CN218432102U - Automatic low temperature cold pressing equipment of tea-oil camellia seed - Google Patents

Automatic low temperature cold pressing equipment of tea-oil camellia seed Download PDF

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Publication number
CN218432102U
CN218432102U CN202222366289.1U CN202222366289U CN218432102U CN 218432102 U CN218432102 U CN 218432102U CN 202222366289 U CN202222366289 U CN 202222366289U CN 218432102 U CN218432102 U CN 218432102U
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oil
pipe
bottom side
cold pressing
temperature cold
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CN202222366289.1U
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刘勇
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Hubei Xiner Green Food Co ltd
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Hubei Xiner Green Food Co ltd
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Abstract

The utility model discloses an automatic low temperature cold pressing equipment of tea-oil camellia seed relates to vegetable seed processing equipment field, including the low temperature oil press, be equipped with tray and bottom plate on the low temperature oil press, the bottom side fixed mounting of tray has an oil pipe, and the bottom side fixed mounting who goes out the oil pipe has the shunt tubes, and the bottom side fixed mounting of shunt tubes has two spacing pipes, and two through-holes have been seted up to the bottom side of shunt tubes, and two through-holes are linked together with two spacing pipes respectively. The utility model discloses, through the setting of shunt tubes, sleeve pipe isotructure, the shunt tubes can fall into two strands of flows with the oil that presses, through controlling the capacity in two oil drums, can drive the sleeve pipe through the kickboard and seal current through-hole when the oil in one of them oil drum is filled with, it is extravagant to prevent to flow in too much and lead to spilling over, can change the oil drum of filling with this moment, and another oil drum still can continue to load, thereby can change the oil drum under the condition that does not influence the work of extracting oil, it is extravagant to reduce.

Description

Automatic low temperature cold pressing equipment of tea-oil camellia seed
Technical Field
The utility model relates to a vegetable seed processing equipment technical field especially relates to an automatic low temperature cold pressing equipment of tea-oil camellia seed.
Background
The low-temperature oil press is a new generation oil press specially designed for cold pressing various oil materials, is particularly suitable for pressing organic plants and economic crops with high added value, has low oil temperature, high oil yield and low residual oil of cakes during pressing by a machine, and the processed oil has light color, good quality and rich nutrition and reaches the international market standard.
Among the prior art, the oil that the low temperature oil press of rapeseed oil squeezed out generally needs to load through the oil drum, oil need change the oil drum when filling with, but when changing the oil drum, the oil that the low temperature oil press squeezed is still trickling, lead to oil can flow subaerially, cause the waste, and oil in the oil drum does not carry out any warning after filling with, if the staff distraction does not notice can lead to oil to spill over from the oil drum in, consequently need the automatic low temperature cold pressing equipment of a tea-oil camellia seed to satisfy people's demand.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic cold equipment of squeezing of tea-oil camellia seed low temperature to when solving the low temperature oil press that provides in the above-mentioned background art and changing the oil drum, because oil still trickles, can lead to the oil to flow to subaerial the waste that causes, do not carry out the problem of any warning after filling with the oil drum moreover.
In order to achieve the above purpose, the utility model provides a following technical scheme: an automatic low-temperature cold pressing device for camellia seeds comprises a low-temperature oil press, wherein a tray and a bottom plate are arranged on the low-temperature oil press, an oil outlet pipe is fixedly arranged at the bottom side of the tray, a flow dividing pipe is fixedly arranged at the bottom side of the oil outlet pipe, two limiting pipes are fixedly arranged at the bottom side of the flow dividing pipe, two through holes are formed in the bottom side of the flow dividing pipe and are respectively communicated with the two limiting pipes, two connecting blocks are fixedly arranged on the inner walls of the two through holes, the same limiting plate is fixedly arranged at the bottom sides of the two connecting blocks positioned on the same side, sleeves are respectively and slidably arranged on the inner walls of the two limiting pipes, connecting pipes are respectively and fixedly arranged at the bottom sides of the two sleeves, floating plates are fixedly sleeved on the two connecting pipes, two oil drums are movably arranged on the bottom plate, the two floating plates are respectively positioned in the two oil drums, and limiting plates are respectively and slidably arranged on the two sides of the two sleeves, the two limiting plates positioned on the same side are respectively and fixedly arranged on two sides of the flow dividing pipe, oil squeezed by the low-temperature oil press can flow to the oil outlet pipe through the tray, the oil in the oil outlet pipe can flow into the flow dividing pipe, the oil in the flow dividing pipe can be divided through the two through holes and flows out from a gap between the connecting block and the limiting plate, the flowing-out oil can flow to the connecting pipe through the limiting pipe and the guide hole of the sleeve pipe and respectively flows into the two oil drums through the two connecting pipes, when the oil in the oil drums slowly increases, the oil can be in contact with the floating plate, the floating plate can slowly rise along with the increase of the oil under the action of buoyancy, the rising floating plate can drive the connecting pipe to rise, so that the connecting pipe rises to drive the sleeve pipe to slide and rise in the limiting pipe, the connecting rods on two sides can be driven to respectively slide and rise in the two vertical sliding chutes when the sleeve pipe rises, and the sleeve pipe can only slide in the vertical direction, the sleeve pipe that lasts to rise can cup joint connecting block and limiting plate including through the water conservancy diversion hole to can be with the gap parcel jam between connecting block and the limiting plate, oil can't flow out through the gap this moment, prevents that oil from lasting the whereabouts and leading to the oil drum to spill over and cause the waste.
Preferably, two one side that the limiting plate kept away from each other all rotates and installs the gangbar, one side fixed mounting that two gangbars are close to each other has same gag lever post, the bottom side fixed mounting of shunt tubes has spacing fixture block, a plurality of draw-in grooves have been seted up on the spacing fixture block, gag lever post movable mounting is in a draw-in groove that corresponds, the bottom side fixed mounting of the bottom side of shunt tubes has the alarm, movable mounting has the switch on the alarm, the switch is corresponding with the gangbar, the connecting rod can drive the one end of gangbar through the cooperation between rotation hole and the fixed axle and rotate and rise when rising, the gangbar can drive the torsional spring and compress when rotating, the anticreep piece can prevent that the connecting rod from droing when rotating, promote stability, thereby make the other one end of gangbar drive the gag lever post remove and break away from current draw-in groove, the gag lever post can remove to another draw-in groove top on the spacing fixture block simultaneously, the torsional spring can reset drive the rotation of gangbar and reset this moment, the pivoted gangbar can drive the gag lever post to move to another draw-in groove in, simultaneously can's backward by the torsional spring, and can unable backward, and can the limiting rod can be backward to the alarm to the contact with the connecting block simultaneously, the alarm is can send the alarm to the alarm around the alarm.
Preferably, the limiting plate is provided with vertical sliding grooves, the vertical sliding grooves are internally provided with connecting rods in a sliding manner, the connecting rods are fixedly arranged on one side of the sleeve, and the sleeve can drive the connecting rods on two sides to slide in the two vertical sliding grooves and ascend when ascending, so that the sleeve can be limited to slide in the vertical direction only.
Preferably, a rotating hole is formed in the linkage rod, a fixed shaft is rotatably mounted in the rotating hole, the fixed shaft is fixedly mounted on one side of the connecting rod, and when the connecting rod rises, one end of the linkage rod is driven to rotate and rise through the cooperation between the rotating hole and the fixed shaft.
Preferably, one side fixed mounting of fixed axle has the anticreep piece, and the anticreep piece contacts with the gangbar, and the anticreep piece can prevent that the connecting rod from droing in the pivoted, promotes stability.
Preferably, fixed cover has connect the torsional spring on the fixed axle, and the one end fixed mounting of torsional spring is on rotating the inner wall in hole, and the other one end fixed mounting of torsional spring is on the fixed axle, can drive the torsional spring when the gangbar pivoted and compress and make the gag lever post break away from current draw-in groove, and the gag lever post that continuously removes can remove the other draw-in groove top on the spacing fixture block, and the torsional spring can reset and drive the gangbar rotation and reset this moment, and in the pivoted gangbar can drive the gag lever post and remove another draw-in groove, can't the past roll back of gag lever post simultaneously through the torsional spring.
Preferably, the water conservancy diversion hole has been seted up to sheathed tube inner wall, and the water conservancy diversion hole is mutually supported with the limiting plate, and the sleeve pipe that continuously rises can cup joint connecting block and limiting plate in through the water conservancy diversion hole.
The utility model has the advantages that:
the utility model discloses in, through the setting of shunt tubes, sleeve pipe isotructure, the shunt tubes can fall into two strands of flows with the oil that presses, through controlling the capacity in two oil drums, can drive the sleeve pipe through the kickboard when the oil in one of them oil drum is filled with and seal current through-hole, it is extravagant to prevent to flow in too much and lead to spilling over, can change the oil drum of filling with this moment, and another oil drum still can continue to load, thereby can change the oil drum under the condition that does not influence the work of extracting oil, it is extravagant to reduce.
The utility model discloses in, through the setting of gangbar, alarm isotructure, the oil mass in the oil drum slowly rises and the in-process of filling with can make the gangbar extrude the switch of alarm, can start the alarm and send out the police dispatch newspaper this moment, reminds staff on every side in time to change the oil drum of filling with, the gag lever post can remove in other draw-in grooves simultaneously for the position of restriction sleeve pipe prevents that the sleeve pipe pine from taking off when changing the oil drum.
Drawings
Fig. 1 is a schematic structural view of an automatic low-temperature cold-pressing device for camellia seeds, which is provided by the utility model;
fig. 2 is a schematic view of a partial structure of an automatic low-temperature camellia seed cold pressing device provided by the utility model;
fig. 3 is a schematic cross-sectional structural view of a branch pipe part of the automatic low-temperature cold pressing equipment for camellia seeds provided by the utility model;
fig. 4 is the schematic cross-sectional structure diagram of the linkage rod part of the automatic low-temperature cold pressing equipment for camellia seeds provided by the utility model.
In the figure: 1. a low temperature oil press; 2. a tray; 3. a base plate; 4. an oil outlet pipe; 5. a shunt tube; 6. a limiting pipe; 7. a through hole; 8. connecting blocks; 9. a limiting plate; 10. a sleeve; 11. a connecting pipe; 12. a floating plate; 13. an oil drum; 14. a limiting plate; 15. a linkage rod; 16. a limiting clamping block; 17. a limiting rod; 18. an alarm; 19. a switch; 20. a vertical chute; 21. rotating the hole; 22. a fixed shaft; 23. an anti-drop sheet; 24. a torsion spring; 25. a connecting rod; 26. a flow guide hole; 27. a clamping groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-4, an automatic low-temperature cold pressing device for camellia seeds comprises a low-temperature oil press 1, wherein a tray 2 and a bottom plate 3 are arranged on the low-temperature oil press 1, an oil outlet pipe 4 is fixedly mounted on the bottom side of the tray 2, a shunt pipe 5 is fixedly mounted on the bottom side of the oil outlet pipe 4, two limiting pipes 6 are fixedly mounted on the bottom side of the shunt pipe 5, two through holes 7 are formed in the bottom side of the shunt pipe 5, the two through holes 7 are respectively communicated with the two limiting pipes 6, two connecting blocks 8 are fixedly mounted on the inner walls of the two through holes 7, the same limiting plate 9 is fixedly mounted on the bottom sides of the two connecting blocks 8 on the same side, sleeve pipes 10 are slidably mounted on the inner walls of the two limiting pipes 6, connecting pipes 11 are fixedly mounted on the bottom sides of the two sleeve pipes 10, floating plates 12 are fixedly sleeved on the two connecting pipes 11, two oil drums 13 are movably mounted on the bottom plate 3, the two floating plates 12 are respectively located in the two oil drums 13, limiting plates 14 are slidably mounted on the two sides of the two sleeve pipes 10, and two limiting plates 14 are respectively fixedly mounted on the same side of the shunt pipe 5.
The oil that low temperature oil press 1 squeezed out can flow to out oil pipe 4 through tray 2, oil in the play oil pipe 4 can flow in the shunt tubes 5, shunt tubes 5's oil can shunt and flow out from the gap between connecting block 8 and the limiting plate 9 through two through-holes 7, the oil that flows out can flow to connecting pipe 11 through spacing pipe 6 and the water conservancy diversion hole 26 of sleeve pipe 10, flow into two oil drums 13 respectively through two connecting pipes 11, oil mass when oil drum 13 in slowly becomes many and will be filled with promptly can contact kickboard 12, and make kickboard 12 rise slowly along with the increase of oil under the effect of buoyancy, the kickboard 12 that rises can drive connecting pipe 11 to rise, make connecting pipe 11 rise and drive sleeve pipe 10 slide and rise in spacing pipe 6, can drive the connecting rod 25 of both sides respectively and slide and rise in two perpendicular spouts 20 when sleeve pipe 10 rises, thereby limiting sleeve pipe 10 can only slide on the vertical direction, sleeve pipe 10 that continuously rises can cup joint connecting block 8 with limiting plate 9 through water conservancy diversion hole 26, and can be with the gap parcel between connecting block up between connecting block 8 and the limiting plate 9 this moment, oil can's the unable whereabouts and lead to the oil drum to cause the oil to overflow through the gap that lasts the outflow of preventing to cause.
Referring to fig. 1-4, further, a linkage rod 15 is rotatably mounted on one side of each of the two limiting plates 14 away from each other, the same limiting rod 17 is fixedly mounted on one side of each of the two linkage rods 15 close to each other, a limiting block 16 is fixedly mounted on the bottom side of the shunt tube 5, a plurality of slots 27 are formed in the limiting block 16, the limiting rod 17 is movably mounted in the corresponding slot 27, an alarm 18 is fixedly mounted on the bottom side of the shunt tube 5, a switch 19 is movably mounted on the alarm 18, the switch 19 corresponds to the linkage rod 15, when the connecting rod 25 rises, one end of the linkage rod 15 is driven to rotate and rise through the cooperation between the rotating hole 21 and the fixed shaft 22, the linkage rod 15 drives the torsion spring 24 to compress while rotating, and the anti-falling piece 23 can prevent the connecting rod 25 from falling off while rotating, promote stability, thereby make the other one end of gangbar 15 drive gag lever post 17 and remove and break away from current draw-in groove 27, gag lever post 17 can move the other draw-in groove 27 top on spacing fixture block 16 simultaneously, torsional spring 24 can reset and drive gangbar 15 and rotate and reset this moment, pivoted gangbar 15 can drive gag lever post 17 and move in the other draw-in groove 27, can not go back down by gag lever post 17 through torsional spring 24 simultaneously, and then can restrict sleeve pipe 10's position, make its unable automatic whereabouts, thereby need not hold up sleeve pipe 10 always when changing oil drum 13, and sleeve pipe 10 with connecting block 8 and limiting plate 9 parcel while gangbar 15 can contact and extrude the switch 19 on alarm 18, alarm 18 can send out the police dispatch newspaper and remind staff on every side to change oil drum 13.
Referring to fig. 2-4, further, the limiting plate 14 is provided with vertical sliding grooves 20, the connecting rods 25 are slidably mounted in the vertical sliding grooves 20, the connecting rods 25 are fixedly mounted on one side of the sleeve 10, and when the sleeve 10 rises, the connecting rods 25 on both sides are respectively driven to slide in the two vertical sliding grooves 20 and rise, so that the sleeve 10 is limited to slide only in the vertical direction.
Referring to fig. 4, further, a rotation hole 21 is formed in the linkage rod 15, a fixing shaft 22 is rotatably mounted in the rotation hole 21, the fixing shaft 22 is fixedly mounted at one side of the connection rod 25, and when the connection rod 25 rises, one end of the linkage rod 15 is driven to rotate and rise through the cooperation between the rotation hole 21 and the fixing shaft 22.
Referring to fig. 4, further, an anti-drop sheet 23 is fixedly installed at one side of the fixing shaft 22, the anti-drop sheet 23 is in contact with the linkage rod 15, and the anti-drop sheet 23 can prevent the connecting rod 25 from dropping off when rotating, so that the stability is improved.
Referring to fig. 4, furthermore, the fixed cover has been connected with torsional spring 24 on the fixed axle 22, the one end fixed mounting of torsional spring 24 is on rotating the inner wall of hole 21, the other one end fixed mounting of torsional spring 24 is on fixed axle 22, can drive torsional spring 24 to compress and make gag lever post 17 break away from current draw-in groove 27 when gangbar 15 rotates, the gag lever post 17 of continuous movement can move the other draw-in groove 27 top on spacing fixture block 16, torsional spring 24 can reset at this moment and drive gangbar 15 and rotate and reset, pivoted gangbar 15 can drive gag lever post 17 and move to in the other draw-in groove 27, can't toward returning back by gag lever post 17 through torsional spring 24 simultaneously.
Referring to fig. 3, further, a diversion hole 26 is formed in the inner wall of the sleeve 10, the diversion hole 26 is matched with the limiting plate 9, and the continuously-rising sleeve 10 can sleeve the connecting block 8 and the limiting plate 9 through the diversion hole 26.
The utility model discloses the theory of operation:
the oil squeezed by the low-temperature oil press 1 flows to the oil outlet pipe 4 through the tray 2, the oil in the oil outlet pipe 4 flows into the shunt pipe 5, the oil in the shunt pipe 5 is shunted through the two through holes 7 and flows out from a gap between the connecting block 8 and the limiting plate 9, the flowing-out oil flows to the connecting pipe 11 through the limiting pipe 6 and the flow guide hole 26 of the sleeve 10 and flows into the two oil drums 13 through the two connecting pipes 11 respectively, when the oil in the oil drums 13 gradually increases, the oil is filled, the oil can contact with the floating plate 12, the floating plate 12 slowly rises along with the increase of the oil under the action of buoyancy, the rising floating plate 12 drives the connecting pipe 11 to rise, so that the connecting pipe 11 rises to drive the sleeve 10 to slide and rise in the limiting pipe 6, the connecting rods 25 on the two sides are driven to slide and rise in the two vertical sliding grooves 20 respectively while the sleeve 10 rises, and the sleeve 10 is limited to only slide in the vertical direction, the continuously-rising sleeve 10 can sleeve the connecting block 8 and the limiting plate 9 through the flow guide hole 26, and can wrap and block a gap between the connecting block 8 and the limiting plate 9, at the moment, oil cannot flow out through the gap, so that the oil barrels 13 are prevented from overflowing to cause waste due to continuous falling of the oil, when the oil barrel lifting device is used, one of the connecting blocks 8 and the limiting plate 9 can be wrapped by adjusting the position of one sleeve 10, the oil flows out from the other side firstly, so that the capacity of the two oil barrels 13 can be deviated, when one of the oil barrels 13 is full, the other oil barrel 13 can be continuously installed, and the full oil barrel 13 can be replaced, so that the oil squeezing work cannot be influenced while the oil barrel 13 is replaced, and when the connecting rod 25 rises, one end of the linkage rod 15 is driven to rotate and rise through the matching between the rotating hole 21 and the fixing shaft 22, linkage rod 15 can drive torsional spring 24 when pivoted and compress, anticreep piece 23 can prevent that connecting rod 25 from droing in the pivoted, promote stability, thereby make the other one end of linkage rod 15 drive gag lever post 17 and remove and break away from current draw-in groove 27, gag lever post 17 can move the other draw-in groove 27 top on the spacing fixture block 16 simultaneously, torsional spring 24 can reset and drive linkage rod 15 and rotate and reset this moment, pivoted linkage rod 15 can drive gag lever post 17 and remove in the other draw-in groove 27, simultaneously can not be toward falling back by gag lever post 17 through torsional spring 24, and then can restrict the position of sleeve pipe 10, make it unable automatic whereabouts, thereby need not hold up sleeve pipe 10 always when changing oil drum 13, and when sleeve pipe 10 wraps up connecting block 8 and limiting plate 9, linkage rod 15 can contact and extrude switch 19 on alarm 18, alarm 18 can send out the warning and remind staff on every side to change oil drum 13.
The above, only be the embodiment of the preferred of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, which are designed to be replaced or changed equally, all should be covered within the protection scope of the present invention.

Claims (7)

1. The utility model provides an automatic low temperature cold pressing equipment of tea-oil camellia seed, includes low temperature oil press (1), be equipped with tray (2) and bottom plate (3) on low temperature oil press (1), its characterized in that: an oil outlet pipe (4) is fixedly mounted at the bottom side of the tray (2), a flow dividing pipe (5) is fixedly mounted at the bottom side of the oil outlet pipe (4), two limiting pipes (6) are fixedly mounted at the bottom side of the flow dividing pipe (5), two through holes (7) are formed in the bottom side of the flow dividing pipe (5), the two through holes (7) are respectively communicated with the two limiting pipes (6), two connecting blocks (8) are fixedly mounted on the inner walls of the two through holes (7), and the same limiting plate (9) is fixedly mounted at the bottom sides of the two connecting blocks (8) positioned on the same side;
the equal slidable mounting of inner wall of two spacing pipes (6) has sleeve pipe (10), the equal fixed mounting in bottom side of two sleeve pipes (10) has connecting pipe (11), all fixed kickboard (12) have been cup jointed on two connecting pipe (11), movable mounting has two oil drum (13) on bottom plate (3), two kickboards (12) are located two oil drum (13) respectively, the equal slidable mounting in both sides of two sleeve pipes (10) has limiting plate (14), two limiting plate (14) that are located same one side are fixed mounting respectively in the both sides of shunt tubes (5).
2. The automatic low-temperature cold pressing equipment for camellia seeds as claimed in claim 1, wherein the equipment comprises: two one side that limiting plate (14) kept away from each other all rotates installs gangbar (15), one side fixed mounting that two gangbar (15) are close to each other has same gag lever post (17), the bottom side fixed mounting of shunt tubes (5) has spacing fixture block (16), spacing fixture block (16) are last to have seted up a plurality of draw-in grooves (27), gag lever post (17) movable mounting is in corresponding draw-in groove (27), the bottom side fixed mounting of the bottom side of shunt tubes (5) has alarm (18), movable mounting has switch (19) on alarm (18), switch (19) are corresponding with gangbar (15).
3. The automatic low-temperature cold pressing equipment for the camellia seeds as claimed in claim 1, wherein the equipment comprises: the limiting plate (14) is provided with a vertical sliding groove (20), a connecting rod (25) is installed in the vertical sliding groove (20) in a sliding mode, and the connecting rod (25) is fixedly installed on one side of the sleeve (10).
4. The automatic low-temperature cold pressing equipment for the camellia seeds as claimed in claim 2, wherein the equipment comprises: the linkage rod (15) is provided with a rotating hole (21), a fixing shaft (22) is rotatably mounted in the rotating hole (21), and the fixing shaft (22) is fixedly mounted on one side of the connecting rod (25).
5. The automatic low-temperature cold pressing equipment for the camellia seeds as claimed in claim 4, wherein the equipment comprises: and one side of the fixed shaft (22) is fixedly provided with an anti-drop sheet (23), and the anti-drop sheet (23) is in contact with the linkage rod (15).
6. The automatic low-temperature cold pressing equipment for the camellia seeds as claimed in claim 4, wherein the equipment comprises: the fixed shaft (22) is fixedly sleeved with a torsion spring (24), one end of the torsion spring (24) is fixedly installed on the inner wall of the rotating hole (21), and the other end of the torsion spring (24) is fixedly installed on the fixed shaft (22).
7. The automatic low-temperature cold pressing equipment for the camellia seeds as claimed in claim 1, wherein the equipment comprises: the inner wall of the sleeve (10) is provided with a flow guide hole (26), and the flow guide hole (26) is matched with the limiting plate (9).
CN202222366289.1U 2022-09-06 2022-09-06 Automatic low temperature cold pressing equipment of tea-oil camellia seed Active CN218432102U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222366289.1U CN218432102U (en) 2022-09-06 2022-09-06 Automatic low temperature cold pressing equipment of tea-oil camellia seed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222366289.1U CN218432102U (en) 2022-09-06 2022-09-06 Automatic low temperature cold pressing equipment of tea-oil camellia seed

Publications (1)

Publication Number Publication Date
CN218432102U true CN218432102U (en) 2023-02-03

Family

ID=85103731

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222366289.1U Active CN218432102U (en) 2022-09-06 2022-09-06 Automatic low temperature cold pressing equipment of tea-oil camellia seed

Country Status (1)

Country Link
CN (1) CN218432102U (en)

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