1. Field of the Invention
The present invention relates to a linear guideway, and more particularly to an adjusting structure for an oil feeding device of a linear guideway.
2. Description of the Prior Art
A conventional end cap (P1) for a linear guideway (as shown in
A, forming the threaded hole P11 requires the use of a tapping machine, and the tapping machine is unable to fix the initial angle of the threads of the threaded hole P11 at the same position. When the oil nozzle A is threaded in the threaded hole P11, the feeding angle of the nozzle A is fixed and cannot be adjusted according to user's requirement.
B, the tapping machine occupies a certain amount of mould space, and accordingly the cooling passage must be reduced or cancelled, so that it is unable to use the cooling passage to effectively cool down the mould, resulting in a temperature increase of the mould, and the structure of the end cap P1 is likely to be deformed.
To effectively solve the aforementioned problems, the inventor of the present invention, on the basis of the accumulated experience and skills associated with the linear transmission field, has developed a brand new an adjusting structure for an oil feeding device of a linear guideway.
The primary objective of the present invention is to provide an adjusting structure for an oil feeding device of a linear guideway, wherein the feeding angle of the oil nozzle can be adjusted by the oil nozzle seat and the end cap.
To obtain the abovementioned objective, an adjusting structure for an oil feeding device of a linear guideway in accordance with the present invention comprises: an end cap and an oil nozzle seat. The oil nozzle is adjusted by the second positioning portion of the oil nozzle and the first positioning portion of the end cap, and the oil nozzle seat to be movable or rotatable or positioned relative to the end cap, allowing the user to adjust the feeding angle of the oil nozzle.
The secondary objective of the present invention is to provide an adjusting structure for an oil feeding device of a linear guideway, wherein the end cap has a space large enough to accommodate cooling passage, thus providing a better cooling effect.
To obtain the abovementioned objective, an adjusting structure for an oil feeding device of a linear guideway in accordance with the present invention comprises: an end cap and an oil nozzle seat. With the cooperation of the oil nozzle seat and the end cap, the thread structure can be reduced, so that the end cap will have a great enough space to accommodate the cooling passage, thus reducing the high-temperature caused deformation of the end cap.
The present invention will be more clear from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
An adjusting structure for an oil feeding device of a linear guideway in accordance with the present invention comprises: an oil scraping piece 10, an end cap 20, a cover plate 30, and an oil-nozzle seat 40. The oil scraping piece 10, the end cap 20, and the cover plate 30 are sequentially assembled on a slide block B (as shown in
The oil scraping piece 10 (as shown in
The end cap 20 (as shown in
The cover plate 30 (as shown in
The oil nozzle seat 40 (as shown in
For a better understanding of the present invention, its operation and function, reference should be made to
In assembly, the through hole 21 of the end cap 20 and the concave 31 of the end cap 30 are aligned to each other and are fixed to an end of the slide block B. The oil nozzle seat 40 is inserted in the through hole 21 of the end cap 20. And then the through hole 11 of the oil scraping piece 10 is aligned to the through hole 21 of the end cap 20, so that an end surface of the oil nozzle seat 40 is positioned and stopped against the oil scraping piece 10, and the other end surface of the oil nozzle seat 40 is located a certain distance 13 away from the bottom of the concave 31 of the cover plate 30. L3 is equal to or larger than L2, and L3 and L2 are larger than or equal to the thickness H of the first positioning portion 22 of the end cap 20 and the second positioning portion 45 of the oil nozzle seat 40. The abutting surface 44 of the oil nozzle seat 40 is positioned and restricted by the first positioning portion 22 of the end cap 20, and the oil nozzle A is inserted in the through hole 11 of the oil scraping piece 10 and is threaded in the threaded hole 41 of the oil nozzle seat 40.
When the feeding angle oil nozzle A doesn't meet the user's requirement, the user can unscrew the oil nozzle A, so that the specific distances L2 and L3 allow the oil nozzle seat 40 to move within the through hole 21 of the end cap 20 and the concave 31 of the cover plate 30, and the oil nozzle A and the oil nozzle seat 40 are pushed into the concave 31 of the cover plate 30, as a result, the second positioning portion 45 of the oil nozzle seat 40 is disengaged from the first positioning portion 22 of the cover plate 20. At this moment, the oil nozzle A and the oil nozzle seat 40 can be rotated to a desired angle, and after that, the user can screw the oil nozzle A and the oil nozzle seat 40 until they are stopped against the stopping surface 43, so that the second positioning portion 45 of the oil nozzle seat 40 is engaged with the first positioning portion 22 of the end cap 20, thus restricting the rotation of the oil nozzle seat 40.
To disassemble the oil nozzle A, the user can unscrew the oil nozzle A and push the oil nozzle A and the oil nozzle seat 40 to the bottom of the concave 31 of the cover plate 30, so that the positioning rib 46 of the oil nozzle seat 40 is engaged in the positioning hole 32 of the cover plate 30, and the oil nozzle seat 40 is fixed, and thus the oil nozzle A can be disassembled from the oil nozzle seat 40 and can be rotated to a desired angle.
To summarize, an adjusting structure for an oil feeding device of a linear guideway in accordance with the present invention comprises: an oil scraping piece, an end cap, a cover plate and an oil nozzle seat. The oil nozzle seat is provided for positioning an oil nozzle, and the oil nozzle seat is fixed on the end cap. The second positioning portion of the oil nozzle cooperates with the first positioning portion of the end cap to enable the oil nozzle seat to be movable or rotatable or positioned relative to the end cap, allowing the user to adjust the feeding angle of the oil nozzle.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.