an output shaft of the gear box, and the link has one end thereof eccentrically coupled with the cam and an opposite end thereof coupled with the slider, while the slider is transmissively coupled with the oscillating sanding spindle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
[0015] Referring to
[0016] The base column 10 is further provided with a console 13. The console 13 is configured to adjust the rotational speeds of the first driving unit 41, the second driving unit 42, and the third driving unit 43.
[0017] With the foregoing configuration, the present invention provides the following benefits.
[0018] First, the sanded workpiece surface is smooth and uniform because the oscillating sanding spindle 20 performs multi-direction movements, including rotation and oscillation. Also, the sanding process is efficient and consistent throughout a workpiece surface.
[0019] Second, high-precision control can be achieved because the base column 10 uses plural drivers to control movements of the oscillating sanding spindle 20 and the conveying unit 30 separately. This enables precise sanding and prevents over- and under-removal of material from the workpiece.
[0020] Now referring to
[0021] Still referring to
[0022] Also, as shown in
[0023] Reference is made to
[0024] Referring to
[0025] Now referring to
[0026] Moreover, the conveying unit 30 is laterally provided with a plurality of positioning members 37. The positioning members 37 serve to limit relative displacement between the conveying unit 30 and the baseplate 11. By screwing the positioning members 37 to tight, the relative distance between the conveying unit 30 and the baseplate 11 can be narrowed, thereby preventing the conveying unit 30 from performing uncontrolled upward or downward displacement. When the positioning members 37 are screwed to loose, the conveying unit 30 can be moved upward or downward by the height adjuster 12. After the foregoing adjustment, the positioning members 37 can be screwed to tight again to position the conveying unit 30 at the adjusted position.
[0027] Now referring to
[0028] With the foregoing configuration, during replacement of the conveying unit 30, to ensure that the newly installed conveying unit 30 is posed at the same angle as the replaced one, the incline-adjusting structure 36 can be used to perform fine adjustment for inclining the second axle 32 and thereby pose the conveying unit 30 at the desired angle. For example, at the left end of the second axle 32 that is positioned levelly, by screwing the adjusting bolt 363 into the first fixing section 361 and the second fixing section 362, the relative distance between the first fixing section 361 and the second fixing section 362 is narrowed, so the left end of the second axle 32 moves upward. At this time, with the adjusting bolt 363 at the right end of the second axle 32 remains unoperated, the second axle 32 becomes inclined toward its lower right corner.