CN207163210U - A kind of continuous vacuum whirl-sintering equipment - Google Patents
A kind of continuous vacuum whirl-sintering equipment Download PDFInfo
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- CN207163210U CN207163210U CN201720760062.1U CN201720760062U CN207163210U CN 207163210 U CN207163210 U CN 207163210U CN 201720760062 U CN201720760062 U CN 201720760062U CN 207163210 U CN207163210 U CN 207163210U
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- whirl
- conveyer
- supporting plate
- continuous vacuum
- sintering equipment
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Abstract
It the utility model is related to a kind of continuous vacuum whirl-sintering equipment.Including the heating chamber in body of heater, described heating chamber is made up of attemperator, heater and conveyer, described conveyer is provided with material tray, rising rotating device is additionally provided with below the conveyer, described rising rotating device is used to jack up material tray and in heating chamber internal rotation, to realize the uniform heating of material.As shown from the above technical solution, after material tray of the present utility model is sent to specified location by conveyer, product to be sintered in material tray is set to be rotated in the certain direction of furnace chamber interior edge and speed by rising rotating device, so that each position of product can effectively avoid shadow effect, product is allowed to be heated evenly, the cracking phenomenon of product is efficiently reduced, the uniformity and performance for making product are effectively improved.
Description
Technical field
It the utility model is related to neodymium iron boron vacuum-sintering field, and in particular to a kind of continuous vacuum whirl-sintering equipment.
Background technology
At present, continuous fritting furnace is separated each room using gate, so that each room can have independent temperature and pressure,
The speed of sintering can be greatly improved to save the time.But because the stove interior space is larger, so being difficult when controlling temperature
Ensure that each spot temperature is evenly distributed unanimously in stove, so that each spot temperature of material is inconsistent, causes uneven heating even,
So that same furnace charge cannot guarantee that performance is consistent.This phenomenon can reduce neodymium iron boron product efficiency in sintering process, property
It can also can be influenceed by certain.
Utility model content
The purpose of this utility model is to provide a kind of continuous vacuum whirl-sintering equipment, and the equipment can allow material burning
Each position is heated up evenly, so as to improve efficiency and performance during knot.
To achieve the above object, the utility model employs following technical scheme:Including the heating chamber in body of heater, institute
The heating chamber stated is made up of attemperator, heater and conveyer, and described conveyer is provided with material tray, described
Rising rotating device is additionally provided with below conveyer, described rising rotating device is used to material tray is jacked up and heated
Indoor rotation, to realize the uniform heating of material.
Described rising rotating device includes the supporting plate in heating chamber and the rising rotary shaft being connected with supporting plate, described
Rising rotary shaft be connected through lower portion of furnace body with power source, the position that described rising rotary shaft is connected with lower portion of furnace body is provided with
Both sealing devices of sealing.
Described material tray includes square tray body, and described tray body is provided with the logical of uniform intervals arrangement
Hole, the lower surface center position of the tray body are provided with the groove for being easy to fasten with supporting plate.
Described supporting plate and groove are cross.
Described conveyer includes transmission shaft, described transmission shaft include being arranged on four short axles in centre position and
The major axis of short axle both sides is arranged on, the position that four short axles are set is corresponding with the position of supporting plate, and between four short axles
Form the passage risen or fallen for supporting plate.
Described power source includes the drive that driving rises the hydraulic cylinder of rotary shaft lifting and driving rises rotary shaft rotation
Dynamic motor.
As shown from the above technical solution, after material tray of the present utility model is sent to specified location by conveyer,
Product to be sintered in material tray is set to be rotated in the certain direction of furnace chamber interior edge and speed by rising rotating device, so as to
Each position of product is effectively avoided shadow effect, allow product to be heated evenly, it is cracking to efficiently reduce product
Phenomenon, the uniformity and performance for making product be effectively improved.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the utility model conveyer and the structural representation for rising rotating device;
Fig. 3 is the front view of the utility model material tray;
Fig. 4 is Fig. 3 rearview;
Fig. 5 is the dimensional structure diagram of the utility model material tray.
Embodiment
The utility model is described further below in conjunction with the accompanying drawings:
A kind of continuous vacuum whirl-sintering equipment as shown in Figure 1, including the heating chamber in body of heater, heating chamber is by protecting
Warm device 1, heater 2 and conveyer 3 form, and conveyer 3 is provided with material tray 4, and the lower section of conveyer 3 is also set
Have and rise rotating device 5, rise rotating device 5 and be used to jack up material tray 4 and in heating chamber internal rotation, to realize material
Uniformly heating.
Further, as shown in Fig. 2 rise rotating device 5 include supporting plate 51 in the heating chamber and with the phase of supporting plate 51
Rising rotary shaft 52 even, rise rotary shaft 52 and be connected through lower portion of furnace body with power source, rise rotary shaft 52 and lower portion of furnace body
Connected position is provided with the sealing device 6 of both sealings.The one end for rising rotary shaft 52 is connected with supporting plate 51, and the other end is from stove
Sealing device 6 below body is passed through, and the vacuum sealing at rising rotary shaft 52 position is realized by sealing device 6.
Further, as shown in Fig. 3, Fig. 4, Fig. 5, material tray 4 includes square tray body 41, in tray body 41
Through hole 42 provided with uniform intervals arrangement, the lower surface center position of tray body 41, which is provided with, is easy to what is fastened with supporting plate 51
Groove 43.
Further, supporting plate 51 and groove 43 are cross.
Further, as shown in Fig. 2 conveyer 3 includes transmission shaft, transmission shaft includes be arranged on centre position four
Short axle 31 and the major axis 32 for being arranged on the both sides of short axle 31, the position that four short axles 31 are set is corresponding with the position of supporting plate 51,
And the passage risen or fallen for supporting plate 51 is formed between four short axles 31.
Further, power source includes the hydraulic cylinder 7 of the driving rising lifting of rotary shaft 52 and driving rises rotary shaft 52
The motor 8 of rotation.Rise rotary shaft 52 and supporting plate 51 controls raising and lowering by the hydraulic cylinder 7 of lower portion of furnace body, drive
Motor 8 is rotated when hydraulic cylinder 7 rises in place, drives rising rotary shaft 52 and material tray 4 slow together by reductor
Speed rotation.
Operation principle of the present utility model is as follows:
Conveyer 3 rises the lower section that the supporting plate 51 in rotating device 5 is received in transmission shaft, no when transmitting material tray 4
Interfered with material tray 4;Stopped when material tray 4 is sent to specified location by photoelectric sensor switch control conveyer 3
Only, the now control of hydraulic cylinder 7 rises rotary shaft 52 and risen, so as to drive supporting plate 51 to be ejected simultaneously from the passage between four short axles 31
It is fastened in the groove 43 of material tray 4, rises after rotary shaft 52 rises in place and acted again by motor 8, motor 8 is logical
Crossing reductor drives rising rotary shaft 52 to rotate, so as to drive the material tray 4 on supporting plate 51 and supporting plate 51 to rotate at a slow speed, with reality
The thermally equivalent of existing material.
In summary, the utility model the product to be sintered in material tray can be made in the certain direction of furnace chamber interior edge and
Speed rotates, so that each position of product can effectively avoid shadow effect, allows product to be heated evenly, efficiently reduces
The cracking phenomenon of product, the uniformity and performance for making product are effectively improved.
Embodiment described above is only that preferred embodiment of the present utility model is described, not to this practicality
New scope is defined, and on the premise of the utility model design spirit is not departed from, those of ordinary skill in the art are to this
The various modifications and improvement that the technical scheme of utility model is made, the protection of the utility model claims book determination all should be fallen into
In the range of.
Claims (6)
- A kind of 1. continuous vacuum whirl-sintering equipment, it is characterised in that:Including the heating chamber in body of heater, described heating chamber By attemperator(1), heater(2)And conveyer(3)Composition, described conveyer(3)It is provided with material tray (4), the conveyer(3)Lower section be additionally provided with rising rotating device(5), described rising rotating device(5)For by thing Material torr disk(4)Jack up and in heating chamber internal rotation, to realize the uniform heating of material.
- 2. continuous vacuum whirl-sintering equipment according to claim 1, it is characterised in that:Described rising rotating device (5)Including the supporting plate in heating chamber(51)And and supporting plate(51)Connected rising rotary shaft(52), described rising rotation Axle(52)It is connected through lower portion of furnace body with power source, described rising rotary shaft(52)The position being connected with lower portion of furnace body is provided with close Both sealing devices of envelope(6).
- 3. continuous vacuum whirl-sintering equipment according to claim 2, it is characterised in that:Described material tray(4)Bag Include square tray body(41), described tray body(41)It is provided with the through hole of uniform intervals arrangement(42), the pallet Body(41)Lower surface center position be provided with and be easy to and supporting plate(51)The groove to fasten(43).
- 4. continuous vacuum whirl-sintering equipment according to claim 3, it is characterised in that:Described supporting plate(51)And groove (43)To be cross.
- 5. continuous vacuum whirl-sintering equipment according to claim 2, it is characterised in that:Described conveyer(3)Bag Transmission shaft is included, described transmission shaft includes being arranged on four short axles in centre position(31)And it is arranged on short axle(31)Both sides Major axis(32), four short axles(31)The position of setting and supporting plate(51)Position it is corresponding, and four short axles(31)Between Formation supplies supporting plate(51)The passage risen or fallen.
- 6. continuous vacuum whirl-sintering equipment according to claim 2, it is characterised in that:Described power source includes driving Rise rotary shaft(52)The hydraulic cylinder of lifting(7)And driving rises rotary shaft(52)The motor of rotation(8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720760062.1U CN207163210U (en) | 2017-06-27 | 2017-06-27 | A kind of continuous vacuum whirl-sintering equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720760062.1U CN207163210U (en) | 2017-06-27 | 2017-06-27 | A kind of continuous vacuum whirl-sintering equipment |
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CN207163210U true CN207163210U (en) | 2018-03-30 |
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CN201720760062.1U Active CN207163210U (en) | 2017-06-27 | 2017-06-27 | A kind of continuous vacuum whirl-sintering equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109210942A (en) * | 2018-09-11 | 2019-01-15 | 长兴鑫鼎耐火材料厂(普通合伙) | A kind of two-way large capacity refractory material kiln |
-
2017
- 2017-06-27 CN CN201720760062.1U patent/CN207163210U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109210942A (en) * | 2018-09-11 | 2019-01-15 | 长兴鑫鼎耐火材料厂(普通合伙) | A kind of two-way large capacity refractory material kiln |
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