METHOD OF MANUFACTURING SENSOR
20210394402 ยท 2021-12-23
Assignee
Inventors
- Yusuke NAKAYAMA (Kameoka-shi, KYOTO, JP)
- Daisuke INOUE (Ayabe-shi, KYOTO, JP)
- Yuki USHIRO (Ayabe-shi, KYOTO, JP)
- Takaaki SANDA (Fukuchiyama-shi, KYOTO, JP)
- Hiroto KATSURA (Fukuchiyama-shi, KYOTO, JP)
Cpc classification
B29C45/14336
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/3481
PERFORMING OPERATIONS; TRANSPORTING
B29C45/14065
PERFORMING OPERATIONS; TRANSPORTING
B29C37/0053
PERFORMING OPERATIONS; TRANSPORTING
B29C45/2612
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/14139
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Provided is a method of manufacturing a sensor. The sensor has a casing having an opening portion, a clamp having a recessed part on its outer periphery and having one end inserted into the opening portion, and a sealing ring attached to the recessed part and disposed between the casing and the clamp. The method includes using a first divided mold to form a first component of the clamp, the first component including a main body portion and a first part located at one end side of the main body portion and forming a part of the recessed part. The first divided mold is divided so that a dividing surface intersects the main body portion and separates in an axial direction of the main body portion.
Claims
1. A method of manufacturing a sensor that includes a cylindrical casing in which an opening portion is formed at one end and in which an electronic component is accommodated, a cylindrical clamp in which a recessed part having a sealing ring attached thereto is formed in an outer periphery and one end thereof is inserted into the opening portion, and the sealing ring which is attached to the recessed part and is disposed between the casing and the clamp, the method comprising: a step of forming a first component of the clamp using a first divided mold, the first component including a cylindrical main body portion and a first part which is located on one end side of the main body portion and constitutes a portion of the recessed part, wherein the first divided mold has a dividing surface intersecting the main body portion and is divided to be able to separate in an axial direction of the main body portion.
2. The method of manufacturing a sensor according to claim 1, further comprising: a step of forming a second component of the clamp constituting another portion of the recessed part using a second divided mold so that the second component is formed integrally with the first component, and providing the recessed part.
3. The method of manufacturing a sensor according to claim 2, wherein the step of providing the recessed part includes a step of inserting a portion of the first part into the second divided mold and forming the second component to cover the inserted portion of the first part,
4. The method of manufacturing a sensor according to claim 2, wherein the first part includes a stepped part on an outer periphery, and the step of providing the recessed part includes a step of performing positioning of the second divided mold using the stepped part.
5. The method of manufacturing a sensor according to claim 1, wherein the dividing surface of the first divided mold is orthogonal to the axial direction of the main body portion
6. The method of manufacturing a sensor according to claim 1, wherein the sealing ring is an O-ring.
7. The method of manufacturing a sensor according to claim 2, wherein the first component and the second component are formed of a resin.
8. The method of manufacturing a sensor according to claim 1, further comprising: a step of filling one end side of the casing with a first resin; and a step of filling the other end side of the casing and a portion of the clamp with a second resin, and wherein a gap is provided between the first resin and the second resin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DESCRIPTION OF THE EMBODIMENTS
[0027] An embodiment of the present invention will be described with reference to the accompanying drawings. Meanwhile, in the drawings, components denoted by the same reference numerals and signs have the same or similar configurations.
[0028]
[0029] The casing 10 is formed to have a circular cylindrical shape and accommodates electronic components, such as the substrate 30, therein. An opening portion 11 is provided on one end side of the casing 10, and one end of the clamp 20 is connected to the opening portion 11 after an electronic component is accommodated therein from the opening portion 11 The casing 10 may be formed of a metal, a resin, or the like.
[0030] The clamp 20 is connected to the casing 10, and protects an electronic component such as the substrate 30 accommodated in the casing 10. The clamp 20 includes a first component 21 and a second component 22. In the present embodiment, the clamp 20 is formed by bonding the first component 21 and the second component 22, which are formed to have a cylindrical shape, to each other. When a direction from the clamp 20 to the casing 10 is set to be forward and a direction from the casing 10 to the clamp 20 in the axial direction of the proximity sensor 1 is set to be backward, the first component 21 is located behind the second component 22.
[0031] The clamp 20 includes a recessed part 24 between the first component 21 and the second component 22, and the sealing ring 25 is attached to the recessed part. The first component 21 and the second component 22 may be formed of a resin, a metal, or the like. Meanwhile, in the present embodiment, a case where the first component 21 and the second component 22 are formed of a resin is described as an example. Further, the first component 21 and the second component 22 may be formed of a transparent material transmitting visible light and configured such that an indicating lamp 32 located inside the proximity sensor 1, and displaying an operating state of the proximity sensor 1 is visually recognized from the outside.
[0032] The sealing ring 25 is a member that seals in an electronic component accommodated in the proximity sensor 1. The sealing ring 25 is attached to the recessed part 24 of the clamp 20. As shown in
[0033] The sealing ring 25 may be formed to have a shape conforming to the shape of the outer periphery of the recessed part 24. For example, in a case where the shape of the outer periphery of the recessed part 24 is a circular shape, the sealing ring 25 may be an O-ring. Thus, the sealing ring 25 and the surface of the recessed part 24 adhere closely to each other, and sealing properties of the proximity sensor 1 are improved.
[0034] The substrate 30 is a substrate on which a control circuit (not shown) controlling a detection part is mounted, and is partially accommodated in the casing 10. The substrate 30 may be a printed circuit board on which a circuit or a printed wiring, not shown in the drawing, is mounted. A detection part 36 is attached to one end on the front side of the substrate 30 as shown in
[0035] The cable 34 is electrically connected to the land 31 of the substrate 30. The cable 34 may supply a current supplied from an external power supply to the circuit mounted on the substrate 30. In addition, an electrical signal applied from the circuit mounted on the substrate 30 may be transmitted to an external apparatus. A protector 35 that protects the cable 34 is provided in the vicinity of the cable 34.
[0036]
[0037] The detection part 36 is attached to one end of the substrate 30. The detection part 36 is electrically connected to the control circuit mounted on the substrate 30. The detection part 36 detects the presence or absence of an object in a detection region. The detection part 36 includes a core 37 having a coil 38 accommodated therein and the coil 38 wound annularly. When an object to be detected, such as a metal, approaches the coil 38 in a state where a magnetic field is generated in the coil 38, an induced current flows into the object. The detection part 36 measures a change in impedance of the coil 38 due to the induced current and detects the presence or absence of an object.
[0038] Meanwhile, a method of detecting an object by the detection part 36 is not limited to the above-described method. For example, the detection part 36 includes a light projection part that emits light, and a light receiving part that receives light, and may detect the presence or absence of an object by emitting light into the detection region from the light projection part, receiving light having passed through the object or reflected from the object by the light receiving part, and analyzing the light.
[0039] As shown in
[0040]
[0041] The first divided mold 50 includes an upper mold 52 and a lower mold 54. Meanwhile, in
[0042] The upper mold 52 includes a shaft part 52a for forming the inner surface of the first component 21, and an outer peripheral part 52b located to surround the shaft part 52a and forming portions of the outer surface of the first part 21b and the outer surface of the main body portion 21a. In the present embodiment, the shaft part 52a and the outer peripheral part 52b are formed integrally.
[0043] The lower mold 54 includes a bottom part 54a which is in surface contact with the shaft part 52a of the upper mold 52, and an outer peripheral part 54b which is formed to have a wall shape erected from the outer periphery of the bottom part 54a and forms a portion of the outer surface of the main body portion 21a. The bottom part 54a and the outer peripheral part 54b are formed integrally.
[0044] A dividing surface 51 between the upper mold 52 and the lower mold 54 intersects the main body portion 21a as shown in
[0045] In addition, the first part 21b formed by the first divided mold 50 includes a stepped part 27 on the outer periphery thereof. As shown in
[0046] Meanwhile, as long as a dividing surface does not intersect a region which is in contact with the sealing ring 25 on the outer surface of the first component 21, the upper mold 52 and the lower mold 54 may be separated from each other at any position. In the present embodiment, a dividing surface is located inside the lower end of the main body portion 21, and the upper mold 52 and the lower mold 54 are separated from each other in a vertical direction. In addition, the bottom part 54a of the lower mold 54 has a dividing surface in the axial direction of the main body portion 21a, and the lower mold 54 is separated in a horizontal direction in
[0047]
[0048] The second divided mold 60 includes a shaft part 60a, a left part 60b, and a right part 60c. The shaft part 60a is a cylindrical mold which is located on the inner side of the cylindrical clamp 20, and is used to form the inner surface of the second component 22. In addition, the left part 60b and the right part 60c are located to surround the shaft part 60a and is used to form the outer surface of the second component 22.
[0049] The second component 22 is formed using the second divided mold 60 on an upper end side of the first component 21 that has already been formed. Specifically, the second divided mold 60 is filled with a resin after the upper end (a portion of the first part 21b) of the first component 21 is inserted into the second divided mold 60, and thus the second component 22 is formed to cover a portion of the first component 21 inserted into the second divided mold 60. In addition, as described above, the stepped part 27 is formed on the outer surface of the first component 21. Positioning of the second divided mold 60 is performed so that the lower ends of the left part 60b and the right part 60c of the second divided mold 60 abut on the stepped part 27.
[0050] The second divided mold 60 is divided after the filling with a resin is completed. Specifically, a dividing surface 61 between the shaft part 60a and the left part 60b and a dividing surface 61 between the shaft part 60a and the right part 60c are along the axial direction of the clamp 20 and are orthogonal to an upper end face of the second component 22. For this reason, the left part 60b and the right part 60c are separated in a horizontal direction so as to be separated from the shaft part 60a. In addition, the shaft part 60a is pulled out upward.
[0051]
[0052] First, the first divided mold 50 is filled with a resin to form the first component 21 (step S10). Here, the first divided mold 50 is a mold in which the dividing surface 51 intersects the main body portion 21a, and may be, for example, the first divided mold 50 as shown in
[0053] Thereafter, the first divided mold 50 is divided to be able to separate in the axial direction of the main body portion 21a (step S11). For example, the first divided mold 50 shown in
[0054] Subsequently, the first component 21 is disposed in the second divided mold 60 (step S12). For example, as shown in
[0055] The second divided mold 60 is filled with a resin to form the second component 22 (step S13), As shown in
[0056] Thereafter, the second divided mold 60 is divided (step S14). For example, the second divided mold 60 shown in
[0057] Subsequently, the sealing ring 25 is attached to the recessed part 24 provided at the outer periphery of the clamp 20 (step S15).
[0058] After electronic components such as the detection part 36 and the substrate 30 are accommodated in the casing 10 and the clamp 20, the clamp 20 is attached to the casing 10 (step S16). As shown in
[0059] According to the method of manufacturing the proximity sensor 1 of the present embodiment, the dividing surface 51 of the first divided mold 50 is located to intersect the outer surface of the main body portion 21a and does not intersect the surface of the recessed part 24. That is, a parting line or a burr generated during molding using the divided mold is not generated on the surface of the recessed part 24 in which the sealing ring 25 is disposed. For this reason, it is possible to appropriately make the sealing ring 25 adhere closely to the surface of the recessed part 24 and to manufacture the proximity sensor 1 having good sealing properties.
[0060] In addition, the first part 21b includes the stepped part 27 which is used for the positioning of the second divided mold 60. For example, when the second component 22 is bonded to the first component 21, it is possible to easily perform the positioning of the second divided mold 60 by making a portion of the second divided mold 60 abut on the stepped part 27 provided in the first part 21b.
[0061]
[0062] In addition, as shown in
[0063] By performing filling with the first resin 70 and the second resin 71, it is possible to prevent a liquid or dust from entering the proximity sensor 1 and prevent the proximity sensor 1 from being broken down. A gap is provided between the first resin 70 and the second resin 71. For this reason, it is possible to reduce the amount of resin to be used, as compared to a case where the entirety of the insides of the casing 10 and the clamp 20 is filled with a resin.
[0064] The above-described embodiment is for facilitating the understanding of the present invention, and is not for limiting and analyzing the present invention. The components included in the embodiment, and the arrangement, materials, conditions, shapes, sizes, and the like thereof are not limited to those exemplified, and can be changed appropriately. In addition, configurations shown in different embodiments can be partially replaced or combined with each other.
DESCRIPTION OF REFERENCE NUMERALS
[0065] 1 Proximity sensor
[0066] 10 Casing
[0067] 11 Opening portion
[0068] 20 Clamp
[0069] 21 First component
[0070] 21a Main body portion
[0071] 21b First part
[0072] 22 Second component
[0073] 24 Recessed part
[0074] 25 Sealing ring
[0075] 27 Stepped part
[0076] 30 Substrate
[0077] 31 Land
[0078] 32 Indicating lamp
[0079] 34 Cable
[0080] 35 Protector
[0081] 36 Detection part
[0082] 37 Core
[0083] 38 Coil
[0084] 50 First divided mold
[0085] 51 Dividing surface
[0086] 52 Upper mold
[0087] 52a Shaft part
[0088] 52b Outer peripheral part
[0089] 54 Lower mold
[0090] 54a Bottom part
[0091] 54b Outer peripheral part
[0092] 60 Second divided mold
[0093] 60a Shaft part
[0094] 60b Left part
[0095] 60c Right part
[0096] 61 Dividing surface
[0097] 70 First resin
[0098] 71 Second resin