PREFORMED THERMOPLASTIC TUBE INCLUDING AT LEAST ONE BEND
20220410464 · 2022-12-29
Inventors
Cpc classification
B29C53/083
PERFORMING OPERATIONS; TRANSPORTING
B29C53/08
PERFORMING OPERATIONS; TRANSPORTING
F16L43/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A method for making a preformed thermoplastic tube having a tube wall and including at least one bend formed by thermoforming, characterized in that on an inner curve of the bend the tube wall is provided with a pattern of corrugations with minimal dimensions in terms of number of and heights of corrugations such that a wall length reduction resulting from the corrugations along the inner curve is kept at a minimal value necessary to absorb overlength on the inner curve resulting from forming the bend, and in that on an outer curve of the bend the tube wall is smooth and free of corrugations.
Claims
1-8. (canceled)
9. A method for making a preformed thermoplastic tube having a tube wall and including at least one bend having an inner curve surface and an outer curve surface formed by thermoforming, wherein on the inner curve surface of the at least one bend in the tube wall is provided with a pattern of corrugations with selected dimensions in terms of number of and heights of the pattern of corrugations such that a wall length reduction resulting from the pattern of corrugations along the inner curve is kept at a selected value necessary to absorb an overlength on the inner curve surface resulting from forming the at least one bend, and in that on the outer curve surface of the at least one bend the tube wall is smooth and free of corrugations, in which method a straight thermoplastic tube is provided, characterized in that in said method the thermoplastic tube is bent around and forced against a concavely curved surface of a forming tool to shape the thermoplastic tube to obtain the at least one bend, wherein during the bending the pattern of corrugations is formed on the inner curve surface of the at least one bend to absorb an overlength resulting from a length reduction of the inner curve surface due to the bending, wherein the pattern of corrugations is formed by a corresponding pattern of depressions in the concavely curved surface of the forming tool against which the thermoplastic tube is forced when the thermoplastic tube is being bent around the forming tool, whereafter a thermoforming process is performed while the thermoplastic tube is still bent around the forming tool with the pattern of corrugations on the inner curve surface of the tube received in the pattern of depressions of the forming tool.
10. The method according to claim 9, characterized in that the thermoforming process includes heating and thereafter cooling the thermoplastic tube while the thermoplastic tube is still bent around the forming tool with the pattern of corrugations on the inner curve surface of the thermoplastic tube received in the pattern of depressions of the forming tool.
11. The method according to claim 9, characterized in that the thermoplastic tube is pre-heated before it is bent around and forced against the concavely curved surface of the forming tool.
12. The method according to claim 9, characterized in that the pattern of depressions in the concavely curved surface of the forming tool is a series of elongated, parallel grooves, which extend transversely to and distributed along a longitudinal, concavely curved direction of extension of the concavely curved surface.
13. The method according to claim 9, characterized in that the concavely curved surface of the forming tool is defined by an open channel in the form of a tube segment which is dimensioned to receive and support a portion of the thermoplastic tube and which is, in its longitudinal, concavely curved direction, bent to follow a segment of a circle around a central axis, wherein an open top side of the channel is facing away from the central axis.
14. The method according to claim 13, characterized in that the concavely curved forming surface of the forming tool is utilized which has a ratio of a width of each of the series of elongated, parallel grooves to a centre to centre distance of an adjacent one of the series of elongated parallel grooves is in a range between 0.6 and 0.9.
15. The method according to claim 9, characterized in that the thermoplastic tube is held by a clamping block having a half-tubular channel for supporting the thermoplastic tube against the concavely curved surface of the forming tool, and projects from the clamping block at an end of the clamping block tangentially to an oppositely disposed concavely curved surface, and a pressing block having half-tubular channel for supporting the thermplastic tube is in contact with a projecting tube portion of the thermoplastic tube, wherein the pressing block is rotated about a centre of curvature of the concavely curved surface of the forming tool to bend and press the projecting tube portion in a progressing manner against the concavely curved surface of the forming tool.
Description
[0041]
[0042]
[0043]
[0044]
[0045]
[0046] A comparative test was carried out to compare the flow resistance of the preformed thermoplastic tube 4 according to the present invention such as shown in
[0047] As described before,
[0054] The product is flexible, and was fixed with tape in the correct position during test in order to be kept at 115° bend angle.
[0055]
[0069] The improvement in pressure-drop is therefore approximately 35%. It should be noted that in fact the improvement of the bend itself in % is even higher, because in this test the total pressure-drop also includes pressure-drop contributions of the two straight sections (110 mm) of the tube (the straight sections are the same in the conventional tube and the tube according to the invention as specified above, so no improvement is contributed by those straight sections). Therefore the improvement of the bended section itself is in fact more than this 35%. Therefore an additional calculation/correction was done, and the improvement for the bend only (after subtraction of the straight lengths) was estimated to be 41%.
[0070] A method of making a preformed thermoplastic tube including at least one bend according to the present invention will now be described with reference to
[0071] The apparatus for carrying out the method comprises a forming tool 30 in the form of a forming wheel having a concavely curved forming surface, in this case a circular forming surface which has the shape of an open, half-tubular channel extending 360° around the circumference of the forming wheel. The bottom of the channel presenting the concavely curved forming surface is provided with a series of depressions or grooves 32. The grooves extend over almost the entire width of the half-tubular channel on the forming wheel.
[0072] The apparatus further comprises a supply pipe 42 to a hot air supplying machine (not shown). The supply pipe 42 is connected to a support sleeve 40 which has an opening for receiving an end portion of an originally straight thermoplastic tube 1, as shown in
[0073] A clamping block 50 is provided, as shown in
[0074] Furthermore, the apparatus for making the thermoplastic tube comprises a movably mounted pressing block 60 which also has an open, half-tubular channel for supporting the tube 1.
[0075] In addition, the apparatus comprises a lever arm 70 which is pivotally mounted on a pivot pin 80 mounted on the central axis of the forming wheel 30. Opposite to the pivot pin 80 a handle 90 is connected to the lever arm 70 to allow to manually pivot the lever arm 70 around the central axis of the forming wheel 30. The lever arm 70 is further provided with a roller 100 that is rotatable mounted to the lever arm 70 and which comes into contact with an outer surface of the pressing block 60 (as shown in
[0076] For carrying out the method of making a thermoplastic tube according to the present invention first an originally straight thermoplastic tube 1 is inserted in the support 40. In this state the thermoplastic tube 1 may be pre-heated by supplying hot air through the supply pipe 42 to flow through the thermoplastic tube 1. Pre-heating is preferred, in particular for relatively stiff thermoplastics, to ensure that corrugations fold up upon bending with consistent shapes and sizes.
[0077] When the thermoplastic tube has been sufficiently pre-heated and the support block 50 and the pressing block 60 have been brought into position, and the lever arm 70 has been provided as shown in
[0078] In this manner a pattern of corrugations is formed on the inner curve of a preformed thermoplastic tube including at least one bend, wherein the pattern of corrugations may be formed with minimal dimension in terms of the number of corrugations and their height because the corrugations are formed by the process of absorbing overlength generated on the inner curve of the bend being formed during bending so that the corrugations formed in a controlled manner in a desired pattern just take up the overlength created but does not include any further corrugations on the inner curve so that the extent of corrugations (the combined effect of the number of corrugations and their height as expressed by the length absorbed by the folded up corrugations) is kept at a minimum.
[0079] Eventually the lever arm 70 is turned around from the position shown in
[0080] Once forming of the bend is completed the bend pipe is heated up by supplying hot air to the supply pipe 42 to heat up the tube to a forming temperature to carry out thermoforming. In this step the thermoplastic material of the bent tube is brought to a temperature which is slightly below the melting temperature, whereby stresses in the plastic material which were generated in the bending process are released so that the thermoplastic material permanently keeps the shape formed in the bending step.
[0081] In
[0082] In the example of