Open Access
Table 1
A comparative study between various vibratory welding techniques and the experimental setup used in the present work.
S. No | Material used | Vibratory table | Electromagnetic/ultrasonic/ultrasound vibratory treatment, etc. | Post weld vibratory treatment | Frequency produced | Process | Reference |
---|---|---|---|---|---|---|---|
1 | A-105 | √ | 54–59 rps | SAW | [3] | ||
2 | AISI 310 | Electromagnetic | 0–40 Hz | GTAW | [6] | ||
3 | Al Alloy (1085, 2214) | Electromagnetic | 50 Hz | Casting process | [7] | ||
4 | Nickel Alloy (690) | √ | 58 Hz | GTAW | [8] | ||
5 | MS | √ | √ | 25 Hz | MIG | [9] | |
6 | D6AC, D406A | √ | √ | 2.5 Hz | MIG | [10] | |
7 | A-105 | √ | 54–59 rps | SAW | [12] | ||
8 | AL-6XN | Ultrasonic | 20 kHz | SMAW | [13] | ||
9 | Niomol 490 K | √ | √ | – | SAW | [14] | |
10 | SiCp/6061 Al | Ultrasound | 50 kHz | PAW | [15] | ||
11 | Super alloy 800 | Electromagnetic | – | GTAW | [16] | ||
12 | Al alloy | √ | 100–3000 Hz | GTAW | [17] | ||
13 | MS | √ | – | SMAW | [18] | ||
14 | Al alloy | Wave guide | 20 kHz | MIG &TIG | [19] | ||
15 | 304-SS | √ | 375 Hz | GTAW | [20] | ||
16 | 304-SS | √ | 150–350 Hz | TIG | [21] | ||
17 | AISI 304 | Horn plus tool | 429 Hz | FSW | [22] | ||
18 | AISI 304 | √ | 60.9 Hz | TIG | [23] | ||
19 | AZ31 Mg alloy | √ | 15 kHz | TIG | [24] | ||
20 | Al Aluminum | Pulsed MIG | – | MIG | [25] | ||
21 | Ferrite alloy | Ultrasonic vibration | 20 kHz | Under water welding | [26] | ||
22 | 16 Mn | Arc vibratory welding | 0.9 g | CO2 Arc Welding | [27] | ||
23 | AA6061-T6 | Ultrasonic vibration | 20 kHz | FSW | [28] | ||
24 | MS | √ | 80–400 Hz | SMAW | [29] | ||
25 | S690 Steel | HFMI | 40 kHz | [30] | |||
26 | MS | A new concept of vibratory setup has been designed which is capable to transfer the vibrations in the molten weldpool during welding operation. | 80–300 Hz | SMAW | PW* |
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