The present invention relates to a pressure filter for CTA (Crude Terephthalic Acid), which is one of core components of a device integrated with filtering, cleaning and drying, the structure of which may also be applied to structure of a continuous pressure filter frame in other industry.
Pressure filter frame for CTA (Crude Terephthalic Acid) is one of core components of a pressure filter. When the device operates, slurry is pumped through a feeding zone. Due to the relatively high pressure of the slurry as it enters the feeding zone, it will impact the pressure filter frame. After the slurry has been entered into a filter cavity of a drum, the pressure in the feeding zone is removed instantaneously. Since the pressure filter runs continuously, the place of the feeding zone of the frame suffers from continuous pressure fluctuation, thereby suffering from a fatigue stress. In the practice application of the pressure filter, due to characteristics of the material, the pressure filter has relatively large pressure fluctuation when feeding. With respect to this issue, Tianhua Institute of Chemical Machinery & Automation Co., Ltd successfully develops a novel frame structure to eliminate the pressure fluctuation.
The technical problem to be solved by the present invention is to provide a device for reducing pressure fluctuation of a filter frame, which can achieve an object of effectively reducing pressure fluctuation on the pressure filter frame caused by the slurry, and improving a service life of the pressure filter frame.
The object of the present invention is achieved in such ways:
The present invention discloses a device for reducing pressure fluctuation of a filter frame, comprising a pressure filter frame that is a cylindrical housing, characterized in that a buffer plate is further provided on an inner wall of the pressure filter frame, a plurality of openings are provided in the buffer plate. A gap is remained between the buffer plate and the inner wall of the pressure filter frame. A plurality of supporting posts are disposed in the gap between the buffer plate and the inner wall of the pressure filter frame, which fixedly connects the inner wall of the pressure filter frame with the buffer plate.
Further, the pressure filter frame further comprises a supporting plate and a shell provided with a feeding port and a discharging port, wherein an outer wall of the shell is covered by the supporting plate that is connected to the outer wall of the shell by welding.
Further, the buffer plate is disposed on an inner wall of the shell and is close to a feeding zone where the feeding port is located.
Further, a plurality of flange bases are arranged at intervals along a circumferential direction of the shell. The buffer plate is disposed in an interval region between the flange bases within the feeding zone.
Further, both end of the shell are provided with end flanges that connect the shell with the supporting plate by welding.
Further, the supporting posts are welded between an inner wall of the shell and the buffer plate.
Further, both ends of the shell are filled with a filler for sealing.
Further, a length or a width of the buffer plate, and number and shape of the openings varies depending on different position of the buffer plate in the feeding zone.
Further, the buffer plate has a shape of any one of a fence shape, a grid shape, and an elongated-plate shape, or any combination thereof.
The present invention further discloses a pressure filter comprising the device for reducing pressure fluctuation of a pressure filter frame.
As compared to the prior art, the present invention achieves technical effects in that:
A part of pressure fluctuation on the pressure filter frame caused by the slurry will be eliminated by the buffer plate firstly, so that the pressure fluctuation transferred to the frame will be greatly reduced, and a service life of the frame will be greatly prolonged.
In the drawings, 1 end flange I; 2 supporting plate; 3 end flange II; 4 flange base I; 5 shell; 51 feeding port; 52 discharging port; 6 buffer plate; 61 round holes; 62 half round holes; 7 flange base II; 9 flange base III; 10 filter cavity; 11 drum; feeding zone A1; washing zone A2; discharging zone A3.
Below the present invention is further explained with reference with
The present invention discloses a device for reducing pressure fluctuation of a pressure filter frame (100). The pressure filter comprises a pressure filter frame (100). The pressure filter frame further comprises a supporting plate 2 and a shell 5 provided with a feeding port 51 and a discharging port. An outer wall of the shell 5 is covered by the supporting plate 2 that is welded to the outer wall of the shell 5. Specifically, both ends of the shell 5 are provided with respective an end flange I 1 and an end flange II 3, respectively. After being welded to the shell 5, the end flange I 1 and the end flange II 3 are further welded with the supporting plate 2 into one piece. The supporting plate 2 has the function of enhancing the strength of the entire frame.
A plurality of flange bases (such as, the flange base I 4, the flange base II 7, and the flange base III 9 in
The buffer plate 6 has a shape of any one of a fence shape, a grid shape, and an elongated-plate shape, or any combination thereof. A length or a width of the buffer plate, and number and shape of the openings may vary depending on different position of the buffer plate 6 in the feeding zone and different interval distance between the flange bases. For example, please also referring to
The present invention further provides a pressure filter with the device for reducing pressure fluctuation of a pressure filter frame.
In the prior art, when the pressure filter device starts, the slurry would impact on the frame due to the relatively high pressure of the slurry as it enters the feeding zone. After the slurry enters a filter cavity 10 of the drum 11, the pressure in the feeding zone is removed instantaneously. Since the pressure filter runs continuously, the place of the feeding zone of the frame suffers from continuous pressure fluctuation, thereby suffering from a fatigue stress. In the present invention, the buffer plate 6 is mounted on the inner wall of the shell 5, and the slurry will firstly enter into the gap space between the buffer plate 6 and the frame via the openings in the buffer plate 6. In such way, a part of pressure fluctuation of the frame caused by the slurry will be eliminated by the buffer plate 6 firstly, so that the pressure fluctuation transferred to the frame will be greatly reduced, and a service life of the frame will be greatly prolonged.
Number | Date | Country | Kind |
---|---|---|---|
201710468494.X | Jun 2017 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2017/094057 | 7/24/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2018/232811 | 12/27/2018 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2259235 | Weiss | Oct 1941 | A |
10427073 | Bitsch-Larsen | Oct 2019 | B2 |
20050051473 | Suss et al. | Mar 2005 | A1 |
20150182890 | Keyes | Jul 2015 | A1 |
20150290564 | Hoefken | Oct 2015 | A1 |
Number | Date | Country |
---|---|---|
2 954 196 | Jan 2016 | CA |
2124754 | Dec 1992 | CN |
103386227 | Nov 2013 | CN |
203507634 | Apr 2014 | CN |
204798978 | Nov 2015 | CN |
204933012 | Jan 2016 | CN |
205109120 | Mar 2016 | CN |
106573188 | Apr 2017 | CN |
3147276 | Mar 2017 | EP |
B1965010634 | May 1965 | JP |
10-2012-0103290 | Sep 2012 | KR |
WO-2016014830 | Jan 2016 | WO |
Number | Date | Country | |
---|---|---|---|
20200164291 A1 | May 2020 | US |