CN113171929A - Production of tombarthite foamed ceramic filter is with sponge carrier flooding thick liquids device - Google Patents

Production of tombarthite foamed ceramic filter is with sponge carrier flooding thick liquids device Download PDF

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Publication number
CN113171929A
CN113171929A CN202110456840.9A CN202110456840A CN113171929A CN 113171929 A CN113171929 A CN 113171929A CN 202110456840 A CN202110456840 A CN 202110456840A CN 113171929 A CN113171929 A CN 113171929A
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China
Prior art keywords
spring
sliding
sides
connecting block
sponge carrier
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CN202110456840.9A
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CN113171929B (en
Inventor
武模佳
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Zhongjing Xinke Energy Equipment Shanghai Co ltd
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Individual
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C3/00Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material
    • B05C3/02Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material
    • B05C3/09Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material for treating separate articles
    • B05C3/10Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material for treating separate articles the articles being moved through the liquid or other fluent material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C13/00Means for manipulating or holding work, e.g. for separate articles
    • B05C13/02Means for manipulating or holding work, e.g. for separate articles for particular articles
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

Abstract

The invention relates to a sponge carrier slurry dipping device, in particular to a sponge carrier slurry dipping device for producing a rare earth foamed ceramic filter. The invention provides a sponge carrier dipping slurry device for rare earth foamed ceramic filter production, which has wide applicability, can quickly clamp a sponge carrier for dipping, does not need to feed one by one, and is convenient for people to discharge. The utility model provides a tombarthite foamed ceramic filter production is with sponge carrier flooding thick liquids device, is equipped with four first supports on the base including base, first support, blowing frame and storage frame, is connected with the blowing frame between four first supports, is equipped with the storage frame on the base. According to the invention, the moving mechanism, the demagnetizing mechanism and the material containing mechanism are matched, the moving mechanism drives the demagnetizing mechanism to move, and the demagnetizing mechanism enables the material containing mechanism to automatically reset, so that the effect of automatic demagnetization is realized.

Description

Production of tombarthite foamed ceramic filter is with sponge carrier flooding thick liquids device
Technical Field
The invention relates to a sponge carrier slurry dipping device, in particular to a sponge carrier slurry dipping device for producing a rare earth foamed ceramic filter.
Background
The foamed ceramic material is a porous material with high temperature characteristic, and a sponge carrier is required to be used in the production process of the rare earth foamed ceramic filter, and the sponge carrier needs to be subjected to impregnation treatment, so that an impregnation slurry device is required.
Patent application CN212237976U, published as 20201229, discloses a tombarthite foamed ceramic filter production is with sponge carrier flooding thick liquids device, including base, flooding case, be used for bearing not the same size sponge carrier with the adjustable pay-off structure that bears of pay-off work and be used for carrying out the quick centre gripping fixed knot structure of quick fixed work to a plurality of sponge carriers, the invention easy operation, convenient to use, can be applicable to the sponge carrier of different length size, and be convenient for carry out quick centre gripping fixed to a plurality of sponge carriers simultaneously, then effectual holistic work efficiency that has improved, however the device still needs the artifical manual work to carry out the one by one material loading of sponge carrier, and after accomplishing the flooding, people are inconvenient to carry out unloading of sponge carrier.
Therefore, need improve current device, we design one kind not only extensive applicability, can the quick centre gripping sponge carrier impregnate, need not material loading one by one moreover, be convenient for people's sponge carrier flooding thick liquids device for production of rare earth foamed ceramic filter of unloading.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the sponge carrier dipping slurry device for the rare earth foamed ceramic filter production, which has wide applicability, can quickly clamp the sponge carrier for dipping, does not need to load the sponge carrier one by one, and is convenient for people to unload, and solves the problems that the prior device still needs manual sponge carrier feeding one by one, and the sponge carrier unloading is inconvenient for people after finishing dipping.
In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides a tombarthite foamed ceramic filter production is with sponge carrier flooding thick liquids device, which comprises a base, a first support, the blowing frame, the storage frame, first slide bar, the slurcam, first connecting rod and first spring, still including clamping mechanism and flourishing material mechanism, be equipped with four first supports on the base, be connected with the blowing frame between four first supports, be equipped with the storage frame on the base, symmetrical connection has first slide bar between the storage frame lower part both sides, slidingtype connection has the slurcam between two first slide bars, slurcam upper portion and storage frame slidingtype connection, slurcam lower part bilateral symmetry is equipped with first connecting rod, around having first spring on the first slide bar, first spring both ends are connected with first slide bar and slurcam respectively, be equipped with clamping mechanism on the base, storage frame lower part is equipped with flourishing material mechanism.
More preferably, second support, cylinder, first link, splint and extension spring constitute and press from both sides material mechanism, are equipped with the second support on the base, and the cylinder is installed on second support upper portion, are connected with first link on the cylinder telescopic link, and first link lower part symmetry slidingtype is equipped with splint, and first link lower part both sides all are around there being extension spring, and the extension spring both ends are connected with the splint of homonymy respectively.
More preferably, the third support, the second connecting rod, the apparatus further comprises a rotating shaft, baffle and torsion spring and magnet constitute flourishing material mechanism, two wall symmetries in storage frame lower part are equipped with the third support, third support bottom both sides all are equipped with the second connecting rod, the rotary type is connected with the pivot between two second connecting rod middle parts of homonymy, be equipped with the baffle in the pivot, baffle and splint cooperation, torsion spring has all been around to the pivot both sides, the torsion spring both ends are connected with second connecting rod and baffle respectively, be connected with the magnet between two second connecting rod bottoms of homonymy, magnet and baffle cooperation.
More preferably, still including pushing mechanism, fourth support, contact block and first wedge constitute pushing mechanism, and storage frame upper portion is equipped with the fourth support, and first connecting block middle part slidingtype is equipped with the contact block, and the contact block is equipped with the contact block with the contact cooperation of fourth support, and the contact block bottom is equipped with first wedge, splint and the cooperation of first wedge contact, baffle and the cooperation of first wedge.
More preferably, the material receiving device further comprises a material receiving mechanism, the first sliding sleeves, the second sliding rods, the material receiving frame and the second springs form the material receiving mechanism, the first sliding sleeves are arranged on two sides of the material placing frame, the second sliding rods are connected between the upper portions of the two first sliding sleeves in a sliding mode, two sides of each second sliding rod are connected with the first connecting rods on the same side, the material receiving frame is arranged on each second sliding rod, the second springs are wound on two sides of each second sliding rod, and two ends of each second spring are connected with the first sliding sleeves and the second sliding rods respectively.
More preferably, the sliding device further comprises a blocking mechanism, the second sliding sleeve, the third sliding rod and the third spring form the blocking mechanism, the second sliding sleeve is connected between the upper portions of the two first sliding sleeves, the third sliding rod is connected between the two sides of the second sliding sleeve in a sliding mode, the third sliding rod is in contact fit with the first connecting rod, the third spring is wound on the two sides of the third sliding rod, and the two ends of the third spring are respectively connected with the second sliding sleeve and the third sliding rod.
More preferably, still including the moving mechanism, the fourth slide bar, the second connecting block, the fourth spring, rotor plate and fifth spring constitute the moving mechanism, blowing frame both sides all with be connected with the fourth slide bar between the storage frame, be connected with the second connecting block between the third slide bar lower part both sides, second connecting block upper portion both sides all with the fourth slide bar sliding type connection of homonymy, fourth slide bar upper portion is around there being the fourth spring, the fourth spring both ends are connected with fourth slide bar and second connecting block respectively, the rotary type is equipped with the rotor plate in the middle of the second connecting block upper portion, rotor plate and first connecting block cooperation, second connecting block upper portion both sides all around there being the fifth spring, the fifth spring both ends are connected with rotor plate and second connecting block respectively.
More preferably, the demagnetizing mechanism is further included, the connecting rod, the third sliding sleeve, the second wedge block and the sixth spring form the demagnetizing mechanism, the connecting rod is arranged on two sides of the upper portion of the second connecting block, the third sliding sleeve is symmetrically arranged on the outer walls of the two third supports, the second wedge block is arranged on the lower portion of the third sliding sleeve in a sliding mode, the sixth spring is wound on the second wedge block, and two ends of the sixth spring are respectively connected with the third sliding sleeve and the second wedge block.
Compared with the prior art, the invention has the following advantages: according to the invention, through the matching of the clamping mechanism, the material containing mechanism and the pushing mechanism, the first connecting rod drives the pushing plate to slide rightwards, so that a sponge carrier is pushed onto the material containing mechanism, and the clamping mechanism is matched with the pushing mechanism, so that the clamping mechanism automatically clamps the sponge carrier on the material containing mechanism downwards and immerses the sponge carrier downwards into slurry, and the sponge carrier is immersed; the material receiving mechanism is arranged, the first connecting rod drives the material receiving mechanism to move, and the material receiving mechanism receives the sponge carrier, so that the effect that the impregnated sponge carrier is received is achieved, and people can take down the sponge carrier received by the material receiving mechanism conveniently; the blocking mechanism blocks the first connecting rod to prevent the material receiving mechanism from moving rightwards during material receiving; the clamping mechanism is matched with the moving mechanism and drives the moving mechanism to operate, so that the effect that the blocking mechanism automatically blocks and releases the first connecting rod is realized; through the cooperation of the moving mechanism, the demagnetizing mechanism and the material containing mechanism, the moving mechanism drives the demagnetizing mechanism to move, and the demagnetizing mechanism enables the material containing mechanism to automatically reset, so that the effect of automatic demagnetizing is realized.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the material clamping mechanism of the present invention.
Fig. 3 is a schematic perspective view of the material holding mechanism of the present invention.
Fig. 4 is a schematic perspective view of the pushing mechanism of the present invention.
Fig. 5 is a schematic perspective view of the receiving mechanism of the present invention.
Fig. 6 is a schematic perspective view of the blocking mechanism of the present invention.
Fig. 7 is a schematic perspective view of the moving mechanism of the present invention.
Fig. 8 is a schematic perspective view of the demagnetizing mechanism of the present invention.
Wherein the figures include the following reference numerals: 1. a base, 2, a first bracket, 3, a material placing frame, 4, a material storing frame, 5, a first sliding rod, 6, a pushing plate, 7, a first connecting rod, 8, a first spring, 9, a material clamping mechanism, 91, a second bracket, 92, an air cylinder, 93, a first connecting block, 94, a clamping plate, 95, a stretching spring, 10, a material containing mechanism, 101, a third bracket, 102, a second connecting rod, 103, a rotating shaft, 104, a baffle, 105, a torsion spring, 106, a magnet, 11, a pushing mechanism, 111, a fourth bracket, 112, a contact block, 113, a first wedge block, 12, a material receiving mechanism, 121, a first sliding sleeve, 122, a second sliding rod, 123, a material receiving frame, 124, a second spring, 13, a blocking mechanism, 131, a second sliding sleeve, 132, a third sliding rod, 133, a third spring, 14, a moving mechanism sliding rod, 141, a fourth connecting block, 142, a second connecting block, 143, a fourth spring, 144, a rotating plate, 145. a fifth spring, 15, a demagnetizing mechanism, 151, a connecting rod, 152, a third sliding sleeve, 153, a second wedge block, 154 and a sixth spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-8, the present invention provides a technical solution: a sponge carrier slurry dipping device for producing a rare earth foamed ceramic filter comprises a base 1, a first support 2, a material placing frame 3, a material storing frame 4, first slide bars 5, a push plate 6, first connecting bars 7, first springs 8, a material clamping mechanism 9 and a material containing mechanism 10, wherein four first supports 2 are arranged on the right side of the base 1, the material placing frame 3 is connected between the four first supports 2, the material storing frame 4 is arranged on the left side of the base 1, the first slide bars 5 are symmetrically connected between the left side and the right side of the lower portion of the material storing frame 4, the push plate 6 is slidably connected between the two first slide bars 5, the upper portion of the push plate 6 is slidably connected with the material storing frame 4, the first connecting bars 7 are symmetrically arranged on the front side and the rear side of the lower portion of the push plate 6, the first springs 8 are wound on the left side of the first slide bars 5, two ends of the first springs 8 are respectively connected with the first slide bars 5 and the push plate 6, and the material clamping mechanism 9 comprises a second support 91, The material containing mechanism 10 comprises a third support 101, a second connecting rod 102, a rotating shaft 103, a baffle 104, a torsion spring 105 and a magnet 106, the third support 101 is symmetrically arranged on the front wall and the rear wall of the lower part of the material storage frame 4, the second connecting rod 102 is arranged on the left side and the right side of the bottom of the third support 101, the rotating shaft 103 is rotatably connected between the middle parts of the two second connecting rods 102 on the same transverse side, the baffle 104 is arranged on the rotating shaft 103, the baffle 104 is matched with the clamping plate 94, the torsion spring 105 is wound on the left side and the right side of the rotating shaft 103, the two ends of the torsion spring 105 are respectively connected with the second connecting rods 102 and the baffle 104, a magnet 106 is connected between the bottoms of the two second connecting rods 102 on the same lateral side, the magnet 106 is matched with the baffle 104, the push mechanism 11 further comprises a push mechanism 11, the push mechanism 11 comprises a fourth support 111, a contact block 112 and a first wedge block 113, the fourth support 111 is arranged on the right side of the upper portion of the storage frame 4, the contact block 112 is slidably arranged in the middle of the first connecting block 93, the contact block 112 is in contact fit with the fourth support 111, the first wedge block 113 is arranged at the bottom of the contact block 112, the clamp plate 94 is in contact fit with the first wedge block 113, the baffle 104 is matched with the first wedge block 113, the receiving mechanism 12 further comprises a first sliding sleeve 121, a second sliding rod 122, a receiving frame 123 and a second spring 124, first sliding sleeves 121 are arranged on the front side and the rear side of the right wall of the material placing frame 3, and a second sliding sleeve 121 is slidably connected between the upper portions of the two first sliding sleeves, the front side and the rear side of the right part of the second sliding rod 122 are both connected with the first connecting rod 7 on the same side, the left side of the second sliding rod 122 is provided with a material receiving frame 123, the front side and the rear side of the right side of the second sliding rod 122 are both wound with second springs 124, both ends of the second springs 124 are respectively connected with the first sliding sleeve 121 and the second sliding rod 122, the material receiving frame further comprises a blocking mechanism 13, the blocking mechanism 13 comprises a second sliding sleeve 131, a third sliding rod 132 and a third spring 133, the upper parts of the two first sliding sleeves 121 are connected with the second sliding sleeve 131, the front side and the rear side of the second sliding sleeve 131 are slidably connected with the third sliding rod 132, the third sliding rod 132 is in contact fit with the first connecting rod 7, the front side and the rear side of the third sliding rod 132 are both wound with third springs 133, both ends of the third spring 133 are respectively connected with the second sliding sleeve 131 and the third sliding rod 132, the material receiving frame further comprises a moving mechanism 14, the moving mechanism 14 comprises a fourth sliding rod 141, a second connecting block 142, a fourth spring 143, a rotating plate 144 and a fifth spring 145, a fourth slide bar 141 is connected between the front and rear sides of the right wall of the material placing frame 3 and the material storing frame 4, a second connecting block 142 is connected between the front and rear sides of the lower part of the third slide bar 132, the front and rear sides of the upper part of the second connecting block 142 are slidably connected with the fourth slide bar 141 on the same side, a fourth spring 143 is wound on the upper part of the right side of the fourth slide bar 141, both ends of the fourth spring 143 are respectively connected with the fourth slide bar 141 and the second connecting block 142, a rotating plate 144 is rotatably arranged in the middle of the upper left side of the second connecting block 142, the rotating plate 144 is matched with the first connecting block 93, a fifth spring 145 is wound on the front and rear parts of the upper left side of the second connecting block 142, both ends of the fifth spring 145 are respectively connected with the rotating plate 144 and the second connecting block 142, the material placing device further comprises a demagnetizing mechanism 15, the demagnetizing mechanism 15 comprises a connecting rod 151, a third sliding sleeve 152, a second wedge 153 and a sixth spring 154, both front and rear parts of the upper left side of the second connecting rod 151, the right sides of the outer walls of the two third brackets 101 are symmetrically provided with third sliding sleeves 152, the lower parts of the third sliding sleeves 152 are slidably provided with second wedge-shaped blocks 153, sixth springs 154 are wound on the second wedge-shaped blocks 153, and two ends of each sixth spring 154 are respectively connected with the third sliding sleeves 152 and the second wedge-shaped blocks 153.
When people need to dip sponge carriers in the production process of the rare earth foamed ceramic filter, the dipping slurry device can be used, firstly, the first connecting rod 7 is pushed leftwards, the first spring 8 is compressed, then, a plurality of sponge carriers are stacked in the storage frame 4, the slurry is placed in the material placing frame 3, then, the first connecting rod 7 is loosened, the first spring 8 resets, the first connecting rod 7 drives the pushing plate 6 to slide rightwards, the pushing plate 6 pushes a sponge carrier rightwards to the baffle plate 104, the effect that the baffle plate 104 bears the sponge carrier is achieved, then, the air cylinder 92 is opened, the telescopic rod of the air cylinder 92 stretches and retracts to drive the first connecting block 93, the clamping plate 94 and the extension spring 95 to move upwards and downwards, when the clamping plate 94 is about to move downwards to the baffle plate 104, people pull the clamping plate 94 outwards, the extension spring 95 is stretched, then, the clamping plate 94 is loosened, the extension spring 95 resets to drive the clamping plate 94 to slide inwards and clamp the sponge carrier on the baffle plate 104, the telescopic rod of the cylinder 92 continues to extend downwards to drive the sponge carrier to be immersed into the slurry downwards, after the clamping plate 94 carries the impregnated sponge carrier to move upwards and reset, the cylinder 92 is closed and the sponge carrier is taken down, when the clamping plate 94 clamps the sponge carrier to move downwards and contacts with the baffle plate 104, the baffle plate 104 swings downwards to be attracted with the magnet 106, the torsion spring 105 twists and deforms, so that the clamping plate 94 can continue to move downwards, after the clamping plate 94 moves upwards and resets, the baffle plate 104 is separated from the magnet 106, the torsion spring 105 resets to drive the baffle plate 104 to swing in a reverse direction, the first connecting block 93 moves downwards to drive the contact block 112 and the first wedge block 113 to move downwards, when the first wedge block 113 contacts with the baffle plate 104, the first wedge block 113 stops moving downwards and the contact block 112 drives the clamping plate 93 to move downwards, so that the contact block 112 slides upwards relatively along the first connecting block 93, the first wedge-shaped block 113 is no longer in contact with the clamping plate 94, so that the extension spring 95 in the stretched state is reset to drive the clamping plate 94 to slide inwards to reset, and the effect that the clamping plate 94 automatically clamps the sponge carrier on the material containing mechanism 10 is achieved, when the first connecting block 93 drives the contact block 112 and the first wedge-shaped block 113 to move upwards and causes the contact block 112 to contact with the fourth bracket 111, the contact block 112 and the first wedge-shaped block 113 stop moving upwards and the first connecting block 93 drives the clamping plate 94 to move upwards continuously, so that the contact block 112 slides downwards relatively along the first connecting block 93, the first wedge-shaped block 113 is in contact with the clamping plate 94, the clamping plate 94 slides outwards, the extension spring 95 is stretched, the first connecting rod 7 reciprocates left and right to drive the second sliding rod 122 to reciprocate left and right, when the clamping plate 94 is about to release the impregnated sponge carrier, the first connecting rod 7 is pushed left, and the second spring 124 is compressed, the second sliding rod 122 drives the material receiving frame 123 to slide leftwards and receive the sponge carrier, so as to realize the effect of receiving the impregnated sponge carrier, when the loading of the sponge carrier to be impregnated is required, the first connecting rod 7 is loosened, the first spring 8 and the second spring 124 are reset, the second sliding rod 122 drives the material receiving frame 123 to move rightwards, so that people can conveniently take the sponge carrier received on the material receiving frame 123, before the clamping plate 94 is about to loosen the impregnated sponge carrier, people pull the third sliding rod 132 downwards, the third spring 133 is compressed, the third sliding rod 132 does not block the first connecting rod 7, the second spring 124 in the compressed state is reset, so as to drive the second sliding rod 122 and the material receiving frame 123 to automatically move rightwards, when the material receiving is required, the first connecting rod 7 is manually pushed leftwards, then the third sliding rod 132 is loosened, the third spring 133 is reset to drive the third sliding rod 132 to slide upwards and block the first connecting rod 7, the material receiving frame 123 is prevented from moving rightwards during material receiving, the first connecting block 93 moves up and down to drive the rotating plate 144, the fifth spring 145, the second connecting block 142 and the third sliding rod 132 to move up and down, the fourth spring 143 deforms and resets adaptively, the operation that people pull the third sliding rod 132 downwards is reduced, the effect that the third sliding rod 132 automatically blocks and loosens the first connecting rod 7 is achieved, when the first connecting block 93 moves up and down continuously and the third sliding rod 132 cannot move up and down continuously, the rotating plate 144 swings adaptively, the fifth spring 145 deforms and resets adaptively, the second connecting block 142 moves up and down to drive the connecting rod 151 to move up and down, when the connecting rod 151 moves down, the second wedge block 153 slides inwards along the third sliding sleeve 152, the sixth spring 154 is stretched, the second wedge block 153 pushes the baffle plate 104 to be separated from the magnet 106 and swing upwards, and the operation of manually separating the baffle plate 104 from the magnet 106 is reduced, the effect of automatic demagnetization is realized.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides a tombarthite foamed ceramic filter production is with sponge carrier flooding thick liquids device, including base (1), first support (2), blowing frame (3), storage frame (4), first slide bar (5), slurcam (6), first connecting rod (7) and first spring (8), its characterized in that: still including pressing from both sides material mechanism (9) and flourishing material mechanism (10), be equipped with four first support (2) on base (1), be connected with between four first support (2) blowing frame (3), be equipped with storage frame (4) on base (1), symmetrical connection has first slide bar (5) between storage frame (4) lower part both sides, slidingtype connection has slurcam (6) between two first slide bar (5), slurcam (6) upper portion and storage frame (4) slidingtype connection, slurcam (6) lower part bilateral symmetry is equipped with first connecting rod (7), around having first spring (8) on first slide bar (5), first spring (8) both ends are connected with first slide bar (5) and slurcam (6) respectively, be equipped with on base (1) and press from both sides material mechanism (9), storage frame (4) lower part is equipped with flourishing material mechanism (10).
2. The apparatus of claim 1, wherein the sponge carrier is impregnated with slurry, and the apparatus comprises: second support (91), cylinder (92), first connecting block (93), splint (94) and extension spring (95) constitute and press from both sides material mechanism (9), be equipped with second support (91) on base (1), cylinder (92) are installed on second support (91) upper portion, be connected with first connecting block (93) on cylinder (92) the telescopic link, first connecting block (93) lower part symmetry slidingtype is equipped with splint (94), first connecting block (93) lower part both sides all around extension spring (95), extension spring (95) both ends are connected with splint (94) of homonymy respectively.
3. The apparatus of claim 2, wherein the sponge carrier is impregnated with slurry, and the apparatus comprises: third support (101), second connecting rod (102), pivot (103), baffle (104) and torsion spring (105) and magnet (106) constitute flourishing material mechanism (10), storage frame (4) lower part both walls symmetry is equipped with third support (101), third support (101) bottom both sides all are equipped with second connecting rod (102), the rotary type is connected with pivot (103) between two second connecting rod (102) middle parts of homonymy, be equipped with baffle (104) on pivot (103), baffle (104) and splint (94) cooperation, torsion spring (105) have all been around to pivot (103) both sides, torsion spring (105) both ends are connected with second connecting rod (102) and baffle (104) respectively, be connected with magnet (106) between two second connecting rod (102) bottoms of homonymy, magnet (106) and baffle (104) cooperation.
4. The apparatus of claim 3, wherein the sponge carrier is impregnated with slurry, and the apparatus comprises: still including pushing mechanism (11), fourth support (111), contact piece (112) and first wedge (113) constitute pushing mechanism (11), storage frame (4) upper portion is equipped with fourth support (111), first connecting block (93) middle part slidingtype is equipped with contact piece (112), contact piece (112) and fourth support (111) contact cooperation, contact piece (112) bottom is equipped with first wedge (113), splint (94) and first wedge (113) contact cooperation, baffle (104) and first wedge (113) cooperation.
5. The apparatus of claim 4 for impregnating slurry with sponge carrier for producing RE ceramic foam filter, wherein: the material receiving mechanism (12) is further included, the first sliding sleeve (121), the second sliding rod (122), the material receiving frame (123) and the second spring (124) form the material receiving mechanism (12), the first sliding sleeve (121) is arranged on each of two sides of the material receiving frame (3), the second sliding rod (122) is connected between the upper portions of the two first sliding sleeves (121) in a sliding mode, each of two sides of the second sliding rod (122) is connected with the first connecting rod (7) on the same side, the material receiving frame (123) is arranged on each of the second sliding rods (122), the second spring (124) is wound on each of two sides of each of the second sliding rods (122), and two ends of each of the second spring (124) are connected with the first sliding sleeve (121) and the second sliding rod (122) respectively.
6. The apparatus of claim 5, wherein the sponge carrier is impregnated with slurry, and the apparatus comprises: the sliding device is characterized by further comprising a blocking mechanism (13), the second sliding sleeve (131), a third sliding rod (132) and a third spring (133) form the blocking mechanism (13), the second sliding sleeve (131) is connected between the upper portions of the two first sliding sleeves (121), the third sliding rod (132) is connected between the two sides of the second sliding sleeve (131) in a sliding mode, the third sliding rod (132) is in contact fit with the first connecting rod (7), the third spring (133) is wound on the two sides of the third sliding rod (132), and two ends of the third spring (133) are connected with the second sliding sleeve (131) and the third sliding rod (132) respectively.
7. The apparatus of claim 6, wherein the sponge carrier is impregnated with slurry, and the apparatus comprises: the material discharging device is characterized by further comprising a moving mechanism (14), a fourth sliding rod (141), a second connecting block (142), a fourth spring (143), a rotating plate (144) and a fifth spring (145) form the moving mechanism (14), the fourth sliding rod (141) is connected between each of two sides of the material discharging frame (3) and the material storing frame (4), the second connecting block (142) is connected between each of two sides of the lower portion of the third sliding rod (132), each of two sides of the upper portion of the second connecting block (142) is connected with the fourth sliding rod (141) on the same side in a sliding mode, the fourth spring (143) is wound on the upper portion of the fourth sliding rod (141), two ends of the fourth spring (143) are respectively connected with the fourth sliding rod (141) and the second connecting block (142), the rotating plate (144) is rotatably arranged in the middle of the upper portion of the second connecting block (142), the rotating plate (144) is matched with the first connecting block (93), the fifth spring (145) is wound on each of two sides of the upper portion of the second connecting block (142), two ends of the fifth spring (145) are respectively connected with the rotating plate (144) and the second connecting block (142).
8. The apparatus of claim 7 for impregnating slurry with sponge carrier for producing rare earth ceramic foam filter, wherein: still including taking off magnetic mechanism (15), connecting rod (151), third sliding sleeve (152), second wedge (153) and sixth spring (154) constitute and take off magnetic mechanism (15), second connecting block (142) upper portion both sides all are equipped with connecting rod (151), two third support (101) outer wall symmetries are equipped with third sliding sleeve (152), third sliding sleeve (152) lower part slidingtype is equipped with second wedge (153), around having sixth spring (154) on second wedge (153), sixth spring (154) both ends are connected with third sliding sleeve (152) and second wedge (153) respectively.
CN202110456840.9A 2021-04-27 2021-04-27 Sponge carrier impregnating slurry device for production of rare earth foam ceramic filter Active CN113171929B (en)

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