DEVICE FOR MAKING FOAM PIPES AND METHOD FOR MAKING FOAM PIPES
20180111301 ยท 2018-04-26
Inventors
Cpc classification
B29K2075/00
PERFORMING OPERATIONS; TRANSPORTING
B29C44/507
PERFORMING OPERATIONS; TRANSPORTING
B29C48/09
PERFORMING OPERATIONS; TRANSPORTING
B29C48/875
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/9238
PERFORMING OPERATIONS; TRANSPORTING
B29C48/92
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/0005
PERFORMING OPERATIONS; TRANSPORTING
B29K2223/083
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A device for making foam pipes and a method for making the foam pipes includes the use of critical micro foaming injection molding. The foaming agent and the foaming material are mixed and controlled under specific temperature to obtain micro bubbles in the wall of the foam pipes which need less material when compared with PVC pipes of same specification such that manufacturing cost is reduced.
Claims
1. A device for making foam pipes, comprising: a micro foam extruding unit (1) having a base (11), an extruding pipe (12), a control portion (13), an input member (14) and a mold head (15), the extruding pipe (12) and the control portion (13) connected to the base (11), the input member (14) and the mold head (15) located corresponding to two ends of the extruding pipe (12), the extruding pipe (12) having a pre-heating section (121) and a foaming section (122) which is connected to the pre-heating section (121), multiple heating members (123) axially and alternatively connected to outside of each of the pre-heating section (121) and the foaming section (122) so as to transfer heat to the extruding pipe (12) to pre-heat foaming material and to reach melting temperature and foaming temperature of the foaming material, foaming agent being spread and solved in foaming material that is melted, the melted foaming material being extruded from the mold head (15) to expand micro bubbles to form a foam pipe (5) with micro bubbles, the heating members (123) being controlled by control buttons (131), multiple temperature detectors (124), (151) connected to the mold head (15), the pre-heating section (121) and the foaming section (122) to respectively transfer temperature signals to temperature gauges (132) on the control portion (13), a temperature of the foaming section (122) being higher than that of the mold head (15); a cooling unit (2) having a cooling tank (21) which includes an input hole (22) and an output hole (23) in two ends thereof, the foam pipe (5) extending through the input hole (22) and the output hole (23) so as to enter into the cooling tank (21) and leave from the cooling tank (21), the cooling unit (2) having multiple cooling pipes (24) which extend into the cooling tank (21), the cooling pipes (24) transferring cooling liquid and contacting the foam pipe (5) to reduce temperature of the foaming pipe (5); a roller tracker (3) having at least one top roller (31) and at least one bottom roller (32) to press the foam pipe (5) and guide the foam pipe (5), and a scrolling unit (4) having a rotary member (41) to scroll the foam pipe (5).
2. The device for making foam pipes as claimed in claim 1, wherein a temperature of the foaming section (122) is higher than that of the pre-heating section (121).
3. The device for making foam pipes as claimed in claim 2, wherein multiple blowing members (125) are alternatively located to the base (11) and electrically connected to the control buttons (131), the blowing members (125) blow air toward the foaming section (122).
4. The device for making foam pipes as claimed in claim 3, wherein the at least one bottom roller (32) of the roller tracker (3) includes a recess (321) defined in an outer periphery thereof so as to roll the foam pipe (5).
5. The device for making foam pipes as claimed in claim 4, wherein the cooling tank (21) of the cooling unit (2) has multiple rollers (25) which move the foam pipe (5) from the input hole (22) toward the output hole (23).
6. The device for making foam pipes as claimed in claim 5, wherein the foaming material is Poly Vinyl Chloride (PVC), Ethylene Vinyl Acetate (EVA), Polyethylene (PE) or Polyurethane (PU), the foaming agent is Azodicarbonamide (ADCA), C.sub.2H.sub.4O.sub.2N.sub.4 (AC foaming agent), OBSH foaming agent, DPT foaming agent, 1.0 to 6.0 grams of the foaming agent is used for 1 kilogram of foaming material.
7. A method for making the foam pipes, comprising: an extruding step: foaming material and foaming agent being put in an input member (14) of a micro foam extruding unit (1) and being extruded from an extruding pipe (12), the foaming material being heated and melted in the extruding pipe (12) and a mold head (15) that is connected to the extruding pipe (12), the foaming agent being resolved in the melted foaming material, a semi-finished foam pipe (5) with micro bubbles being extruded from the mold head (15), the foaming material being heated in the extruding pipe (12) and receiving pre-heating temperature, foaming temperature and mold head temperature in sequence, a temperature of the foaming temperature being higher than or equal to that of the mold head temperature; a cooling and forming step: the semi-finished foam pipe (5) being sent into a cooling unit (2) and in contact with liquid to be cooled down; a roller tracking step: a periphery of the cooled semi-finished foam pipe (5) being tracked by a top roller (31) and a bottom roller (32) of a roller tracker (3), and a scrolling step: the foam pipe (5) tracked by the top roller (31) and the bottom roller (32) being rolled by a scrolling unit 4.
8. The method as claimed in claim 7, wherein the foaming material is Poly Vinyl Chloride (PVC), Ethylene Vinyl Acetate (EVA), Polyethylene (PE) or Polyurethane (PU), the foaming agent is Azodicarbonamide (ADCA), C.sub.2H.sub.4O.sub.2N.sub.4 (AC foaming agent), OBSH foaming agent, and DPT foaming agent, 1.0 to 6.0 grams of the foaming agent is used for 1 kilogram of foaming material.
9. The method as claimed in claim 8, wherein the temperature of the foaming temperature is higher than that of the pre-heating temperature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0024] Referring to
[0025] A cooling unit 2 has a cooling tank 21 which includes an input hole 22 and an output hole 23 in two ends thereof. The foam pipe 5 extends through the input hole 22 and the output hole 23 so as to enter into the cooling tank 21 and leave from the cooling tank 21. The cooling unit 2 has multiple cooling pipes 24 which extend into the cooling tank 21, the cooling pipes 24 transferring cooling liquid and contact the foam pipe 5 to reduce temperature of the foaming pipe 5.
[0026] A roller tracker 3 has at least one top roller 31 and at least one bottom roller 32 to press the outer periphery of the foam pipe 5 and guide the foam pipe 5. In this embodiment, there are two top rollers 31 and two bottom rollers 32. A scrolling unit 4 has a rotary member 41 to scroll the foam pipe 5.
[0027] When in operation, the foaming material and the foaming agent are introduced into the extruding pipe 12 via the input member 14, The heating members 121 around the extruding pipe 12 transfer heat to the extruding pipe 12 to melt the foaming material which becomes liquid-like and flows. The foaming agent is resolved in the melted foaming material to expand micro bubbles, so that when the foam pipe 5 is extruded out from the mold head 15, the foam pipe 5 includes multiple micro bubbles. The foam pipe 5 is then cooled down by the liquid of the cooling unit 2. The top and bottom rollers 31, 32 move the foam pipe 5 to be rolled by the rotary member 41 of the scrolling unit 4.
[0028] The foaming agent, under control of specific temperature and pressure, is resolved in the melted foaming material to expand micro bubbles, so that when the foam pipe 5 is extruded out from the mold head 15, the foam pipe 5 includes even micro bubbles. The foam pipe 5 involves less material and lower manufacturing cost when compared with the conventional PVC pipes. The hardness of the foam pipes 5 is easily adjusted by adjustment of the micro bubbles.
[0029] The blowing members 125 are alternatively located to the base 11 and electrically connected to the control buttons 131. The blowing members 125 blow air toward the foaming section 122 (below the extruding pipe 12) so that the temperature of the foaming section 122 is adjusted. The temperature detectors 124 are connected to the pre-heating section 121 and the foaming section 122. The temperature of the foaming section 122 is higher than that of the mold head 15.
[0030] A recess 321 is defined in the outer periphery of the bottom rollers 32 so as to press and roll the foam pipe 5.
[0031] As shown in
[0032] As shown in
[0033] The cooling and forming step includes that the semi-finished foam pipe 5 is sent into a cooling unit 2 and in contact with liquid to be cooled down.
[0034] The roller tracking step includes that the periphery of the cooled semi-finished foam pipe 5 is tracked by the top rollers 31 and the bottom rollers 32 of a roller tracker 3.
[0035] The scrolling step includes that the foam pipe 5 tracked by the top rollers 31 and the bottom rollers 32 is rolled by a scrolling unit 4.
[0036] It is noted that the temperature of the foaming temperature is higher than that of the pre-heating temperature.
[0037] The foaming material is Poly Vinyl Chloride (PVC), Ethylene Vinyl Acetate (EVA), Polyethylene (PE) or Polyurethane (PU). The foaming agent is Azodicarbonamide (ADCA), C.sub.2H.sub.4O.sub.2N.sub.4 (AC foaming agent), OBSH foaming agent, and DPT foaming agent. 0.1 to 0.6 grains of the foaming agent is used for 1 kilogram of foaming material.
[0038] While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.