LASER WELDING METHOD OF PIPE FITTING
20230234167 · 2023-07-27
Inventors
Cpc classification
B23K37/053
PERFORMING OPERATIONS; TRANSPORTING
B23K26/0869
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K26/06
PERFORMING OPERATIONS; TRANSPORTING
B23K26/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to a laser welding method of pipe fittings that mainly provides an automated butt welding process for two pipe fittings to be welded, comprising a laser welding device setup step, a material loading step, a first welding step, a second welding step, a third welding step, and a return to the original position step. The welding zone at the butt joint location of the two pipe fittings to be welded is divided to undergo three procedures through the aforementioned steps, using a laser assembly in conjunction with a reflection assembly, to provide a consistent automated butt welding for two pipe fittings to be welded, in order to reduce the time consumed during the butt welding of pipe fittings and increase the speed of the production process.
Claims
1. A laser welding method of pipe fittings, comprising: a laser welding device setup step to set up a laser assembly and a reflection assembly, wherein the laser assembly has a first rotating axis and the reflection assembly has a second rotating axis; a material loading step to load the filler material on two pipe fittings to be welded, to place and fix the butt joint location of the two pipe fittings to be welded under the laser assembly, and to install the reflection assembly around the butt joint location of the two pipe fittings to be welded; a first welding step, having the laser assembly to project a laser beam at the butt joint location of the two pipe fittings to be welded and the laser assembly to perform welding while moving around the second rotating axis of rotation; a second welding step, having the laser assembly then to undergo a swinging motion with a first angle with respect to the first rotating axis so that the laser beam projects to the reflection assembly and is reflected to the butt joint location of the other angle of the two pipe fittings to be welded, while at the same time the laser assembly, the first rotating axis, and the reflection assembly are linked to the movement around the second rotating axis of rotation synchronously for welding; a third welding step, having the laser assembly then to undergo a swinging motion with a second angle with respect to the first rotating axis so that the laser beam projects to the reflection assembly and is reflected to the butt joint location of another angle of the two pipe fittings to be welded, while at the same time the laser assembly, the first rotating axis, and the reflection assembly are linked to the movement around the second rotating axis of rotation synchronously for welding; and a return to the original position step, having the laser assembly then to undergo a swinging motion with a third angle with respect to the second rotating axis so that the laser assembly is restored to the original position.
2. A laser welding method of pipe fittings as claimed in claim 1, wherein the third angle of the laser assembly is set to 45˜60 degrees.
3. A laser welding method of pipe fittings as claimed in claim 1, wherein the vector coordinate of the second rotating axis of the return to the original position step is set to [x3,y3].
4. A laser welding method of pipe fittings as claimed in claim 1, wherein the vector coordinate of the first rotating axis is set to [x,y]; the vector coordinate of the second rotating axis of the second welding step is set to [x1,y1]; the vector coordinate of the second rotating axis of the third welding step is set to [x2,y2].
5. A laser welding method of pipe fittings as claimed in claim 1, wherein the first angle of the laser assembly is set to 45˜60 degrees; the second angle of the laser assembly is set to 60˜70 degrees.
6. A laser welding method of pipe fittings as claimed in claim 1, wherein the maximum swing angle of the laser assembly is set to 120˜160 degrees.
7. A laser welding method of pipe fittings as claimed in claim 1, wherein the reflection assembly further comprises a first lens set and a second lens set, wherein the first lens set is used in the second welding step to reflect the laser beams and the second lens set is used in the third welding step to reflect the laser beams.
8. A laser welding method of pipe fittings as claimed in claim 7, wherein the first lens set and the second lens set have an angular position relationship, wherein the angular position relationship is set to 120˜150 degrees.
9. A laser welding method of pipe fittings as claimed in claims 1 to 8, wherein the welding zone at the butt joint location of the two pipe fittings to be welded is divided to undergo three procedures through these steps to provide a consistent automated butt welding for two pipe fittings to be welded, in order to reduce the time consumed during the butt welding of pipe fittings and increase the speed of the production process.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0026] Please refer to
[0027] The aforementioned laser welding device setup step a, as shown in
[0028] In addition, the maximum swing angle θ of the aforementioned laser assembly 1 is set to 120˜160 degrees and symmetric to the vertical axis z. The swing angle θ of the preferred embodiment of the present invention is set to 140 degrees, wherein the laser assembly 1 is symmetric to the vertical axis z and inclined at 70 degrees on both sides.
[0029] The aforementioned material loading step b, as shown in
[0030] The aforementioned first welding step c, as shown in
[0031] The aforementioned second welding step d, as shown in
[0032] The aforementioned third welding step e, as shown in
[0033] The aforementioned return to the original position step f, as shown in
[0034] The aforementioned operation mode of the laser assembly 1 and the operation mode of the reflection assembly 2 are summarized as follows in Table 1:
TABLE-US-00001 TABLE 1 Operation of the laser Operation of the reflection assembly assembly The material A swinging motion with A swinging motion with loading step respect to the second respect to the second rotating axis rotating axis The first A swinging motion with A swinging motion with weldingstep respect to the second respect to the second rotating axis rotating axis The second A swinging motion with A swinging motion with welding step respect to the first rotating respect to the second axis 31a, the second rotating axis rotating axis The third A swinging motion with A swinging motion with welding step respect to the first rotating respect to the second axis 31b, the second rotating axis rotating axis The return to A swinging motion with No swinging motion the original respect to the first rotating position step axis 31c
[0035] Therefore, the present invention provides an improved method of the laser welding method of pipe fittings A, as illustrated in
[0036] As shown in
[0037] Subsequently, as shown in
[0038] Last, please refer to
[0039] By the use of process steps of the aforementioned laser welding method of pipe fittings of the present invention, a consistent automated welding for the butt joint location of pipe fittings is provided to replace the previously labor intensive and time consuming operations, thus to increase the speed of the production process of the pipe fitting welding and to enhance the quality of the finished product after the butt welding process is completed. The method is applicable to welding operations of different diameters of pipe fittings to be welded 4 and improve the quality of butt welding operations by accurately control the welding position.
[0040] In summary, the present invention relates to a “laser welding method of pipe fittings” and such method has not been published, patented, nor available for public use. Therefore, the present invention meets the key requirements for patentability and, therefore, hereby the application is submitted.
[0041] For Patent Officers to better understand the aforementioned contents, novel features, technology principles, advantages of the present invention and the effect thereof that can be achieved, detail descriptions of the present invention are provided accompanied by diagrams and preferred embodiments. Alternative embodiments will become apparent to those skilled in the art to which the present invention pertains without departing from its spirit and scope.