INJECTION MOLDING METHOD USING PEEK MATERIAL AND MOLDED ITEM
20180236702 ยท 2018-08-23
Assignee
Inventors
Cpc classification
B29C45/33
PERFORMING OPERATIONS; TRANSPORTING
B65D63/1027
PERFORMING OPERATIONS; TRANSPORTING
B29C51/262
PERFORMING OPERATIONS; TRANSPORTING
B29C45/30
PERFORMING OPERATIONS; TRANSPORTING
B29K2071/00
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0001
PERFORMING OPERATIONS; TRANSPORTING
B65D63/10
PERFORMING OPERATIONS; TRANSPORTING
B29C45/77
PERFORMING OPERATIONS; TRANSPORTING
B65D63/109
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/77
PERFORMING OPERATIONS; TRANSPORTING
B65D63/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An injection molding method for a molded item uses a polyether ether ketone (PEEK) material, wherein a filling peak pressure is 40 MPa to 150 MPa. The PEEK material may be injected to form the molded item from a runner member through a multipoint gate and then optionally a subrunner. The runner member and the subrunner may be connected to each other by a film gate. A stretching processing may be applied after the PEEK material is injected to increase a length 1.2 to 5 fold and increase a diameter to 0.2 mm to 1.0 mm. The stretching processing may use an in-mold stretching method.
Claims
1. An injection molding method for a molded item using a polyether ether ketone (PEEK) material, wherein a filling peak pressure is 40 MPa to 150 MPa.
2. The injection molding method using a PEEK material according to claim 1, wherein the PEEK material is injected to form the molded item from a runner member through a multipoint gate.
3. The injection molding method using a PEEK material according to claim 1, wherein the PEEK material is injected to form the molded item from a runner member through a multipoint gate and then a subrunner.
4. The injection molding method using a PEEK material according to claim 3, wherein the runner member and the subrunner are connected to each other by a film gate.
5. The injection molding method using a PEEK material according to claim 1, wherein stretching processing is applied after the PEEK material is injected to increase a length 1.2 to 5 fold and increase a diameter to 0.2 mm to 1.0 mm.
6. The injection molding method using a PEEK material according to claim 5, wherein the stretching processing uses an in-mold stretching method.
7. A molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a locking pin member provided integrally with retaining parts at both ends thereof.
8. The locking pin member according to claim 7, wherein one of the retaining parts is formed in a paddle.
9. A molded item molded by the injection molding method using a PEEK material according to claim 5, wherein the molded item is a fastener locking member provided with an insertion part integrally having an engagement part at one end and provided with a locking part that receives the insertion part, engages with the engagement part, and locks a loop state at the other end.
10. The molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a tie band provided with an insertion hole having an engagement pawl at one end and provided with continuous ratchet pawls arranged at a constant pitch on one surface in contact with the engagement pawl.
11. The molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a bag mouth clip that has a pair of clamping pieces integrally coupled via a hinge, one of the clamping pieces is provided with an engagement pawl, and the other of the clamping pieces is provided with a reception pawl for receiving and fixing the engagement pawl.
12. The molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a fastener locking member having, as molded items, an insertion part provided with an engagement part and a reception part provided with a locking part into which the insertion part is inserted and with which the engagement part engages, and wherein the insertion part and the reception part are fixed to ends of a loop mold member.
13. The molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a chain fastener locking member having a chain-like loop mold body in which ring bodies are connected continuously, one end of the loop mold body has an insertion part provided with an engagement part, and the other end of the loop mold body has a locking part into which the insertion part is inserted and with which the engagement part engages.
14. The molded item molded by the injection molding method using a PEEK material according to claim 1, wherein the molded item is a coil spring.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
[0049] The invention is achieved by performing configuration as illustrated in the drawings and as described in the embodiment.
Embodiment 1
[0050] Next, a preferable embodiment of the invention will be described with reference to the drawings. The invention is based on the condition described in claim 1 and a molded item is obtained based on the injection molding method described in claim 1. That is, when a molded item is injection-molded using a PEEK material in the invention, the filling peak pressure of the mold is 40 MPa to 150 MPa, which is much lower than the pressure (180 MPa to 280 MPa) used conventionally. Molding under such a low pressure provides the molded item with characteristics such as flexibility, viscosity, and elasticity.
[0051] Of stretching treatments performed as necessary, the in-mold stretching method is performed based on the principle illustrated in
[0052] In addition,
[0053] The subrunner 13 is coupled to the discrete locking pin members 10, . . . , 10 via gates (coupling parts) 14, . . . , 14. The gates 14, . . . , 14 are cut by a cutting tool provided for known attachment equipment of the locking pin members 10, . . . , 10, so that the locking pin members 10 can be used as discrete components. In each of the locking pin members 10, both ends of a stretched filament 15 are provided integrally with horizontal bars 16 and 16a for retaining. The horizontal bar 16 of these horizontal bars 16 and 16a is inserted into a hollow needle for forming an attachment equipment slit along the filament 15 by a piston after the gate 14 is cut, and the horizontal bar 16 is restored for retaining after the hollow needle passes through the target.
[0054] Although locking pin members 17, . . . , 17 illustrated in
[0055]
[0056] The other end of the filament 20 is provided integrally with a reception part 23 having a through hole 23a into which the insertion part 22 is inserted. In addition, on the inner peripheral surface of the through hole 23a, a locking part 23b that engages with and locks the engagement part 22a of the insertion part 22 is integrally formed in an annular form.
[0057] A tie band 24 illustrated in
[0058] In addition, a bag mouth clip 32 illustrated in
[0059] A fastener locking member 40 illustrated in
[0060] The end surface of the reception part 42 has an opening into which the insertion part 41 can be inserted. Inside this opening, a pair of pawls is formed as locking parts 42a with which the engagement part 41a is engaged. It should be noted that reference numeral 42b represents a window hole formed in the reception part 42 through which the lock state can be seen and the pawls can be easily widened. In such a structure, the flexibility and elasticity of particularly the locking parts 42a can be obtained.
[0061] In addition, a chain fastener locking member 44 illustrated in
[0062] An assembly 48A of coil springs 48 and 48 illustrated in
INDUSTRIAL APPLICABILITY
[0063] The injection molding method using a PEEK material according to the embodiment and the molded item using this method are configured as described above. By practicing the injection molding methods described in claims 1 to 6, products that need flexibility, elasticity, or viscosity can be obtained using a PEEK material in addition to the molded items specifically illustrated in the embodiment.
REFERENCE SIGNS LIST
[0064] 1: product insert [0065] 2: sprue [0066] 3: molding part [0067] 4: piston member [0068] 10, 17: locking pin member [0069] 10A, 17A, 48A: assembly [0070] 11, 49: runner [0071] 12, 14, 49a: gate [0072] 13: subrunner [0073] 15, 20: filament [0074] 16, 16a, 16b: horizontal bar [0075] 18: film gate [0076] 19, 40: fastener locking member [0077] 21: coupling support member (cover) [0078] 22, 41, 46: insertion part [0079] 22a, 41a, 46a: engagement part [0080] 22b, 31: stopper [0081] 23, 42, 47: reception part [0082] 23a: through hole [0083] 23b, 42a, 47a: locking part [0084] 24: tie band [0085] 25: band part [0086] 26: insertion hole [0087] 27, 35: engagement pawl [0088] 28: ratchet pawl [0089] 29: guide rail [0090] 30: slit [0091] 32: bag mouth clip [0092] 33a, 33b: clamping piece [0093] 34: hinge [0094] 36, 39: biting part [0095] 37: support bar [0096] 38: reception pawl [0097] 42b: window hole [0098] 44: chain fastener locking member [0099] 45: loop mold body [0100] 45a: ring body [0101] 48: coil spring