METHOD FOR MANUFACTURING RESIN GEAR WITH CORE METAL
20170001351 ยท 2017-01-05
Assignee
Inventors
Cpc classification
B29C45/14065
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/0032
PERFORMING OPERATIONS; TRANSPORTING
B29K2705/00
PERFORMING OPERATIONS; TRANSPORTING
B29C45/1675
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/1692
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/0027
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/14122
PERFORMING OPERATIONS; TRANSPORTING
B29C45/1615
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/14147
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/27
PERFORMING OPERATIONS; TRANSPORTING
B29C45/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is intended to provide a method for manufacturing a resin gear with a core metal by which there is no reduction in strength even with gates allowing decrease in material costs such as pin gates in the molding die for injection molding.
The manufacturing method includes: gates at a primary molding step and gates at a secondary molding step are pin gates or the like. The number of the gates at the primary molding step and the number of the gates at the secondary molding step are plural and identical, and the gates are arranged circumferentially. Gate positions G21, . . . at the secondary molding step are circumferentially intermediate or nearly circumferentially intermediate between gate positions G11, . . . and weld positions W11, . . . adjacent to the gate positions G11, . . . in the primary molded article.
Claims
1. A method for manufacturing a resin gear with a core metal composed of a metallic sleeve as the core metal and a synthetic resin annular tooth part covering the outer periphery of the metallic sleeve, comprising: a primary molding step of setting the tooth part as an annular inner member and an annular outer member of different materials and forming the inner member by injection molding in a first cavity molding die with the sleeve as an insert; and a secondary molding step of putting a primary molded article formed at the primary molding step into a second cavity molding die and forming the outer member by injection molding, wherein gates for injecting a molten resin into the first cavity molding die at the primary molding step and gates for injecting a molten resin into the secondary cavity molding die at the secondary molding step are pin gates, tunnel gates, or side gates, the number of the gates at the primary molding step and the number of the gates at the secondary molding step are plural and identical and the gates are arranged circumferentially, and gate positions at the secondary molding step are circumferentially intermediate or nearly circumferentially intermediate between gate positions and weld positions adjacent to the gate positions in the primary molded article.
2. A method for manufacturing a resin gear With a core metal composed of a metallic sleeve as the core metal and a synthetic resin annular tooth part covering the outer periphery of the metallic sleeve, comprising: a primary molding step of setting the tooth part as an annular inner member and an annular outer member of different materials and forming the inner member by injection molding in a first cavity molding die with the sleeve as an insert; and a secondary molding step of putting a primary molded article formed at the primary molding step into a second cavity molding die and forming the outer member by injection molding, wherein a gate for injecting a molten resin into the first cavity molding die at the primary molding step and a gate for injecting a molten resin into the secondary cavity molding die at the secondary molding step are pin gates, tunnel gates, or side gates, the number of the gate at the primary molding step and the number of the gate at the secondary molding step are one each, and a gate position at the secondary molding step is circumferentially intermediate or nearly circumferentially intermediate between a gate position and weld position in the primary molded article.
3. The method for manufacturing a resin gear with a core metal according to claim 1, wherein the annular inner member and the annular outer member are made of fiber-reinforced resins.
4. The method for manufacturing a resin gear with a core metal according to claim 2, wherein the annular inner member and the annular outer member are made of fiber-reinforced resins.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DESCRIPTION OF EMBODIMENTS
[0029] Next, embodiments of the present invention will be described in detail with reference to the accompanying drawings. However, the present invention is not limited to the embodiments illustrated in the accompanying drawings but includes all of embodiments satisfying the requirements described in the claims.
First Embodiment
[0030] As illustrated in the perspective view of
[0031] The annular tooth part 3 is composed of an annular inner member 3A and an annular outer member 3B made of different fiber-reinforced resins, for example.
[0032] The resin gear with a core metal 1 has on a side surface three gate marks (see gate positions G21, G22, and G23) at the secondary molding step.
[0033] In the resin gear with a core metal 1, the annular tooth part 3 is made of a synthetic resin to achieve significant weight reduction as compared to the entirely metallic gear.
[0034] The method for manufacturing a resin gear with a core metal according to the first embodiment of the present invention is as follows:
(Primary Molding Step)
[0035] First, a primary molding step is performed to form the inner member 3A by injection molding in a first cavity molding die not illustrated with the sleeve 2 as an insert, thereby manufacturing a primary molded article A illustrated in the perspective view of
[0036] Gates for injecting a molten resin into the first cavity molding die at the primary molding step are pin gates, tunnel gates, or side gates. The number of the gates is three. The gates are arranged circumferentially at equal angles (circumferentially at equal intervals).
(Secondary Molding Step)
[0037] Next, a secondary molding step is performed to put the primary molded article A illustrated in
[0038] Gates for injecting the molten resin into the second cavity molding die at the secondary molding step are pin gates, tunnel gates, or side gates. The number of the gates is three that is the same as the number of the gates at the primary molding step. The gates are arranged circumferentially at equal angles (circumferentially at equal intervals).
[0039] It is here necessary to form the teeth 4 on the outer peripheral surface of the outer member 3B to engage with another gear as illustrated in
(Gate Arrangements and Weld Positions)
[0040] As illustrated in the plane views of
[0041] As illustrated in the plane views of
[0042] Alternatively, the gate positions G21, G22, and G23 at the secondary molding step may be nearly circumferentially intermediate between the gate positions G11, G12, and G13 and the weld positions W11, W12, and W13 adjacent to the gate positions G11, G12, and G13 in the primary molded article A.
[0043] By the gate arrangements at the secondary molding step (see the gate positions G21, G22, and G23), a weld position (weld line) W21 at the secondary molding step is circumferentially intermediate between the weld position W11 and the gate position G12.
[0044] Similarly, a weld position (weld line) W22 at the secondary molding step is circumferentially intermediate between the weld position W12 and the gate position G13, and a weld position (weld line) W23 at the secondary molding step is circumferentially intermediate between the weld position W13 and the gate position G11.
[0045] In the foregoing description, the gates for injecting the molten resin into the first cavity molding die at the primary molding step and the gates for injecting the molten resin into the second cavity molding die at the secondary molding step (pin gates, tunnel gates, or side gates) are arranged circumferentially at equal angles (circumferentially at equal intervals). However, the present invention is not limited to the configuration in which the gates are arranged circumferentially at equal angles and includes the configurations in which the gates are arranged circumferentially but not at equal angles.
[0046] Next, supplementary explanations will be given as to injection molding at the primary molding step and the secondary molding step.
[0047] In the method for manufacturing a resin gear with a core metal according to the present invention, the primary molding step of forming the primary molded article A by injection molding in the first cavity molding die and the secondary molding step of putting the primary molded article A into the second cavity molding die and performing injection molding may be performed by either of two methods, the molding method using individually two kinds of molding dies and the two-color molding method.
[0048] According to the molding method using individually two kinds of molding dies, after the completion of the primary molding step, the primary molded article A is removed from the primary molding die and is set in the secondary molding die for secondary molding.
[0049] According to the two-color molding step, a two-color injection molding machine including a common movable molding die, a fixed molding die for primary molding, and a fixed molding die for secondary molding is used to perform molding with automatic change of the fixed molding die between the primary molding and the secondary molding.
[0050] An example of the two-color molding method will be explained.
[0051] First, the primary molding will be described with reference to the illustrative diagram of
[0052] The metallic sleeve 2 as an insert illustrated in
[0053] Accordingly, the primary molded article A is formed as illustrated in
[0054] Next, the secondary molding will be described with reference to the illustrative diagram of
[0055] After the completion of the primary molding, the movable molding die 6 holding the primary molded article A as illustrated in
[0056] When the movable molding die 6 and the fixed molding die for secondary molding 7B are closed as illustrated in
[0057] Accordingly, the resin gear with a core metal 1 (before formation of the teeth on the outer peripheral surface to engage with another gear) is formed as illustrated in
Second Embodiment
[0058] In a resin gear with a core metal 1 manufactured by a method for manufacturing a resin gear with a core metal according to a second embodiment of the present invention illustrated in the plane view of
[0059] The method for manufacturing a resin gear with a core metal according to the second embodiment of the present invention is the same as the method for manufacturing a resin gear with a core metal according to the first embodiment in including a primary molding step for forming an inner member 3A by injection molding in a first cavity molding die with a sleeve 2 as an insert and a secondary molding step of putting the primary molded article in a second cavity molding die and forming an outer member 3B by injection molding.
[0060] In the resin gear with a core metal 1, one gate mark (see a gate position G2) generated at the secondary molding step is visually recognized on the side surface.
(Gate Arrangements and Weld Positions)
[0061] The molten resin is injected from the gate position G1 illustrated in the plane view of
[0062] The gate position G2 at the secondary molding step is circumferentially intermediate between the gate position G1 and the weld position W1 of the primary molded article.
[0063] Alternatively, the gate position G2 at the secondary molding step may be nearly circumferentially intermediate between the gate position G1 and the weld position W1 of the primary molded article.
[0064] By the gate arrangement at the secondary molding step (see the gate position G2), a weld position (weld line) W2 at the secondary molding step is circumferentially intermediate between the weld position W1 and the gate position G1.
[0065] In the foregoing description, the number of the gates is three in the first embodiment and the number of the gate is one in the second embodiment. In the present invention, however, the number of the gates at the primary molding step and the number of the gates at the secondary molding step are two or four or more, as far as they are the same.
[0066] According to the method for manufacturing the resin gear with a core metal 1 as described above, the gates of the molding dies for use at the primary molding step and the secondary molding step are pin gates, tunnel gates, or side gates, which decreases wasted material to reduce material costs as compared to the case where the gates are film gates, disc gates, or the like.
[0067] In addition, when the gates are pin gates or tunnel gates, the gates are automatically cut at the opening of the molding die. This eliminates the need to cut the gates after the removal of the molded article as compared to the case where the gates are film gates, disc gates, or the like.
[0068] Further, the gates position(s) at the secondary molding step is circumferentially intermediate or nearly circumferentially intermediate between the gate position(s) and the weld position(s) adjacent to the gate position(s) in the primary molded article formed at the primary molding step, or the gate position(s) at the secondary molding step is circumferentially intermediate or nearly circumferentially intermediate between the gate position(s) and the weld position(s) in the primary molded article. Accordingly, the weld(s) in the secondary molded article is generated at the position(s) circumferentially intermediate or nearly circumferentially intermediate between the gate(s) and the weld(s) in the primary molded article.
[0069] Therefore, in the resin gear with a core metal 1 manufactured through the primary molding step and the secondary molding step, the radial weld line(s) formed at the primary molding step and the radial weld line(s) formed at the secondary molding step do not overlap or are not positioned close to each other.
[0070] This makes it possible to suppress reduction in the strength of the resin gear with a core metal 1 as a molded article.
[0071] Further, when the annular inner member 3A and the annular outer member 3B are made of fiber-reinforced resins, in the fiber-reinforced resin tooth part 3 (the annular inner member 3A and the annular outer member 3B) in which the rate of decline in the strength of the weld line(s) would become larger with increase in charging amount of fiber-reinforced materials, the radial weld line(s) formed at the primary molding step and the radial weld line(s) formed at the secondary molding step do not overlap or are not positioned close to each other. This enhances the effect of suppressing reduction in the strength of the resin gear with a core metal 1 as a molded article.
TABLE-US-00001 Reference Signs List 1 Resin gear with a core metal 2 Metallic sleeve 3 Annular tooth part 3A Annular inner member 3B Annular outer member 4 Tooth 5 Tooth-shaped projection 6 Movable molding die 7A Fixed molding die for primary molding 7B Fixed molding die for secondary molding 8 Slide core A Primary molded article G1, G11, G12, and G13 Gate position at the primary molding step G2, G21, G22, and G23 Gate position at the secondary molding step W1, W11, W12, and W13 Weld position (weld line) at the primary molding step W2, W21, W22, and W23 Weld position (weld line) at the secondary molding step