Multifunctional linkage type sample preparation unit
By linking the sample preparation and splitting unit, the conveyor box, and the rotary divider, the problem of existing sample preparation units being unable to perform multi-functional linkage and quantitative extraction is solved, realizing efficient sample separation and quantitative operation of the multi-functional linkage sample preparation unit.
Patent Information
- Application Number
- CN202423293636.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing sample preparation units cannot achieve multi-functional linkage operation, resulting in a large equipment footprint and the inability to quantitatively extract samples.
The system employs an interconnected sample preparation and distribution unit, a conveyor box, a rotary divider, and three linkage components. The combination of these linkage components enables sample preparation, distribution, conveying, and rotary dispensing. Combined with a rotating drive and a feed incline, the system achieves multi-functional linkage and quantitative separation of samples.
It achieves multi-functional linkage sample preparation operation, reduces the equipment footprint, and enables quantitative sample extraction with adjustable sample size and good separation effect.
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Figure CN223727493U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of multifunctional linkage type sample preparation unit, belong to sample preparation unit technical field. BACKGROUND
[0002] As the application number is: 202222409183.5 disclosed a kind of combined sample preparation unit, it includes: a crusher is arranged at the top of rack, is equipped with the shrinkage component under the discharge port of crusher, and the shrinkage component includes a fixed ratio shrinkage component, is equipped with a pair of roller crusher under the front oblique of fixed ratio shrinkage component;Shrinkage component further includes a two-part component being equipped with at the outlet of pair of roller crusher, is equipped with two sample storage receiving box at the two discharge ports of two-part component;The rear oblique of fixed ratio shrinkage component is connected with a plate-shaped material guide pipe, and the outlet of plate-shaped material guide pipe is full moisture receiving box and discard trolley under, a feeding component is arranged at the side of rack, and the top end of feeding component is connected with the inlet of crusher, which has the advantages of reasonable design, compact structure and small floor area.
[0003] Prior art can be through shrinkage component further includes a two-part component being equipped with at the outlet of pair of roller crusher, is equipped with two sample storage receiving box at the two discharge ports of two-part component;The rear oblique of fixed ratio shrinkage component is connected with a plate-shaped material guide pipe, and the outlet of plate-shaped material guide pipe is full moisture receiving box and discard trolley under, a feeding component is arranged at the side of rack, and the top end of feeding component is connected with the inlet of crusher, which has the advantages of reasonable design, compact structure and small floor area.
[0004] Prior art cannot realize the function of multifunctional linkage sample preparation operation, cannot realize the function of quantitative extraction, and can cause the floor area of operating equipment to be large, so a kind of multifunctional linkage type sample preparation unit is needed, to improve the above-mentioned shortcomings. INVENTION CONTENTS
[0005] The main purpose of the utility model is to provide a kind of multifunctional linkage type sample preparation unit.
[0006] The purpose of the utility model can be achieved by adopting the following technical scheme:
[0007] A kind of multifunctional linkage type sample preparation unit, including the linkage of sample preparation shunt unit, conveyor box, rotary shrinkage component, linkage piece one, linkage piece two and linkage piece three;
[0008] The discharge port in sample preparation shunt unit is respectively connected with linkage piece one, linkage piece two and linkage piece three, and the upper end of sample preparation shunt unit is installed with conveyor box;
[0009] The outer end of linkage piece one is installed with rotary shrinkage component, and rotary shrinkage component is installed with placing table, rotary drive part, rotary sub-packaging box and material guide inclined plate;
[0010] The rotating distributor is provided with a placing table, and a rotating drive member is arranged on one side of the placing table. The rotating distributor is provided with a rotating sub-packaging box. The rotating sub-packaging box is arranged on the rotating drive member and rotates. An inclined plate for guiding materials is arranged on the rotating sub-packaging box.
[0011] The rotating sub-packaging box is divided into 1-n parts.
[0012] Preferably, the conveyor box, the linkage member one, the linkage member two and the linkage member three are provided with supporting sliding legs, conveying wheels, drive members, conveying belts, monitoring ports, main drive members and feeding ports.
[0013] The connection end of the conveyor box and the sample preparation and distribution machine group is provided with a main drive member. The outer end of the linkage member one, the linkage member two and the linkage member three is provided with a drive member. The conveyor box, the linkage member one, the linkage member two and the linkage member three are distributed with conveying wheels. The conveying wheels are sleeved with conveying belts. The conveyor box, the linkage member one, the linkage member two and the linkage member three are provided with supporting sliding legs at one end of the bottom for limiting support. The conveyor box, the linkage member one, the linkage member two and the linkage member three are distributed with monitoring ports. The outer end of the conveyor box is provided with a feeding port. The linkage member two and the linkage member three guide the 3mm sample to the rotating distributor and divide it into 1-n parts.
[0014] Preferably, the sample preparation and distribution machine group is provided with a first linkage machine, a material distribution machine group, a second linkage machine, a Y-shaped distribution machine one, a Y-shaped distribution machine two, an upper feeding member and an upper distribution member from top to bottom. The inner side of the Y-shaped distribution machine one and the Y-shaped distribution machine two is connected with the linkage member one. The linkage member one receives samples of other sizes.
[0015] The outer end of the conveyor box is provided with an upper feeding member. The lower side of the upper feeding member is provided with a first linkage machine. The bottom of the first linkage machine is provided with a second linkage machine. The bottom of the upper feeding member is connected with the Y-shaped distribution machine one and the Y-shaped distribution machine two respectively. The outer end of the Y-shaped distribution machine one is connected with the linkage member two or a material receiving hopper. When the linkage member two is connected with the linkage member three on one side, the sample can be divided into 1-n parts. The Y-shaped distribution machine two guides the millimeter sample. The upper feeding member is provided with a material distribution machine group for controlling the discharging. The Y-shaped distribution machine one guides the whole water sample on one side. The discharging port of the material distribution machine group is connected with the other side of the Y-shaped distribution machine one. The material distribution machine group is provided with an upper distribution member on one side. The upper distribution member is connected with the linkage member one.
[0016] Preferably, the rotating sub-packaging box in the rotating distributor is a replaceable structure.
[0017] Preferably, the linkage member one, the linkage member two and the linkage member three are connected with the Y-shaped distribution machine one and the Y-shaped distribution machine two respectively.
[0018] The rotating sub-packaging box can hold the sample with a size of at least 3mm, the lower end of the Y-type flow distributor one is connected with the linkage one and the linkage three respectively, and the Y-type flow distributor two is communicated with the linkage two.
[0019] The utility model discloses the beneficial technical effects:
[0020] The multifunctional linkage type sample making unit provided by the utility model puts the sample into the conveyor box through the feeding port, and the sample is conveyed to the upper feeding part by starting the conveying belt of the main driving part, and the conveyed sample is conveyed through the upper feeding part, the Y-type flow distributor one and the Y-type flow distributor two to realize the function of three-side flow distribution by starting the sub-distributing unit, and the distributed sample falls on the conveying belt of the linkage one, the linkage two and the linkage three to be guided outwards by starting the driving part, and the guided sample can fall into the storage box or the rotating sub-packaging device, and when the sample is guided out of the linkage one, the linkage two and the linkage three and falls into the receiving part, the sample in the receiving part is guided into the rotating sub-packaging box through the receiving inclined plate, and the rotating sub-packaging box is rotated by starting the rotating driving part, and the sample in the rotating sub-packaging box is at least one part, and the size of the sample is at least 3mm-13mm, the rotating driving part and the rotating sub-packaging device on the rotating sub-packaging device are separated, the Y-type flow distributor one and the Y-type flow distributor two are three-side flow guiding structures, the Y-type flow distributor one is a full water sample guiding structure, the outside of the Y-type flow distributor two is a 3mm-13mm guiding structure, and the corresponding end of the inside of the Y-type flow distributor one and the Y-type flow distributor two is a multi-sample guiding structure and is connected with the linkage one, the Y-type flow distributor two can be connected with the receiving hopper or the linkage three by the function of guiding outwards through the linkage one, when the Y-type flow distributor two is connected with the linkage three, the outside of the linkage three is connected with the rotating sub-packaging device, and the sample can be divided into 1-n parts. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a whole structure schematic view of a preferred embodiment of the multifunctional linkage type sample making unit according to the utility model;
[0022] Figure 2 It is a whole side view of a preferred embodiment of the multifunctional linkage type sample making unit according to the utility model;
[0023] Figure 3 It is a structure schematic view of A of a preferred embodiment of the multifunctional linkage type sample making unit according to the utility model;
[0024] Figure 4 It is a top view of a preferred embodiment of the multifunctional linkage type sample making unit according to the utility model;
[0025] Figure 5A schematic view of the outer end of Y-type shunt machine two 105 not connected with linkage three 203 of a preferred embodiment of the multifunctional linkage type sample preparation machine set according to the utility model.
[0026] In the figure: 1, sample preparation shunt machine set; 101, first linkage machine; 102, material distributing machine set; 103, second linkage machine; 104, Y-type shunt machine one; 105, Y-type shunt machine two; 106, upper feeding part; 107, upper shunt part; 2, conveyor box; 201, linkage one; 202, linkage two; 203, linkage three; 204, supporting slide leg; 205, conveying wheel; 206, driving part; 207, conveying belt; 208, monitoring port; 209, main driving part; 210, feeding port; 3, rotary dividing and distributing device; 301, placing table; 302, rotating driving part; 304, rotating distributing box; 305, material guiding inclined plate; 306, material receiving part. DETAILED DESCRIPTION
[0027] In order for those skilled in the art to be more clear and explicit about the technical scheme of the utility model, the utility model will be described in further detail below in combination with embodiments and drawings, but the implementation manner of the utility model is not limited to this.
[0028] As shown in Figure 1 - Figure 5 The utility model provides a multifunctional linkage type sample preparation machine set, which comprises a linkage sample preparation shunt machine set 1, a conveyor box 2, a rotary dividing and distributing device 3, linkage one 201, linkage two 202 and linkage three 203.
[0029] The lower outlet of the sample preparation shunt machine set 1 is connected with linkage one 201, linkage two 202 and linkage three 203 respectively, and the upper end of the sample preparation shunt machine set 1 is provided with the conveyor box 2.
[0030] The outer end of linkage one 201 is provided with the rotary dividing and distributing device 3, and the rotary dividing and distributing device 3 is provided with a placing table 301, a rotating driving part 302, a rotating distributing box 304 and a material guiding inclined plate 305.
[0031] The rotary dividing and distributing device 3 is provided with the placing table 301, the placing table 301 is provided with the rotating driving part 302, one side of the rotating driving part 302 is provided with the rotating distributing box 304, the rotating driving part 302 drives the rotating distributing box 304 to rotate, and the rotating distributing box 304 in the rotary dividing and distributing device 3 is provided with the material guiding inclined plate 305 extending therefrom.
[0032] The rotating distributing box 304 is divided into 1-n structures.
[0033] The conveyor box 2, linkage one 201, linkage two 202 and linkage three 203 are provided with support sliding legs 204, conveying wheels 205, driving members 206, conveying belts 207, monitoring ports 208, main driving members 209 and feeding ports 210;
[0034] The main driving members 209 are installed at the connecting end of the conveyor box 2 and the sample preparation and distribution machine group 1, the driving members 206 are installed at the outer end of the linkage one 201, linkage two 202 and linkage three 203, the conveying wheels 205 are distributed on the conveyor box 2, linkage one 201, linkage two 202 and linkage three 203, the conveying belts 207 are sleeved on the conveying wheels 205, the support sliding legs 204 are installed at one end of the bottom of the conveyor box 2, linkage one 201, linkage two 202 and linkage three 203 for limiting support, the monitoring ports 208 are distributed on the conveyor box 2, linkage one 201, linkage two 202 and linkage three 203, the feeding port 210 is installed at the outer end of the conveyor box 2, and the linkage two 202 and linkage three 203 guide the 3mm sample to the rotary divider 3 to be divided into 1-n parts.
[0035] Preferably, the first linkage 101, the distribution machine group 102, the second linkage 103, the Y-type distribution machine one 104, the Y-type distribution machine two 105, the upper feeding member 106 and the upper distribution member 107 are installed in the sample preparation and distribution machine group 1 from top to bottom, the inner side discharge port of the Y-type distribution machine one 104 and the Y-type distribution machine two 105 is connected with the linkage one 201, and the linkage one 201 receives samples of another size.
[0036] The upper feeding member 106 is installed at the outer end of the conveyor box 2, the first linkage 101 is installed at the lower side of the upper feeding member 106, the second linkage 103 is installed at the bottom of the first linkage 101, the Y-type distribution machine one 104 and the Y-type distribution machine two 105 are connected with the bottom of the upper feeding member 106, the outer end of the Y-type distribution machine one 104 is connected with the linkage two 202 or is provided with a receiving hopper, the linkage two 202 is provided with the linkage three 203 on one side to divide the sample into 1-n parts, the Y-type distribution machine two 105 guides the 3mm sample, the distribution machine group 102 for controlling discharge is installed on the upper feeding member 106, the Y-type distribution machine one 104 guides the whole water sample on one side, the discharge port of the distribution machine group 102 is connected with the other side of the Y-type distribution machine one 104 to guide another sample, the upper distribution member 107 is installed on one side of the distribution machine group 102 in abutment, and the upper distribution member 107 is in abutment with the linkage one 201.
[0037] The linkage one 201, linkage two 202 and linkage three 203 are connected with the Y-type distribution machine one 104 and the Y-type distribution machine two 105.
[0038] The rotating dispensing box 304 can hold samples with a diameter of at least 3 mm. The lower end of the Y-type splitter 104 is connected to the linkage 201 and the linkage 203 respectively. The Y-type splitter 205 is connected to the linkage 202.
[0039] like Figure 1 - Figure 4 As shown, the working process of the multi-functional linkage sample preparation unit provided in this embodiment is as follows: The sample is put into the conveyor box 2 through the feeding port 210. The conveyor belt 207 driven by the main drive component 209 is started to transport the sample to the feeding component 106. The transported sample passes through the feeding component 106, Y-type diverter one 104 and Y-type diverter two 105. The three-sided diversion operation is realized by starting the diverter unit 102. The diverted sample falls onto the linkage component one 201 and linkage component two 205. The drive unit 206 on the conveyor belt 207 within linkage component 3 (202 and 203) pulls the sample outwards. The pulled sample can fall into the storage bin or the rotary divider 3. After the sample is pulled out through linkage component 1 (201), linkage component 2 (202), and linkage component 3 (203), it falls into the receiving component 306. The sample in the receiving component 306 is introduced into the rotating dispensing box 304 through the feeding inclined plate 305. The rotating dispensing box 304 is rotated by the start of the rotating drive unit 302. During the rotation of the packaging box 304, the weight and number of samples received vary depending on the size of the partitions in the rotating packaging box 304. At least one sample is prepared in the rotating packaging box 304, with a sample size of at least 3mm-13mm. The rotating drive component 302 on the rotating divider 3 and the rotating divider 3 function as sample separators. Y-type diverter 104 and Y-type diverter 205 have a three-sided diversion structure. Y-type diverter 104 is a full water sample extraction structure, and Y-type diverter 205... The outer side of 5 has a 3 mm to 13 mm lead-out structure. The corresponding inner ends of Y-type diverter 104 and Y-type diverter 205 have various lead-out structures and are interconnected with linkage 1 201. Through the outward lead-out function of linkage 1 201, the outer end of Y-type diverter 205 can be connected to a receiving hopper or linkage 3 203. When linkage 3 203 is connected to the outer end of Y-type diverter 205, the outer end of linkage 3 203 is connected to a rotary divider 3, which can divide the sample into 1 to n parts.
[0040] Example
[0041] like Figure 1 - Figure 5As shown, the sample preparation flow distribution unit 1 is provided with an upper feeding member 106 from top to bottom, a first linkage machine 101 is installed on the outside of the upper feeding member 106, Y-type flow distributors one 104 and two 105 are respectively connected to the outer end of the upper feeding member 106, a distribution machine unit 102 is installed at the connection of the upper feeding member 106 and the Y-type flow distributor one 104, a second linkage machine 103 is installed on one side of the connection of the upper feeding member 106 and the Y-type flow distributors one 104 and two 105, a conveyor box 2 is installed on the outer end of the upper feeding member 106, linkage members one 201, two 202 and three 203 are respectively connected to the upper feeding member 106, the Y-type flow distributor two 105 and the output end of the upper feeding member 106 of the sample preparation flow distribution unit 1, drive members 206 are respectively installed on the outer end of the linkage members one 201, two 202 and three 203, conveying wheels 205 are distributed on both sides of the linkage members one 201, two 202 and three 203, conveying belts 207 are covered on the conveying wheels 205, a main drive member 209 is installed at the outer end of the discharge port of the conveyor box 2, the conveying belt 207 driven by the main drive member 209 is conveyed to the upper feeding member 106 for sample preparation, a receiving member 306 is installed on the outer end of the linkage member two 202, a material guiding inclined plate 305 is connected to the outer end of the receiving member 306, the outer end of the material guiding inclined plate 305 extends into the rotary concentrator 3, a placing table 301 is installed in the rotary concentrator 3, a rotating drive member 302 is installed on one side of the placing table 301, the output end of the rotating drive member 302 is rotatably connected with a rotating distribution box 304, the rotating distribution box 304 is rotatably connected on a lower weighing member 303, the outer end of the material guiding inclined plate 305 is connected with the rotating distribution box 304;
[0042] The sample is put into the conveying box 2 through the feeding port 210, the conveying belt 207 is driven by the main driving part 209 to convey the sample upward to the feeding part 106, the conveyed sample passes through the feeding part 106, the Y-type flow distributor one 104 and the Y-type flow distributor two 105, and the three-side flow distribution function is realized by starting the flow distributor set 102, the distributed sample falls on the conveying belt 207 in the linkage part one 201, the linkage part two 202 and the linkage part three 203, and the driving part 206 is started to guide outwards, the guided-out sample can fall into the storage box or the rotary dividing device 3, when the sample is guided out by the linkage part one 201, the linkage part two 202 and the linkage part three 203 and falls into the receiving part 306, the sample in the receiving part 306 is guided into the rotary packaging box 304 through the guiding slope 305, the rotary packaging box 304 is driven to rotate by the rotary driving part 302, and the sample in the rotary packaging box 304 is at least one part, and the size of the sample is at least 3mm-13mm, the rotary driving part 302 and the rotary dividing device 3 on the rotary dividing device 3 are used for separating the sample, the Y-type flow distributor one 104 and the Y-type flow distributor two 105 are used for three-side flow guiding, the Y-type flow distributor one 104 is used for full water sample guiding, the outer side of the Y-type flow distributor two 105 is used for 3mm-13mm guiding, the corresponding end of the inner side of the Y-type flow distributor one 104 and the Y-type flow distributor two 105 is used for multi-sample guiding and is connected with the linkage part one 201, the Y-type flow distributor two 105 is connected with the receiving hopper or the linkage part three 203 through the function of guiding outwards by the linkage part one 201, when the Y-type flow distributor two 105 is connected with the linkage part three 203, the outer end of the linkage part three 203 is connected with the rotary dividing device 3, and the sample can be divided into 1-n parts.
[0043] The above merely illustrates the further embodiments of the present application, but the protection scope of the present application is not limited to this, any skilled person in the technical field can make equivalent replacement or change according to the technical scheme and concept of the present application within the disclosed range, and all of them belong to the protection scope of the present application.
Claims
1. A multi-functional, linked sample preparation machine group, characterized by: It comprises a sample preparation and distribution machine group (1), a conveyor box (2), a rotary dividing device (3), linkage one (201), linkage two (202) and linkage three (203); The lower end of the sample preparation and distribution machine group (1) is connected with linkage one (201), linkage two (202) and linkage three (203), and the upper end of the sample preparation and distribution machine group (1) is installed with the conveyor box (2); The outer end of linkage one (201) is installed with the rotary dividing device (3), and the rotary dividing device (3) is installed with a placement table (301), a rotating driving element (302), a rotating distribution box (304) and a material guiding inclined plate (305); The rotary dividing device (3) is installed with the placement table (301), and the placement table (301) is installed with the rotating driving element (302) on one side of which the rotating distribution box (304) is installed, the rotating distribution box (304) driven by the rotating driving element (302) rotates, and the material guiding inclined plate (305) is installed on the rotating distribution box (304) in the rotary dividing device (3); The rotating distribution box (304) is divided into 1-n parts.
2. The multi-functional linkage-type sample preparation unit according to claim 1, characterized in that: The conveyor box (2), linkage one (201), linkage two (202) and linkage three (203) are installed with support sliding legs (204), conveying wheels (205), driving elements (206), conveying belts (207), monitoring ports (208), main driving elements (209) and feeding ports (210); The connecting end of the conveyor box (2) and the sample preparation and distribution machine group (1) is installed with the main driving element (209), the outer end of linkage one (201), linkage two (202) and linkage three (203) is installed with the driving element (206), the conveyor box (2), linkage one (201), linkage two (202) and linkage three (203) are distributed with the conveying wheels (205), the conveying wheels (205) are sleeved with the conveying belts (207), the bottom end of the conveyor box (2), linkage one (201), linkage two (202) and linkage three (203) is installed with the support sliding legs (204) for limiting support, the conveyor box (2), linkage one (201), linkage two (202) and linkage three (203) are distributed with the monitoring ports (208), the outer end of the conveyor box (2) is installed with the feeding port (210), and linkage two (202) and linkage three (203) divide the 3mm sample into 1-n parts.
3. The multi-functional linkage-type sample preparation unit according to claim 2, characterized in that: From top to bottom, the sample preparation and distribution machine group (1) is installed with the first linkage machine (101), the material distribution machine group (102), the second linkage machine (103), the Y-shaped distribution machine one (104), the Y-shaped distribution machine two (105), the upper feeding element (106) and the upper distribution element (107), the inner side lower end of the Y-shaped distribution machine one (104) and the Y-shaped distribution machine two (105) is connected with linkage one (201), and linkage one (201) receives samples of other sizes; The outer end of the conveyor box (2) is provided with an upper feeding part (106), the lower side of the upper feeding part (106) is provided with a first linkage machine (101), the bottom of the first linkage machine (101) is provided with a second linkage machine (103), the bottom of the upper feeding part (106) is respectively connected with a Y-shaped distributor one (104) and a Y-shaped distributor two (105), the outer end of the Y-shaped distributor one (104) is connected with a linkage part two (202) or is provided with a receiving hopper, the linkage part two (202) is provided with a linkage part three (203) on one side, so that the sample can be divided into 1-n parts, the Y-shaped distributor two (105) leads out the sample of 3mm, the upper feeding part (106) is provided with a distributing machine group (102) for controlling the discharging, the Y-shaped distributor one (104) leads out the whole water sample on one side, the discharging outlet of the distributing machine group (102) is connected with the other side of the Y-shaped distributor one (104), so as to lead out another sample, the distributing machine group (102) is provided with an upper distributor (107) on one side, the upper distributor (107) is connected with a linkage part one (201).
4. The multi-functional linkage-type sample preparation unit according to claim 3, characterized in that: The rotating distribution box (304) in the rotating distributor (3) is a replaceable structure.
5. The multi-functional linkage sample preparation unit of claim 4, wherein: The linkage part one (201), the linkage part two (202) and the linkage part three (203) are respectively connected with the Y-shaped distributor one (104) and the Y-shaped distributor two (105).
6. The multi-functional linkage-type sample preparation unit set according to claim 5, characterized in that: The rotating distribution box (304) can be placed with a sample of at least 3mm, the lower end of the Y-shaped distributor one (104) is respectively connected with the linkage part one (201) and the linkage part three (203), and the Y-shaped distributor two (105) is communicated with the linkage part two (202).
Citation Information
Patent Citations
Combined sample preparation unit
CN218766238U