DEVICE FOR APPLYING COMPOUNDS AND THE USE THEREOF

20230415192 ยท 2023-12-28

    Inventors

    Cpc classification

    International classification

    Abstract

    An application device for paste-like and/or flowable material, including a housing with a feed region for material and at least one discharge region for material. At least one mixing region is formed between the feed region for material and the discharge region for material and the at least one mixing region is designed as at least one mixing device.

    Claims

    1-7. (canceled)

    8. An application device for paste-like and/or free-flowing material, comprising: a housing with a supply region for material and at least one discharge region for material, wherein at least one mixing region is arranged between the supply region for material and the discharge region for material, and wherein the at least one mixing region is constructed as at least one mixing device.

    9. The application device according to claim 8, further comprising at least one heating device arranged between the supply region and the discharge region, wherein a heating region is formed by the at least one heating device.

    10. The application device according to claim 8, wherein the at least one mixing device is at least one static mixer and/or at least one dynamic mixer.

    11. The application device according to claim 10, wherein the at least one static mixer has at least one mixing rod with at least one mixing element.

    12. The application device according to claim 9, wherein the heating region of the heater and the mixing region at least partially coincide or are constructed to coincide.

    13. A method for producing design models in automotive development, comprising the step of using an application device according to claim 8 for producing the design models, wherein the application device is a part of an application machine and wherein the application device is a hand-held tool.

    14. A method for producing design models in automotive development, comprising the step of using an application device according to claim 8 for producing the design models, wherein the application device is a part of an application machine and wherein the application machine is a fully automatic application system.

    Description

    FORMULATION EXAMPLE

    Industrial Clay (Prior Art)

    [0015]

    TABLE-US-00001 31% by weight paraffin wax and microwax 5% by weight white oil 47% by weight filler 15% by weight lightweight filler 2% by weight pigments

    [0016] As can be seen from the example, the formula has liquid/wax-like (oil and waxes) and solid (fillers, pigments) components. In many known clay formulae in accordance with the prior art, the proportion of solid components is in the range from 61% to 70% by weight and the proportion of liquid and/or paste like components is in the range between 30% and 39% by weight.

    [0017] The components of the clay are homogeneously mixed the basic state with no heat treatment prior to conveying, but they segregate during processing in application machines as a function of the pressure applied for transport and the length of the heated transport tube. This brings about very pronounced and noticeable striations/marbling effects due to segregation of the components at the surface of the applied clay mass, with the disadvantages which have been mentioned.

    [0018] Because of the shear which arises, the effect of the striations/marbling is particularly noticeable at the regions on the surface and near the surface of the clay, because the moved/conveyed clay is slowed down by friction at the internal surface of the conveying tube.

    [0019] FIGS. 1 and 2 serve to illustrate the segregation effect. In this regard, FIG. 1 shows the cross section through a round rod depicted as it is leaving the discharge nozzle, while FIG. 2 shows a cross section through the central axis of the rod. Shadowing/black gradations can be seen, which are evidence of the segregation of the components. This effect, based on shear, becomes stronger with the conveying length of the supply tube and with increasing conveying pressure in the supply tube as well as with the applied heating temperature.

    [0020] It has been shown to be particularly advantageous for the application device to have a mixing device and a heating element. This combination ensures that at any point in time, the clay is at the optimum temperature at the site of application, and is also homogeneously mixed through. In addition, it has been shown that the colour characteristics and structure at the surface of the processed clay are uniform over its entire surface and can qualitatively be perceived to be of high quality.

    [0021] The application device in accordance with the invention will now be described in more detail with the aid of FIGS. 3 and 4.

    [0022] FIG. 3 shows a cross section through an embodiment of the application device 1 in accordance with the invention, essentially consisting of a housing part 10 and a mixing device 16 integrated into/disposed in the housing part 10. The mixing device 16 in this embodiment is constructed as a mixing device 16 with a static mixer.

    [0023] The housing part 10 has a material supply region/supply region 13 at one end and a discharge region at the opposite end, wherein 13 means for connecting to the heated supply tube/conveying tube 24 are formed in the supply region. A discharge nozzle 12 is mounted at the discharge region 11, which in this embodiment has a discharge nozzle 12 with a slotted opening, but it could equally be in the form of a round or other geometrically shaped opening.

    [0024] What is known as the mixing region 15 in which a mixing device 16 is integrated/formed is disposed between the supply region 13 and the discharge region 11. The mixing device 16 is a static mixer with a stationary mixing rod 17, wherein in this embodiment, the mixing region 15 is divided into 8 mixing elements 171, wherein the mixing direction of the elements 171 is alternately in the clockwise direction and in the anti clockwise direction in order to ensure optimal thorough mixing of the paste-like and/or free-flowing material because of the changes in direction.

    [0025] So that the industrial clay 3 in the application device 1, for example in the mixing region 15 with large contact surfaces, does not become cold or cool down an d is brought back to or maintained at an optimal processing temperature, a heating device 18 is constructed between the supply region and the discharge region (13 and 12). In this embodiment, the heating device 18 is in the form of an electrical resistance heater. In this regard, it has been shown to be advantageous for the region 181 which is heated by the heater 18 to at least partially coincide with the mixing region 15.

    [0026] The handgrip region of the application device is insulated in configuration in order to shield the user from the heat produced by the heating device 18.

    [0027] As an alternative mixing device to the static mixer, a dynamic mixer with at least one rotatably driven mixing shaft may also be provided. The conveying pressure at the mixing tube can be reduced by using a dynamic mixer, whereupon again, segregation of the components of the conveyed clay can be reduced.

    [0028] The application device of claim 1 according to the invention is used in the production of design models in automotive development, wherein the application device is a part of an application machine, wherein the application device a hand-held tool.

    [0029] Furthermore, the application device of claim 1 according to the invention is used in the production of design models in automotive development, wherein the application device is a part of an application machine and wherein the application machine is constructed as a fully automatic application system.

    [0030] An application machine 2 for heating and application of plastic masses 3 is shown in FIG. 4. The machine 2 has at least one conveying station 21 which can be heated, with a filling opening 25 and a conveying unit/conveying station 21, as well as an extraction station 23 for plastic masses 3 which are capable of being processed. A heated conveying tube 24 is attached to the extraction station 23, wherein the application device 1 in accordance with the invention is attached to the end of this conveying tube 24.

    [0031] In principle, the application machine 2 corresponds to a prior art unit such as that known, for example, from DE 29720892U1 and DE 102016109816 A1.

    [0032] The application device for paste-like and/or free-flowing material at least consists of a housing with a supply region for material and at least one discharge region for material, wherein at least one mixing region is constructed between the supply region for material and the discharge region for material, wherein the at least one mixing region is constructed as at least one mixing device.

    [0033] At least one heating device is constructed between the supply region and the discharge region, wherein a heating region is formed by the at least one heating device.

    [0034] The at least one mixing device is constructed as at least one static mixer and/or at least one dynamic mixer, wherein the at least one static mixer has at least one mixing rod with at least one mixing element.

    [0035] In this regard, the heating region of the heater and the mixing region at least coincide partially or are constructed to coincide.

    [0036] An application device as described above is used in the production of design models in automotive development, wherein the application device is constructed as a part of an application machine and wherein the application device is constructed as a hand-held tool.

    [0037] In addition, the application device described above is used the production design models in automotive development, wherein the application device is constructed as a part of an application machine and wherein the application machine is constructed as a fully automatic application system.

    LIST OF REFERENCE NUMERALS

    [0038] 1 application device

    [0039] 10 housing part

    [0040] 11 discharge region

    [0041] 12 discharge nozzle

    [0042] 13 supply region

    [0043] 14 tube connector

    [0044] 15 mixing region

    [0045] 16 mixing device

    [0046] 17 mixing shaft/mixing rod

    [0047] 171 mixing element

    [0048] 18 heating device

    [0049] 181 heating region

    [0050] 19 handgrip region/manipulation region

    [0051] 2 application machine

    [0052] 21 conveying station

    [0053] 23 extraction station

    [0054] 24 conveying tube

    [0055] 25 filling opening

    [0056] 3 plastic mass/industrial clay