METHOD FOR PRODUCING A WELDED CONNECTION, AND WELDING DEVICE
20220055318 ยท 2022-02-24
Assignee
Inventors
Cpc classification
B29C66/91315
PERFORMING OPERATIONS; TRANSPORTING
F16L47/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C65/342
PERFORMING OPERATIONS; TRANSPORTING
B29C66/91655
PERFORMING OPERATIONS; TRANSPORTING
B29C66/5221
PERFORMING OPERATIONS; TRANSPORTING
B29C66/9672
PERFORMING OPERATIONS; TRANSPORTING
B29C66/5344
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1224
PERFORMING OPERATIONS; TRANSPORTING
B29C65/3468
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1222
PERFORMING OPERATIONS; TRANSPORTING
B29C66/872
PERFORMING OPERATIONS; TRANSPORTING
B29C66/91317
PERFORMING OPERATIONS; TRANSPORTING
B29C66/73921
PERFORMING OPERATIONS; TRANSPORTING
B29C65/222
PERFORMING OPERATIONS; TRANSPORTING
B29C66/9674
PERFORMING OPERATIONS; TRANSPORTING
B29C66/91651
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
B29C65/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a method for connecting a thermoplastic line element (3) to a connecting element (2). The method comprises the steps of: providing the at least one thermoplastic line element (3); providing the connecting element (2) having a thermoplastic body (4 wherein a heating element (6 is embedded in the body (4 for generating heat in a welding region (5 for welding the body (4 to the at least one line element; joining the connecting element (2) to the at least one thermoplastic line element (3; providing a welding device (10) for welding the connecting element (2 to the at least one thermoplastic line element (3); welding the connecting element (2 at least one thermoplastic line element (3 by generating heat in the welding region (5 by means of the welding device (10).
The welding of the connecting element (2) to the at least one thermoplastic line element (3) is stopped by the welding device (10) before the end of the planned welding duration if an error criterion is met.
Claims
1. A method for connecting a thermoplastic line element (3) to a connecting element (2) comprising the method steps: providing the at least one thermoplastic line element (3); providing the connecting element (2) having a thermoplastic body (4), wherein a heating element (6) is embedded in the body (4) for generating heat in a welding region (5) for welding the body (4) to the at least one line element; joining the connecting element (2) to the at least one thermoplastic line element (3); providing a welding device (10) for welding the connecting element (2) to the at least one thermoplastic line element (3); inputting information about the connecting element (2) to be welded into the welding device (10); welding the connecting element (2) to the at least one thermoplastic line element (3) by generating heat in the welding region (5) by means of the welding device (10), wherein the welding device (10) stops the welding of the connecting element (2) to the at least one thermoplastic line element (3) before the end of the planned welding duration and/or the welding device (10) outputs an error message if an error criterion is reached.
2. The method according to claim 1, wherein the error criterion is reached when a certain number of error messages are summed up in an error counter (15) implemented in the welding device (10).
3. The method according to claim 2, wherein an error message is added to the error counter (15) if, over an error period (16), an actual value (21) of the welding current (17) lies outside a target value tolerance (22) of a target value (20) of the welding current (17).
4. The method according to claim 2, wherein an error message is added to the error counter (15) if, over an error period (16), an actual value (27) of the conductor resistance (19) of the heating element (6) lies outside a target value tolerance (28) of a target value (26) of the conductor resistance (19) of the heating element (6).
5. The method according to claim 3, wherein the time frame of the error period (16) is determined in dependence of the detected information about the connecting element (2) to be welded.
6. The method according to claim 3, wherein the time frame of the error period (16) is set between 1 sec and 40 sec, in particular between 5 sec and 30 sec, preferably between 8 sec and 12 sec.
7. The method according to claim 3, wherein the target value tolerance (22) of the target value (20) of the welding current (17) and/or the target value tolerance (28) of the target value (26) of the conductor resistance (19) of the heating element (6) is determined in dependence of the detected information about the connecting element (2) to be welded.
8. The method according to claim 3, wherein the target value tolerance (22) of the target value (20) of the welding current (17) and/or the target value tolerance (28) of the target value (26) of the conductor resistance (19) of the heating element (6) is between 0.1 and 10%, in particular between 1% and 5%, preferably between 1.5% and 3% of the amount of the respective target value (20, 26).
9. The method according to claim 2, wherein the error criterion is reached when more than two error messages, in particular more than three error messages, preferably more than five error messages are added in the error counter (15).
10. The method according to claim 3, wherein the target value tolerance (28) of the target value (26) of the conductor resistance (19) of the heating element (6) is defined exclusively at the lower side (23) of the target value (26) of the conductor resistance (19).
11. The method according to claim 1, wherein the error criterion is reached when four error messages are summed up in an error counter (15) implemented in the welding device (10), wherein one error message is added to the error counter (15), if, over an error period (16), an actual value (27) of the conductor resistance (19) of the heating element (6) lies outside a target value tolerance (28) of a target value (26) of the conductor resistance (19) of the heating element (6), wherein the time frame of the error period (16) is set between 8 sec and 12 sec and wherein the target value tolerance (28) of the target value (26) of the conductor resistance (19) of the heating element (6) is between 1.5% and 3% of the amount of the respective target value (26).
12. A welding device (10) for welding a thermoplastic line element (3) to a connecting element (2), the welding device having a control unit (12) and an input interface (13) for inputting information about the connecting element (2) to be welded, the input interface (13) being coupled to the control unit (12), wherein the welding device (10) is designed in such a way that the welding of the connecting element (2) to the at least one thermoplastic line element (3) can be stopped before the end of the planned welding duration and/or an error message may be output by the welding device (10) if an error criterion is reached.
Description
[0036] These show respectively in highly simplified, schematic representation:
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044] By way of introduction, it should be noted that in the differently described embodiments, the same parts are provided with the same reference signs or the same component designations, whereby the disclosures contained in the entire description may be transferred mutatis mutandis to the same parts with the same reference signs or the same component designations. Also, the positional indications selected in the description, such as top, bottom, side, etc., are related to the directly described as well as depicted figure, and these positional indications are to be transferred mutatis mutandis to the new position in the event of a change of position.
[0045]
[0046] In the embodiment example according to
[0047] As can be seen from
[0048] For example, it is conceivable that the connecting element 2 serves to connect two line elements 3 and thus two welding regions 5 are formed in the body 4 the connecting element 2
[0049] One of the welding regions 5 is used here for welding the connecting element 2 to the first line element 3, and a second of the welding regions 5 is used here for welding the connecting element 2 to the second line element 3.
[0050] As further shown in
[0051] Furthermore, it is also conceivable that a first connection point 8 and a second connection point 9 welding device 10 are formed for each welding region 5 This enables each of the two welding regions 5 be heated individually and independently of one another, and a welded connection to be made separately between the connecting element 2 first line element 3 between the connecting element 2 and the second line element 3
[0052] As can be seen from
[0053] As may be further seen from
[0054] Furthermore, the welding device 10 an input interface 13 which is coupled to the control unit 12 The input interface 13 used to record information about the connecting element 2 to be welded and/or about the line elements 3 welded. In the embodiment example according to
[0055] Additionally, the welding device 10 may include a display unit 14 used to output information to a machine operator. The display unit 14 may be coupled to a control panel that is used to operate the welding machine 10 by a user.
[0056] Furthermore, an error counter 15 may be implemented in the control unit 12 which is used to record errors during the welding process. The error counter 15 may be implemented in the programming of the control unit 12
[0057] In the following,
[0058] To weld the connecting element 2 to the line elements 3, the line elements 3 are inserted into the connecting element 2 Furthermore, information on the nature of the connecting element 2 entered into the welding device 10
[0059] Furthermore, the first connection point 8 and the second connection point 9 the connecting element 2 connected to the welding device 10, so that welding of the connecting element 2 to the line element 3 possible.
[0060] During the welding process itself, current is applied to the first connection point 8 and the second connection point 9 so that the resistance heating wire 7 causing the connecting element 2 melted in the welding region 5 When the line elements 3 correctly inserted into the connecting element 2, the connecting element 2 can fuse with the line element 3 thereby achieving a sufficiently tight connection of the line elements 3 the connecting element 2
[0061] If, as shown in
[0062] Due to this discharge of material of the connecting element 2 may furthermore occur that two windings of the resistance heating wire 7 contact each other due to the resulting displacements, whereby the winding loop of these two adjacent windings of the resistance heating wire 7 is short-circuited and thus bridged. By means of the method according to the invention, this effect can surprisingly be used to be able to detect by means of the welding device 10 whether the welding is being carried out correctly and, if necessary, to stop the welding process and/or to output an error message from the welding device.
[0063]
[0064] As can be seen from
[0065] The course of the welding current 17 as shown in
[0066] However, the target value 20 the welding current 17 is different for each different embodiment of the connecting element 2 To determine the target value 20 the welding current 17, welding tests may be carried out with the individual different versions of the connecting element 2 Alternatively, it is also conceivable that the course of the target value 20 the welding current 17 determined by calculation.
[0067] A target value tolerance 22 may be calculated from the target value 20 the welding current 17. The target value tolerance 22 the welding current 17 may be arranged on a lower side 23 of the target value 20 current 17 and/or on an upper side 24 of the target value 20 welding current 17 Thus, deflections of the welding current 17 may be detected either only downwards or only upwards or both downwards and upwards.
[0068] The actual value 21 the welding current 17 may be interrogated at an interrogation interval 25, with a measurement of the actual value 21 welding current 17 being made at intervals during the interrogation interval 25
[0069]
[0070] The course of the conductor resistance 19 as shown in
[0071] As can be seen from
[0072] However, the target value 26 the conductor resistance 19 is different for each different embodiment of the connecting element 2 To determine the target value 26 the conductor resistance 19, welding tests may be carried out with the individual different versions of the connecting element 2 Alternatively, it is also conceivable that the course of the target value 26 conductor resistance 19 determined by calculation.
[0073] A target value tolerance 28 the conductor resistance 19 may be calculated from the target value 26 the conductor resistance 19, which may be used to check the correct welding. The target value tolerance 28 the conductor resistance 19 may be arranged at a lower side 23 of the target value 26 resistance 19 and/or at an upper side 24 of the target value 26 19 Thus, deflections of the conductor resistance 19 may be detected either downward only, or upward only, or both downward and upward.
[0074] The actual value 27 the conductor resistance 19 may be interrogated at an interrogation interval 25, with a measurement of the actual value 27 conductor resistance 19 being made at intervals during the interrogation interval 25
[0075]
[0076] As can be seen from
[0077]
[0078]
[0079] As can be seen from
[0080]
[0081] With reference to
[0082] As soon as the actual value 27 the conductor resistance 19 falls below the target value tolerance 28 the conductor resistance 19 and this is detected by the welding device 10, this event may be referred to as a start event A. From this start event A, an error period 16 begins to run.
[0083] If the actual value 27 of the conductor resistance 19 lies outside the target value tolerance 28 the conductor resistance 19 over the complete error period 16, an error message is transmitted to the error counter 15 At the end of the first error period 16, a second error period 16 begins to run, whereby an error message is also transmitted to the error counter 15 actual value 27 conductor resistance 19 falls below the target value tolerance conductor resistance 19 entire error period 16
[0084] In particular, it may be specified that the error criterion is reached when a certain number of error messages are counted in the error counter 15 In the present example according to
[0085]
[0086] As can be seen from
[0087] Each time a welding process is restarted, provision may be made for the error counter 15 reset to zero.
[0088] The operations described in
[0089] The embodiment examples show possible embodiment variants, whereby it should be noted at this point that the invention is not limited to the specifically depicted embodiment variants thereof, but rather also various combinations of the individual embodiment variants with each other are possible and this variation possibility is due to the teaching for technical action by the present invention in the skill of the person skilled in this technical field.
[0090] The scope of protection is determined by the claims. However, the description and the drawings are to be consulted for the interpretation of the claims. Individual features or combinations of features from the different embodiments shown and described may constitute independent inventive solutions in their own right. The object underlying the independent inventive solutions may be taken from the description.
[0091] All indications of value ranges in the present description are to be understood as including any and all subranges thereof, e.g. the indication 1 to 10 is to be understood as including all subranges starting from the lower limit 1 and the upper limit 10, i.e. all subranges start with a lower limit of 1 or greater and end with an upper limit of 10 or less, e.g. 1 to 1.7, or 3.2 to 8.1, or 5.5 to 10.
[0092] Finally, for the sake of order, it should be noted that, for a better understanding of the layout, elements have been shown partially out of scale and/or enlarged and/or reduced in size.
LIST OF REFERENCE NUMBERS
[0093] 1 Welding assembly [0094] 2 Connecting element [0095] 3 Line element [0096] 4 Body [0097] 5 Welding region [0098] 6 Heating element [0099] 7 Resistance heating wire [0100] 8 First connection point [0101] 9 Second connection point [0102] 10 Welding machine [0103] 11 Abutment [0104] 12 Control unit [0105] 13 Input interface [0106] 14 Display unit [0107] 15 Error counter [0108] 16 Error period [0109] 17 Welding current [0110] 18 Welding voltage [0111] 19 Conductor resistance [0112] 20 Welding current target value [0113] 21 Welding current actual value [0114] 22 Target value tolerance welding current [0115] 23 Lower side target value [0116] 24 Upper side target value [0117] 25 Interrogation interval [0118] 26 Target value conductor resistance [0119] 27 Actual value conductor resistance [0120] 28 Target value tolerance conductor resistance