Compression vulcanization molding mold for rolling bearing seal, and method for manufacturing rolling bearing seal
11440226 · 2022-09-13
Assignee
Inventors
Cpc classification
B29C33/12
PERFORMING OPERATIONS; TRANSPORTING
B29C45/38
PERFORMING OPERATIONS; TRANSPORTING
F16C33/7833
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29K2705/00
PERFORMING OPERATIONS; TRANSPORTING
B29C43/36
PERFORMING OPERATIONS; TRANSPORTING
B29C43/18
PERFORMING OPERATIONS; TRANSPORTING
F16J15/3204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C35/02
PERFORMING OPERATIONS; TRANSPORTING
B29C2043/3602
PERFORMING OPERATIONS; TRANSPORTING
F16C33/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C33/02
PERFORMING OPERATIONS; TRANSPORTING
F16C19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C33/42
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C43/18
PERFORMING OPERATIONS; TRANSPORTING
B29C33/42
PERFORMING OPERATIONS; TRANSPORTING
F16C33/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C43/36
PERFORMING OPERATIONS; TRANSPORTING
F16J15/3204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C45/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The rolling bearing seal includes a core metal and rubber adhered to the core metal by vulcanization. The rubber includes: a seal lip portion having, over the entire circumference in the circumferential direction, a plurality of projections that extend inward in the radial direction from the inner diameter side of the core metal, and slides on a seal sliding surface of an inner ring of a rolling bearing; and an attachment portion that is attached to an outer ring of the rolling bearing. A compression vulcanization molding mold includes a female mold and a male mold. The female mold has a guide portion for positioning the core metal and a rugged shape forming the projections on the seal lip portion. The male mold has an inner-diameter-side burr groove and an outer-diameter-side burr groove and the shape of a radially outermost portion of the inner-diameter-side burr groove is formed in a circle.
Claims
1. A compression vulcanization molding mold for a rolling bearing seal, which is used for compression vulcanization molding of the rolling bearing seal that separates, from outside, a bearing internal space formed between an inner ring and an outer ring of a rolling bearing, wherein the rolling bearing seal includes an annular core metal and rubber adhered to the core metal by vulcanization, the rubber includes: a seal lip portion that extends inward in a radial direction from an inner diameter side of the core metal, and slides on a seal sliding surface of the inner ring in a circumferential direction; and an attachment portion that extends outward in the radial direction from an outer diameter side of the core metal, and is attached to the outer ling, and the seal lip portion has, over an entire circumference in the circumferential direction, a plurality of projections to form, between the seal sliding surface and the seal lip portion, oil passages that allow communication between the bearing internal space and the outside, an end of the seal lip portion curves to project toward the seal sliding surface, an edge of the end of the seal lip portion, which includes at least a portion of one of the projections, contacts the seal sliding surface, and each of the projections being formed over the entire circumference in a circumferential direction of the seal lip portion of the rolling bearing seal, the mold comprising: a female mold and a male mold which form an annular cavity for molding the rubber, wherein the female mold has a guide portion for positioning the core metal, and a rugged shape forming the projections on the seal lip portion, and the male mold has an inner-diameter-side burr groove and an outer-diameter-side burr groove respectively at an inner-diameter-side peripheral portion and an outer-diameter-side peripheral portion of the cavity, and a shape of a radially outermost portion of the inner-diameter-side burr groove is formed in a circle.
2. The compression vulcanization molding mold for rolling bearing seal, according to claim 1, wherein a diameter d (mm) of the circle represented by the shape of the radially outermost portion of the inner-diameter-side burr groove is set within a range of (D−0.2)≤d≤D relative to a diameter D (mm) of a circle in contact with an end of each of the projections.
3. A rolling bearing seal manufacturing method for performing compression vulcanization molding of a rolling bearing seal using the compression vulcanization molding mold for rolling bearing seal according to claim 1, the method comprising: opening the mold and placing the core metal at the guide portion of the female mold; placing an unvulcanized rubber material in the female mold; closing the mold and pressing and heating the mold to vulcanize the rubber material; and opening the mold and taking the rolling bearing seal that is a molded product, out of the mold.
4. A rolling bearing seal manufacturing method for performing compression vulcanization molding of a rolling bearing seal using the compression vulcanization molding mold for rolling bearing seal according to claim 2, the method comprising: opening the mold and placing the core metal at the guide portion of the female mold; placing an unvulcanized rubber material in the female mold; closing the mold and pressing and heating the mold to vulcanize the rubber material; and opening the mold and taking the rolling bearing seal that is a molded product, out of the mold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DESCRIPTION OF EMBODIMENTS
(9) Next, embodiments of the present invention will be described in detail with reference to the accompanying drawings. Here, the present invention is not limited to embodiments shown in the accompanying drawings, but includes all the embodiments that satisfy requirements described in the claims.
(10) As used herein, the direction of the rotation axis of a rolling bearing is referred to as an “axial direction”, and a “radial direction” and a “circumferential direction” are defined using the rotation axis as a reference.
(11) <Rolling Bearing with Seal>
(12) As shown in a major-part enlarged vertical sectional view in
(13) The seals S provide separation between a bearing internal space G and outside, and lubricating oil is supplied to the bearing internal space G by appropriate means such as grease or oil bath.
(14) On the external side with respect to the seals S, various foreign matters such as wear powder of a gear or the like, or minute crushed stones, exist depending on a target to which the rolling bearing B with the seal is mounted. Such powdery foreign matters can reach the vicinity of the rolling bearing B by flow of lubricating oil or air. The seals S prevent entry of the foreign matters into the bearing internal space G from outside.
(15) Each of the seals S includes: an annular core metal 7 made of metal, such as a cold rolled steel sheet (SPCC), an electro galvanized steel sheet (SECC), or a stainless steel sheet (SUS); and rubber 8 adhered to the core metal 7 by vulcanization. The rubber 8 includes: an annular seal lip portion 8A extending inward in the radial direction from the inner-diameter side of the core metal 7 and to slide on a seal sliding surface F of the inner ring 11 in the circumferential direction; and an attachment portion 8B extending outward in the radial direction from the outer-diameter side of the core metal 8 and to be attached to a seal groove H of the outer ring 12.
(16) Types of the rolling bearing B with the seal include an inner ring rotation type in which the inner ring 11 rotates, and an outer ring rotation type in which the outer ring 12 rotates. The rolling bearing seal S having the seal lip 8A on the inner diameter side and the attachment portion 8B on the outer diameter side is applicable to both of the inner ring rotation type and the outer ring rotation type.
(17) Here, the rubber 8 of the seal S may be made from a material obtained by appropriately blending one kind or two or more kinds of rubbers such as nitrile rubber (NBR), hydrogenated nitrile rubber (HNBR), acrylic rubber (ACM), ethylene acrylic rubber (AEM), fluororubber (FKM, FPM), and silicone rubber (VQM), as a rubber material having high oil resistance.
(18) Considering ease of kneading of the rubber material, vulcanization moldability, and adhesion to the core metal 7, it is also preferable to blend another kind of rubber such as liquid NBR, ethylene propylene rubber (EPDM), natural rubber (NR), isoprene rubber (IR), styrene butadiene rubber (SBR), or butadiene rubber (BR).
(19) <Shape of Seal Lip Portion of Rolling Bearing Seal>
(20) As shown in the perspective view in
(21) Thus, torque reduction and speed increase of the rolling bearing B with the seal can be achieved.
(22) The plurality of projections 10 provided in the seal lip portion 8A of the rolling bearing seal S according to the present embodiment are formed at regular intervals over the entire circumference in the circumferential direction. However, the present invention is not limited to the case where the plurality of projections 10 are formed at regular intervals over the entire circumference in the circumferential direction. That is, the plurality of projections 10 may be formed at irregular intervals.
(23) Next, a mold A used for compression vulcanization molding of the rolling bearing seal S, and a method for manufacturing the rolling bearing seal S using the mold A, according to the embodiment of the present invention will be described.
(24) <Compression Vulcanization Molding Mold>
(25) As shown in a vertical sectional view in
(26) The female mold (a lower mold or a die) 1 has a guide portion 3 for positioning the core metal 7 of the seal S, and has a rugged shape 4 forming the plurality of projections 10, 10, . . . on the seal lip portion 8A.
(27) The male mold (an upper mold or a punch) 2 has an inner-diameter-side burr groove 5 and an outer-diameter-side burr groove 6 respectively at an inner-diameter-side peripheral portion C1 and an outer-diameter-side peripheral portion C2 of the cavity C, and the shape of a radially outermost portion 5A of the inner-diameter-side burr groove 5 is formed to be a circle.
(28) As shown in a major-part enlarged perspective view in
(29) It is noted that the diameter d (mm) of the circle represented by the shape of the radially outermost portion 5A of the inner-diameter-side burr groove 5 has only to be set within a range of (D−0.2)≤d≤D relative to the diameter D (mm) of the circle E in contact with the ends of the plurality of projections 10. Setting the diameter d within the range of the above inequality enhances reliability of molding of the rubber 8 having the plurality of projections at the end of the seal lip portion 8A in manufacturing of the rolling bearing seal S using the compression vulcanization molding mold A, because 0.2 (mm) is a burr size within a tolerable range.
(30) <Rolling Bearing Seal Manufacturing Method>
(31) An example of the method for manufacturing the bearing seal S using the compression vulcanization molding mold A will be described.
(32) (Core Metal Placing Step)
(33) First, as shown in
(34) Before the step of placing the core metal 7 on the female mold 1, a thermosetting resin adhesive agent may be applied to an area of the core metal 7, which is to be in contact with the rubber 8, and indirect vulcanization (crosslinking) adhesion may be performed in a subsequent rubber material vulcanization step. Alternatively, direct vulcanization (crosslinking) adhesion may be performed without application of the adhesive agent, in the subsequent rubber material vulcanization step.
(35) (Rubber Material Placing Step)
(36) Next, for example, a rubber sheet which is an unvulcanized rubber material is placed in the female mold 1. The volume of the rubber sheet is set to be greater than the volume of the annular cavity C for forming the rubber 8.
(37) (Rubber Material Vulcanization Step)
(38) Next, as shown in
(39) (Molded Product Taking-Out Step)
(40) Next, the mold A is opened and the rolling bearing seal S as a molded product, shown in
(41) In the state where the rolling bearing seal S that is the molded product is taken out of the mold A, the plurality of projections 10 are formed from the end of the seal lip portion 8A over the entire area that can face the seal sliding surface F in the radial direction. In addition, on the plurality of projections 10 at the end of the seal lip portion 8A, thin burr occurs between the adjacent projections 10. However, this burr protrudes outward in the axial direction of the rolling bearing B and has a burr size within a tolerable range, so that the burr does not come into contact with the seal sliding surface F as shown in
(42) In the compression vulcanization molding mold A for the rolling bearing seal and the method for manufacturing the rolling bearing seal S, configured as described above, the shape of the radially outermost portion 5A of the inner-diameter-side burr groove 5 of the male mold 2 is a circle. Therefore, as compared to the conventional mold A′ (
(43) In addition, in the compression vulcanization molding mold A and the method for manufacturing the rolling bearing seal S, configured as described above, the size of burr to occur is set within a tolerable range, whereby it is possible to form the plurality of projections 10, from the end of the seal lip portion 8A, over the entire area that can face the seal sliding surface F in the radial direction.
(44) Moreover, as compared to the conventional mold A′, it is not necessary to perform alignment (angle matching) of the female mold 1 and the male mold 2 accurately in the circumferential direction, and thus productivity can be improved.
DESCRIPTION OF THE REFERENCE CHARACTERS
(45) 1 female mold (lower mold, die) 2, 2′ male mold (upper mold, punch) 3 guide portion 4 rugged shape 5, 5′ inner-diameter-side burr groove 5A, 5A′ radially outermost portion 6 outer-diameter-side burr groove 7 core metal 8 rubber 8A seal lip portion 8B attachment portion 9 oil passage 10 projection 11 inner ring 12 outer ring 13 rolling element 14 retainer A, A′ compression vulcanization molding mold B rolling bearing with seal C cavity C1 inner-diameter-side peripheral portion C2 outer-diameter-side peripheral portion D diameter of circle in contact with ends of projections of seal lip portion d diameter of circle represented by shape of radially outermost portion of inner-diameter-side burr groove E circle in contact with ends of projections of seal lip portion F seal sliding surface G bearing internal space H seal groove I radial-direction gap S rolling bearing seal