CN216732604U - Curing device for composite propeller machining - Google Patents
Curing device for composite propeller machining Download PDFInfo
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- CN216732604U CN216732604U CN202123251734.1U CN202123251734U CN216732604U CN 216732604 U CN216732604 U CN 216732604U CN 202123251734 U CN202123251734 U CN 202123251734U CN 216732604 U CN216732604 U CN 216732604U
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- curing
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Abstract
The utility model discloses a solidification equipment is used in processing of combined material screw, comprising a main body, the baffle is installed to the inside middle section position both sides of main part, the baffle is two-layer separation about with the main part is for curing chamber and material loading chamber, material loading intracavity side is installed and is used for the feed mechanism of material loading, just inside feed mechanism top extends to curing chamber, feed mechanism internally mounted has the fixed establishment who is used for fixed screw. The utility model discloses an install feed mechanism cooperation fixed establishment, can fix the screw mould in the material loading chamber of the inside below of main part, reduce the height of taking, convenient fixed simultaneously, the inside motor B drive screw of accessible feed mechanism rotates simultaneously, thereby realize promoting fixed establishment simultaneously together with the screw mould, send into the curing chamber inside from the baffle and fix, fixed completion back simultaneously, also can use feed mechanism to take out the screw mould, the efficiency of material loading has been improved, the practicality is improved.
Description
Technical Field
The utility model relates to a combined material screw processing technology field specifically is a curing device is used in combined material screw processing.
Background
In the production process of the composite material propeller, a propeller mold needs to be placed in a curing furnace for curing, the stress of material combination is enhanced, the existing composite material propeller generally adopts the curing furnace, and after raw materials are poured in the propeller mold, the propeller mold is placed in the curing furnace for curing. But present curing device for combined material screw processing adopts the manual work to go up unloading in-process mostly at last unloading, leads to the material loading inconvenient, and easy workman touches solidification furnace body inner wall easily during the unloading simultaneously, causes danger and inconvenient to current curing device for combined material screw processing is inconvenient fixes the screw mould when using, uses inconveniently, and the suitability is poor, therefore we disclose a curing device for combined material screw processing.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a curing device is used in processing of combined material screw to propose current curing device for combined material screw processing in solving above-mentioned background art and adopt the manual work to go up unloading mostly at the in-process of last unloading, it is inconvenient to lead to the material loading, easy workman touches solidification furnace inner wall easily during the unloading simultaneously, cause danger and inconvenient, and current curing device for combined material screw processing is inconvenient fixes the screw mould when using, it is inconvenient to use, the poor problem of suitability.
In order to solve the technical problem, the utility model provides a following technical scheme: a curing device for machining a composite propeller comprises a main body, wherein two sides of the middle section of the inside of the main body are provided with clapboards, the upper layer and the lower layer of the inside of the main body are divided into a curing cavity and a feeding cavity by the clapboards, a feeding mechanism for feeding is arranged on the inner side of the feeding cavity, the upper part of the feeding mechanism extends into the curing cavity, and a fixing mechanism for fixing the propeller is arranged in the feeding mechanism;
feed mechanism includes motor B, bottom plate and screw rod, the slide rail is installed to bottom plate top both sides, the slide rail outside is connected with the slider, the mounting panel is installed to the slider top, just fixed establishment installs the mounting panel top outside, motor B is installed to bottom plate below one end, motor B power output shaft is connected with the screw rod, the screw rod outside is connected with the swivel nut, just the swivel nut outside is connected the mounting panel bottom.
Preferably, fixed establishment includes charging tray, motor A and supporting shoe, mounting panel internal connection has a rotating gear, motor A is installed on the rotating gear right side, motor A power output shaft is connected with the power tooth, just the meshing of power tooth is connected the rotating gear outside, the charging tray is installed to the rotating gear top, the inside groove of accomodating of having seted up of charging tray, the mounting groove has been seted up to the inslot portion of accomodating, fastening spring one end is all installed to the inside both sides of mounting groove, the fastening spring other end is connected with the supporting shoe, just the supporting shoe sliding connection be in inside the mounting groove.
Preferably, a fixing slot is formed in the supporting block, and a fixing inserting block is inserted into the fixing slot.
Preferably, the support blocks are semi-circular in shape and the two support blocks may form a closed disk.
Preferably, the number of the fastening springs is several.
Preferably, a gap is reserved between the partition plates on two sides in the main body, and the width of the material tray is smaller than the gap reserved between the partition plates.
Preferably, the power input ends of the motor a and the motor B are electrically connected with the power output end of the external power supply.
1. The utility model discloses an install feed mechanism, when solidification material loading, feed mechanism cooperation fixed establishment, can fix the screw mould in the material loading chamber of the inside below of main part, reduce the height of taking, it is convenient fixed simultaneously, the inside motor B drive screw of accessible feed mechanism rotates simultaneously, thereby realize promoting fixed establishment together with the screw mould simultaneously, it fixes to send into the solidification intracavity portion from the baffle is inside, simultaneously fixed completion back, also can use feed mechanism to take out the screw mould, the efficiency of material loading is improved, and the practicality is improved.
2. The utility model discloses a be provided with fixed establishment, the inside fastening spring of supporting shoe cooperation mounting groove of fixed establishment uses, can insert the installation hole site at the inside center of screw mould fast when the material loading, realizes the quick fixed to the screw mould, and fastening spring contracts simultaneously, and adjustable supporting shoe removes, and the supporting shoe is whole circular, and outside angle can satisfy multiple aperture to the realization is fixed the screw mould of many specifications, has improved the efficiency and the suitability of installation.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a feeding mechanism according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a fixing mechanism according to an embodiment of the present invention.
In the figure: 1. a main body; 2. a feeding cavity; 3. a partition plate; 4. a fixing mechanism; 401. a rotating gear; 402. a motor A; 403. a power tooth; 404. mounting grooves; 405. a support block; 406. fixing the slot; 407. fixing the insert block; 408. a receiving groove; 409. a fastening spring; 410. a material tray; 5. a feeding mechanism; 501. a base plate; 502. a motor B; 503. a screw; 504. a slide rail; 505. a slider; 506. mounting a plate; 507. a threaded sleeve; 6. and curing the cavity.
Detailed Description
In order to facilitate the solution current solidification equipment for combined material screw processing adopts the manual work to go up unloading in-process mostly, and it is inconvenient to lead to the material loading, easy workman touches solidification furnace inner wall easily during unloading simultaneously, causes danger and inconvenient, and current solidification equipment for combined material screw processing is inconvenient fixes the screw mould when using, uses inconveniently, and the problem that the suitability is poor is right the utility model discloses technical scheme in the embodiment is clear, completely describes, and obviously, the embodiment that describes is only the utility model discloses a part of embodiment, rather than whole embodiment. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
Referring to fig. 1-3, the embodiment provides a curing device for processing a composite propeller, which includes a main body 1, wherein two sides of the middle section of the inside of the main body 1 are provided with partition plates 3, the partition plates 3 divide the inside of the main body 1 into an upper layer and a lower layer into a curing chamber 6 and a feeding chamber 2, a feeding mechanism 5 for feeding is arranged on the inner side of the feeding chamber 2, the upper part of the feeding mechanism 5 extends into the curing chamber 6, and a fixing mechanism 4 for fixing the propeller is arranged inside the feeding mechanism 5;
In the embodiment, when the device is used, firstly, the curing cavity 6 above the interior of the main body 1 is heated, then the mounting plate 506 and the fixing mechanism 4 in the interior of the feeding mechanism 5 are lowered to the interior of the feeding cavity 2, at the moment, the propeller mould is fixed in the interior of the material tray 410 through the fixing mechanism 4, when the device is fixed, the supporting blocks 405 sliding in the interior of the mounting groove 404 are pressed towards the respective opposite directions, two supporting blocks 405 are close to each other, at the moment, the propeller mould is sleeved on the outer sides of the supporting blocks 405, then the fastening springs 409 act, the fastening springs 409 can expand and accumulate force when the supporting blocks 405 are close to each other, when the supporting blocks 405 are not pressed, the supporting blocks 405 rebound, the supporting blocks 405 on the two sides simultaneously abut against the two inner sides of the connecting hole of the propeller mould to realize fixation, at the moment, the motor B502 in the interior of the feeding mechanism 5 is electrified through an external power supply, the motor B502 works and rotates to drive the screw 503 to rotate, the screw 503 drives the outer screw sleeve 507 to rotate, the screw sleeve 507 is arranged below the mounting plate 506, the sliding blocks 505 at two sides of the mounting plate 506 slide outside the sliding rails 504, the rotation of the screw sleeve 507 is limited, so that the screw sleeve 507 is driven to move upwards outside the screw 503, the charging tray 410 is sent into the curing cavity 6, when the charging tray is arranged above the inside of the curing cavity 6, at this time, the motor a402 inside the external power supply feeding tray 410 is energized, the motor a402 operates and rotates to drive the power teeth 403 to rotate, the power teeth 403 drive the rotating gear 401 to rotate, thereby driving the tray 410 to adjust the angle, aligning the lower part of the tray 410 with the partition plate 3, at the moment, lowering the tray 410 through the feeding mechanism 5, attaching the lower part of the tray 410 above the partition plate 3, and sealing the gap between the partition plates 3, starting curing, and taking out the fixing mechanism 4 and the cured propeller die through the feeding mechanism 5 after curing is finished.
Example 2
Referring to fig. 1-3, a further improvement is made on the basis of embodiment 1: the fixing mechanism 4 comprises a material tray 410, a motor A402 and a supporting block 405, a rotating gear 401 is connected inside a mounting plate 506, the motor A402 is installed on the right side of the rotating gear 401, a power output shaft of the motor A402 is connected with a power tooth 403, the power tooth 403 is meshed and connected with the outer side of the rotating gear 401, the material tray 410 is installed above the rotating gear 401, a containing groove 408 is formed inside the material tray 410, a mounting groove 404 is formed inside the containing groove 408, one end of a fastening spring 409 is installed on each of two sides inside the mounting groove 404, the other end of the fastening spring 409 is connected with the supporting block 405, the supporting block 405 is slidably connected inside the mounting groove 404, propeller molds of different specifications can be fixed by installing the fixing mechanism 4, the applicability is improved, a fixing slot 406 is formed inside the supporting block 405, a fixing insert 407 is inserted into the fixing slot 406, and the fixing insert 407 is matched with the fixing slot 406 for use, can be when the supporting shoe 405 is fixed to the propeller mold is inside, fasten from the outside, improve fixed effect, the shape of supporting shoe 405 is semi-circular, and two supporting shoes 405 can form a closed disc, circular radian makes the laminating angle more, fixed effect is better, the space leaves the clearance between the inside both sides baffle 3 of main part 1, and the width of charging tray 410 is less than the space and leaves the clearance between the baffle 3, the electric power input of motor A402 and motor B502 all is electric connection with external power source's electric power output.
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 (7)
1. The utility model provides a solidification equipment is used in processing of combined material screw, includes main part (1), its characterized in that: the two sides of the middle section position in the main body (1) are provided with clapboards (3), the upper layer and the lower layer in the main body (1) are divided into a curing chamber (6) and a feeding chamber (2) by the clapboards (3), the feeding mechanism (5) for feeding is arranged on the inner side of the feeding chamber (2), the upper part of the feeding mechanism (5) extends into the curing chamber (6), and a fixing mechanism (4) for fixing a propeller is arranged in the feeding mechanism (5);
feed mechanism (5) includes motor B (502), bottom plate (501) and screw rod (503), slide rail (504) are installed to bottom plate (501) top both sides, slide rail (504) outside is connected with slider (505), mounting panel (506) are installed to slider (505) top, just fixed establishment (4) are installed mounting panel (506) top outside, motor B (502) are installed to bottom plate (501) below one end, motor B (502) power output shaft has screw rod (503), the screw rod (503) outside is connected with swivel nut (507), just swivel nut (507) outside is connected mounting panel (506) bottom.
2. The curing device for composite propeller processing according to claim 1, wherein: fixed establishment (4) include charging tray (410), motor A (402) and supporting shoe (405), mounting panel (506) internal connection has rotating gear (401), rotating gear (401) right side is installed motor A (402), motor A (402) power output shaft is connected with power tooth (403), just power tooth (403) meshing is connected in the rotating gear (401) outside, charging tray (410) is installed to rotating gear (401) top, charging tray (410) inside has been seted up and has been accomodate groove (408), accomodate inside mounting groove (408) and seted up mounting groove (404), fastening spring (409) one end is all installed to the inside both sides of mounting groove (404), fastening spring (409) other end is connected with supporting shoe (405), just supporting shoe (405) sliding connection is in inside mounting groove (404).
3. The curing device for composite propeller processing according to claim 2, wherein: a fixed slot (406) is formed in the supporting block (405), and a fixed inserting block (407) is inserted into the fixed slot (406).
4. The curing device for composite propeller processing according to claim 2, wherein: the support blocks (405) are semi-circular in shape and two support blocks (405) may form a closed disk.
5. The curing device for composite propeller processing according to claim 2, wherein: the number of the fastening springs (409) is several.
6. The curing device for composite propeller processing according to claim 2, wherein: a gap is reserved between the partition plates (3) on two sides in the main body (1), and the width of the material tray (410) is smaller than that of the partition plates (3).
7. The curing device for composite propeller processing according to claim 2, wherein: the power input ends of the motor A (402) and the motor B (502) are electrically connected with the power output end of an external power supply.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123251734.1U CN216732604U (en) | 2021-12-22 | 2021-12-22 | Curing device for composite propeller machining |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123251734.1U CN216732604U (en) | 2021-12-22 | 2021-12-22 | Curing device for composite propeller machining |
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CN216732604U true CN216732604U (en) | 2022-06-14 |
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CN202123251734.1U Active CN216732604U (en) | 2021-12-22 | 2021-12-22 | Curing device for composite propeller machining |
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2021
- 2021-12-22 CN CN202123251734.1U patent/CN216732604U/en active Active
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