Laboratory gobbett milkometer shaker

By designing an oscillation device for a laboratory Gabriel milk fat meter, the problems of the plug popping out and the single oscillation direction in existing devices during oscillation were solved. This achieved stable fixation of the oscillation box and multi-directional oscillation, improving efficiency and ease of use.

CN116637534BActive Publication Date: 2025-11-07INSTITUTE OF GRASSLAND RESEARCH OF CAAS +1
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Patent Information

Application Number
CN202310604890.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-26
Publication Date
2025-11-07
Estimated Expiration
2043-05-26

AI Technical Summary

Technical Problem

Existing oscillation devices cannot guarantee the oscillation strength while preventing the cap from being ejected when detecting milk fat content. The oscillation process is basically manual, which is inefficient. Moreover, it can only oscillate in one direction, requiring multiple devices to perform multi-directional oscillation, which is cumbersome and inconvenient to use.

Method used

A laboratory gerbera fat analyzer oscillation device was designed, including an oscillation box, a tube, a tube cover, an oscillation box cover, and an oscillation chamber. By combining a fixing component, a placement component, a release component, and an oscillation component, the oscillation box is stably fixed and multi-directionally oscillated. Multi-directional oscillation is achieved by using an electric push rod and a gear transmission system, thereby improving efficiency.

Benefits of technology

It achieves stable fixation of the oscillation box, prevents the plug from being ejected, simplifies the operation process, improves oscillation efficiency, enables oscillation in multiple directions, and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application belongs to the field of biological and medical testing and chemical analysis equipment, especially the laboratory GEBUSHI milk fat meter oscillation device, in view of the existing oscillation device cannot guarantee GEBUSHI milk fat meter in the oscillation strength while avoiding the plug out, oscillation operation, usually only in one direction oscillation, need to use multiple devices for multi-directional oscillation problem, now put forward the following scheme, it includes oscillation box body, pipe body, pipe cover, oscillation box cover and oscillation box, one side of the oscillation box is provided with inclined hole, the inner wall of the inclined hole is penetrated by a round rod, one end of the round rod is fixedly connected with a third sliding plate, in the present application, the oscillation box body and the oscillation box cover can be fixed on the mounting seat by the fixing assembly, the oscillation box body can move horizontally and vertically, and rotate at the same time by the oscillation assembly, and gradually rise, can oscillate GEBUSHI milk fat meter in multiple directions, improve the oscillation effect.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of biological and medical testing and chemical analysis equipment, in particular to a laboratory Gerber butyrometer oscillation device. BACKGROUND

[0002] The Gerber method is a volumetric method for determining the fat content in milk and dairy products using a Gerber butyrometer, and is a European method corresponding to the Babcock test in the United States. The method is divided into two types: Gerber butyrometer determination and Gerber cream butyrometer determination.

[0003] When the existing Gerber method is used to detect milk fat content, the stoppered vessel containing the reagent is often shaken. There is no professional device for Gerber butyrometer oscillation at present, and the following defects exist:

[0004] 1. The existing oscillation device cannot guarantee that the Gerber butyrometer is oscillated at the same time as the stopper is avoided from being knocked out. The oscillation process is basically manually operated, which is low in efficiency and high in labor cost.

[0005] 2. During oscillation operation, oscillation can usually only be performed in one direction, multiple devices need to be used for multi-directional oscillation, the process is complicated, and use is inconvenient.

[0006] In view of the above problems, the present application provides a laboratory Gerber butyrometer oscillation device. SUMMARY

[0007] The present application provides a laboratory Gerber butyrometer oscillation device, which solves the shortcomings of the prior art that the existing oscillation device cannot guarantee that the Gerber butyrometer is oscillated at the same time as the stopper is avoided from being knocked out, the oscillation process is basically manually operated, which is low in efficiency and high in labor cost, and during oscillation operation, oscillation can usually only be performed in one direction, multiple devices need to be used for multi-directional oscillation, the process is complicated, and use is inconvenient.

[0008] The present application provides the following technical solutions:

[0009] The laboratory Gerber butyrometer oscillation device comprises an oscillation box body, a pipe body, a pipe cover, an oscillation box cover and an oscillation box, one side of the oscillation box is provided with an inclined hole, the inner wall of the inclined hole is penetrated by a round rod, one end of the round rod is fixedly connected with a third sliding plate, a first rotating shaft is rotatably penetrated in the third sliding plate, the top of the first rotating shaft is fixedly connected with a mounting seat, the oscillation box body is placed in the mounting seat, the oscillation box cover is placed on the top of the oscillation box body, two recesses symmetrically arranged are formed in the oscillation box body, and a fixing assembly for fixing the oscillation box cover and the mounting seat is arranged in the recess.

[0010] The top of the pipe body is provided with a connecting head, the outer wall of the connecting head is provided with external threads, the bottom of the pipe cover is provided with matching internal threads, the pipe cover is used in cooperation with the connecting head, the Babcock cream meter is placed in the inside of the pipe body, the inner wall of the pipe cover is provided with a buffer layer, the bottom of the oscillation box cover and the top of the oscillation box body are provided with multiple placement assemblies for placing the pipe body.

[0011] The top of the oscillation box cover is provided with a release assembly for releasing the braking state of the oscillation box body and the mounting seat.

[0012] The inside of the oscillation box is provided with an oscillation assembly for oscillating the Babcock cream meter.

[0013] In a possible design, the fixing assembly comprises a vertical rod slidingly connected inside the groove, a second spring fixedly connected between one side of the vertical rod and the inner wall of one side of the groove, a first protrusion fixedly connected to one side of the vertical rod, and a third clamping block fixedly connected to the other side of the vertical rod, and the inner wall of the mounting seat is fixedly connected with a first clamping block, and the bottom of each side of the oscillation box body is provided with a second installation groove, and the first clamping block is clamped with the second installation groove.

[0014] In a possible design, the fixing assembly further comprises two first installation grooves respectively formed in the inner walls of both sides of the oscillation box cover, the inner wall of the first installation groove is fixedly connected with a second clamping block, the second clamping block is used in cooperation with the first protrusion, and the length of the second clamping block in contact with the first protrusion is twice the length of the third clamping block in contact with the first clamping block.

[0015] In a possible design, the placement assembly comprises a support seat fixedly connected to the top of the oscillation box body, a plurality of first holes are formed in the inside of the support seat, a first heating layer is arranged on the inner wall of the first hole, a plurality of second holes are formed in the bottom of the oscillation box cover, a second heating layer is arranged in the inside of the second hole, a plurality of reeds are arranged in the inside of the first hole, and a limiting spring is arranged on the bottom inner wall of the first hole.

[0016] In a possible design, the release assembly comprises two push rods symmetrically arranged and slidingly penetrating through the oscillation box cover, the push rod is used in cooperation with the first protrusion, the top of the two push rods is fixedly connected with a same horizontal plate, a lead screw is rotationally connected to the top of the oscillation box cover, a hand wheel is fixedly connected to the top of the lead screw, and the lead screw is threaded through the horizontal plate.

[0017] In a possible design, the top of the oscillation box cover is rotationally connected with a second rotating shaft, the outer wall of the second rotating shaft is fixedly sleeved with a pushing plate and a rectangular block, the inside of the rectangular block is provided with a third mounting slot, the inner wall of the third mounting slot is slidably connected with a sliding block, the top of the sliding block extends above the rectangular block, and one side of the sliding block is fixedly connected with a third rack.

[0018] In a possible design, the inner wall of the third mounting slot is rotationally connected with a rotating rod, the outer wall of the rotating rod is fixedly sleeved with a second gear meshing with the third rack, the inner wall of the third mounting slot is slidably penetrated with a positioning block, one side of the positioning block is fixedly connected with a second rack meshing with the second gear, and the top of the oscillation box cover is provided with a positioning slot clamping the positioning block.

[0019] In a possible design, the oscillation assembly comprises a first rack fixedly connected to one side of the L-shaped plate, the outer wall of the first rotating shaft is fixedly sleeved with a first gear meshing with the first rack, the same first tension spring is fixedly connected between one side of the L-shaped plate and one side of the third sliding plate, the first tension spring is sleeved on the circular rod, one side of the circular rod is matched with one side of the second triangular block, and one side of the oscillation box is fixedly connected with the second triangular block.

[0020] In a possible design, one side of the oscillation box is fixedly connected with an electric push rod, the inner wall of the oscillation box is slidably connected with a second sliding plate, the second sliding plate is in abutment with the L-shaped plate, the inner wall of the oscillation box is slidably connected with a first sliding plate, the same first spring is fixedly connected between one side of the first sliding plate and the inner wall of one side of the oscillation box, and the first sliding plate is in abutment with one end of the L-shaped plate.

[0021] In a possible design, one side of the third sliding plate is fixedly connected with a vertical plate, the bottom inner wall of the oscillation box is fixedly connected with a first triangular block, and the vertical plate is in abutment with the inclined surface of the first triangular block.

[0022] It should be understood that the above general description and the following detailed description are only exemplary and do not limit the present application.

[0023] In the present application, when in use, the oscillation box body is placed inside the mounting seat, the third clamping block is in abutment with the first clamping block at this time, the third clamping block drives the first mounting slot to move transversely and press the second spring, the third clamping block moves to the position directly below the first clamping block at this time, the third clamping block is clamped with the first clamping block, and the stability of the oscillation box body is ensured.

[0024] In the application, the pipe body of the Babcock milk fat tester is cylindrical, the outer upper side of the connecting head has a long external thread, which is used for connecting the pipe cover and adjusting the tightness, ensuring that the Babcock milk fat tester is fixed, and at the same time, a certain pressure can be applied to ensure that the liquid in the Babcock milk fat tester does not leak out, the pipe cover has a buffer layer inside, which is made of acid-resistant and organic solvent-resistant sponge, and the buffer layer has a large upper side and a small lower side structure, which is used to adapt to the shape of the Babcock milk fat tester, and the pipe cover has an internal thread near the cover opening, which is placed inside the first hole after assembly;

[0025] In the application, the oscillation box cover is further covered on the oscillation box body, at this time, the second clamping block pushes the first protrusion to move horizontally, the first protrusion is clamped with the second clamping block, which can ensure the stability of the oscillation box cover, at this time, the setting of the limiting spring can further improve the oscillation effect of the Babcock milk fat tester, and the oscillation box body is provided with a heating device inside, which has an inward controllable heating function, and is used for heating and heat preservation of the pipe and the Babcock milk fat tester inside the pipe;

[0026] In the application, the electric push rod is started at the same time, the piston rod of the electric push rod pushes the second sliding plate to move horizontally, the second sliding plate pushes the L-shaped plate to move horizontally, the L-shaped plate drives the round rod to move horizontally, the round rod is withdrawn to the inside of the oscillation box along the inclined surface of the second triangular block, and at the same time, moves along the inclined surface of the inclined hole along the upper side, the round rod pushes the third sliding plate to move horizontally, the third sliding plate moves along the L-shaped plate and drives the vertical plate to move horizontally, the vertical plate moves horizontally and rises along the inclined surface of the first triangular block, at the same time, the first gear rotates along the first rack, the first gear drives the first rotating shaft to rotate, the first rotating shaft drives the mounting seat to rotate, and the mounting seat drives the oscillation box body to rotate, at this time, the oscillation box body not only moves horizontally and vertically, but also rotates at the same time, and gradually rises, which can oscillate the Babcock milk fat tester in multiple directions and improve the oscillation effect;

[0027] In the application, when the oscillation box body and the oscillation box cover need to be taken out, at this time, the hand wheel is rotated, the hand wheel drives the lead screw to rotate, the lead screw drives the horizontal plate to move vertically downward, the horizontal plate drives the two push rods to move vertically downward, the push rod drives the first protrusion to move horizontally, the first protrusion drives the vertical rod and the second mounting groove to move horizontally and press the second spring, because the length of the contact between the first clamping block and the third clamping block is half of the length of the contact between the second clamping block and the first protrusion, at this time, the horizontal plate pushes the sliding block to move vertically downward, the sliding block is withdrawn into the inside of the third mounting groove, at the same time, the horizontal plate moves to the upper side of the rectangular block and cannot continue to descend, the third clamping block no longer abuts against the first clamping block, and the oscillation box body and the oscillation box cover can be taken out from the inside of the mounting seat as a whole;

[0028] In the present application, after the oscillation box body and the oscillation box cover are taken out, the third rack is driven to move vertically downward by the sliding block, the second gear is driven to rotate by the third rack, the second rack is driven to move vertically upward by the second gear, the positioning block is driven to move vertically upward by the second rack, the positioning block no longer engages with the positioning groove, the push plate can be rotated, the second rotating shaft is driven to rotate by the push plate, the rectangular block is driven to rotate by the second rotating shaft, at this time, the horizontal plate can no longer be blocked, the hand wheel is continuously rotated, the horizontal plate drives the push rod to continue to descend, the first protruding block no longer engages with the second clamping block, the oscillation box cover and the oscillation box body can be separated, the Gerber butterfat meter is taken out, and convenience is achieved in use;

[0029] In the present application, the mounting seat is provided, the oscillation box body and the oscillation box cover can be conveniently installed, the oscillation box body and the oscillation box cover can be fixed on the mounting seat by the fixing assembly, falling off is avoided, the oscillation box body can be not only moved horizontally and longitudinally but also rotated simultaneously by the oscillation assembly, and the Gerber butterfat meter can be oscillated in multiple directions while gradually rising, the oscillation effect is improved, and the oscillation box body is quickly taken out by the releasing assembly, and convenience is achieved in use. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0031] Figure 2 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0032] Figure 3 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0033] Figure 4 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0034] Figure 5 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0035] Figure 6 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0036] Figure 7 A three-dimensional structure schematic view of the laboratory Gerber butterfat meter oscillation device provided by the embodiment of the present application is provided.

[0037] Figure 8The three-dimensional sectional structure schematic view of the oscillation box cover and the oscillation box body in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure;

[0038] Figure 9 The three-dimensional structure schematic view of the oscillation box cover in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure;

[0039] Figure 10 The three-dimensional sectional structure schematic view of the rectangular block in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure;

[0040] Figure 11 The three-dimensional structure schematic view of the support seat in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure;

[0041] Figure 12 The three-dimensional structure schematic view of the tube cover and the tube body in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure;

[0042] Figure 13 The three-dimensional structure schematic view of the tube cover in the laboratory Gerber butyrometer oscillation device provided by the embodiment of the present application is shown in the figure.

[0043] Reference signs:

[0044] 1, oscillation box; 2, first triangular block; 3, second triangular block; 4, round rod; 5, first sliding plate; 6, L-shaped plate; 7, electric push rod; 8, oscillation box cover; 9, first rack; 10, second sliding plate; 11, mounting seat; 12, inclined hole; 13, first spring; 14, vertical plate; 15, third sliding plate; 16, first clamping block; 17, first tension spring; 18, first gear; 19, first rotating shaft; 20, oscillation box body; 21, push rod; 22, horizontal plate; 23, hand wheel; 24, screw rod; 25, push plate; 26, second rotating shaft; 27, rectangular block; 28, second hole; 29, second heating layer; 30, second clamping block; 31, first mounting groove; 32, support seat; 33, second mounting groove; 34, third clamping block; 35, first protruding block; 36, vertical rod; 37, groove; 38, first hole; 39, first heating layer; 40, second spring; 41, positioning block; 42, positioning groove; 43, second rack; 44, second gear; 45, third mounting groove; 46, sliding block; 47, third rack; 48, rotating rod; 49, limiting spring; 50, reed; 51, tube cover; 52, connecting head; 53, tube body; 54, buffer layer. DETAILED DESCRIPTION

[0045] The embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0046] In the description of the embodiments of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "connection", "installation" should be understood in a broad sense, for example, "connection" can be detachable connection, or can be non-detachable connection, can be direct connection, or can be indirect connection through intermediate medium. In addition, "communication" can be direct communication, or can be indirect communication through intermediate medium. Among them, "fixing" means connecting with each other and the relative positional relationship after connection does not change. The orientation language mentioned in the embodiments of the present application, such as "inner", "outer", "top", "bottom" and the like, is only the direction of the drawing, therefore, the orientation language used is for better and clearer illustration and understanding of the embodiments of the present application, and is not indicative or implied that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore, it cannot be understood as a limitation on the embodiments of the present application. Embodiment 1

[0047] Referring to Figures 1-13 , the laboratory GEBBERTM milk meter oscillation device comprises:

[0048] The oscillation box body 20, the pipe body 53, the pipe cover 51, the oscillation box cover 8 and the oscillation box 1, one side of the oscillation box 1 is provided with an inclined hole 12, the inner wall of the inclined hole 12 is penetrated by a round rod 4, one end of the round rod 4 is fixedly connected with a third sliding plate 15, the inside of the third sliding plate 15 is rotatably penetrated by a first rotating shaft 19, the top of the first rotating shaft 19 is fixedly connected with a mounting seat 11, the oscillation box body 20 is placed in the inside of the mounting seat 11, the oscillation box cover 8 is placed on the top of the oscillation box body 20, the inside of the oscillation box body 20 is provided with two symmetrical recesses 37, the inside of the recess 37 is provided with a fixing assembly for fixing the oscillation box cover 8 and the mounting seat 11;

[0049] The top of the pipe body 53 is provided with a connecting head 52, the outer wall of the connecting head 52 is provided with external threads, the bottom of the pipe cover 51 is provided with internal threads for cooperation, the pipe cover 51 is used in cooperation with the connecting head 52, the GEBBERTM milk meter is placed in the inside of the pipe body 53, the inner wall of the pipe cover 51 is provided with a buffer layer 54, the bottom of the oscillation box cover 8 and the top of the oscillation box body 20 are provided with a plurality of placement assemblies for placing the pipe body 53;

[0050] The top of the oscillation box cover 8 is provided with a release assembly for releasing the braking state of the oscillation box body 20 and the mounting seat 11;

[0051] The inside of the oscillation box 1 is provided with an oscillation assembly for oscillating the GEBBERTM milk meter. Embodiment 2

[0052] Referring to Figures 1-13 , the laboratory GEBBERTM milk meter oscillation device comprises:

[0053] The oscillation box body 20, the pipe body 53, the pipe cover 51, the oscillation box cover 8 and the oscillation box 1, one side of the oscillation box 1 is provided with an inclined hole 12, the inner wall of the inclined hole 12 is penetrated by a round rod 4, one end of the round rod 4 is fixedly connected with a third sliding plate 15, the inside of the third sliding plate 15 is rotatably penetrated by a first rotating shaft 19, the top of the first rotating shaft 19 is fixedly connected with a mounting seat 11, the oscillation box body 20 is placed in the inside of the mounting seat 11, the oscillation box cover 8 is placed on the top of the oscillation box body 20, the inside of the oscillation box body 20 is provided with two recesses 37 which are symmetrically arranged, the inside of the recess 37 is provided with a fixing assembly for fixing the oscillation box cover 8 and the mounting seat 11, the fixing assembly comprises a vertical rod 36 which is slidingly connected in the recess 37, the same second spring 40 is fixedly connected between one side of the vertical rod 36 and the inner wall of one side of the recess 37, the first protrusion 35 is fixedly connected to one side of the vertical rod 36, the third clamping block 34 is fixedly connected to the other side of the vertical rod 36, the first clamping block 16 is fixedly connected to the inner wall of the mounting seat 11, the second installation groove 33 is arranged in the bottom of both sides of the oscillation box body 20, the first clamping block 16 is clamped with the second installation groove 33, the fixing assembly further comprises two first installation grooves 31 which are respectively arranged in the inner wall of both sides of the oscillation box cover 8, the second clamping block 30 is fixedly connected to the inner wall of the first installation groove 31, the second clamping block 30 is used in cooperation with the first protrusion 35, the length of the second clamping block 30 in contact with the first protrusion 35 is twice the length of the third clamping block 34 in contact with the first clamping block 16; the oscillation box body 20 is placed in the inside of the mounting seat 11, at this time, the third clamping block 34 is in abutment with the first clamping block 16, thereby driving the third clamping block 34 to move transversely, the third clamping block 34 drives the first installation groove 31 to move transversely and press the second spring 40, at this time, the third clamping block 34 moves to the right below the first clamping block 16, so that the third clamping block 34 is clamped with the first clamping block 16, ensuring the stability of the oscillation box body 20.

[0054] The top of the tube body 53 is provided with a connecting head 52, the outer wall of the connecting head 52 is provided with an external thread, the bottom of the tube cover 51 is provided with a matching internal thread, the tube cover 51 is used in cooperation with the connecting head 52, the Gerber butter meter is placed in the inside of the tube body 53, the inner wall of the tube cover 51 is provided with a buffer layer 54, the bottom of the oscillation box cover 8 and the top of the oscillation box body 20 are provided with a plurality of placement assemblies for placing the tube body 53, the placement assembly comprises a support seat 32 fixedly connected to the top of the oscillation box body 20, a plurality of first holes 38 are formed in the inside of the support seat 32, the inner wall of the first hole 38 is provided with a first heating layer 39, a plurality of second holes 28 are formed in the bottom of the oscillation box cover 8, the inside of the second hole 28 is provided with a second heating layer 29, a plurality of reeds 50 are arranged in the inside of the first hole 38, and a limiting spring 49 is arranged on the bottom inner wall of the first hole 38; the tube body 53 assembled with the Gerber butter meter is cylindrical, the outer upper side of the connecting head 52 has a long external thread, which is used for connecting the tube cover 51 and adjusting the tightness, so that the Gerber butter meter is fixed, and a certain pressure can be applied to ensure that the liquid in the Gerber butter meter does not leak out, the tube cover 51 has a buffer layer 54 inside, which is made of acid-resistant and organic solvent-resistant sponge, the buffer layer 54 has a large upper part and a small lower part, which is used for adapting to the shape of the Gerber butter meter, the tube cover 51 has an internal thread inside the tube cover 51, after assembly, the tube cover 51 is placed into the inside of the first hole 38, and then the oscillation box cover 8 is placed on the oscillation box body 20, at this time, the second clamping block 30 pushes the first protrusion 35 to move transversely, the first protrusion 35 is clamped with the second clamping block 30, so that the stability of the oscillation box cover 8 can be ensured, at this time, the limiting spring 49 can further improve the oscillation effect of the Gerber butter meter, the inside of the oscillation box body 20 is provided with a heating device, which has an inward controllable heating function, and is used for heating and heat preservation of the tube and the Gerber butter meter inside the tube,

[0055] The top of the oscillation box cover 8 is provided with a release assembly for releasing the brake state of the oscillation box body 20 and the mounting seat 11, the release assembly comprises two push rods 21 symmetrically arranged through the oscillation box cover 8, the push rods 21 are used in cooperation with the first protrusion 35, the top of the two push rods 21 is fixedly connected with the same horizontal plate 22, the top of the oscillation box cover 8 is rotationally connected with a lead screw 24, the top of the lead screw 24 is fixedly connected with a hand wheel 23, the lead screw 24 is threadedly penetrated through the horizontal plate 22; after the oscillation box body 20 and the oscillation box cover 8 are taken out, the sliding block 46 drives the third rack 47 to move vertically downward, the third rack 47 drives the second gear 44 to rotate, the second gear 44 drives the second rack 43 to move vertically upward, the second rack 43 drives the positioning block 41 to move vertically upward, the positioning block 41 is no longer clamped with the positioning groove 42, the push plate 25 can be rotated, the push plate 25 drives the second rotating shaft 26 to rotate, the second rotating shaft 26 drives the rectangular block 27 to rotate, at this time, the horizontal plate 22 can no longer be blocked, the hand wheel 23 is continuously rotated, the horizontal plate 22 drives the push rod 21 to continue to descend, so that the first protrusion 35 is no longer clamped with the second clamping block 30, the oscillation box cover 8 and the oscillation box body 20 can be separated, the GEBI butterfat meter is taken out, and the use is convenient.

[0056] The inside of the oscillation box 1 is provided with an oscillation assembly for oscillating the GEBI butterfat meter, the oscillation assembly comprises a first rack 9 fixedly connected on one side of the L-shaped plate 6, the outer wall of the first rotating shaft 19 is fixedly sleeved with a first gear 18 engaged with the first rack 9, the same first tension spring 17 is fixedly connected between one side of the L-shaped plate 6 and one side of the third sliding plate 15, the first tension spring 17 is sleeved on the round rod 4, one side of the second triangular block 3 is fixedly connected with one side of the L-shaped plate 6. At the same time, the electric push rod 7 is started, the piston rod of the electric push rod 7 pushes the second sliding plate 10 to move horizontally, the second sliding plate 10 pushes the L-shaped plate 6 to move horizontally, the L-shaped plate 6 drives the round rod 4 to move horizontally, the round rod 4 is retracted to the inside of the oscillation box 1 along the inclined surface of the second triangular block 3, and moves along the inclined surface of the inclined hole 12 along the upper inclined direction, the round rod 4 pushes the third sliding plate 15 to move horizontally, the third sliding plate 15 moves horizontally along the L-shaped plate 6 and drives the vertical plate 14 to move horizontally, the vertical plate 14 moves horizontally along the inclined surface of the first triangular block 2 while rising, at the same time, the first gear 18 rotates along the first rack 9, the first gear 18 drives the first rotating shaft 19 to rotate, the first rotating shaft 19 drives the mounting seat 11 to rotate, the mounting seat 11 drives the oscillation box body 20 to rotate, at this time, the oscillation box body 20 not only moves horizontally and vertically, but also rotates at the same time, and gradually rises, so that the GEBI butterfat meter can be oscillated in multiple directions, and the oscillation effect is improved.

[0057] The top of the oscillation box cover 8 is rotationally connected with a second rotating shaft 26, the outer wall of the second rotating shaft 26 is fixedly sleeved with a push plate 25 and a rectangular block 27, the inside of the rectangular block 27 is provided with a third installation slot 45, the inner wall of the third installation slot 45 is slidably connected with a sliding block 46, the top of the sliding block 46 extends to the upper side of the rectangular block 27, one side of the sliding block 46 is fixedly connected with a third rack 47, the inner wall of the third installation slot 45 is rotationally connected with a rotating rod 48, the outer wall of the rotating rod 48 is fixedly sleeved with a second gear 44 which is engaged with the third rack 47, the inner wall of the third installation slot 45 is slidably penetrated with a positioning block 41, one side of the positioning block 41 is fixedly connected with a second rack 43 which is engaged with the second gear 44, the top of the oscillation box cover 8 is provided with a positioning slot 42 which is clamped with the positioning block 41, one side of the oscillation box 1 is fixedly connected with an electric push rod 7, the inner wall of the oscillation box 1 is slidably connected with a second sliding plate 10, the second sliding plate 10 is in contact with the L-shaped plate 6, the inner wall of the oscillation box 1 is slidably connected with a first sliding plate 5, one side of the first sliding plate 5 and one side of the inner wall of the oscillation box 1 are fixedly connected with a same first spring 13, the first sliding plate 5 is in contact with one end of the L-shaped plate 6, one side of the third sliding plate 15 is fixedly connected with a vertical plate 14, the bottom inner wall of the oscillation box 1 is fixedly connected with a first triangular block 2, the vertical plate 14 is in contact with the inclined surface of the first triangular block 2. When the oscillation box body 20 and the oscillation box cover 8 need to be taken out, the hand wheel 23 is rotated at this time, the hand wheel 23 drives the screw rod 24 to rotate, the screw rod 24 drives the horizontal plate 22 to move vertically downward, the horizontal plate 22 drives the two push rods 21 to move vertically downward, the push rod 21 drives the first protruding block 35 to move horizontally, the first protruding block 35 drives the vertical rod 36 and the second installation slot 33 to move horizontally and press the second spring 40, since the length of the first clamping block 16 in contact with the third clamping block 34 is half of the length of the second clamping block 30 in contact with the first protruding block 35, at this time the horizontal plate 22 pushes the sliding block 46 to move vertically downward, the sliding block 46 is withdrawn into the inside of the third installation slot 45, at the same time the horizontal plate 22 moves to the upper side of the rectangular block 27 and cannot continue to descend, the third clamping block 34 is no longer in contact with the first clamping block 16, the oscillation box body 20 and the oscillation box cover 8 can be taken out from the inside of the installation seat 11 as a whole.

[0058] However, the working principle and wiring method of the are common, which belong to conventional means or common knowledge known to those skilled in the art, and will not be described here again. Those skilled in the art can make any selection and arrangement according to their needs or convenience.

[0059] The working principle and use process of the technical solution are as follows:

[0060] In use, the oscillation box body 20 is placed inside the mounting seat 11, at which time the third clamping block 34 is in abutment with the first clamping block 16, thereby driving the third clamping block 34 to move laterally, the third clamping block 34 driving the first mounting groove 31 to move laterally and compressing the second spring 40, at which time the third clamping block 34 moves to be directly below the first clamping block 16, so that the third clamping block 34 is clamped with the first clamping block 16, ensuring the stability of the oscillation box body 20;

[0061] The pipe body 53 of the assembled cover brix meter is cylindrical, the outer upper side of the connecting head 52 has a long external thread, which is used to connect the pipe cover 51 and adjust the tightness, ensuring that the cover brix meter is fixed, and at the same time, a certain pressure can be applied to ensure that the liquid in the cover brix meter does not leak out. The pipe cover 51 has a buffer layer 54 inside, which is made of acid-resistant and organic solvent-resistant sponge. The buffer layer 54 has a large upper part and a small lower part, which is used to adapt to the shape of the cover brix meter. The pipe cover 51 has an internal thread inside, close to the cover opening. After assembly, it is placed inside the first hole 38;

[0062] Then the oscillation box cover 8 is placed on the oscillation box body 20, at which time the second clamping block 30 pushes the first protrusion 35 to move laterally, and the first protrusion 35 is clamped with the second clamping block 30, which can ensure the stability of the oscillation box cover 8. At this time, the setting of the limiting spring 49 can again improve the oscillation effect of the cover brix meter. The inside of the oscillation box body 20 is provided with a heating device, which has an inward controllable heating function, which is used to fix the pipe and the cover brix meter inside it for heating and heat preservation.

[0063] At the same time, the electric push rod 7 is started, the piston rod of the electric push rod 7 pushes the second sliding plate 10 to move laterally, the second sliding plate 10 pushes the L-shaped plate 6 to move laterally, the L-shaped plate 6 drives the round rod 4 to move laterally, the round rod 4 is withdrawn along the inclined surface of the second triangular block 3 to the inside of the oscillation box 1, and at the same time, it moves along the inclined surface of the inclined hole 12 to the upper inclined side. The third sliding plate 15 is pushed by the round rod 4 to move laterally, the third sliding plate 15 moves along the L-shaped plate 6 and drives the vertical plate 14 to move laterally, the vertical plate 14 moves along the inclined surface of the first triangular block 2 while moving laterally, at the same time, the first gear 18 rotates along the first rack 9, the first gear 18 drives the first rotating shaft 19 to rotate, the first rotating shaft 19 drives the mounting seat 11 to rotate, the mounting seat 11 drives the oscillation box body 20 to rotate, at this time, the oscillation box body 20 not only moves laterally and longitudinally, but also rotates at the same time, and gradually rises, which can oscillate the cover brix meter in multiple directions, improving the oscillation effect;

[0064] When the oscillation box body 20 and the oscillation box cover 8 need to be taken out, at this time, the hand wheel 23 is rotated, the hand wheel 23 drives the lead screw 24 to rotate, the lead screw 24 drives the horizontal plate 22 to move vertically downward, the horizontal plate 22 drives the two push rods 21 to move vertically downward, the push rods 21 drive the first protruding block 35 to move laterally, the first protruding block 35 drives the vertical rod 36 and the second mounting groove 33 to move laterally and press the second spring 40, since the length of the contact between the first clamping block 16 and the third clamping block 34 is half of the length of the contact between the second clamping block 30 and the first protruding block 35, at this time, the horizontal plate 22 pushes the sliding block 46 to move vertically downward, the sliding block 46 is withdrawn into the interior of the third mounting groove 45, and at the same time, the horizontal plate 22 moves to the upper side of the rectangular block 27, cannot continue to descend, the third clamping block 34 no longer abuts against the first clamping block 16, and the oscillation box body 20 and the oscillation box cover 8 can be taken out from the interior of the mounting seat 11 as a whole,

[0065] After the oscillation box body 20 and the oscillation box cover 8 are taken out, since the sliding block 46 drives the third rack 47 to move vertically downward, the third rack 47 drives the second gear 44 to rotate, the second gear 44 drives the second rack 43 to move vertically upward, the second rack 43 drives the positioning block 41 to move vertically upward, the positioning block 41 no longer abuts against the positioning groove 42, the push plate 25 can be rotated, the push plate 25 drives the second rotating shaft 26 to rotate, the second rotating shaft 26 drives the rectangular block 27 to rotate, at this time, the horizontal plate 22 can no longer be blocked, the hand wheel 23 is continuously rotated, the horizontal plate 22 drives the push rod 21 to continue to descend, the first protruding block 35 no longer abuts against the second clamping block 30, the oscillation box cover 8 and the oscillation box body 20 can be separated, and the Babcock milk fat tester can be taken out, and the use is convenient.

[0066] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application; in the case of no conflict, the embodiments of the present application and the features in the embodiments can be combined with each other. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A laboratory Gottfert lactoscope shaking device, characterized in that, Include: Oscillating box (20), pipe body (53), pipe cover (51), oscillating box cover (8) and oscillating box (1), one side of the oscillating box (1) is provided with inclined hole (12), the inner wall of the inclined hole (12) is penetrated by round rod (4), one end of the round rod (4) is fixedly connected with third sliding plate (15), the inside of the third sliding plate (15) is rotatably penetrated by first rotating shaft (19), the top of the first rotating shaft (19) is fixedly connected with mounting seat (11), the oscillating box (20) is placed in the inside of mounting seat (11), the oscillating box cover (8) is placed on the top of the oscillating box (20), the inside of the oscillating box (20) is provided with two symmetrical recesses (37), the inside of the recess (37) is provided with a fixing assembly for fixing the oscillating box cover (8) and mounting seat (11); The top of the pipe body (53) is provided with a connecting head (52), the outer wall of the connecting head (52) is provided with external threads, the bottom of the pipe cover (51) is provided with a matching internal thread, the pipe cover (51) is used in cooperation with the connecting head (52), the gobbett milk meter is placed in the inside of the pipe body (53), the inner wall of the pipe cover (51) is provided with a buffer layer (54), the bottom of the oscillating box cover (8) and the top of the oscillating box (20) are provided with a plurality of placing assemblies for placing the pipe body (53); The top of the oscillating box cover (8) is provided with a release assembly for releasing the brake state of the oscillating box (20) and mounting seat (11); The inside of the oscillating box (1) is provided with an oscillating assembly for oscillating the gobbett milk meter.

2. The Lab-Globescent lactoscope shaking device of claim 1, wherein, The fixing assembly comprises a vertical rod (36) slidingly connected in the recess (37), a second spring (40) fixedly connected between one side of the vertical rod (36) and the inner wall of one side of the recess (37), a first protrusion (35) fixedly connected to one side of the vertical rod (36), a third clamping block (34) fixedly connected to the other side of the vertical rod (36), a first clamping block (16) fixedly connected to the inner wall of the mounting seat (11), and a second mounting groove (33) formed in the bottom of each side of the oscillating box (20).

3. The Labscant Kobusch milkfat oscillator apparatus of claim 2, wherein, The fixing assembly further comprises two first mounting grooves (31) respectively formed in the inner walls of both sides of the oscillating box cover (8), a second clamping block (30) fixedly connected to the inner wall of the first mounting groove (31), and the second clamping block (30) used in cooperation with the first protrusion (35), the length of the second clamping block (30) in contact with the first protrusion (35) is twice the length of the third clamping block (34) in contact with the first clamping block (16).

4. The Labscant Kobusch milkfat oscillator apparatus of claim 1, wherein, The placing assembly comprises a supporting seat (32) fixedly connected to the top of the oscillation box body (20), a plurality of first holes (38) are formed in the inner wall of the supporting seat (32), a first heating layer (39) is arranged on the inner wall of the first hole (38), a plurality of second holes (28) are formed in the bottom of the oscillation box cover (8), a second heating layer (29) is arranged in the second hole (28), a plurality of reeds (50) are arranged in the first hole (38), and a limiting spring (49) is arranged on the bottom inner wall of the first hole (38).

5. The Labscam GEBY lactoscope shaking device of claim 2, wherein, The releasing assembly comprises two push rods (21) symmetrically arranged and sliding through the oscillation box cover (8), the push rod (21) is used in cooperation with the first protrusion (35), the top of the two push rods (21) is fixedly connected with the same horizontal plate (22), the top of the oscillation box cover (8) is rotatably connected with a lead screw (24), the top of the lead screw (24) is fixedly connected with a hand wheel (23), and the lead screw (24) is threadedly connected with the horizontal plate (22).

6. The Labscam Gabbett Pinometer oscillating device according to claim 5, characterized in that, The top of the oscillation box cover (8) is rotatably connected with a second rotating shaft (26), the outer wall of the second rotating shaft (26) is fixedly sleeved with a push plate (25) and a rectangular block (27), the inner wall of the rectangular block (27) is rotatably connected with a third installation groove (45), the inner wall of the third installation groove (45) is rotatably connected with a sliding block (46), the top of the sliding block (46) extends to the upper side of the rectangular block (27), one side of the sliding block (46) is fixedly connected with a third rack (47), and the horizontal plate (22) is located between the push plate (25) and the rectangular block (27).

7. The Labscam GEBY lactoscope shaking device of claim 6, wherein, The outer wall of the rotating shaft (48) is fixedly sleeved with a second gear (44) engaged with the third rack (47), the inner wall of the third installation groove (45) is slidingly connected with a positioning block (41), one side of the positioning block (41) is fixedly connected with a second rack (43) engaged with the second gear (44), and the top of the oscillation box cover (8) is provided with a positioning groove (42) matched with the positioning block (41).

8. The Labscam Gabbett Composiometer shaking device of claim 1, wherein, The oscillation assembly comprises an L-shaped plate (6) and a first rack (9) fixedly connected to one side of the L-shaped plate (6), the outer wall of the first rotating shaft (19) is fixedly sleeved with a first gear (18) engaged with the first rack (9), one side of the L-shaped plate (6) and one side of the third sliding plate (15) are fixedly connected with the same first tension spring (17), the first tension spring (17) is sleeved on the circular rod (4), one side of the second triangular block (3) is fixedly connected to one side of the circular rod (4), and one end of the circular rod (4) is matched with one side of the second triangular block (3).

9. The Labscant Kobusch milkfat oscillator apparatus of claim 8, wherein, One side of the oscillation box (1) is fixedly connected with an electric push rod (7), the inner wall of the oscillation box (1) is slidably connected with a second sliding plate (10), the second sliding plate (10) abuts against the L-shaped plate (6), the inner wall of the oscillation box (1) is slidably connected with a first sliding plate (5), one side of the first sliding plate (5) and one side inner wall of the oscillation box (1) are fixedly connected with a same first spring (13), and the first sliding plate (5) abuts against one end of the L-shaped plate (6).

10. The Labscant Kobusch milkfat oscillator apparatus of claim 1, wherein, One side of the third sliding plate (15) is fixedly connected with a vertical plate (14), the bottom inner wall of the oscillation box (1) is fixedly connected with a first triangular block (2), and the vertical plate (14) abuts against the inclined surface of the first triangular block (2).

Citation Information

Patent Citations

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    CN206454575U

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    CN214438520U