CN113484083B - Quick sampling device of food detection breakage degree - Google Patents

Quick sampling device of food detection breakage degree Download PDF

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Publication number
CN113484083B
CN113484083B CN202110795002.4A CN202110795002A CN113484083B CN 113484083 B CN113484083 B CN 113484083B CN 202110795002 A CN202110795002 A CN 202110795002A CN 113484083 B CN113484083 B CN 113484083B
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China
Prior art keywords
box
blanking
gear
dwang
sampling device
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CN202110795002.4A
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CN113484083A (en
Inventor
马世留
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Shanghai Zhentang Mustard Garden Food Co ltd
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Shanghai Zhentang Mustard Garden Food Co ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/02Devices for withdrawing samples
    • G01N1/10Devices for withdrawing samples in the liquid or fluent state
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/02Devices for withdrawing samples
    • G01N1/04Devices for withdrawing samples in the solid state, e.g. by cutting
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/28Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q
    • G01N1/286Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q involving mechanical work, e.g. chopping, disintegrating, compacting, homogenising
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/02Devices for withdrawing samples
    • G01N1/10Devices for withdrawing samples in the liquid or fluent state
    • G01N2001/1006Dispersed solids

Abstract

The invention discloses a rapid sampling device for detecting the crushing degree of food, which comprises an outer box, wherein a crushing cone is arranged in the outer box, a rotating shaft is arranged in the crushing cone, a cylinder is arranged in the rotating shaft, a fixed column is arranged at the bottom end of the cylinder, a third rotating rod is arranged in the fixed column, a storage box is arranged outside the third rotating rod, a blanking box is arranged below the storage box, a discharging pipe is arranged at the lower end of the other side of the blanking box, symmetrical turntables are arranged in the blanking box, a plurality of limiting blocks are annularly distributed between the symmetrical turntables, a connecting disc is arranged at the center of each limiting block and is internally provided with a blanking channel, the other side of each turntable is provided with a rotating disc, the food is crushed by the aid of the crushing cone, and the rotating disc rotates to drive the limiting blocks and the storage groove formed by the turntables, so that the food in the storage groove falls from the blanking channel to realize quantitative blanking.

Description

Quick sampling device of food detection breakage degree
Technical Field
The invention relates to the technical field of food detection, in particular to a rapid sampling device for detecting the crushing degree of food.
Background
Food is generally an object for people to eat, so the safety of the food is important, in order to ensure the safety of the food, the food circulated in the market needs to be detected, the food is firstly sampled when the food needs to be detected, the food safety detection is to detect harmful substances in the food according to national indexes, mainly the detection of some harmful and toxic indexes such as heavy metals and aflatoxin, and the like, in the daily production of a food processing factory, the produced food needs to be periodically sampled and detected to ensure the production safety of the food, and therefore, the food needs to be sampled by using a food detection sampling device. The food needs to be crushed before sampling, and the existing food detection sampling device does not have the function of crushing the food and can not quantitatively take the food.
Disclosure of Invention
The invention aims to provide a rapid sampling device for detecting the crushing degree of food, so as to solve the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions: the utility model provides a quick sampling device of food detection breakage degree, includes the outer case, the feed inlet is installed to the outer case top, outer case internally mounted has broken awl, broken awl internally mounted has the axis of rotation, axis of rotation internally mounted has the cylinder, the fixed column is installed to the cylinder bottom, the gear box is installed in the fixed column outside, no. three dwang is installed to the fixed column internally mounted, no. three dwang installs the storage case in the outside, the blanking pipe is installed to the storage case bottom;
the blanking box is installed to blanking pipe bottom, the connecting seat is installed to blanking box one side, the discharging pipe is installed to blanking box opposite side lower extreme, blanking box internally mounted has symmetrical carousel, and the symmetry annular distribution has a plurality of stopper between the carousel the stopper center department that annular distributes installs the connection disc, the blanking passageway has been seted up to the connection disc inside, the carousel opposite side is installed and is rotated the disc, rotate disc opposite side center department and install No. four dwang.
Preferably, the conical gear is installed to the axis of rotation lower extreme, the snap ring is installed at conical gear both ends, conical gear meshing has two conical gears, two conical gear internally mounted have a dwang, a dwang middle-end installs the symmetrical bearing, the symmetry a passageway is installed in the bearing outside, a motor is installed to a dwang other end.
Preferably, a gear is installed on the first rotating rod, a gear is meshed with a second gear, a second rotating rod is installed inside the second gear, a second symmetrical bearing is installed at the middle end of the second rotating rod, a second channel is installed at the outer side of the second symmetrical bearing, a third conical gear is installed at the other end of the second rotating rod, and a fourth conical gear is meshed with the third conical gear.
Preferably, no. three dwang is installed to No. four conical gear inside center departments, install the third bearing of symmetry on the dwang, the symmetry No. three bearing outside is installed the fixed column, the gear box is installed in the fixed column outside, the annular distribution in gear box outside has a plurality of dead lever, no. three dwang lower extreme ring annular distribution has a plurality of connecting rod, the puddler is installed to the connecting rod other end, annular distribution the storage case is installed in the puddler outside, two sets of chassis are installed in the storage case outside, chassis bottom annular distribution has a plurality of bracing piece.
Preferably, the first channel penetrates through the outer box and the gear box, the second channel penetrates through the fixing column, the fixing column penetrates through and is clamped at the bottom end of the gear box, and the bottom end of the cylinder is fixedly connected with the top end of the fixing column.
Preferably, the cylinder dislocation is installed inside the axis of rotation, broken awl bottom and gear box top contactless, storage case top and outer bottom of the case end fixed connection, puddler and storage case inner wall contact, dead lever one end fixed mounting is inboard at the outer case, the fixing base is installed in the motor outside, fixing base fixed mounting is on the chassis top on top layer.
Preferably, the bearing frame is installed to the dwang other end No. four, the sheave is installed to dwang middle-end No. four, slip card is equipped with the gag lever post on the sheave, the rocking arm is installed to the gag lever post bottom, no. two motors are installed to rocking arm other end one side, unfilled corner disc is installed to rocking arm other end opposite side.
Preferably, one side of the connecting disc is fixedly arranged on one side of the inside of the blanking box, the limiting blocks and the symmetrical turnplates which are distributed in an annular mode form a plurality of groups of symmetrical storage tanks, and two ends of the blanking channel can be in the same straight line with the symmetrical storage tanks and the discharging pipes.
Preferably, the output end of the second motor is connected with a unfilled corner disc, the bottom end of the unfilled corner disc is provided with a rotating arm, and the unfilled corner disc can be clamped with the grooved wheel.
According to the invention, the food is crushed by the crushing cone, and the rotating disc is used for rotating to drive the storage groove formed by the limiting block and the rotating disc to rotate, so that the food in the storage groove falls from the blanking channel, and quantitative blanking is realized.
Drawings
FIG. 1 is a schematic diagram of the front of the structure of the present invention;
FIG. 2 is a schematic cross-sectional view of the present invention;
FIG. 3 is a schematic cross-sectional view of a blanking box according to the present invention;
FIG. 4 is an enlarged schematic view of the structure A in FIG. 2 according to the present invention;
FIG. 5 is an enlarged schematic view of the structure of FIG. 2B according to the present invention;
FIG. 6 is an enlarged schematic view of the structure of FIG. 2 at C in accordance with the present invention;
FIG. 7 is an enlarged schematic view of the structure of FIG. 2D according to the present invention;
in the figure: 1. an outer case; 101. a feed inlet; 102. crushing cone; 103. a rotating shaft; 104. a cylinder; 105. a first bevel gear; 106. a clasp; 107. a secondary bevel gear; 108. a first rotating rod; 109. a first bearing; 110. a first channel; 111. a motor I; 112. a first gear; 113. a second gear; 114. a second rotating rod; 115. a second bearing; 116. a second channel; 117. a third bevel gear; 118. a fourth bevel gear; 119. a third rotating rod; 120. a bearing III; 121. fixing the column; 122. a gear box; 123. a fixed rod; 124. a connecting rod; 125. a stirring rod; 126. a storage bin; 127. a chassis; 128. a support rod; 129. a blanking pipe; 2. a blanking box; 201. a connecting seat; 202. a discharge pipe; 203. a limiting block; 204. a turntable; 205. a connecting disc; 206. a blanking channel; 207. rotating the disc; 208. a fourth rotating rod; 209. a bearing seat; 210. a sheave; 211. a limit rod; 212. a rotating arm; 213. a motor II; 214. a corner-missing disc.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-7, the present invention provides a technical solution: the utility model provides a quick sampling device of food detection breakage degree, including outer case 1, feed inlet 101 is installed on outer case 1 top, and outer case 1 internally mounted has broken awl 102, and broken awl 102 internally mounted has axis of rotation 103, and axis of rotation 103 internally mounted has cylinder 104, and fixed column 121 is installed to cylinder 104 bottom, and gear box 122 is installed in the fixed column 121 outside, and fixed column 121 internally mounted has No. three dwang 119, and No. three dwang 119 outside is installed storage case 126, and blanking pipe 129 is installed to storage case 126 bottom;
the blanking box 2 is installed to blanking pipe 129 bottom, connecting seat 201 is installed to blanking box 2 one side, discharging pipe 202 is installed to blanking box 2 opposite side lower extreme, blanking box 2 internally mounted has symmetrical carousel 204, annular distribution has a plurality of stopper 203 between the carousel 204 of symmetry, and the connection disc 205 is installed to annular distribution's stopper 203 center department, has offered blanking passageway 206 inside the connection disc 205, and rotation disc 207 is installed to carousel 204 opposite side, and No. four dwang 208 is installed to rotation disc 207 opposite side center department.
The lower extreme of axis of rotation 103 installs No. one conical gear 105, and No. one conical gear 105 both ends are installed snap ring 106, and No. one conical gear 105 meshing has No. two conical gear 107, and No. one conical gear 107 internally mounted has No. one dwang 108, and No. one bearing 109 of symmetry is installed to No. one dwang 108 middle-end, and No. one passageway 110 is installed in the outside of No. one bearing 109 of symmetry, and No. one motor 111 is installed to No. one dwang 108 other end, utilizes No. one motor 111 to drive axis of rotation 103 and rotates on cylinder 104.
The first rotating rod 108 is provided with a first gear 112, the first gear 112 is meshed with a second gear 113, a second rotating rod 114 is internally installed in the second gear 113, a symmetrical second bearing 115 is installed at the middle end of the second rotating rod 114, a second channel 116 is installed at the outer side of the symmetrical second bearing 115, a third conical gear 117 is installed at the other end of the second rotating rod 114, a fourth conical gear 118 is meshed with the third conical gear 117, a third rotating rod 119 is installed at the center of the inner portion of the fourth conical gear 118, a symmetrical third bearing 120 is installed on the third rotating rod 119, a fixed column 121 is installed at the outer side of the symmetrical third bearing 120, a gear box 122 is installed at the outer side of the fixed column 121, a plurality of fixed rods 123 are annularly distributed at the outer side of the gear box 122, a plurality of connecting rods 124 are annularly distributed at the lower end of the third rotating rod 119, stirring rods 125 are installed at the other ends of the connecting rods 124, a storage bin 126 is installed at the outer side of the annularly distributed stirring rods 125, two groups of chassis 127 are installed at the outer side of the storage bin 126, a plurality of supporting rods 128 are annularly distributed at the bottom ends of the chassis 127, and the stirring rods 125 are rotatably driven to rotate in the storage bin 126 by the rotation of the first rotating rod 108.
The first channel 110 penetrates through the outer box 1 and the gear box 122, the second channel 116 penetrates through the fixing column 121, the fixing column 121 penetrates through and is clamped at the bottom end of the gear box 122, the bottom end of the cylinder 104 is fixedly connected with the top end of the fixing column 121, and the first channel 110 and the second channel 116 are utilized to limit and protect the first rotating rod 108 and the second rotating rod 114.
The cylinder 104 dislocation is installed inside axis of rotation 103, makes axis of rotation 103 can carry out oval rotation around cylinder 104, broken awl 102 bottom and gear box 122 top contactless, storage tank 126 top and outer 1 bottom fixed connection, puddler 125 and storage tank 126 inner wall contact, dead lever 123 one end fixed mounting is inboard at outer 1, the fixing base is installed in the motor 111 outside, fixing base fixed mounting is on the chassis 127 top on top layer, utilize puddler 125 to stir storage tank 126 inside, prevent that food from adhering to at storage tank 126 inner wall.
Bearing pedestal 209 is installed to the fourth dwang 208 other end, and sheave 210 is installed to fourth dwang 208 middle-end, and the slip card is equipped with gag lever post 211 on the sheave 210, and rocking arm 212 is installed to gag lever post 211 bottom, and No. two motor 213 is installed to rocking arm 212 other end one side, and unfilled corner disc 214 is installed to rocking arm 212 other end opposite side, utilizes gag lever post 211 to drive sheave 210 and do intermittent type rotation.
The connecting disc 205 is fixedly arranged on one side in the blanking box 2, the annular distributed limiting blocks 203 and the symmetrical turnplates 204 form a plurality of groups of symmetrical storage tanks, and two ends of the blanking channel 206 can be in the same straight line with the symmetrical storage tanks and the discharging pipes 202, so that food can fall out through the blanking channel 206, the storage tanks and the discharging pipes 202.
The output end of the second motor 213 is connected with a unfilled corner disc 214, the bottom end of the unfilled corner disc 214 is provided with a rotating arm 212, the unfilled corner disc 214 can be clamped with the grooved pulley 210, and the unfilled corner disc 214 is clamped on the grooved pulley 210 to limit the rotation of the grooved pulley 210.
When the invention is used, the motor 111 is started, the motor 111 drives the rotating rod 108 to rotate, the rotating rod 108 rotates to drive the conical gear 107 and the conical gear 112 to rotate, the conical gear 107 rotates to drive the conical gear 105 to rotate, the conical gear 105 rotates to drive the rotating shaft 103 to rotate on the cylinder 104, the rotating shaft 103 rotates to drive the crushing cone 102 to rotate, the crushing cone 102 is utilized to do elliptical motion in the outer box 1, food to be detected is put into the outer box from the feeding hole 101, and the crushing cone 102 is utilized to crush the food.
The crushed food enters the storage box 126 from the passage between the outer box 1 and the gear box 122, the gear wheel 112 is utilized to rotate to drive the gear wheel 113 to rotate, the gear wheel 113 rotates to drive the rotating rod 114 to rotate, the rotating rod 114 rotates to drive the conical gear 117 to rotate, the conical gear 117 rotates to drive the conical gear 118 to rotate, the conical gear 118 rotates to drive the rotating rod 119 to rotate, the rotating rod 119 rotates to drive the stirring rod 125 to rotate in the storage box 126, the phenomenon that food is accumulated in the storage box 126 and is not blanked is prevented, and the inner wall of the storage box 126 can be crushed and cleaned again.
The broken food enters the blanking box 2 from the blanking pipe 129, then falls into a plurality of groups of symmetrical storage tanks formed by annularly-distributed limiting blocks 203 and symmetrical turntables 204, a motor No. two 213 is started, the motor No. two 213 drives a unfilled corner disc 214 and a rotating arm 212 to rotate, the rotating arm 212 rotates to drive a limiting rod 211 to do circular motion and is clamped on a grooved pulley 210, the grooved pulley 210 is intermittently rotated, the unfilled corner disc 214 is clamped on the grooved pulley 210 to limit the rotation of the grooved pulley 210, the grooved pulley 210 rotates to drive a rotating rod No. four 208 to rotate, the rotating rod No. four 208 rotates to drive a rotating disc 207 to rotate, the rotating disc 207 rotates to drive the storage tanks to do circular motion, the storage tanks move to the top ends of blanking channels 206, and at the moment, the food in the storage tanks falls into the blanking channels 206 and the symmetrical storage tanks through the discharging pipes 202, so that the quantitative material taking of the food is realized.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. The utility model provides a quick sampling device of degree of breakage is detected to food, includes outer case (1), its characterized in that: the novel crushing device comprises an outer box (1), wherein a feeding hole (101) is formed in the top end of the outer box (1), a crushing cone (102) is internally installed in the outer box (1), a rotating shaft (103) is internally installed in the crushing cone (102), a cylinder (104) is internally installed in the rotating shaft (103), a fixed column (121) is installed at the bottom end of the cylinder (104), a gear box (122) is installed on the outer side of the fixed column (121), a third rotating rod (119) is internally installed in the fixed column (121), a storage box (126) is installed on the outer side of the third rotating rod (119), and a blanking pipe (129) is installed at the bottom end of the storage box (126);
the blanking box (2) is installed to blanking pipe (129) bottom, connecting seat (201) is installed to blanking box (2) one side, discharging pipe (202) is installed to blanking box (2) opposite side lower extreme, blanking box (2) internally mounted has carousel (204) of symmetry, and the symmetry annular distribution has a plurality of stopper (203) between carousel (204) stopper (203) center department that annular distributes installs connection disc (205), connection disc (205) inside has been seted up blanking passageway (206), carousel (204) opposite side installs rotation disc (207), no. four dwang (208) are installed to rotation disc (207) opposite side center department.
2. The rapid sampling device for detecting the degree of breakage of a food product according to claim 1, wherein: the utility model discloses a motor, including axis of rotation (103), bearing (109) of symmetry is installed to axis of rotation (103), conical gear (105) both ends are installed snap ring (106), conical gear (105) meshing has two conical gears (107), two conical gears (107) internally mounted have a dwang (108), a bearing (109) of symmetry is installed to a dwang (108) middle-end, the symmetry a passageway (110) is installed in bearing (109) outside, a motor (111) is installed to a dwang (108) other end.
3. The rapid sampling device for detecting the degree of breakage of a food product according to claim 2, wherein: install gear (112) on dwang (108), gear (112) meshing has No. two gears (113), no. two internally mounted has No. two dwang (114) No. two gears (113), no. two bearings (115) of symmetry are installed to No. two dwang (114) middle-ends, and the symmetry No. two passageway (116) are installed in No. two bearing (115) outsides, no. three conical gear (117) are installed to No. two dwang (114) other end, no. three conical gear (117) meshing has No. four conical gear (118).
4. A rapid sampling device for detecting the degree of breakage of a food product according to claim 3, wherein: a third rotating rod (119) is arranged at the inner center of the fourth conical gear (118), a symmetrical third bearing (120) is arranged on the third rotating rod (119), a fixed column (121) is arranged at the outer side of the symmetrical third bearing (120), a gear box (122) is arranged at the outer side of the fixed column (121), a plurality of fixed rods (123) are annularly distributed at the outer side of the gear box (122), the stirring rod is characterized in that a plurality of connecting rods (124) are annularly distributed at the lower end of the third rotating rod (119), stirring rods (125) are installed at the other ends of the connecting rods (124), a storage box (126) is installed at the outer side of each stirring rod (125) in an annular distribution mode, two groups of chassis (127) are installed at the outer side of each storage box (126), and a plurality of supporting rods (128) are annularly distributed at the bottom ends of the chassis (127).
5. A rapid sampling device for detecting the degree of breakage of a food product according to claim 3, wherein: the first channel (110) penetrates through the outer box (1) and the gear box (122), the second channel (116) penetrates through the fixing column (121), the fixing column (121) penetrates through and is clamped at the bottom end of the gear box (122), and the bottom end of the cylinder (104) is fixedly connected with the top end of the fixing column (121).
6. The rapid sampling device for detecting the degree of breakage of a food product according to claim 4, wherein: the cylinder (104) is arranged in the rotating shaft (103) in a staggered way, the bottom end of the crushing cone (102) is not contacted with the top end of the gear box (122), the top end of the storage box (126) is fixedly connected with the bottom end of the outer box (1), the stirring rod (125) is in contact with the inner wall of the storage box (126), one end of the fixing rod (123) is fixedly arranged on the inner side of the outer box (1), the outer side of the first motor (111) is provided with a fixing seat, and the fixing seat is fixedly arranged on the top end of the chassis (127) on the top layer.
7. The rapid sampling device for detecting the degree of breakage of a food product according to claim 1, wherein: bearing frame (209) are installed to No. four dwang (208) other end, sheave (210) are installed to No. four dwang (208) middle-end, slip card is equipped with gag lever post (211) on sheave (210), rocking arm (212) are installed to gag lever post (211) bottom, no. two motors (213) are installed to rocking arm (212) other end one side, unfilled corner disc (214) are installed to rocking arm (212) other end opposite side.
8. The rapid sampling device for detecting the degree of breakage of a food product according to claim 1, wherein: the blanking device is characterized in that one side of the connecting disc (205) is fixedly arranged on one side of the inside of the blanking box (2), a plurality of groups of symmetrical storage tanks are formed by the limiting blocks (203) distributed annularly and the symmetrical turnplates (204), and two ends of the blanking channel (206) can be in the same straight line with the symmetrical storage tanks and the discharging pipes (202).
9. The rapid sampling device for detecting the degree of breakage of a food product according to claim 7, wherein: the output end of the second motor (213) is connected with a unfilled corner disc (214), the bottom end of the unfilled corner disc (214) is provided with a rotating arm (212), and the unfilled corner disc (214) can be clamped with the grooved wheel (210).
CN202110795002.4A 2021-07-14 2021-07-14 Quick sampling device of food detection breakage degree Active CN113484083B (en)

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CN116679061B (en) * 2023-08-03 2023-09-29 中国水产科学研究院黄海水产研究所 Marine Pythium detection kit

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EP0506419B1 (en) * 1991-03-29 1996-06-05 Kabushiki Kaisha Matsui Seisakusho Rotary sampling apparatus for powdered or granular materials
CN2110518U (en) * 1991-08-23 1992-07-22 淄博市博山输变电工程公司 Micron disintegrator
CN110146359A (en) * 2019-06-03 2019-08-20 嘉兴沐栗服饰有限公司 A kind of the food inspection method of inspection and system controlling terminal of intelligent microwave oven
CN212309699U (en) * 2020-03-02 2021-01-08 泉州市隆康塑料制品有限公司 Breaker for plastic processing
CN213408447U (en) * 2020-09-29 2021-06-11 徐州中捷环保科技有限公司 High-performance anticorrosive material mixing equipment
CN213121857U (en) * 2020-10-26 2021-05-04 吴应俊 Agricultural product pesticide residue detection device
CN112915857A (en) * 2021-01-29 2021-06-08 周龙法 Construction blendor

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