Oil press device based on two-stage oil outlet
By designing a two-stage oil-output oil pressing device in the oil press device, and using the connection between the blank cake preparation device and the press device, the problem of poor oil pressing effect in the prior art is solved, and more efficient oil release and oil output rate are achieved.
Patent Information
- Application Number
- CN202421079242.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-17
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-05-17
AI Technical Summary
When the existing oil pressing machine device applies a pressing force to the oil, it only uses one pressing force, resulting in poor pressing effect of the oil.
An oil press device based on two stages of oil output is designed. Through the connection between the blank cake preparation device and the pressing device, the pressing pressure value of the step value is applied to the oil, and the grease amount of the step value is released.
The pressing effect of the oil is improved, the effective release of oil and grease in the multi-layered state of the oil is achieved, and the oil output rate of the oil is improved.
Smart Images

Figure CN223001126U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an oil press device, in particular to an oil press device based on two-stage oil output. Background Technique
[0002] An oil press refers to a machine that, with the help of mechanical external force, activates oil molecules by raising the temperature and squeezes out the oil from oilseeds. Therefore, the oil press device is an important grain and oil device. In the existing oil press devices, the oilseeds are first made into blank cakes, and then pressure is applied to the blank cakes to obtain oil. Since only one pressing force is applied to the oilseeds, the pressing effect of the oilseeds is affected.
[0003] Through the technical features of applying a low pressing pressure value to the front blank cake to obtain a large amount of oil and a high pressing pressure value to the rear blank cake to obtain a small amount of oil for the oilseeds, the technical problem of first making blank cakes from the oilseeds and applying only one pressing force to the oilseeds is effectively explored and studied at the technical level.
[0004] The statements here only provide the background technique related to the utility model and do not necessarily constitute the prior art. Based on the technical disclosure provided by the applicant on April 9, 2024, which solves the actual technical problems during the working process, and through retrieving similar patent documents and the existing technical problems, technical features, and technical effects in the background technique, the application technical solution of the present invention is made. Summary of the Invention
[0005] The object of the utility model is an oil press device based on two-stage oil output.
[0006] In order to overcome the above technical drawbacks, the purpose of the utility model is to provide an oil press device based on two-stage oil output, thereby improving the pressing effect on the oilseeds.
[0007] To achieve the above purpose, the technical solution adopted by the utility model is: it includes a blank cake making device for primary oil output of the oilseeds and a pressing device for final oil output of the oilseeds.
[0008] Due to the design of the blank cake making device and the pressing device, through the blank cake making device, the oilseeds are made into cakes and the surface-attached oil is pressed, and through the pressing device, the oil contained in the blank cake is pressed, realizing the application of a stepped pressing pressure value to the oilseeds and releasing a stepped amount of oil, solving the technical problem of first making blank cakes from the oilseeds and applying only one pressing force to the oilseeds, thereby improving the pressing effect on the oilseeds.
[0009] The utility model designs to connect the blank cake preparation device and the pressing device in such a way that a pressing pressure value with a step value is applied to the oil material and the amount of oil with the step value is released.
[0010] The utility model designs to connect the blank cake preparation device and the pressing device in such a way that the blank cake is made from the oil material and the surface-attached oil is pressed.
[0011] The technical effects of the above three technical solutions are as follows: highlighting the technical feature of applying a pressing pressure value with a step value to the oil material and releasing the amount of oil with the step value, introducing the application in the technical field of an oil press device based on two-stage oil extraction, realizing the pressing of the oil material in different thickness states, and improving the oil yield of the oil material.
[0012] The utility model designs that it further includes a first accessory device, and the first accessory device is arranged between the blank cake preparation device and the pressing device, and the first accessory device is set as an oil material blank handling device.
[0013] The utility model designs that it further includes a second accessory device, and the second accessory device is arranged between the blank cake preparation device and the first accessory device, and the second accessory device is set as a separator plate handling device.
[0014] The utility model designs that it further includes a third accessory device, and the third accessory device is arranged on the blank cake preparation device, and the third accessory device is set as a feeding device.
[0015] The utility model designs that it further includes a fourth accessory device, and the fourth accessory device is arranged on the pressing device, and the fourth accessory device is set to include a thrust plate and a lifting telescopic cylinder.
[0016] The technical effects of the above four technical solutions are as follows: realizing the integrated installation of other components and expanding the technical effects of the utility model.
[0017] The utility model designs that a feeding device is arranged on the blank cake preparation device, a lifting telescopic cylinder is arranged on the pressing device, a thrust plate is arranged between the pressing device and the lifting telescopic cylinder, and a separator plate handling device and an oil material blank handling device are arranged between the blank cake preparation device and the pressing device.
[0018] The technical effects of the above technical solution are as follows: through the feeding device, the blank cake preparation device, the pressing device, the separator plate handling device, the oil material blank handling device, the thrust plate and the lifting telescopic cylinder, the basic technical solution of the utility model is formed, and the technical problem of the utility model is solved.
[0019] The present utility model designs that the blank cake manufacturing device is configured to include a frame part I, an upper support plate part I, a lower support plate part I, a box shell part, a mesh part, a support rod part, an oil pipeline part I, a vertical thrust telescopic cylinder part I, a pressing telescopic cylinder part I, a pressing plate part I, a cylinder shell part, a sealing plate part and a transverse thrust telescopic cylinder part I. The middle part of the inner side surface of the vertical part of the frame part I is configured to be connected to the front and rear side surfaces of the upper support plate part I. The lower part of the inner side surface of the vertical part of the frame part I is configured to be connected to the front and rear side surfaces of the lower support plate part I. The upper parts of the outer pipes of the box shell part are respectively configured to be connected to the mesh part and the support rod part in a receiving manner. The upper open inner wall parts of the outer pipe parts of the box shell part are respectively configured to be in contact connection with the peripheral side surfaces of the end mesh parts of the support rod part. The lower end surface of the mesh part is configured to be connected to the upper end surface of the support rod part. The lower part of the peripheral side surface of the box shell part is configured to be connected to the inner end of the oil pipeline part I. The upper part of the outer pipe of the box shell part is configured to be connected to the upper support plate part I in a penetrating manner. The peripheral side surface of the upper part of the outer pipe of the box shell part is configured to be connected to the upper support plate part I. The middle pipe part of the box shell part is configured to be sleeved with the telescopic end of the vertical thrust telescopic cylinder part I. The upper end surface of the telescopic end of the vertical thrust telescopic cylinder part I is configured to be at the middle part of the lower end surface of the support rod part. The lower end surface of the vertical thrust telescopic cylinder part I is configured to be connected to the upper end surface of the lower support plate part I. The upper end surface of the pressing telescopic cylinder part I is configured to be connected to the lower end surface of the transverse part of the frame part I. The lower end surface of the pressing telescopic cylinder part I is configured to be connected to the upper end surface of the pressing plate part I. The pressing plate part I is configured to be distributed corresponding to the box shell part. The upper outer part of the peripheral side surface of the cylinder shell part is configured to be connected to the inner end surface of the sealing plate part. The lower end port of the cylinder shell part is configured to be in contact connection with the upper end surface of the upper support plate part I. One end of the transverse thrust telescopic cylinder part I is configured to be connected to the outer vertical part of the upper support plate part I. The other end of the transverse thrust telescopic cylinder part I is configured to be connected to the middle part of the outer end of the peripheral side surface of the cylinder shell part. The outer end surfaces of the vertical parts of the frame part I, the upper support plate part I, the cylinder shell part and the sealing plate part are respectively configured to be connected to the feeding device. The upper end surface of the transverse part of the frame part I is configured to be connected to the oil material blank handling device. The upper support plate part I is configured to be distributed corresponding to the pressing device. The vertical part of the frame part I is configured to be connected to the separator plate handling device. The frame part I is configured as a U-shaped seat body. The upper support plate part I is configured as a U-shaped strip. The lower support plate part I is configured as a flat sheet. The box shell part is configured as a circular barrel with a middle pipe part. The mesh part is configured as a circular wire mesh. The support rod part is configured as an X-shaped frame. The oil pipeline part I is configured as a circular pipe. The cylinder shell part is configured as a circular pipe. The sealing plate part is configured as a U-shaped groove. The pressing plate part I is configured as a circular block. The vertical thrust telescopic cylinder part I, the pressing telescopic cylinder part I and the transverse thrust telescopic cylinder part I are respectively configured as two-section telescopic cylinders.
[0020] The technical effects of the above technical solutions are as follows: It realizes the release of oil and the formation of cake under a thin thickness of oil materials, and shortens the discharge route of the oil.
[0021] The present utility model is designed such that the pressing device is provided with a frame part II, a pressing telescopic cylinder part II, a pressing plate part II, an oil pressing cylinder part, a bottom ring part, a disc part I, an inner support plate part, a support plate part, a motor part I, a gear and rack part, an oil pipeline part II, a control valve part, an upper support plate part II and a lower support plate part II. A leakage window body is provided at the outer end of the upper support plate part II. The middle part of the inner side of the vertical part extension body of the frame part II is arranged to be connected to the front and rear side faces of the upper support plate part II, and the lower part of the inner side of the vertical part extension body of the frame part II is arranged to be connected to the front and rear side faces of the lower support plate part II. The lower end face of the horizontal part of the frame part II is arranged to be connected to the upper end face of the pressing telescopic cylinder part II, and the lower end face of the pressing telescopic cylinder part II is arranged to be connected to the inner end face of the pressing plate part II. The bottom ring part is arranged to be connected to the disc part I in a penetrating manner, and the peripheral side face of the bottom ring part is arranged to be connected to the inner wall of the central hole of the disc part I. The outer end of the peripheral side face of the disc part I is arranged to be connected to the inner end port of the oil pipeline part II, and the ports of the control valve part are respectively arranged to be connected to the cross-section ports of the oil pipeline part II. The lower end port of the bottom ring part is arranged to be in contact connection with the upper support plate part II, and the upper end port of the bottom ring part is arranged to be connected to the oil pressing cylinder part. The bottom ring part is arranged to be in accommodating connection with the inner support plate part, and the lower end face of the inner support plate part is arranged to be in contact connection with the upper end face of the middle convex flange ring of the hole wall of the bottom ring part. The middle part of the inner end of the peripheral side face of the oil pressing cylinder part is arranged to be connected to the housing of the motor part I, and a gear and rack part is arranged between the end shaft of the motor part I and the inner side face of the vertical part extension body of the frame part II. The upper end face of the frame part II is arranged to be connected to the oil material blank handling device, and the inner side face of the vertical part contraction body of the frame part II is arranged to be connected to the thrust plate. The upper end face of the lower support plate part II is arranged to be connected to the jacking telescopic cylinder, and the leakage window body is arranged to be distributed corresponding to the jacking telescopic cylinder. The oil pressing cylinder part is arranged to be distributed corresponding to the blank cake making device, and the frame part II is arranged to be a C-shaped seat body with a convex-shaped vertical part, and the pressing telescopic cylinder part II is arranged to be a two-section telescopic cylinder. The pressing plate part II and the inner support plate part are respectively arranged to be circular blocks, and the bottom ring part is arranged to be a ring strip with a convex-shaped cross-section. The disc part I is arranged to be a box body with a middle hole, and the support plate part is arranged to be a rectangular block. The motor part I is arranged to be a double-headed stepping motor, and the gear of the gear and rack part is arranged to be connected to the end shaft of the motor part I. The rack of the gear and rack part is arranged to be connected to the inner side face of the vertical part extension body of the frame part II, and the oil pipeline part II is arranged to be a circular tubular body. The control valve part is arranged to be an electric control valve, and the upper support plate part II and the lower support plate part II are respectively arranged to be rectangular sheets. The leakage window body is arranged to be a circular hole body.
[0022] The technical effects of the above technical solutions are as follows: It realizes the release of oil from oil materials in a multi-layer stacked state, improves the transmission effect of the pressing force between the cake bodies, and ensures that the cake bodies are in a state of uniform pressing force.
[0023] The present utility model designs that the oil extraction cylinder part is set to include a vertical strip part 1 and an encircling ring part, and the hole wall of the encircling ring part is set to be connected to the outer end face part of the vertical strip part 1. The lower end face part of the vertical strip part 1 is set to be connected to the bottom ring part, and the vertical strip part 1 is set to be connected to the inner support plate part in a surrounding manner. The encircling ring part is set to be a ring strip with through holes on the peripheral side face part, and the vertical strip part 1 is set to be arranged at intervals along the vertical center line of the vertical strip part 1. The vertical strip part 1 is set to be a rectangular strip body and is set to be arranged at intervals along the circumferential line of the encircling ring part. Two adjacent vertical strip parts 1 are set to be distributed with a gap seam between them.
[0024] The technical effects of the above technical solutions are as follows: It realizes that the peripheral side gap is an oil release channel and improves the oil area of the multi-layer stacked cake bodies.
[0025] The present utility model designs that the oil material blank handling device is set to include a moving seat part, a straight rack part, a driving gear part, a motor part II, a lead screw transmission part, a nut seat part, a probe rod part, and a claw part. The end face part of the moving seat part is set to be connected to the shell of the motor part II. The end shaft of the motor part II is set to be connected to the middle part of the driving gear part, and the driving gear part is set to be meshed and connected to the straight rack part. The rotating lead screw end of the lead screw transmission part is set to be rotatably connected to the moving seat part, and the nut seat part is set to be threadedly connected to the lead screw transmission part. The upper end face part of the probe rod part is set to be connected to the lower end face part of the nut seat part, and the lower end face part of the probe rod part is set to be connected to the upper end face part of the claw part. The lower end face part of one of the straight rack parts is set to be connected to the blank cake making device, and the lower end face part of the other straight rack part is set to be connected to the pressing device. The claw parts are respectively set to be correspondingly distributed with the pressing device and the separator handling device, and the moving seat part is set to be a strip block with an ear seat on the outer side. The ear seat of the moving seat part is set to be sleeved and connected to the rotating lead screw end of the lead screw transmission part, and the straight rack part is set to be a rack. The driving gear part is set to be a columnar gear, and the motor part II is set to be a stepping motor. The lead screw transmission part is set to have a rotating lead screw and a power lead screw of the motor located at the end of the rotating lead screw, and the motor shell of the lead screw transmission part is set to be connected to the moving seat part. The nut seat part is set to be a block body with a transverse threaded hole body, and the transverse threaded hole body of the nut seat part is set to be connected to the rotating lead screw of the lead screw transmission part. The probe rod part is set to be a rod-shaped body, and the claw part is set to be a pneumatic three-finger clamp.
[0026] The technical effects of the above technical solutions are as follows: clamping of the blank cake and displacement through screw and gear transmission are achieved, improving the handling effect of the blank cake with a partition plate.
[0027] The present utility model is designed such that the partition plate handling device is provided with a support seat part, a swing frame part, a vertical thrust telescopic cylinder part II, a suction cup part, a control motor part and a storage box part. The transverse end of the horizontal part of the swing frame part is connected to the housing of the vertical thrust telescopic cylinder part II. The lower telescopic end of the vertical thrust telescopic cylinder part II is connected to the upper end face of the suction cup part. The end shaft of the control motor part is connected to the vertical end of the swing frame part. The vertical end of the swing frame part is rotatably connected to the upper horizontal part of the support seat part. The upper end face of the lower horizontal part of the support seat part is connected to the lower end face of the storage box part. The upper open part of the storage box part is arranged corresponding to the suction cup part. The vertical part of the support seat part is connected to the blank cake manufacturing device. The support seat part is arranged as a Z-shaped block, the swing frame part is arranged as an F-shaped frame, the vertical thrust telescopic cylinder part II is arranged as a two-section telescopic cylinder, the suction cup part is arranged as a vacuum suction cup, the storage box part is arranged as a box body with an upper open part, and the control motor part is arranged as a stepping motor.
[0028] The technical effects of the above technical solutions are as follows: vacuum suction cup connection of the partition plate and displacement of the telescopic cylinder body are achieved, improving the handling efficiency of the partition plate.
[0029] The present utility model is designed such that the feeding device is configured to include a blanking hopper part, a guide plate part I, a guide plate part II, a material conveyor part, a feeding hopper part, a conveying hopper part, a lower grinding disc part, an upper grinding disc part, and a tightening screw part. One side of the lower end face of the blanking hopper part is configured to be connected to the upper end face part of the guide plate part I, and the other side of the lower end face of the blanking hopper part is configured to be connected to the upper end face part of the guide plate part II. The upper end port of the blanking hopper part is configured to be distributed corresponding to the outer output port of the conveying hopper part. The inner input port of the conveying hopper part is configured to be connected to the upper part of the peripheral side of the housing of the material conveyor part. The lower part of the peripheral side of the housing of the material conveyor part is configured to be connected to the lower end port of the feeding hopper part. The upper part of the power shaft of the material conveyor part is respectively configured to be connected to the lower grinding disc part and the upper grinding disc part in a penetrating manner. The upper part of the inner wall of the barrel shell of the material conveyor part is configured to be connected to the lower grinding disc part, and the lower grinding disc part is configured to be distributed corresponding to the inner input port of the conveying hopper part. The tightening screw part is configured to be threadedly connected to the peripheral side of the upper grinding disc part, and the inner end face of the tightening screw part is configured to be in contact connection with the power shaft of the material conveyor part. The upper end face of the lower grinding disc part is configured to be distributed corresponding to the lower end face of the upper grinding disc part. The blanking hopper part, the material conveyor part, the guide plate part I, and the guide plate part II are respectively configured to be connected to the blanking cake manufacturing device, and the lower end port of the blanking hopper part is configured to be distributed corresponding to the blanking cake manufacturing device. The blanking hopper part is configured to be a barrel component having a conical barrel in the upper part and a rectangular barrel in the lower part, and the guide plate part I and the guide plate part II are respectively configured to be rectangular sheet bodies. The material conveyor part is configured to be a screw elevator, and the feeding hopper part is configured to be a conical barrel body. The conveying hopper part is configured to be a C-shaped trough body, and the lower grinding disc part is configured to be a circular ring body having teeth distributed radially on the upper end face. The upper grinding disc part is configured to be a circular block body having teeth distributed radially on the lower end face, and the tightening screw part is configured to be an inner hexagonal bolt.
[0030] The technical effects of the above technical solutions are as follows: It realizes the lifting and crushing of oil materials, and improves the effect of filling oil materials into the blanking cake manufacturing device.
[0031] The present utility model is designed such that the thrust plate is configured to include a transverse thrust telescopic cylinder part II, an arc plate part, and a guide rail part. The telescopic end of the transverse thrust telescopic cylinder part II is configured to be connected to the middle part of the arc plate part. The side of the lower end face of the arc plate part is configured to be in contact with the guide rail part. The arc plate part is configured to be distributed corresponding to the jacking telescopic cylinder. The housing of the transverse thrust telescopic cylinder part II and the lower end face of the guide rail part are respectively configured to be connected to the pressing device. The transverse thrust telescopic cylinder part II is configured to be a two-stage telescopic cylinder, and the arc plate part is configured to be a C-shaped sheet body. The guide rail part is configured to be an I-shaped strip body.
[0032] The utility model is designed such that the jacking telescopic cylinder is arranged as a two-stage telescopic cylinder, and the lower end face of the jacking telescopic cylinder is arranged to be connected to the pressing device, and the upper end telescopic head of the jacking telescopic cylinder is arranged to be distributed corresponding to the thrust plate.
[0033] The technical effects of the above two technical solutions are as follows: The emptying treatment of the pressed oil cake with a partition plate in the pressing device is realized.
[0034] The utility model is designed such that the pressing device, the blank cake preparation device, the partition plate handling device, and the oil blank handling device are arranged to be distributed in the manner of loading a blank cake with a partition plate, and the pressing device, the blank cake preparation device, the partition plate handling device, and the oil blank handling device and the feeding device are arranged to be distributed in the manner of crushing and feeding. The pressing device, the blank cake preparation device, the partition plate handling device, and the oil blank handling device and the thrust plate and the jacking telescopic cylinder are arranged to be distributed in the manner of ejecting the pressed oil cake with a partition plate.
[0035] The utility model is designed such that the center lines of the box shell part, the mesh part, the support rod part, the vertical thrust telescopic cylinder part I, the pressing telescopic cylinder part I, and the pressing plate part I are arranged on the same straight line. The two horizontal thrust telescopic cylinder parts II and the two guide rail parts are respectively arranged on the arc plate part. The horizontal thrust telescopic cylinder part II is arranged to be connected to the frame part II, the guide rail part is arranged to be connected to the upper support plate part II, the straight rack parts are respectively arranged to be connected to the frame part II and the frame part I, the feeding hopper part and the support seat part are respectively arranged to be connected to the frame part I, the cylindrical shell part is arranged to be distributed corresponding to the discharging hopper part, the upper support plate part I is respectively arranged to be connected to the guide plate part I, the guide plate part II, and the material conveyor part, and the sealing plate part is arranged to be connected to the discharging hopper part.
[0036] In this technical solution, the blank cake preparation device and the pressing device are basic components and also essential technical features of the present utility model. The feeding device, the separator plate handling device, the oil material blank handling device, the thrust plate, and the lifting telescopic cylinder are functional components and features for achieving other technical effects of the present utility model. The design of these technical features such as the lower hopper part, the guide plate part I, the guide plate part II, the material conveyor part, the upper hopper part, the feeding hopper part, the lower grinding disc part, the upper grinding disc part, the tightening screw part, the frame part I, the upper support plate part I, the lower support plate part I, the box shell part, the mesh part, the support rod part, the oil pipeline part I, the vertical thrust telescopic cylinder part I, the pressing telescopic cylinder part I, the pressing plate part I, the cylinder shell part, the sealing plate part, the horizontal thrust telescopic cylinder part I, the frame part II, the pressing telescopic cylinder part II, the pressing plate part II, the oil pressing cylinder part, the bottom ring part, the disc part I, the inner support plate part, the support plate part, the motor part I, the gear and rack part, the oil pipeline part II, the control valve part, the upper support plate part II, the lower support plate part II, the leakage window body, the support base part, the swing frame part, the vertical thrust telescopic cylinder part II, the suction cup part, the control motor part, the storage box part, the moving seat part, the straight rack part, the driving gear part, the motor part II, the lead screw transmission part, the nut seat part, the probe rod part, the claw part, the horizontal thrust telescopic cylinder part II, the arc plate part, and the guide rail part complies with the technical features of the Patent Law and its implementation regulations.
[0037] In this technical solution, applying a stepped pressing pressure value to the oil material and releasing a stepped amount of grease are achieved by the blank cake preparation device and the pressing device.
[0038] In this technical solution, the blank cake preparation device and the pressing device that apply a stepped pressing pressure value to the oil material and release a stepped amount of grease are important technical features. In the technical field of oil press devices with two-stage oil output, they have novelty, creativity, and practicality. The terms in this technical solution can be explained and understood using patent documents in this technical field. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0040] Figure 1 It is a schematic diagram of the present utility model.
[0041] Figure 2 It is a structural schematic diagram of the feeding device 1.
[0042] Figure 3 It is a structural schematic diagram of the blank cake preparation device 2.
[0043] Figure 4 It is a schematic structural diagram of the pressing device 3.
[0044] Figure 5 It is a schematic structural diagram of the separator plate handling device 4.
[0045] Figure 6 It is a schematic structural diagram of the oil material blank handling device 5.
[0046] Feeding device -1, blank cake making device -2, pressing device -3, separator plate handling device -4, oil material blank handling device -5, thrust plate -6, lifting telescopic cylinder -7, blanking hopper part -11, guide plate part Ⅰ -12, guide plate part Ⅱ -13, material conveyor part -14, feeding hopper part -15, feeding hopper part -16, lower grinding disc part -17, upper grinding disc part -18, tightening screw part -19, frame part Ⅰ -21, upper support plate part Ⅰ -22, lower support plate part Ⅰ -23, box shell part -24, mesh part -25, support rod part -203, oil pipeline part Ⅰ -202, vertical thrust telescopic cylinder part Ⅰ -26, pressing telescopic cylinder part Ⅰ -27, pressing plate part Ⅰ -28, cylinder shell part -29, sealing plate part -20, horizontal thrust telescopic cylinder part Ⅰ -201, frame part Ⅱ -31, pressing telescopic cylinder part Ⅱ -32, pressing plate part Ⅱ -33, oil pressing cylinder part -34, bottom ring part -35, disc part Ⅰ -36, inner support plate part -37, support plate part -38, motor part Ⅰ -39, gear rack part -30, oil pipeline part Ⅱ -301, control valve part -302, upper support plate part Ⅱ -303, lower support plate part Ⅱ -304, leakage window body -305, support seat part -46, swing frame part -41, vertical thrust telescopic cylinder part Ⅱ -42, suction cup part -43, control motor part -44, storage box part -45, moving seat part -51, straight rack part -52, driving gear part -53, motor part Ⅱ -54, lead screw transmission part -55, nut seat part -56, probe rod part -57, claw part -58, horizontal thrust telescopic cylinder part Ⅱ -61, arc plate part -62, guide rail part -63. Specific embodiments
[0047] According to the examination guidelines, terms such as "having", "comprising", and "including" used in the present utility model should be understood not to preclude the presence or addition of one or more other elements or combinations thereof.
[0048] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0049] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0050] In addition, the technical features involved in different embodiments of the present utility model described below can be combined with each other as long as they do not conflict with each other. Additionally, unless otherwise specified, the equipment and materials used in the following embodiments are commercially available. If there is no clear description of the processing conditions, please refer to the product manual purchased or follow the conventional methods in the art.
[0051] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0052] Figure 1 This is the first embodiment of the present utility model. In conjunction with the drawings, this embodiment will be specifically described. It includes a feeding device 1, a blank cake preparation device 2, a pressing device 3, a separator handling device 4, an oil material blank handling device 5, a thrust plate 6, and a lifting telescopic cylinder 7. The feeding device 1 is arranged on the blank cake preparation device 2, the lifting telescopic cylinder 7 is arranged on the pressing device 3, and a thrust plate 6 is arranged between the pressing device 3 and the lifting telescopic cylinder 7. A separator handling device 4 and an oil material blank handling device 5 are arranged between the blank cake preparation device 2 and the pressing device 3.
[0053] In this embodiment, the feeding device 1 is provided to include a blanking hopper part 11, a guide plate part I 12, a guide plate part II 13, a material conveyor part 14, a feeding hopper part 15, a feeding hopper part 16, a lower grinding disc part 17, an upper grinding disc part 18 and a tightening screw part 19. One side part of the lower end face of the blanking hopper part 11 is set to be connected to the upper end face part of the guide plate part I 12, and the other side part of the lower end face of the blanking hopper part 11 is set to be connected to the upper end face part of the guide plate part II 13. The upper end port part of the blanking hopper part 11 is set to be distributed corresponding to the outer port part of the feeding hopper part 16. The inner port part of the feeding hopper part 16 is set to be connected to the upper part of the peripheral side surface of the shell of the material conveyor part 14. The lower part of the peripheral side surface of the shell of the material conveyor part 14 is set to be connected to the lower end port part of the feeding hopper part 15. The upper part of the power shaft of the material conveyor part 14 is respectively set to be connected to the lower grinding disc part 17 and the upper grinding disc part 18 in a penetrating manner. The upper part of the inner wall of the barrel shell of the material conveyor part 14 is set to be connected to the lower grinding disc part 17, and the lower grinding disc part 17 is set to be distributed corresponding to the inner port part of the feeding hopper part 16. The tightening screw part 19 is set to be threadedly connected to the peripheral side surface part of the upper grinding disc part 18, and the inner end face part of the tightening screw part 19 is set to be in contact connection with the power shaft of the material conveyor part 14. The upper end face part of the lower grinding disc part 17 is set to be distributed corresponding to the lower end face part of the upper grinding disc part 18. The blanking hopper part 11, the material conveyor part 14, the guide plate part I 12 and the guide plate part II 13 are respectively set to be connected to the blanking cake making device 2, and the lower end port part of the blanking hopper part 11 is set to be distributed corresponding to the blanking cake making device 2. The blanking hopper part 11 is set to be a cylindrical part with a conical cylinder in the upper part and a rectangular cylinder in the lower part. The guide plate part I 12 and the guide plate part II 13 are respectively set to be rectangular sheet bodies. The material conveyor part 14 is set to be a screw elevator, and the feeding hopper part 15 is set to be a conical cylinder. The feeding hopper part 16 is set to be a U-shaped groove body, and the lower grinding disc part 17 is set to be a circular ring body with teeth distributed radially on the upper end face part. The upper grinding disc part 18 is set to be a circular block body with teeth distributed radially on the lower end face part, and the tightening screw part 19 is set to be an internal hexagonal bolt.
[0054] Through the feeding device 1, a support connection point for the blanking cake making device 2 is formed. The connection with the blanking cake making device 2 is realized by the blanking hopper part 11, the material conveyor part 14, the guide plate part I 12 and the guide plate part II 13. The temporary storage treatment of the oil material is realized by the feeding hopper part 15. The crushing treatment of the oil material is realized by the feeding hopper part 16, the lower grinding disc part 17, the upper grinding disc part 18 and the tightening screw part 19. Its technical purpose is to be used as a component for conveying the oil material to the blanking cake making device 2.
[0055] In this embodiment, the blank cake manufacturing device 2 is provided to include a frame part Ⅰ 21, an upper support plate part Ⅰ 22, a lower support plate part Ⅰ 23, a box shell part 24, a mesh part 25, a support rod part 203, an oil pipeline part Ⅰ 202, a vertical thrust telescopic cylinder part Ⅰ 26, a pressing telescopic cylinder part Ⅰ 27, a pressing plate part Ⅰ 28, a cylinder shell part 29, a sealing plate part 20, and a lateral thrust telescopic cylinder part Ⅰ 201. The middle part of the inner side surface of the vertical part of the frame part Ⅰ 21 is arranged to be connected to the front and rear side faces of the upper support plate part Ⅰ 22. The lower part of the inner side surface of the vertical part of the frame part Ⅰ 21 is arranged to be connected to the front and rear side faces of the lower support plate part Ⅰ 23. The upper parts of the outer pipes of the box shell part 24 are respectively arranged to be connected to the mesh part 25 and the support rod part 203 in a receiving manner. The upper open inner wall parts of the outer pipe parts of the box shell part 24 are respectively arranged to be in contact connection with the peripheral side faces of the end mesh part of the support rod part 203 and the mesh part 25. The lower end face of the mesh part 25 is arranged to be connected to the upper end face of the support rod part 203. The lower part of the peripheral side surface of the box shell part 24 is arranged to be connected to the inner end of the oil pipeline part Ⅰ 202. The upper part of the outer pipe of the box shell part 24 is arranged to be connected to the upper support plate part Ⅰ 22 in a penetrating manner, and the peripheral side surface of the upper part of the outer pipe of the box shell part 24 is arranged to be connected to the upper support plate part Ⅰ 22. The middle pipe part of the box shell part 24 is arranged to be in a sleeved connection with the telescopic end of the vertical thrust telescopic cylinder part Ⅰ 26. The upper end face of the telescopic end of the vertical thrust telescopic cylinder part Ⅰ 26 is arranged to be at the middle part of the lower end face of the support rod part 203. The lower end face of the vertical thrust telescopic cylinder part Ⅰ 26 is arranged to be connected to the upper end face of the lower support plate part Ⅰ 23. The upper end face of the pressing telescopic cylinder part Ⅰ 27 is arranged to be connected to the lower end face of the horizontal part of the frame part Ⅰ 21. The lower end face of the pressing telescopic cylinder part Ⅰ 27 is arranged to be connected to the upper end face of the pressing plate part Ⅰ 28. The pressing plate part Ⅰ 28 is arranged to be distributed corresponding to the box shell part 24. The upper outer end part of the peripheral side surface of the cylinder shell part 29 is arranged to be connected to the inner end face of the sealing plate part 20. The lower end port of the cylinder shell part 29 is arranged to be in contact connection with the upper end face of the upper support plate part Ⅰ 22. One end of the lateral thrust telescopic cylinder part Ⅰ 201 is arranged to be connected to the outer vertical part of the upper support plate part Ⅰ 22, and the other end of the lateral thrust telescopic cylinder part Ⅰ 201 is arranged to be connected to the middle part of the outer end of the peripheral side surface of the cylinder shell part 29. The outer end face of the vertical part of the frame part Ⅰ 21, the upper support plate part Ⅰ 22, the cylinder shell part 29, and the sealing plate part 20 are respectively arranged to be connected to the feeding device 1. The upper end face of the horizontal part of the frame part Ⅰ 21 is arranged to be connected to the oil material blank handling device 5. The upper support plate part Ⅰ 22 is arranged to be distributed corresponding to the pressing device 3. The vertical part of the frame part Ⅰ 21 is arranged to be connected to the separator handling device 4. The frame part Ⅰ 21 is arranged as a U-shaped seat body, the upper support plate part Ⅰ 22 is arranged as a U-shaped strip, the lower support plate part Ⅰ 23 is arranged as a flat sheet, the box shell part 24 is arranged as a circular barrel with a middle pipe part, the mesh part 25 is arranged as a circular wire mesh, and the support rod part 203 is arranged as an X-shaped frame body.The oil pipeline section I 202 is set as a circular tubular body, and the cylinder shell section 29 is set as a circular tubular body. The sealing plate section 20 is set as a C-shaped groove body, and the pressing plate section I 28 is set as a circular block body. The vertical thrust telescopic cylinder section I 26, the pressing telescopic cylinder section I 27, and the horizontal thrust telescopic cylinder section I 201 are respectively set as two-section telescopic cylinders.,
[0056] Through the blank cake making device 2, support connection points for the feeding device 1, the pressing device 3, the separator plate handling device 4, and the oil material blank handling device 5 are formed. The connection with the feeding device 1 is realized by the frame section I 21, the upper support plate section I 22, the cylinder shell section 29, and the sealing plate section 20. The connection with the pressing device 3 is realized by the upper support plate section I 22. The connection with the separator plate handling device 4 is realized by the frame section I 21. The connection with the oil material blank handling device 5 is realized. The oil material is subjected to cake pressing treatment by the lower support plate section I 23, the box shell section 24, the mesh section 25, the support rod section 203, the oil pipeline section I 202, the vertical thrust telescopic cylinder section I 26, the pressing telescopic cylinder section I 27, the pressing plate section I 28, the cylinder shell section 29, the sealing plate section 20, and the horizontal thrust telescopic cylinder section I 201. Its technical purpose is to be used as a component for pre-pressing oil materials and making blank cakes.
[0057] In this embodiment, the pressing device 3 is arranged as the frame part II 31, the pressing telescopic cylinder part II 32, the pressing plate part II 33, the oil extraction cylinder part 34, the bottom ring part 35, the disc part I 36, the inner support plate part 37, the support plate part 38, the motor part I 39, the gear and rack part 30, the oil pipeline part II 301, the control valve part 302, the upper support plate part II 303 and the lower support plate part II 304. A leakage window body 305 is arranged at the outer end of the upper support plate part II 303. The middle part of the inner side of the vertical part extension body of the frame part II 31 is arranged to be connected with the front and rear side faces of the upper support plate part II 303, and the lower part of the inner side of the vertical part extension body of the frame part II 31 is arranged to be connected with the front and rear side faces of the lower support plate part II 304. The lower end face of the horizontal part of the frame part II 31 is arranged to be connected with the upper end face of the pressing telescopic cylinder part II 32, and the lower end face of the pressing telescopic cylinder part II 32 is arranged to be connected with the inner end face of the pressing plate part II 33. The bottom ring part 35 is arranged to be connected with the disc part I 36 in a penetrating manner, and the peripheral side face of the bottom ring part 35 is arranged to be connected with the inner wall of the central hole of the disc part I 36. The outer end of the peripheral side face of the disc part I 36 is arranged to be connected with the inner end port of the oil pipeline part II 301, and the ports of the control valve part 302 are respectively arranged to be connected with the cross-section ports of the oil pipeline part II 301. The lower end port of the bottom ring part 35 is arranged to be in contact connection with the upper support plate part II 303, and the upper end port of the bottom ring part 35 is arranged to be connected with the oil extraction cylinder part 34. The bottom ring part 35 is arranged to be connected with the inner support plate part 37 in a receiving manner, and the lower end face of the inner support plate part 37 is arranged to be in contact connection with the upper end face of the middle flange ring of the hole wall of the bottom ring part 35. The middle part of the inner end of the peripheral side face of the oil extraction cylinder part 34 is arranged to be connected with the housing of the motor part I 39, and a gear and rack part 30 is arranged between the end shaft of the motor part I 39 and the inner side face of the vertical part extension body of the frame part II 31. The upper end face of the frame part II 31 is arranged to be connected with the oil material blank handling device 5, and the inner side face of the vertical part contraction body of the frame part II 31 is arranged to be connected with the thrust plate 6. The upper end face of the lower support plate part II 304 is arranged to be connected with the jacking telescopic cylinder 7, and the leakage window body 305 is arranged to be distributed corresponding to the jacking telescopic cylinder 7. The oil extraction cylinder part 34 is arranged to be distributed corresponding to the blank cake making device 2, the frame part II 31 is arranged to be a C-shaped seat body with a convex-shaped vertical part, the pressing telescopic cylinder part II 32 is arranged to be a two-section telescopic cylinder, the pressing plate part II 33 and the inner support plate part 37 are respectively arranged to be circular blocks, the bottom ring part 35 is arranged to be a ring strip with a convex-shaped cross-section, the disc part I 36 is arranged to be a box body with a middle hole, the support plate part 38 is arranged to be a rectangular block, the motor part I 39 is arranged to be a double-headed stepping motor, the gear of the gear and rack part 30 is arranged to be connected with the end shaft of the motor part I 39, the rack of the gear and rack part 30 is arranged to be connected with the inner side face of the vertical part extension body of the frame part II 31, the oil pipeline part II 301 is arranged to be a circular tubular body, the control valve part 302 is arranged to be an electric control valve, and the upper support plate part II 303 and the lower support plate part II 304 are respectively arranged to be rectangular sheets.The leakage window body 305 is set as a circular hole body.,
[0058] Through the blank cake preparation device 2, support connection points for the blank cake preparation device 2, the oil material blank handling device 5, the thrust plate 6, and the lifting telescopic cylinder 7 are formed. The connection with the blank cake preparation device 2 is realized by the oil pressing cylinder part 34, the connection with the oil material blank handling device 5 is realized by the frame part II 31, the connection with the thrust plate 6 is realized, the connection with the lifting telescopic cylinder 7 is realized by the lower support plate part II 304 and the leakage window body 305, and the pressing treatment of the oil cake body is realized by the pressing telescopic cylinder part II 32, the pressing plate part II 33, the bottom ring part 35, the disk part I 36, the inner support plate part 37, the support plate part 38, the motor part I 39, the gear rack part 30, the oil pipeline part II 301, the control valve part 302, and the upper support plate part II 303. Its technical purpose is: to be used as a component for the subsequent pressing of oil materials.
[0059] In this embodiment, the oil pressing cylinder part 34 is set to include a vertical strip part 341 and an encircling ring part 342, and the hole wall of the encircling ring part 342 is set to be connected to the outer end face part of the vertical strip part 341. The lower end face part of the vertical strip part 341 is set to be connected to the bottom ring part 35, and the vertical strip part 341 is set to be connected to the inner support plate part 37 in a surrounding manner. The encircling ring part 342 is set as a ring strip with through hole bodies on the peripheral side face part, and the vertical strip part 341 is set to be arranged at intervals along the vertical center line of the vertical strip part 341. The vertical strip part 341 is set as a rectangular strip body and is set to be arranged at intervals along the circumferential line of the encircling ring part 342. Two adjacent vertical strip parts 341 are set to be distributed with a gap body between them.
[0060] Its technical purpose is: to realize the storage of the blank cake and the discharge of grease.
[0061] In this embodiment, the separator handling device 4 is provided to include a support base portion 46, a swing frame portion 41, a vertical thrust telescopic cylinder portion II 42, a suction cup portion 43, a control motor portion 44, and a storage box portion 45. The end of the horizontal portion of the swing frame portion 41 is provided to be connected to the housing of the vertical thrust telescopic cylinder portion II 42. The lower telescopic end of the vertical thrust telescopic cylinder portion II 42 is provided to be connected to the upper end face portion of the suction cup portion 43. The end shaft of the control motor portion 44 is provided to be connected to the end of the vertical portion of the swing frame portion 41. The end of the vertical portion of the swing frame portion 41 is provided to be rotatably connected to the upper horizontal portion of the support base portion 46. The upper end face of the lower horizontal portion of the support base portion 46 is provided to be connected to the lower end face portion of the storage box portion 45. The upper open portion of the storage box portion 45 is provided to be correspondingly distributed with the suction cup portion 43. The vertical portion of the support base portion 46 is provided to be connected to the blank cake making device 2. The support base portion 46 is provided as a Z-shaped block. The swing frame portion 41 is provided as an F-shaped frame. The vertical thrust telescopic cylinder portion II 42 is provided as a two-stage telescopic cylinder. The suction cup portion 43 is provided as a vacuum suction cup. The storage box portion 45 is provided as a box-shaped body with an upper open portion. The control motor portion 44 is provided as a stepping motor.
[0062] Through the separator handling device 4, a support connection point for the blank cake making device 2 is formed. The connection with the blank cake making device 2 is realized by the support base portion 46. The rotation and handling of the separator are realized by the swing frame portion 41, the vertical thrust telescopic cylinder portion II 42, the suction cup portion 43, the control motor portion 44, and the storage box portion 45. Its technical purpose is to be used as a component for placing the separator on the blank cake.
[0063] In this embodiment, the oil material blank handling device 5 is provided to include a moving seat portion 51, a straight rack portion 52, a driving gear portion 53, a motor portion II 54, a lead screw transmission portion 55, a nut seat portion 56, a probe rod portion 57, and a claw portion 58. The end face of the moving seat portion 51 is provided to be connected to the housing of the motor portion II 54. The end shaft of the motor portion II 54 is provided to be connected to the middle portion of the driving gear portion 53. The driving gear portion 53 is provided to be meshed and connected to the straight rack portion 52. The end of the rotating lead screw of the lead screw transmission portion 55 is provided to be rotatably connected to the moving seat portion 51. The nut seat portion 56 is provided to be threadedly connected to the lead screw transmission portion 55. The upper end face of the probe rod portion 57 is provided to be connected to the lower end face of the nut seat portion 56. The lower end face of the probe rod portion 57 is provided to be connected to the upper end face of the claw portion 58. The lower end face of one of the straight rack portions 52 is provided to be connected to the blank cake making device 2. The lower end face of the other straight rack portion 52 is provided to be connected to the pressing device 3. The claw portions 58 are respectively provided to be correspondingly distributed with the pressing device 3 and the separator plate handling device 4. The moving seat portion 51 is provided to be a strip with ear seats on the outer side. The ear seat of the moving seat portion 51 is provided to be sleeved and connected to the end of the rotating lead screw of the lead screw transmission portion 55. The straight rack portion 52 is provided to be a rack. The driving gear portion 53 is provided to be a columnar gear. The motor portion II 54 is provided to be a stepping motor. The lead screw transmission portion 55 is provided to have a rotating lead screw and a power lead screw of the motor located at the end of the rotating lead screw. The motor housing of the lead screw transmission portion 55 is provided to be connected to the moving seat portion 51. The nut seat portion 56 is provided to be a block with a transverse threaded hole body. The transverse threaded hole body of the nut seat portion 56 is provided to be connected to the rotating lead screw of the lead screw transmission portion 55. The probe rod portion 57 is provided to be a rod-shaped body. The claw portion 58 is provided to be a pneumatic three-finger gripper.
[0064] Through the oil material blank handling device 5, support connection points for the blank cake making device 2, the pressing device 3, and the separator plate handling device 4 are formed. Through the straight rack portion 52, the connection with the blank cake making device 2 is achieved. Through the straight rack portion 52 and the claw portion 58, the connection with the pressing device 3 is achieved. Through the claw portion 58, the connection with the separator plate handling device 4 is achieved. Through the moving seat portion 51, the driving gear portion 53, the motor portion II 54, the lead screw transmission portion 55, the nut seat portion 56, and the probe rod portion 57, driving the claw portion 58 to perform motion processing is achieved. Its technical purpose is to be used as a component for placing the blank cake with a separator plate onto the pressing device 3.
[0065] In this embodiment, the thrust plate 6 is provided to include a transverse thrust telescopic cylinder part II 61, an arc plate part 62, and a guide rail part 63. The telescopic end of the transverse thrust telescopic cylinder part II 61 is provided to be connected to the middle part of the arc plate part 62. The lower end face side part of the arc plate part 62 is provided to be in contact with the guide rail part 63. The arc plate part 62 is provided to be distributed corresponding to the jacking telescopic cylinder 7. The housing of the transverse thrust telescopic cylinder part II 61 and the lower end face part of the guide rail part 63 are respectively provided to be connected to the pressing device 3. The transverse thrust telescopic cylinder part II 61 is provided as a two-stage telescopic cylinder. The arc plate part 62 is provided as a C-shaped sheet body. The guide rail part 63 is provided as an I-shaped strip body.
[0066] Through the thrust plate 6, a support connection point for the pressing device 3 and the jacking telescopic cylinder 7 is formed. Through the transverse thrust telescopic cylinder part II 61 and the guide rail part 63, the connection with the pressing device 3 is realized. Through the arc plate part 62, the connection with the jacking telescopic cylinder 7 is realized. Its technical purpose is: to be used as one of the components for pushing out the pressed oil cake with a partition plate.
[0067] In this embodiment, the jacking telescopic cylinder 7 is provided as a two-stage telescopic cylinder. The lower end face part of the jacking telescopic cylinder 7 is provided to be connected to the pressing device 3. The upper end telescopic head of the jacking telescopic cylinder 7 is provided to be distributed corresponding to the thrust plate 6.
[0068] Through the jacking telescopic cylinder 7, a support connection point for the pressing device 3 and the thrust plate 6 is formed. Through the jacking telescopic cylinder 7, the connection with the pressing device 3 is realized, and the connection with the thrust plate 6 is realized. Its technical purpose is: to be used as the second component for pushing out the pressed oil cake with a partition plate.
[0069] In this embodiment, the pressing device 3, the blank cake making device 2, the separator plate handling device 4, and the oil material blank handling device 5 are arranged in a distribution manner according to the method of loading a blank cake with a separator plate, and the pressing device 3, the blank cake making device 2, the separator plate handling device 4, and the oil material blank handling device 5 and the feeding device 1 are arranged in a distribution manner according to the method of crushing and feeding. The pressing device 3, the blank cake making device 2, the separator plate handling device 4, and the oil material blank handling device 5 and the thrust plate 6 and the lifting telescopic cylinder 7 are arranged in a distribution manner according to the method of ejecting a pressed oil cake with a separator plate. The center lines of the box shell part 24, the mesh part 25, the support rod part 203, the vertical thrust telescopic cylinder part I 26, the pressing telescopic cylinder part I 27, and the pressing plate part I 28 are arranged on the same straight line. The two transverse thrust telescopic cylinder parts II 61 and the two guide rail parts 63 are respectively arranged on the arc plate part 62. The transverse thrust telescopic cylinder part II 61 is arranged to be connected to the frame part II 31, and the guide rail part 63 is arranged to be connected to the upper support plate part II 303. The straight rack parts 52 are respectively arranged to be connected to the frame part II 31 and the frame part I 21. The feeding hopper part 15 and the support seat part 46 are respectively arranged to be connected to the frame part I 21. The cylinder shell part 29 is arranged to be correspondingly distributed with the discharging hopper part 11. The upper support plate part I 22 is respectively arranged to be connected to the guide plate part I 12, the guide plate part II 13, and the material conveyor part 14. The sealing plate part 20 is arranged to be connected to the discharging hopper part 11.
[0070] Usage method of this embodiment: When pressing the oil material, make the material conveyor part 14 in a working state, put the oil material into the feeding hopper part 15, and through the material conveyor part 14, lift and convey the oil material into the material conveying pipe part 16. The oil material enters the lower grinding disc part 17 and the upper grinding disc part 18 through the lower grinding disc part 17. The material conveyor part 14 drives the upper grinding disc part 18 to rotate on the lower grinding disc part 17. The upper grinding disc part 18 crushes the oil material on the lower grinding disc part 17 and falls into the discharging hopper part 11 through the material conveying hopper part 16. Make the tightening screw part 19 rotate, separate the inner end face part of the tightening screw part 19 from the power shaft of the material conveyor part 14, adjust the gap between the upper grinding disc part 18 and the lower grinding disc part 17. After completing the adjustment of the gap between the upper grinding disc part 18 and the lower grinding disc part 17, make the tightening screw part 19 rotate in the reverse direction, and make the inner end face part of the tightening screw part 19 act on the power shaft of the material conveyor part 14.
[0071] Keep the vertical thrust telescopic cylinder part Ⅰ 26 in a contracted state. The telescopic end of the vertical thrust telescopic cylinder part Ⅰ 26 is in the middle pipe part of the box shell part 24. Sink the mesh part 25 and the support rod part 203 into the outer pipe of the box shell part 24. Keep the horizontal thrust telescopic cylinder part Ⅰ 201 in a contracted state. Align the cylinder shell part 29 with the lower end port part of the blanking hopper part 11. Inject the crushed oil material in the blanking hopper part 11 into the cylinder shell part 29. When the cylinder shell part 29 is full, keep the horizontal thrust telescopic cylinder part Ⅰ 201 in an extended state. Align the sealing plate part 20 with the lower end port part of the blanking hopper part 11. Align the cylinder shell part 29 with the outer pipe of the box shell part 24. Drop the crushed oil material in the cylinder shell part 29 into the outer pipe of the box shell part 24. Then keep the horizontal thrust telescopic cylinder part Ⅰ 201 in a contracted state. Then align the cylinder shell part 29 with the lower end port part of the blanking hopper part 11 again. Keep the pressing telescopic cylinder part Ⅰ 27 in an extended state. Make the pressing plate part Ⅰ 28 move downward in the outer pipe of the box shell part 24 to form a blank cake from the crushed oil material in the outer pipe of the box shell part 24. The oil squeezed out from the crushed oil material in the outer pipe of the box shell part 24 drops into the box shell part 24 through the mesh part 25. The oil in the box shell part 24 is discharged through the oil pipe part Ⅰ 202. When the blank cake forming in the outer pipe of the box shell part 24 is completed, keep the pressing telescopic cylinder part Ⅰ 27 in a contracted state. Make the pressing plate part Ⅰ 28 move out of the outer pipe of the box shell part 24. Keep the vertical thrust telescopic cylinder part Ⅰ 26 in an extended state. The telescopic end of the vertical thrust telescopic cylinder part Ⅰ 26 moves upward from the middle pipe part of the box shell part 24. Make the mesh part 25 and the support rod part 203 move upward in the outer pipe of the box shell part 24. The mesh part 25 pushes the blank cake to move upward in the cylinder shell part 29 and ejects the blank cake from the outer pipe of the box shell part 24. The blank cake moves to the inner side of the upper end face of the upper support plate part Ⅰ 22. When the horizontal thrust telescopic cylinder part Ⅰ 201 is kept in an extended state again, make the sealing plate part 20 push the blank cake located on the upper support plate part Ⅰ 22 and move the blank cake to the outer side of the upper end face of the upper support plate part Ⅰ 22.
[0072] By controlling the motor part 44, drive the swing frame part 41 to swing outward on the support seat part 46, so that the suction cup part 43 is located at the upper open part of the storage box part 45. Keep the vertical thrust telescopic cylinder part Ⅱ 42 in an extended state. Make the suction cup part 43 act on the partition plate located in the storage box part 45, and adsorb the partition plate by the suction cup part 43. Keep the vertical thrust telescopic cylinder part Ⅱ 42 in a contracted state. Then by controlling the motor part 44, drive the swing frame part 41 to swing inward on the support seat part 46, so that the partition plate is located on the blank cake on the upper support plate part Ⅰ 22. Keep the vertical thrust telescopic cylinder part Ⅱ 42 in an extended state and place the partition plate on the blank cake, and keep the suction cup part 43 separated from the partition plate.
[0073] Put the lead screw drive unit 55 in the working state. Rotate the lead screw through the lead screw drive unit 55 to move the nut seat portion 56 on the moving seat portion 51, align the gripper portion 58 with the blank cake having a separator plate on the upper support plate portion I 22. Put the motor unit II 54 in the working state. Through the movement of the drive gear portion 53 on the straight rack portion 52, move the moving seat portion 51 downward between the two straight rack portions 52, drive the gripper portion 58 to move downward, place the gripper portion 58 on the peripheral side surface of the blank cake having a separator plate. Put the gripper portion 58 in the working state, and the gripper portion 58 clamps the blank cake having a separator plate. Drive the gripper portion 58 to move up and down through the motor unit II 54 to make the gripper portion 58 in the high position state, separate the blank cake having a separator plate from the outer side of the upper end face of the upper support plate portion I 22. Through the lead screw drive unit 55, align the blank cake having a separator plate on the gripper portion 58 with the oil pressing cylinder portion 34. Drive the gripper portion 58 to move downward through the motor unit II 54 to place the blank cake having a separator plate on the gripper portion 58 into the upper end port of the oil pressing cylinder portion 34. Through the gripper portion 58, separate the gripper portion 58 from the blank cake having a separator plate, so as to load the blank cake having a separator plate into the oil pressing cylinder portion 34.
[0074] When the blank cake with a partition plate in the oil pressing cylinder part 34 is in the full position, the motor part I 39 is put into the working state. Through the gear and rack part 30, the oil pressing cylinder part 34 is driven to move on the upper support plate part II 303, so that the oil pressing cylinder part 34 is aligned with the pressing plate part II 33. The pressing telescopic cylinder part II 32 is in the extended state, and the pressing plate part II 33 acts on the blank cake with a partition plate in the oil pressing cylinder part 34 to press the blank cake. The oil is discharged into the disk part I 36 through the gap body of the vertical strip part 341 and the through hole body of the surrounding ring part 342. When the pressing of the blank cake with a partition plate in the oil pressing cylinder part 34 is completed, a pressed oil cake with a partition plate is obtained in the oil pressing cylinder part 34. The pressing telescopic cylinder part II 32 is in the contracted state, and the pressing plate part II 33 is moved out of the oil pressing cylinder part 34. The motor part I 39 is put into the working state. Through the gear and rack part 30, the oil pressing cylinder part 34 is driven to move again on the upper support plate part II 303, so that the inner support plate part 37 is aligned with the lifting telescopic cylinder 7. The control valve part 302 is in the open state, and the oil in the disk part I 36 is discharged through the oil pipeline part II 301. After the oil in the disk part I 36 is discharged through the oil pipeline part II 301, the control valve part 302 is in the closed state, and the lifting telescopic cylinder 7 is in the extended state. The telescopic end of the lifting telescopic cylinder 7 acts on the inner support plate part 37 after passing through the leakage window body 305, so that the inner support plate part 37 moves upward in the oil pressing cylinder part 34, and the pressed oil cake with a partition plate moves upward in the oil pressing cylinder part 34. The transverse thrust telescopic cylinder part II 61 is in the extended state, and the arc plate part 62 moves outward on the guide rail part 63, so that the arc plate part 62 acts on the pressed oil cake with a partition plate to move the pressed oil cake with a partition plate out of the oil pressing cylinder part 34. After the pressed oil cake with a partition plate is moved out of the oil pressing cylinder part 34, the transverse thrust telescopic cylinder part II 61 is in the contracted state, and the arc plate part 62 moves inward on the guide rail part 63. The lifting telescopic cylinder 7 is in the contracted state, and the inner support plate part 37 moves downward in the oil pressing cylinder part 34 and is placed on the middle flange of the bottom ring part 35. The motor part 39 is put into the working state. Through the gear and rack part 30, the oil pressing cylinder part 34 is driven to move in the opposite direction on the upper support plate part II 303, so that the oil pressing cylinder part 34 returns to its original position.
[0075] When the pressing of the oil material is completed, the material conveyor part 14 is put into the non - working state.
[0076] When verifying the present utility model, the inventor abandoned the prior art features of first preparing a blank cake from oil materials and applying a single pressing force to the oil materials. Instead, the inventor first proposed the technical features of applying a stepped pressing pressure value to the oil materials and releasing a stepped amount of oil, achieving the first unexpected technical effect: realizing a continuous pressing operation on the oil materials, automating the continuous pressing operation on the oil materials, and improving the pressing efficiency of the oil materials. The second unexpected technical effect was achieved: realizing a graded pressing of the oil materials, expanding the application range of oil material varieties. The fourth unexpected technical effect was achieved: realizing a pulverizing treatment of the oil materials. The fifth unexpected technical effect was achieved: realizing the leakage of oil from the net body during the cake formation process of the oil materials, achieving the oil extraction efficiency of primary pressing. The fifth unexpected technical effect was achieved: realizing the automatic installation of a separator plate on the blank cake and automatically overlapping and placing the blank cake with the separator plate in the oil pressing cylinder part 34. The sixth unexpected technical effect was achieved: realizing the release of oil from the side surface of the blank cake, improving the oil yield of the oil materials.
[0077] In the second embodiment of the present utility model, the blank cake preparation device 2 and the pressing device 3 are connected to each other in a manner of applying a stepped pressing pressure value to the oil materials and releasing a stepped amount of oil.
[0078] In this embodiment, the blank cake preparation device 2 and the pressing device 3 are connected in a manner of making a cake from the oil materials and performing surface-attached oil pressing treatment.
[0079] In this embodiment, it further includes a first accessory device, and the first accessory device is arranged between the blank cake preparation device 2 and the pressing device 3. The first accessory device is set as an oil material blank handling device 5.
[0080] In this embodiment, it further includes a second accessory device, and the second accessory device is arranged between the blank cake preparation device 2 and the first accessory device. The second accessory device is set as a separator plate handling device 4.
[0081] In this embodiment, it further includes a third accessory device, and the third accessory device is arranged on the blank cake preparation device 2. The third accessory device is set as a feeding device 1.
[0082] In this embodiment, it further includes a fourth accessory device, and the fourth accessory device is arranged on the pressing device 3. The fourth accessory device is set to include a thrust plate 6 and a lifting telescopic cylinder 7.
[0083] The second embodiment of the present utility model is based on the first embodiment.
[0084] The present utility model has the following characteristics:
[0085] 1. Due to the design of the blank cake preparation device 2 and the pressing device 3, through the blank cake preparation device 2, the formation of cakes from oilseeds and the pressing treatment of the surface-attached grease are realized. Through the pressing device 3, the pressing treatment of the grease contained in the blank cake is realized, and the pressing pressure value with a step value is applied to the oilseeds and the grease amount of the step value is released, solving the technical problem that the oilseeds are first made into blank cakes and a single pressing force is applied to the oilseeds. Therefore, the pressing effect on the oilseeds is improved.
[0086] 2. Due to the design of the oilseed blank handling device 5, the feeding of the pressing device 3 is realized.
[0087] 3. Due to the design of the separator handling device 4, the separator is placed on the blank cake.
[0088] 4. Due to the design of the feeding device 1, the feeding of the blank cake preparation device 2 is realized.
[0089] 5. Due to the design of the thrust plate 6 and the lifting telescopic cylinder 7, the separation treatment of the pressed oilseed cake with a separator in the pressing device 3 is realized.
[0090] 6. Due to the limitation of the numerical range for the structural shape, the numerical range is a technical feature in the technical solution of the present invention, not a technical feature obtained by formula calculation or through a finite number of tests. Tests show that the technical feature of the numerical range has achieved good technical effects.
[0091] 7. Due to the design of the technical features of the present invention, through the combined action of the technical features alone and with each other, tests show that each performance index of the present invention is at least 1.7 times that of the existing performance indexes, and it has good market value through evaluation.
[0092] There are also other technical features connected to the blank cake preparation device 2 and the pressing device 3 that apply a pressing pressure value with a step value to the oilseeds and release the grease amount of the step value, which are all examples of the present invention. And the technical features of the above-described examples can be combined arbitrarily. To meet the requirements of the Patent Law, the Patent Implementing Regulations, and the Examination Guidelines, the embodiments of all possible combinations of the various technical features in the above-described examples will not be described any further.
[0093] Therefore, in the technical field of oil press devices based on two-stage oil extraction, all technical contents including the blank cake preparation device 2 for primary oil extraction from oilseeds and the pressing device 3 for final oil extraction from oilseeds are within the protection scope of the present invention.
Claims
1. An oil press device based on two-stage oil output, characterized in that: The invention comprises a billet cake making device (2) for primary oil extraction from oil materials and a pressing device (3) for final oil extraction from oil materials. It also includes a first accessory device, and the first accessory device is arranged between the billet cake making device (2) and the pressing device (3), and the first accessory device is arranged as an oil billet conveying device (5). It also includes a second accessory device, and the second accessory device is arranged between the blank cake making device (2) and the first accessory device, and the second accessory device is arranged as a separation plate transporting device (4). It also includes a third accessory device and the third accessory device is arranged on the blank cake making device (2), and the third accessory device is arranged as a loading device (1). It also includes a fourth accessory device and the fourth accessory device is arranged on the pressing device (3), and the fourth accessory device is arranged to include a thrust plate (6) and a lifting and telescopic cylinder (7). A loading device (1) is provided on the billet cake making device (2), a lifting and telescopic cylinder (7) is provided on the pressing device (3), and a thrust plate (6) is provided between the pressing device (3) and the lifting and telescopic cylinder (7), and an isolation plate conveying device (4) and an oil billet conveying device (5) are provided between the billet cake making device (2) and the pressing device (3).
2. The oil press device based on two-stage oil output according to claim 1 is characterized in that: The blank cake making device (2) and the pressing device (3) are connected to each other in a manner that a step-value pressing pressure value is applied to the oil material and a step-value amount of oil is released.
3. The oil press device based on two-stage oil output according to claim 2 is characterized in that: The blank cake making device (2) is connected to the pressing device (3) in a manner of making the oil into cakes and squeezing the attached fat.
4. The oil press device based on two-stage oil output according to claim 1 is characterized in that: The blank cake making device (2) is configured to include a frame part I (21), an upper support plate part I (22), a lower support plate part I (23), a box shell part (24), a mesh part (25), a support rod part (203), an oil delivery pipe part I (202), a vertical thrust telescopic cylinder part I (26), a pressing telescopic cylinder part I (27), a pressing plate part I (28), a cylinder shell part (29), a sealing plate part (20) and a transverse thrust telescopic cylinder part I (201), and the middle part of the inner side surface of the vertical part of the frame part I (21) is configured to be connected to the front and rear side surfaces of the upper support plate part I (22), the lower part of the inner side surface of the vertical part of the frame part I (21) is configured to be connected to the front and rear side surfaces of the lower support plate part I (23), and the upper part of the outer tube of the box shell part (24) is configured to be connected to the mesh part (25). ) and the support rod portion (203) are connected in an accommodating manner, the upper open inner wall portion of the outer tube portion of the box shell portion (24) is respectively arranged to be contact-connected with the peripheral side surface portion of the end mesh portion (25) of the support rod portion (203), and the lower end surface portion of the mesh portion (25) is arranged to be connected with the upper end surface portion of the support rod portion (203), the lower part of the peripheral side surface of the box shell portion (24) is arranged to be connected with the inner end of the oil delivery pipe portion I (202), the upper part of the outer tube of the box shell portion (24) is arranged to be connected with the upper support plate portion I (22) in a through-type manner, and the upper peripheral side surface of the outer tube of the box shell portion (24) is arranged to be connected with the upper support plate portion I (22), the middle tube portion of the box shell portion (24) is arranged to be connected with the telescopic end of the vertical thrust telescopic cylinder portion I (26) in a sleeve-type manner, and the vertical The upper end face portion of the telescopic end of the thrust telescopic cylinder part Ⅰ (26) is arranged to be connected to the middle part of the lower end face portion of the support rod part (203), the lower end face portion of the vertical thrust telescopic cylinder part Ⅰ (26) is arranged to be connected to the upper end face portion of the lower support plate part Ⅰ (23), and the upper end face portion of the pressing telescopic cylinder part Ⅰ (27) is arranged to be connected to the lower end face portion of the horizontal part of the frame part Ⅰ (21), the lower end face portion of the pressing telescopic cylinder part Ⅰ (27) is arranged to be connected to the upper end face portion of the pressure plate part Ⅰ (28), and the pressure plate part Ⅰ (28) is arranged to be distributed corresponding to the box shell part (24), the upper part of the outer end of the peripheral side surface of the cylinder shell part (29) is arranged to be connected to the inner end face portion of the sealing plate part (20), and the lower end port portion of the cylinder shell part (29) is arranged to be connected to the upper support plate part The upper end face of the frame part I (22) is contact-connected, one end of the transverse thrust telescopic cylinder part I (201) is arranged to be connected to the outer vertical part of the upper support plate part I (22) and the other end of the transverse thrust telescopic cylinder part I (201) is arranged to be connected to the middle part of the outer end of the peripheral side of the shell part (29), the outer end face of the vertical part of the frame part I (21), the upper support plate part I (22), the shell part (29) and the sealing plate part (20) are respectively arranged to be connected to the feeding device (1) and the upper end face of the horizontal part of the frame part I (21) is arranged to be connected to the oil billet handling device (5), the upper support plate part I (22) is arranged to be distributed corresponding to the pressing device (3) and the vertical part of the frame part I (21) is arranged to be connected to the isolation plate handling device (4),The frame part I (21) is set as a U-shaped seat body, the upper support plate part I (22) is set as a U-shaped strip, the lower support plate part I (23) is set as a flat sheet body, and the box shell part (24) is set as a circular barrel body with an intermediate pipe part. The mesh part (25) is set as a circular wire mesh, the support rod part (203) is set as an X-shaped frame body, the oil delivery pipe part I (202) is set as a circular tubular body, and the cylinder shell part (29) is set as a circular tubular body. The sealing plate part (20) is set as a U-shaped groove body, and the pressing plate part I (28) is set as a circular block body. The vertical thrust telescopic cylinder part I (26), the pressing telescopic cylinder part I (27), and the horizontal thrust telescopic cylinder part I (201) are respectively set as two-section telescopic cylinders., 5. The oil press device based on two-stage oil output according to claim 1 is characterized in that: The pressing device (3) is provided with a frame part II (31), a pressing telescopic cylinder part II (32), a pressing plate part II (33), an oil extraction cylinder part (34), a bottom ring part (35), a disc part I (36), an inner support plate part (37), a support plate part (38), a motor part I (39), a gear and rack part (30), an oil pipeline part II (301), a control valve part (302), an upper support plate part II (303) and a lower support plate part II (304), and a leakage window body (305) is arranged at the outer end of the upper support plate part II (303). The middle part of the inner side of the vertical part extension body of the frame part II (31) is arranged to be connected with the front and rear side faces of the upper support plate part II (303), and the lower part of the inner side of the vertical part extension body of the frame part II (31) is arranged to be connected with the front and rear side faces of the lower support plate part II (304). The lower end face of the horizontal part of the frame part II (31) is arranged to be connected with the upper end face of the pressing telescopic cylinder part II (32), and the lower end face of the pressing telescopic cylinder part II (32) is arranged to be connected with the inner end face of the pressing plate part II (33). The bottom ring part (35) is arranged to be connected with the disc part I (36) in a penetrating manner, and the peripheral side face of the bottom ring part (35) is arranged to be connected with the inner wall of the central hole of the disc part I (36). The outer end of the peripheral side face of the disc part I (36) is arranged to be connected with the inner end port of the oil pipeline part II (301), and the port parts of the control valve part (302) are respectively arranged to be connected with the cross-section ports of the oil pipeline part II (301). The lower end port of the bottom ring part (35) is arranged to be in contact connection with the upper support plate part II (303), and the upper end port of the bottom ring part (35) is arranged to be connected with the oil extraction cylinder part (34). The bottom ring part (35) is arranged to be connected with the inner support plate part (37) in a receiving manner, and the lower end face of the inner support plate part (37) is arranged to be in contact connection with the upper end face of the middle flange ring of the hole wall of the bottom ring part (35). The middle part of the inner end of the peripheral side face of the oil extraction cylinder part (34) is arranged to be connected with the housing of the motor part I (39), and a gear and rack part (30) is arranged between the end shaft of the motor part I (39) and the inner side face of the vertical part extension body of the frame part II (31). The upper end face of the frame part II (31) is arranged to be connected with the oil material blank handling device (5), and the inner side face of the vertical part contraction body of the frame part II (31) is arranged to be connected with the thrust plate (6). The upper end face of the lower support plate part II (304) is arranged to be connected with the jacking telescopic cylinder (7), and the leakage window body (305) is arranged to be distributed corresponding to the jacking telescopic cylinder (7). The oil extraction cylinder part (34) is arranged to be distributed corresponding to the blank cake making device (2), and the frame part II (31) is arranged to be a C-shaped seat body with a convex-shaped vertical part, and the pressing telescopic cylinder part II (32) is arranged to be a two-section telescopic cylinder. The pressing plate part II (33) and the inner support plate part (37) are respectively arranged to be circular blocks, and the bottom ring part (35) is arranged to be a ring strip with a convex-shaped cross-section. The disc part I (36) is arranged to be a box body with a middle hole, and the support plate part (38) is arranged to be a rectangular block.The motor part I (39) is configured as a double-headed stepping motor and the gear of the gear rack part (30) is configured to be connected to the end shaft of the motor part I (39), the rack of the gear rack part (30) is configured to be connected to the inner side surface of the vertical extension body of the frame part II (31), and the oil delivery pipe part II (301) is configured to be a circular tubular body, the control valve part (302) is configured to be an electric control valve, and the upper support plate part II (303) and the lower support plate part II (304) are respectively configured to be rectangular sheet bodies, and the leakage window body (305) is configured to be a circular hole body, Alternatively, the oil pressing cylinder portion (34) is configured to include a vertical strip portion (341) and an embracing ring portion (342), and the hole wall of the embracing ring portion (342) is configured to be connected to the outer end face portion of the vertical strip portion (341), the lower end face portion of the vertical strip portion (341) is configured to be connected to the bottom ring portion (35), and the vertical strip portion (341) is configured to be connected to the inner supporting plate portion (37) in a surrounding manner, the embracing ring portion (342) is configured to be a ring strip having a through hole body on the peripheral side surface portion, and the vertical strip portions (341) are configured to be arranged and distributed at intervals along the vertical center line of the vertical strip portion (341), the vertical strip portions (341) are configured to be rectangular strip bodies, and the vertical strip portions (341) are configured to be arranged and distributed at intervals along the circumference line of the embracing ring portion (342), and two adjacent vertical strip portions (341) are configured to be distributed in a gap body with a gap between them.
6. The oil press device based on two-stage oil output according to claim 1 is characterized in that: The oil stock handling device (5) is configured to include a movable seat portion (51), a spur rack portion (52), a driving gear portion (53), a motor portion II (54), a screw transmission portion (55), a nut seat portion (56), a probe portion (57) and a claw portion (58), and the end surface portion of the movable seat portion (51) is configured to be connected to the housing of the motor portion II (54), the end shaft of the motor portion II (54) is configured to be connected to the middle portion of the driving gear portion (53), and the driving gear portion (53) is configured to be connected to the spur rack portion (5 2) meshing connection, the rotating screw end of the screw transmission part (55) is arranged to be rotatably connected to the movable seat part (51) and the nut seat part (56) is arranged to be threadedly connected to the screw transmission part (55), the upper end surface part of the probe rod part (57) is arranged to be connected to the lower end surface part of the nut seat part (56) and the lower end surface part of the probe rod part (57) is arranged to be connected to the upper end surface part of the claw part (58), and the lower end surface part of one of the spur rack parts (52) is arranged to be connected to the blank cake making device (2) The lower end face of the other spur rack part (52) is configured to be connected to the pressing device (3), the claw parts (58) are configured to be distributed corresponding to the pressing device (3) and the isolation plate handling device (4), and the movable seat part (51) is configured to be a bar with an ear seat on the outer side, the ear seat of the movable seat part (51) is configured to be connected to the rotating screw end of the screw transmission part (55) in a sleeve-type manner, and the spur rack part (52) is configured to be a rack, the driving gear part (53) is configured to be a column gear, and the motor part II (54) is configured as a stepping motor, the screw transmission part (55) is configured as a power screw having a rotating screw and a motor located at the end of the rotating screw, and the motor housing of the screw transmission part (55) is configured to be connected to the movable seat part (51), the nut seat part (56) is configured as a block body having a transverse threaded hole body, and the transverse threaded hole body of the nut seat part (56) is configured to be connected to the rotating screw of the screw transmission part (55), the probe rod part (57) is configured as a rod-shaped body, and the claw part (58) is configured as a pneumatic three-finger clamp.
7. The oil press device based on two-stage oil output according to claim 1 is characterized in that: The isolation plate handling device (4) is configured to include a supporting seat (46), a swinging frame (41), a vertical thrust telescopic cylinder part II (42), a suction cup part (43), a control motor part (44) and a storage box part (45), and the horizontal end of the swinging frame (41) is configured to be connected to the shell of the vertical thrust telescopic cylinder part II (42), the lower end telescopic end of the vertical thrust telescopic cylinder part II (42) is configured to be connected to the upper end face of the suction cup part (43), and the end shaft of the control motor part (44) is configured to be connected to the vertical end of the swinging frame (41), and the vertical end of the swinging frame (41) is configured to be connected to the upper horizontal end of the supporting seat (46). The upper end face of the lower transverse portion of the support portion (46) is connected and is arranged to be connected to the lower end face portion of the storage box portion (45), the upper open portion of the storage box portion (45) is arranged to be distributed correspondingly to the suction cup portion (43) and the vertical portion of the support portion (46) is arranged to be connected to the blank cake making device (2), the support portion (46) is arranged to be a Z-shaped block body and the swing frame portion (41) is arranged to be an F-shaped frame body, the vertical thrust telescopic cylinder portion II (42) is arranged to be a two-section telescopic cylinder and the suction cup portion (43) is arranged to be a vacuum suction cup, the storage box portion (45) is arranged to be a box-shaped body with an upper open portion and the control motor portion (44) is arranged to be a stepping motor, Alternatively, the feeding device (1) is configured to include a blanking hopper portion (11), a guide plate portion I (12), a guide plate portion II (13), a material conveyor portion (14), a feeding hopper portion (15), a material conveying hopper portion (16), a lower grinding plate portion (17), an upper grinding plate portion (18), and a tightening screw portion (19). One side portion of the lower end face of the blanking hopper portion (11) is configured to be connected to the upper end face portion of the guide plate portion I (12), and the other side portion of the lower end face of the blanking hopper portion (11) is configured to be connected to the upper end face portion of the guide plate portion II (13). The upper end port portion of the blanking hopper portion (11) is configured to be distributed corresponding to the external port portion of the material conveying hopper portion (16). The internal port portion of the material conveying hopper portion (16) is configured to be connected to the upper part of the peripheral side surface of the housing of the material conveyor portion (14). The lower part of the peripheral side surface of the housing of the material conveyor portion (14) is configured to be connected to the lower end port portion of the feeding hopper portion (15). The upper part of the power shaft of the material conveyor portion (14) is respectively configured to be connected to the lower grinding plate portion (17) and the upper grinding plate portion (18) in a penetrating manner. The upper part of the inner wall of the cylinder shell of the material conveyor portion (14) is configured to be connected to the lower grinding plate portion (17), and the lower grinding plate portion (17) is configured to be distributed corresponding to the internal port portion of the material conveying hopper portion (16). The tightening screw portion (19) is configured to be threadedly connected to the peripheral side surface portion of the upper grinding plate portion (18), and the inner end face portion of the tightening screw portion (19) is configured to be in contact connection with the power shaft of the material conveyor portion (14). The upper end face portion of the lower grinding plate portion (17) is configured to be distributed corresponding to the lower end face portion of the upper grinding plate portion (18). The blanking hopper portion (11), the material conveyor portion (14), the guide plate portion I (12), and the guide plate portion II (13) are respectively configured to be connected to the blanking cake making device (2), and the lower end port portion of the blanking hopper portion (11) is configured to be distributed corresponding to the blanking cake making device (2). The blanking hopper portion (11) is configured to be a cylindrical member having a conical cylinder in the upper part and a rectangular cylinder in the lower part, and the guide plate portion I (12) and the guide plate portion II (13) are respectively configured to be rectangular sheet bodies. The material conveyor portion (14) is configured to be a screw elevator, the feeding hopper portion (15) is configured to be a conical cylinder, the material conveying hopper portion (16) is configured to be a U-shaped trough body, the lower grinding plate portion (17) is configured to be a circular ring body having teeth distributed radially on the upper end face portion, the upper grinding plate portion (18) is configured to be a circular block body having teeth distributed radially on the lower end face portion, and the tightening screw portion (19) is configured to be an internal hexagonal bolt. Or, the thrust plate (6) is configured to include a transverse thrust telescopic cylinder part II (61), an arc plate part (62) and a guide rail part (63), and the telescopic end of the transverse thrust telescopic cylinder part II (61) is configured to be connected to the middle part of the arc plate part (62), the lower end surface side of the arc plate part (62) is configured to be in contact with the guide rail part (63), the arc plate part (62) is configured to be distributed corresponding to the lifting telescopic cylinder (7), and the shell of the transverse thrust telescopic cylinder part II (61) and the lower end surface of the guide rail part (63) are respectively configured to be connected to the pressing device (3), the transverse thrust telescopic cylinder part II (61) is configured to be a two-section telescopic cylinder, the arc plate part (62) is configured to be a C-shaped sheet body, and the guide rail part (63) is configured to be an I-shaped strip body, Alternatively, the lifting telescopic cylinder (7) is configured as a two-section telescopic cylinder and the lower end surface portion of the lifting telescopic cylinder (7) is configured to be connected to the pressing device (3), and the upper end telescopic head of the lifting telescopic cylinder (7) is configured to be distributed correspondingly to the thrust plate (6).
8. The oil press device based on two-stage oil output according to any one of claims 1 to 7, characterized in that: The pressing device (3) and the billet cake making device (2), the isolation plate conveying device (4) and the oil billet conveying device (5) are arranged to be distributed in a manner of loading billet cakes with isolation plates, and the pressing device (3), the billet cake making device (2), the isolation plate conveying device (4) and the oil billet conveying device (5) and the feeding device (1) are arranged to be distributed in a manner of crushing and feeding, and the pressing device (3), the billet cake making device (2), the isolation plate conveying device (4) and the oil billet conveying device (5) and the thrust plate (6) and the lifting and telescopic cylinder (7) are arranged to be distributed in a manner of ejecting the pressed oil billet cakes with isolation plates. Alternatively, the center line of the box shell portion (24), the center line of the mesh portion (25), the center line of the support rod portion (203), the center line of the vertical thrust telescopic cylinder portion I (26), the center line of the pressing telescopic cylinder portion I (27) and the center line of the pressing plate portion I (28) are arranged on the same straight line, the two transverse thrust telescopic cylinder portions II (61) and the two guide rail portions (63) are respectively arranged on the arc plate portion (62), the transverse thrust telescopic cylinder portion II (61) is arranged to be connected to the frame portion II (31), and the guide rail portion (63) is arranged to be connected to the frame portion II (31). The upper support plate portion II (303) is connected, the spur rack portion (52) is respectively arranged to be connected to the frame portion II (31) and the frame portion I (21), the upper silo bucket portion (15) and the support seat portion (46) are respectively arranged to be connected to the frame portion I (21), the shell portion (29) is arranged to be distributed correspondingly to the lower silo bucket portion (11), the upper support plate portion I (22) is respectively arranged to be connected to the guide plate portion I (12), the guide plate portion II (13) and the material conveyor portion (14), and the sealing plate portion (20) is arranged to be connected to the lower silo bucket portion (11).