Ion-exchanger
09873066 ยท 2018-01-23
Assignee
Inventors
Cpc classification
B01D24/165
PERFORMING OPERATIONS; TRANSPORTING
B01J47/024
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/0423
PERFORMING OPERATIONS; TRANSPORTING
B01D27/02
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/306
PERFORMING OPERATIONS; TRANSPORTING
B01J47/012
PERFORMING OPERATIONS; TRANSPORTING
Y02E60/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B01D15/36
PERFORMING OPERATIONS; TRANSPORTING
B01J47/012
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An ion-exchanger includes a case member provided with a cooling liquid flow-in pipe through which cooling liquid is introduced and a cooling liquid discharge pipe through which the cooling liquid is discharged, a cartridge member to be detachably accommodated in the case member, and a number of ion-exchange resin particles sealed within the cartridge member. The cartridge member is provided with an engaging portion detachably engaging with an end portion of the case member, and the case member is provided with an engagement portion to be engaged with the engaging portion provided for the cartridge member.
Claims
1. An ion-exchanger comprising: a case member provided with a cooling liquid flow-in portion through which cooling liquid is introduced and a cooling liquid discharge portion through which the cooling liquid is discharged; a cartridge member to be detachably accommodated in the case member; and a number of ion-exchange resin particles sealed within the cartridge member, wherein the cartridge member is provided with an engaging portion detachably engaging with an end portion of the case member, and the case member is provided with an engagement portion to be engaged with the engaging portion, the cartridge member is provided with a bottomed cylindrical cartridge body in which the ion-exchange resin particles are sealed and a closing member integrally welded to the cartridge body and formed with the engaging portion, and the closing member is formed with an oblique surface facing the ion-exchange resin particles so as to incline toward the discharge portion.
2. The ion-exchanger according to claim 1, wherein the engagement portion to be engaged with the engaging portion is composed of a groove having a vertical groove portion extending in an axial direction of the case member and an outer peripheral groove portion extending in a circumferential direction of the case member from one end of the vertical groove portion.
3. The ion-exchanger according to claim 1, wherein the cartridge member is provided with a seal member mounted to an outer peripheral surface so as to extend along the circumferential direction thereof.
4. The ion-exchanger according to claim 1, wherein the flow-in portion is provided to a lower portion of the case member, and the discharge portion is provided to an upper portion thereof.
5. The ion-exchanger according to claim 1, wherein the ion-exchange resin particles sealed in the cartridge body have a size, and the cartridge body is provided with a support frame member and a mesh member attached to the support frame member, with the mesh member having openings that are smaller in size than the size of the ion-exchange resin particles, such that the frame member and the mesh member support the ion-exchange resin particles within the cartridge body.
6. The ion-exchanger according to claim 1, wherein the flow-in portion is formed as a flow-in pipe and the discharge portion is formed as a discharge pipe.
7. The ion-exchanger according to claim 1, wherein the flow-in portion is formed as a flow-in opening port and the discharge portion is formed as a discharge opening port both being formed to the case member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(6) Hereunder, a preferred embodiment of the present invention will be described with reference to the accompanying drawings of
(7) It is to be noted that the following embodiment is not limited to the invention defined by appended claims, and all the combination of the subject features of the present embodiment described herein is not essential for the solution of the present invention. It is also noted that terms such as upper, lower, right, left and the like term for indicating direction are used herein with reference to the illustration on the drawings.
(8) According to
(9) The cooling liquid circulation circuit 5 is provided with a circulation pump for circulating the cooling liquid between the fuel cell 1 and the radiator 2. Heat applied to the cooling liquid from the fuel cell 1 is radiated into atmosphere by the radiator 2.
(10) The valve mechanism 3 acts to increase a flow rate of the cooling liquid flowing in the ion-exchanger at a low temperature period and decrease the flow rate of the cooling liquid flowing on the radiator side, and on the other hand, the valve mechanism 3 further acts to increase the flow rate of the cooling liquid on the radiator side at a high temperature period and decrease the flow rate of the cooling liquid on the ion-exchanger side.
(11) According to the cooling circuit of the structure mentioned above, since the flow rate of the cooling liquid passing through the ion-exchanger 10 at an operation starting time is increased, many ions eluted in the cooling liquid circulation circuit 5 can be removed. In addition, since the flow rate of the cooling liquid flowing on the radiator side at the operation period is increased, large heat generation of the fuel cell 1 can be removed. Accordingly, the flow rate (i.e., flow amount) of the cooling liquid flowing into the ion-exchanger can be adjusted in a range of affecting no adverse influence to the fuel cell 1.
(12) With reference to
(13) The case body member 13 has a structure, as shown in
(14) The cartridge member 20 is provided with a bottomed cylindrical cartridge member body 22 and a closing member 23 welded or fused integrally with the cartridge member body 22 so as to close the opening of the cartridge member body 22. The closing member 23 is formed with a protrusion 21 as an engaging portion to be engaged with the engagement portion 16 of the case body member 13. Further, it is desirable that the closing member 23 is welded to the cartridge member body 22 by means of vibration welding.
(15) Furthermore, the closing member 23 is formed with an opening 24 so as to oppose to an end portion of the discharge pipe 12 of the case body member 13 when assembled thereto for discharging the cooling liquid to the cooling liquid circulation circuit 5 from the opening 24 through the discharge pipe 12. The closing member 23 is further formed, above the opening 24, with a seal member 25 mounted around the circumferential direction thereof. An O-ring formed of an elastic material such as rubber may be preferably used as such seal member 25.
(16) As shown in
(17) The upper and lower support frame members 27 and 28 have fan-like openings formed by radially arranged ribs, respectively, and a mesh member (not shown) having mesh openings of a size smaller than that of the ion-exchange resin particles 30 is attached to the opening of each of the upper and lower support frame members 27 and 28. As mentioned above, the openings are configured to be able to pass the cooling liquid but not pass the ion-exchange resin particles 30.
(18) It may be desired that the cartridge member body 22, the closing member 23, the upper support frame member 27 and the lower support frame member 28 are formed of synthetic resin material.
(19) Furthermore, as shown in
(20) In addition, since the seal member 25 is located above the opening 24, the cooling liquid can be prevented from leaking outward of the ion-exchanger 10. Further, any seal member is not disposed below the opening 24 because of the reason such that a major part of the cooling liquid flowing out of the opening 24 is discharged into the cooling liquid circulation circuit 5 through the discharge pipe 12, but the remaining part of the cooling liquid flows to the lower end portion of the case member 13 through a space between the cartridge member 20 and the case member 13 and again flows into the cartridge member 20 through the flow-in pipe 11, and hence, such cooling liquid does not flow outward.
(21) According to the ion-exchanger 10 of the structure or configuration mentioned above, the engagement of the cartridge member 20 can be released only by rotating the cartridge member 20 so as to move the engaging portion 21 along the outer peripheral groove 15. Thus, the cartridge member 20 can be easily mounted or dismounted without undergoing any lid mounting working, and hence, the ion-exchange resin 30 can be also easily exchanged.
(22) Moreover, since the cartridge member 20 is provided with the seal member 25, an old seal member 25 can be also exchanged together with the exchanging of the ion-exchange resin 30. Accordingly, at the time of exchanging, the seal member 25 can be free from any damage and can be surely exchanged.
(23) It is to be noted that the ion-exchanger 10 of the present embodiment may be preferably assembled in a manner such that the position of the discharge pipe 12 corresponds to the maximum liquid level in the cooling circuit. According to such assembling, it is possible to prevent the cooling liquid flowing back from the discharge pipe 12 at the time of taking the cartridge member 20 out of the case member 13 from leaking outward of the cooling circuit. In addition, even in a case where the position of the discharge pipe 12 is not located to the maximum liquid level, the cooling liquid may be prevented from leaking at the time of exchanging the cartridge member 20 by providing a valve mechanism for sealing the flowing of the cooling liquid to the flow-in pipe 11 and the discharge pipe 12.
(24) As mentioned hereinabove, in the ion-exchanger 10 of the present embodiment, although the cartridge member 20 is fixed by the engagement of the engaging portion 21 with the engagement portion 16, in a preferred modification, the cartridge member 20 may be fixed or fastened by means of vis, clip, or the like, and in such modified embodiment, the cartridge member 20 can be surely prevented from dropping off by vibration or like.
(25) Furthermore, in the described embodiment of the ion-exchanger 10, although the engaging portion 21 and the engagement portion 16 are formed as a projection and a groove, in a further preferred modification, the engaging portion 21 and the engagement portion 16 are screw-engaged by one being formed as a female thread and another one being formed as a male thread so as to be engaged with each other. Furthermore, the engaging portion 21 and the engagement portion 16 may be fastened to each other by means of vis or screw.
(26) Furthermore, in the described embodiment of the ion-exchanger 10, although the closing member 23 is welded to the cartridge body member 22 by means of vibration welding, heat welding means may be alternatively utilized.
(27) It is therefore noted that the present invention is not limited to the described embodiment and many other changes and, modifications or alterations such as mentioned above, may be made without departing from the spirit of the present invention and the scope of the appended claims.