CN107044936A - A kind of fresh meat Quality Detection testing machine with bionical pressure head - Google Patents
A kind of fresh meat Quality Detection testing machine with bionical pressure head Download PDFInfo
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- CN107044936A CN107044936A CN201710186712.0A CN201710186712A CN107044936A CN 107044936 A CN107044936 A CN 107044936A CN 201710186712 A CN201710186712 A CN 201710186712A CN 107044936 A CN107044936 A CN 107044936A
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- 235000013372 meat Nutrition 0.000 title claims abstract description 40
- 238000012360 testing method Methods 0.000 title claims abstract description 30
- 238000001514 detection method Methods 0.000 title claims abstract description 20
- 238000002474 experimental method Methods 0.000 claims abstract description 14
- 210000001595 mastoid Anatomy 0.000 claims abstract description 14
- 238000003825 pressing Methods 0.000 claims abstract description 14
- 238000005070 sampling Methods 0.000 claims abstract description 12
- 230000005540 biological transmission Effects 0.000 claims description 13
- 235000012489 doughnuts Nutrition 0.000 claims description 6
- 239000000203 mixture Substances 0.000 claims description 2
- 239000007787 solid Substances 0.000 claims 1
- 238000004140 cleaning Methods 0.000 abstract description 5
- 238000000034 method Methods 0.000 abstract description 3
- 230000015572 biosynthetic process Effects 0.000 abstract description 2
- 238000013480 data collection Methods 0.000 abstract description 2
- 240000002853 Nelumbo nucifera Species 0.000 description 6
- 235000006508 Nelumbo nucifera Nutrition 0.000 description 6
- 235000006510 Nelumbo pentapetala Nutrition 0.000 description 6
- 238000013461 design Methods 0.000 description 6
- 230000000694 effects Effects 0.000 description 4
- 239000000463 material Substances 0.000 description 2
- 238000000429 assembly Methods 0.000 description 1
- 230000000712 assembly Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000010304 firing Methods 0.000 description 1
- 239000003292 glue Substances 0.000 description 1
- 235000013622 meat product Nutrition 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
Classifications
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N3/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N3/08—Investigating strength properties of solid materials by application of mechanical stress by applying steady tensile or compressive forces
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/0001—Type of application of the stress
- G01N2203/0003—Steady
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/0014—Type of force applied
- G01N2203/0016—Tensile or compressive
- G01N2203/0019—Compressive
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/0058—Kind of property studied
- G01N2203/0069—Fatigue, creep, strain-stress relations or elastic constants
- G01N2203/0075—Strain-stress relations or elastic constants
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/02—Details not specific for a particular testing method
- G01N2203/06—Indicating or recording means; Sensing means
- G01N2203/067—Parameter measured for estimating the property
- G01N2203/0682—Spatial dimension, e.g. length, area, angle
Abstract
A kind of fresh meat Quality Detection testing machine with bionical pressure head belongs to meat detection field, and the present invention is made up of leg group, base, press head group, limit assembly, vertical beam, experiment pressing plate, sampling spoon and computer;The pressure head bar group for controlling press head group by computer is pressed into meat, sensor real-time data collection is simultaneously transferred to computer, after pressure head bar group is pressed into certain distance, pressure head bar group return-to-home position, computer is pressed into the Elasticity characteristic curve of the gathered data formation meat of stroke and backstroke according to sensor;The hemispherical mastoid process of pressure head bar group top distribution makes pressure head bar group have good super-hydrophobicity and self-cleaning function, in pressure head bar group return course, pressure head bar group can be made not adhere to meat, bionical many finger pressure head rod groups make pressure head bar evenly exactly transmit meat elastic force, ensure accurate, reliable detection of the testing machine to Meat, and detection process is simple, quick.
Description
Technical field
The invention belongs to meat detection field, and in particular to a kind of fresh meat Quality Detection testing machine with bionical pressure head.
Background technology
Fresh meat quality directly affects the healthy of eater, generally carries out fresh meat product using organoleptic detection method at present
Quality detection, but there is subjectivity and one-sidedness, the problems such as being as a result difficult to quantify.The quality of fresh meat quality directly determines meat
Mechanical characteristic, the Elasticity characteristic for testing meat by testing machine evaluates the freshness of meat, with test speed it is fast, without material
Material consumption, pollution-free, to the undamaged advantage of meat, but the problem of there is in test adhesion meat in traditional experiment compressing head, directly
The accuracy of influence testing result is connect, and at present without the testing machine dedicated for fresh meat Elasticity characteristic.
The surface distributed of lotus leaf a large amount of micro-or nano size mastoid process structures and makes it have good super-hydrophobicity and automatically cleaning effect
Should, this special nature of lotus leaf is referred to as " lotus leaf effect "., should by lotus leaf surface appearance structure according to the characteristic of " lotus leaf effect "
Use in pressure head of testing machine design, solve the problem of pressure head has in test adhesion meat;Meanwhile, many fingers of the mankind are detected
The behavior of fresh meat quality is dissolved into pressure head of testing machine design, and fresh meat Quality Detection of the design with bionical pressure head is tried based on more than
Test machine.
The content of the invention
It is an object of the invention to provide a kind of testing machine for fresh meat Elasticity characteristic and solve pressure head experiment
It is middle to there is the problem of adhering to meat.The testing machine according to the surface distributed of lotus leaf a large amount of micro-or nano size mastoid process structures have it is good
Good super-hydrophobicity and self_cleaning effect design bionical pressure head, make it have good super-hydrophobicity and automatical cleaning ability, imitate simultaneously
Raw many finger pressure heads design the elastic force for making pressure head evenly transmit meat exactly, it is ensured that the reliability of testing machine result.
The present invention is by leg group A, base B, press head group C, limit assembly D, vertical beam E, experiment pressing plate 1, sampling spoon 2 and meter
Calculation machine 3 is constituted, wherein:Leg group A is adjustable 4 legs, and 4 legs are fixed in base B bottom surface corner;Base B is
Cuboid, base B rear portions are provided with groove 24.
Limit assembly D connecting rod I 17 passes through the rear end of crossbeam 25 of the vertical slot I 4 of foreboard 5 and press head group C in vertical beam E to consolidate
Connect, and the both sides of connecting rod I 17 and the two sides of vertical slot I 4 are slidably connected.
Limit assembly D spacing motion block 15 is located in vertical beam E in the vertical slot II 10 of left plate 9, and spacing motion block 15 and vertical slot
II 10 two sides are slidably connected, during the bearing block 19 of the upper end of leading screw 23 is fixed in vertical beam E below top plate 7 in limit assembly D
The heart, limit assembly D fixed block I 12 is fixed in the upper end of the vertical slot II 10 of left plate 9 in vertical beam E, limit assembly D fixed block II
18 are fixed in the lower end of the vertical slot II 10 of left plate 9 in vertical beam E;Limit assembly D motor 11 is fixed in base B groove 24;
Vertical beam E bottom is fixed in the base B top of groove 24;Experiment pressing plate 1 is fixed in above base B, and positioned at foreboard in vertical beam E
Before 5, press head group C center and the center of experiment pressing plate 1 are on a vertical line.
Motor 11 is controlled by computer 3.
Described sampling spoon 2 is annulus cylindricality, and its outside diameter is 80-160mm, is highly 80-100mm, wall thickness is
2-5mm, bottom chamfer is 10 ° -20 °.
Described press head group C is by crossbeam 25, sensor 26, connector I 27, connector II 28, bolt and nut group F and pressure head
Bar group G is constituted, and crossbeam 25, sensor 26, connector I 27, connector II 28 and pressure head bar group G are arranged from top to bottom;Bolt
Nut group F includes 4 pairs of bolt and nuts;Pressure head bar group G includes 4 cylinder pressure head bars, cylinder radius R2=15-30mm, height
H2=50-70mm is spent, pressure head bar bottom is provided with the hemispherical mastoid process 30 arranged by donut, the radius R5 of hemispherical mastoid process 30
Arc length is L1=between=20um, the spacing L2=50-60um of two neighboring donut, adjacent two mastoid process of same annulus
50-60um;Sensor 26 is cylinder;Connector I 27 is uniform 4 through holes on cylinder, its concentric circles;Connector II 28 is
Uniform 4 through holes 29 on cylinder, its concentric circles, 4 through holes corresponding arrangement up and down with connector I 27;The upper end of sensor 26
Affixed with the bottom surface of crossbeam 25, the lower end of sensor 26 is affixed above with connector I 27, and connector I 27 is through bolt and nut group F with being connected
First II 28 is affixed, and pressure head bar group G four pressure head bar upper ends are fixed in below connector II 28, and are misplaced with four through holes 29
90 ° of arrangements.
Described limit assembly D is by motor 11, fixed block I 12, lower position block 13, guide rod 14, spacing motion block 15, upper limit
Block 16, connecting rod I 17, fixed block II 18, bearing block 19, bearing 20, transmission nut 21, connecting rod II 22 and leading screw 23 are constituted,
Wherein:The bottom of leading screw 23 and the output shaft of motor 11 are affixed, and the upper end of leading screw 23 is flexibly connected through bearing 20 with bearing block 19;Transmission
Nut 21 is threadedly coupled with the middle part of leading screw 23;Affixed connecting rod I 17 before transmission nut 21;The spacing right-hand member of motion block 15 is through connecting rod
II 22 is affixed with the left side of transmission nut 21;The spacing left end of motion block 15 is flexibly connected with the middle part of guide rod 14;On the top of guide rod 14 is affixed
Limited block 16, the affixed lower position block 13 in the bottom of guide rod 14;The affixed fixed block II 18 in the upper end of guide rod 14, the affixed fixation in the lower end of guide rod 14
Block I 12.
Described vertical beam E is hollow cuboid, is made up of foreboard 5, back plate 8, left plate 9, right panel 6 and top plate 7, wherein foreboard
5 are provided with vertical slot I 4, and left plate 9 is provided with vertical slot II 10.
Working process and principle of the invention are as follows:Meat to be measured is placed in examination with the sampling spoon sampling of same specification
Pressing plate is tested, firing test machine controls crossbeam band dynamic head bar group to be pressed into meat, sensor real-time data collection is simultaneously by computer
Computer is transferred to, after pressure head bar group is pressed into certain distance, crossbeam band dynamic head bar group return-to-home position, computer is according to biography
Sensor is pressed into the Elasticity characteristic curve of the gathered data formation meat of stroke and backstroke.Upper limit position block, spacing motion block
The range of pressure head is defined with lower position block, is played a protective role.The hemispherical mastoid process of pressure head bar group top distribution makes pressure
Head rod group has good super-hydrophobicity and automatical cleaning ability, in pressure head bar group return course, pressure head bar group can be made not glue
Attached meat, bionical many finger pressure head rod groups make pressure head bar group evenly exactly transmit meat elastic force, it is ensured that testing machine result
Reliability.
The present invention can precisely form the Elasticity characteristic curve of meat in the operating condition, and special pressure head design can be with
Solve the problem of pressure head has in test adhesion meat, can be achieved the accurate detection of Meat, and detection process it is simple,
Fast.
Brief description of the drawings
Fig. 1 is the structural representation of the fresh meat Quality Detection testing machine with bionical pressure head
Fig. 2 is the front view of the fresh meat Quality Detection testing machine with bionical pressure head
Fig. 3 is the left view of the fresh meat Quality Detection testing machine with bionical pressure head
Fig. 4 is the structural representation of vertical beam
Fig. 5 is the structural representation of limit assembly
Fig. 6 is the structural representation that testing machine removes vertical beam
Fig. 7 is a-a schematic cross-sections in Fig. 2
Fig. 8 is b-b schematic cross-sections in Fig. 3
Fig. 9 is the front view of press head group
Figure 10 is the sectional view of pressure head bar group
Figure 11 is the upward view of pressure head bar group
Figure 12 is the enlarged drawing of a meanings in Figure 10
Figure 13 is the enlarged drawing of b meanings in Figure 11
Figure 14 is the front view of sampling spoon
Figure 15 is the top view of sampling spoon
Wherein:A. leg group B. bases C. press head groups D. limit assemblies E. vertical beams F. bolt and nut group G. pressure head bars
Group 1. tests the left plate of 8. back plate of pressing plate 2. sampling spoon, 3. computer, 4. vertical slot, I 5. foreboard, 6. right panel, 7. top plate 9.
10. the spacing upper limit position block 17. of motion block 16. of I 13. lower position block of vertical slot II 11. motor, 12. fixed block, 14. guide rod 15.
The groove of II 23. leading screw of connecting rod I 18. fixed block, II 19. bearing block, 20. bearing, 21. transmission nut, 22. connecting rod 24.
25. the mastoid process of II 29. through hole of crossbeam 26. sensor, 27. connector, I 28. connector 30.
Embodiment
Make further narration in detail to the present invention below in conjunction with the accompanying drawings:
As Figure 1-3, the present invention by leg group A, base B, press head group C, limit assembly D, vertical beam E, experiment pressing plate 1,
Sampling spoon 2 and computer 3 are constituted;Described leg group A is adjustable 4 legs, and 4 legs are fixed in base B bottom
Face corner, two neighboring length direction spacing is 160-360mm, and width spacing is 260-560mm.
Described experiment pressing plate 1 is long 100-200mm, width 80-160mm, high 20-30mm cuboid, and in width side
The leading edge of experiment pressing plate 1 is fixed at the top of base B apart from base B leading edge 40-80mm upwards, and after experiment pressing plate 1
The leading edge 20-40mm of foreboard 5 in Edge Distance limit assembly D, press head group C center and the center of experiment pressing plate 1 are at one
On vertical line.
As shown in figure 4, described limit assembly D be long 120-240mm, width 120-240mm, high 500-800mm it is hollow
Cuboid, limit assembly D right hand edge is apart from base B right hand edge 40-80mm in the longitudinal direction, and limit assembly D is by foreboard
5th, back plate 8, left plate 9, right panel 6 and top plate 7 are constituted, and wherein foreboard 5 is provided with vertical slot I 4, and left plate 9 is provided with vertical slot II 10;It is described
Vertical slot I 4 be located at limit assembly D length directions center, groove width 20-40mm, the high 400-600mm of groove, groove apex distance is under top plate 7
End face 50-100mm;Described vertical slot II 10 is located at the center of limit assembly D widths, groove width 10-20mm, the high 400- of groove
600mm, groove apex distance is from the lower surface 50-100mm of top plate 7.
As seen in figs. 5-6, described base B be long 200-400mm, width 300-600mm, high 150-300mm cuboid,
Rear portion is the square groove 24 that the length of side is 100-200mm.Described limit assembly D connecting rod I 17 passes through foreboard 5 in vertical beam E
Vertical slot I 4 and press head group C the rear end of crossbeam 25 it is affixed, and the both sides of connecting rod I 17 and the two sides of vertical slot I 4 are slidably connected;Limit
Hyte part D spacing motion block 15 is located in vertical beam E in the vertical slot II 10 of left plate 9, and spacing motion block 15 and the two sides of vertical slot II 10
It is slidably connected;The bearing block 19 of the upper end of leading screw 23 is fixed in vertical beam E center below top plate 7 in limit assembly D;Limit assembly
D fixed block I 12 is fixed at the upper end 5-10mm of the vertical slot II 10 of left plate 9 in vertical beam E;Limit assembly D fixed block II 18
At the lower end 5-10mm for being fixed in the vertical slot II 10 of left plate 9 in vertical beam E;Limit assembly D motor 11 is fixed in base B groove
In 24;Described motor 11 is fixed in base B groove 24, and the rotating speed of motor 11 and steering are controlled by computer 3.Described
Limit assembly D is by motor 11, fixed block I 12, lower position block 13, guide rod 14, spacing motion block 15, upper limit position block 16, connecting rod I
17th, fixed block II 18, bearing block 19, bearing 20, transmission nut 21, connecting rod II 22 and leading screw 23 are constituted, the bottom of leading screw 23 with
The output shaft of motor 11 is affixed, and the upper end of leading screw 23 is flexibly connected through bearing 20 with bearing block 19;In transmission nut 21 and leading screw 23
Portion is threadedly coupled;Affixed connecting rod I 17 before transmission nut 21;The spacing right-hand member of motion block 15 is through connecting rod II 22 and transmission nut 21
The left side is affixed;The spacing left end of motion block 15 is flexibly connected with the middle part of guide rod 14;Under the affixed upper limit position block 16 in the top of guide rod 14, guide rod 14
The affixed lower position block 13 in portion;The affixed fixed block II 18 in the upper end of guide rod 14, the affixed fixed block I 12 in the lower end of guide rod 14.
As Figure 7-9, described press head group C is by crossbeam 25, sensor 26, connector I 27, connector II 28, bolt
Nut group F and pressure head bar group G compositions, and crossbeam 25, sensor 26, connector I 27, connector II 28 and pressure head bar group G are from upper
And lower arrangement;Described crossbeam 25 is long 100-200mm, width 100-200mm, high 40-60mm cuboid, and in width
The back edge of entablature 25 is close to limit assembly D leading edge;Described sensor 26 is radius 20-40mm height 30-50mm
Cylinder, the upper end of sensor 26 and the bottom surface of crossbeam 25 be affixed, the lower end of sensor 26 and connector I 27 affixed, connector I above
27 is affixed through 4 couples of bolt and nut group F and connector II 28, and pressure head bar group G four pressure head bar upper ends are fixed in connector II 28
Below;Described connector I 27 is radius 40-80mm, height 10-20mm cylinder, in its radius 30-60mm concentric circles
Upper uniform 4 radius 5-10mm through hole;Described connector II 28 is radius R1=40-80mm, height h1=10-20mm
Cylinder, uniform the 4 radius R3=5-10mm through hole 29 on its radius R4=30-60mm concentric circles.Spacing group
Part D bottom is fixed in the base B top of groove 24.
As shown in figs. 10-11, described pressure head bar group G includes 4 cylinder pressure head bars, cylinder radius R2=15-
30mm, height h2=50-70mm, pressure head bar group G 4 pressure head bar upper ends are fixed in the same of II 28 4 through holes 29 of connector
On concentric circles, and arranged with four 90 ° of dislocation of through holes 29;
As illustrated by figs. 12-13, pressure head bar bottom is provided with the hemispherical mastoid process 30 arranged by donut, hemispherical mastoid process 30
Radius R5=20um, the spacing L2=50-60um of two neighboring donut, circular arc is long between adjacent two mastoid process of same annulus
Spend for L1=50-60um;
As shown in figs. 14-15, described sampling spoon 2 is annulus cylindricality, and its outside diameter is 80-160mm, is highly
80-100mm, wall thickness is 2-5mm, and bottom chamfer is 10 ° -20 °.
Claims (4)
1. a kind of fresh meat Quality Detection testing machine with bionical pressure head, by leg group (A), base (B), press head group (C), spacing
Component (D), vertical beam (E), experiment pressing plate (1), sampling spoon (2) and computer (3) composition, it is characterised in that:Described leg
Group (A) is adjustable 4 legs, and 4 legs are fixed in the bottom surface corner of base (B);Described base (B) is cuboid,
Base (B) rear portion is provided with groove (24);The connecting rod I (17) of described limit assembly (D) passes through foreboard (5) in vertical beam (E)
Vertical slot I (4) and crossbeam (25) rear end of press head group (C) are affixed, and connecting rod I (17) both sides and the two sides of vertical slot I (4) are slided
Connection;The spacing motion block (15) of limit assembly (D) is located in vertical beam (E) in the vertical slot II (10) of left plate (9), and spacing motion block
(15) it is slidably connected with vertical slot II (10) two sides;The bearing block (19) of leading screw (23) upper end is fixed in perpendicular in limit assembly (D)
Center below top plate (7) in beam (E);The fixed block I (12) of limit assembly (D) is fixed in the vertical slot of left plate (9) in vertical beam (E)
The upper end of II (10);The fixed block II (18) of limit assembly (D) is fixed in vertical beam (E) under the vertical slot II (10) of left plate (9)
End;The motor (11) of limit assembly (D) is fixed in base (B) groove (24);
The bottom of vertical beam (E) is fixed in above base (B) groove (24);Experiment pressing plate (1) is fixed in base (B) above, and
Before foreboard (5) in vertical beam (E), the center of press head group (C) and the center of experiment pressing plate (1) are on a vertical line;
Motor (11) is controlled by computer (3);Described sampling spoon (2) is annulus cylindricality, and its outside diameter is 80-160mm, height
For 80-100mm, wall thickness is 2-5mm, and bottom chamfer is 10 ° -20 °.
2. the fresh meat Quality Detection testing machine with bionical press head group as described in claim 1, it is characterised in that:Described pressure
Head group (C) is by crossbeam (25), sensor (26), connector I (27), connector II (28), bolt and nut group (F) and pressure head bar group
(G) constitute, and crossbeam (25), sensor (26), connector I (27), connector II (28) and pressure head bar group (G) are arranged from top to bottom
Row;Described bolt and nut group (F) includes 4 pairs of bolt and nuts;Described pressure head bar group (G) includes 4 cylinder pressure head bars, circle
Cylinder radius R2=15-30mm, height h2=50-70mm, pressure head bar bottom are provided with the hemispherical mastoid process arranged by donut
(30), the radius R5=20um of hemispherical mastoid process (30), the spacing L2=50-60um of two neighboring donut, same annulus
Adjacent two mastoid process between arc length be L1=50-60um;Described sensor (26) is cylinder;Described connector I
(27) it is cylinder, uniform 4 through holes on its concentric circles;Described connector II (28) is uniform 4 on cylinder, its concentric circles
Individual through hole (29), 4 through holes corresponding arrangement up and down with connector I (27);Sensor (26) upper end and crossbeam (25) bottom surface are solid
Connect, sensor (26) lower end is affixed above with connector I (27), and connector I (27) is through bolt and nut group (F) and connector II
(28) affixed, four pressure head bar upper ends of pressure head bar group (G) are fixed in connector II (28) below, and wrong with four through holes (29)
The arrangement of 90 ° of position.
3. the fresh meat Quality Detection testing machine with bionical press head group as described in claim 1, it is characterised in that:Described limit
Hyte part (D) is by motor (11), fixed block I (12), lower position block (13), guide rod (14), spacing motion block (15), upper limit position block
(16), connecting rod I (17), fixed block II (18), bearing block (19), bearing (20), transmission nut (21), connecting rod II (22) and
Leading screw (23) is constituted, wherein:Leading screw (23) bottom and the output shaft of motor (11) are affixed, leading screw (23) upper end through bearing (20) with
Bearing block (19) is flexibly connected;Transmission nut (21) in the middle part of leading screw (23) with being threadedly coupled;Affixed company before transmission nut (21)
Extension bar I (17);Spacing motion block (15) right-hand member is affixed through connecting rod II (22) and transmission nut (21) left side;Spacing motion block (15) is left
End in the middle part of guide rod (14) with being flexibly connected;The affixed upper limit position block in guide rod (14) top (16), the affixed lower limit in guide rod (14) bottom
Block (13);The affixed fixed block II (18) in guide rod (14) upper end, the affixed fixed block I (12) in guide rod (14) lower end.
4. the fresh meat Quality Detection testing machine with bionical press head group as described in claim 1, it is characterised in that:Described is perpendicular
Beam (E) is hollow cuboid, is made up of foreboard (5), back plate (8), left plate (9), right panel (6) and top plate (7), wherein foreboard (5)
Vertical slot I (4) is provided with, left plate (9) is provided with vertical slot II (10).
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CN201710186712.0A CN107044936A (en) | 2017-03-27 | 2017-03-27 | A kind of fresh meat Quality Detection testing machine with bionical pressure head |
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CN201710186712.0A CN107044936A (en) | 2017-03-27 | 2017-03-27 | A kind of fresh meat Quality Detection testing machine with bionical pressure head |
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CN106483015A (en) * | 2015-10-30 | 2017-03-08 | 苏州中正工程检测有限公司 | A kind of waterproof roll tensile tester |
CN206696089U (en) * | 2017-03-27 | 2017-12-01 | 吉林大学 | A kind of fresh meat Quality Detection testing machine with bionical pressure head |
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Application publication date: 20170815 |