CN216013094U - New material detects anti mar equipment - Google Patents

New material detects anti mar equipment Download PDF

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Publication number
CN216013094U
CN216013094U CN202122337347.3U CN202122337347U CN216013094U CN 216013094 U CN216013094 U CN 216013094U CN 202122337347 U CN202122337347 U CN 202122337347U CN 216013094 U CN216013094 U CN 216013094U
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new material
movable
wedge
fixedly connected
plates
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CN202122337347.3U
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Inventor
刘宝霞
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Ordos Dongsheng District Housing Transportation Engineering Quality Inspection Co ltd
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Cheng Bitang
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Abstract

The utility model relates to a detect anti mar equipment, especially relate to a new material detects anti mar equipment. The utility model aims at providing a quality of judging new material that can be accurate can detect anti mar equipment with the fixed new material of new material. The new material detection scratch-resistant equipment comprises a fixing frame and first supporting plates, wherein the first supporting plates are fixedly connected to two sides of the fixing frame; the first supporting plates are connected with first rotating shafts in a rotating mode; the pull ropes are wound on the first rotating shaft. The utility model discloses under the effect of mar needle, do not need people manual to carry out the mar to the new material for the dynamics of mar all is unanimous at every turn, thereby the quality of judging out the new material that can be accurate, clamping mechanism can clip the new material, convenient operation.

Description

New material detects anti mar equipment
Technical Field
The utility model relates to a detect anti mar equipment, especially relate to a new material detects anti mar equipment.
Background
The new material is a material researched and developed in recent years, the performance of the new material is more excellent than that of the previous material, and after the new material is produced, scratch resistance detection needs to be carried out on the new material to judge the quality of the new material.
At present, people generally manually mark a trace on a new material by using a metal material, then observe the trace on the new material and judge the quality of the new material, but the strength of the scratch of people is difficult to control, and the depth of the scratch is affected by over-forceful force or over-forceful force, so that the quality of the new material is judged by people, the new material is not fixed, and the new material can move when the scratch is scratched, so that the operation of people is inconvenient.
Aiming at the existing problems, a device capable of accurately judging the quality of a new material and fixing the new material is designed.
SUMMERY OF THE UTILITY MODEL
The degree of depth that can all influence the mar in order to overcome people too violently hard or too lightly hard to influence people and judge the quality of new material, the new material is not fixed moreover, and people new material may remove when the mar, the shortcoming of inconvenient people operation, the utility model aims at providing a quality of judging out new material that can be accurate, can detect anti mar equipment with the new material that the new material is fixed.
The technical scheme is as follows: a new material testing scratch-resistant device comprising:
the fixing frame is fixedly connected with the first supporting plate on two sides;
the first supporting plates are connected with first rotating shafts in a rotating mode;
the pull ropes are wound on the first rotating shafts;
the scratch needles are fixedly connected to the pull ropes;
the moving mechanism is arranged on the upper side of the fixed frame;
the clamping mechanism is mounted on the moving mechanism;
and the clamping mechanism is provided with a manual discharging mechanism.
In one embodiment, the moving mechanism comprises:
the number of the first fixing plates is two, and the first fixing plates are respectively arranged on two sides of the top of the fixing frame;
the outer sides of the first fixing plates are respectively and rotatably provided with a screw rod;
the first movable block is arranged between the screw rods in a threaded mode, and the first movable block is in sliding fit with the first fixing plate.
In one embodiment, the clamping mechanism comprises:
the number of the second fixed plates is two, and the second fixed plates are respectively arranged on two sides of the top of the first movable block;
the second fixed plate is provided with a second movable block in a sliding manner;
the first spring, all be provided with three first springs on the second movable block, the both ends of first spring respectively with the second fixed plate with the second movable block is connected.
In one embodiment, the manual discharging mechanism comprises:
at least two second supporting plates are fixedly connected to two sides of the top of the first movable block;
the first movable column is arranged between the second supporting plates on the same side in a sliding manner;
the first movable column is fixedly connected with a first wedge block, and the first wedge block is contacted with the second movable block;
a second spring disposed between the second support plate and the first movable post.
In one embodiment, the device further comprises a descending mechanism, wherein the descending mechanism comprises:
the number of the third fixed plates is two, and the third fixed plates are respectively arranged on two sides of the top of the first movable block;
the third fixing plate is provided with a rack;
the outer ends of the first rotating shafts are provided with gears, and the gears are matched with the racks;
the torsional spring, all be provided with the torsional spring in the first pivot, the both ends of torsional spring respectively with the gear with first backup pad is connected.
In one embodiment, the device further comprises a driving mechanism, wherein the driving mechanism comprises:
the servo motor is arranged on one side of the fixing frame;
the screw rods are fixedly connected with second rotating shafts, and one of the second rotating shafts is fixedly connected with an output shaft of the servo motor;
and the transmission assembly is arranged between the second rotating shafts.
In one of them embodiment, still including automatic unloading mechanism, automatic unloading mechanism includes:
the outer sides of the second fixing plates are fixedly connected with first connecting plates;
the lower sides of the first connecting plates are fixedly connected with second wedge-shaped blocks;
the number of the second movable columns is two, and the second movable columns are respectively arranged on two sides of the fixed frame in a sliding manner;
the inner ends of the second movable columns are fixedly connected with second connecting plates;
the second connecting plate is fixedly connected with a second wedge block, and the second wedge block is matched with the first wedge block;
the number of the fourth wedge blocks is two, the fourth wedge blocks are respectively arranged at the lower sides of the two second connecting plates, and the fourth wedge blocks are matched with the first wedge blocks;
a third spring disposed between the fixed mount and the second movable post.
In one embodiment, the transmission assembly comprises two transmission wheels and a transmission belt, the two transmission wheels are respectively arranged on the two second rotating shafts, and the transmission belt is wound between the two transmission wheels.
The utility model has the advantages that:
1. the utility model discloses under the effect of mar needle, do not need people manual to carry out the mar to the new material for the dynamics of mar all is unanimous at every turn, thereby the quality of judging out the new material that can be accurate, clamping mechanism can clip the new material, convenient operation.
2. The utility model discloses under descending mechanism's effect, can rise by automatic mar needle, also can automatic control mar needle descend, reduce manual operation, save time.
3. The utility model discloses under actuating mechanism's effect, can automatic control lead screw clockwise rotation, also can automatic control lead screw anticlockwise rotation, do not need the manual lead screw that rotates of people, reduce the operation degree of difficulty.
4. The utility model discloses under automatic unloading mechanism's effect, can loosen the new material that detects the completion automatically, alleviate people's work load.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a part of the moving mechanism of the present invention.
Fig. 3 is a schematic perspective view of a part of the clamping mechanism of the present invention.
Fig. 4 is a schematic view of a partial three-dimensional structure of the manual discharging mechanism of the present invention.
Fig. 5 is a schematic perspective view of a part of the descending mechanism of the present invention.
Fig. 6 is a schematic perspective view of a part of the driving mechanism of the present invention.
Fig. 7 is a schematic view of the first partial solid structure of the automatic blanking mechanism of the present invention.
Fig. 8 is a schematic diagram of a second partial body structure of the automatic blanking mechanism of the present invention.
Labeled as: 1-a fixed frame, 2-a first supporting plate, 3-a first rotating shaft, 4-a pull rope, 5-a scratching needle, 6-a moving mechanism, 60-a first fixed plate, 61-a screw rod, 62-a first movable block, 7-a clamping mechanism, 70-a second fixed plate, 71-a second movable block, 72-a first spring, 8-a manual discharging mechanism, 80-a second supporting plate, 81-a first movable column, 82-a first wedge-shaped block, 83-a second spring, 9-a descending mechanism, 90-a third fixed plate, 91-a rack, 92-a gear, 93-a torsion spring, 10-a driving mechanism, 100-a servo motor, 101-a second rotating shaft, 102-a transmission component, 11-an automatic blanking mechanism, 110-a first connecting plate, 111-second wedge block, 112-second movable column, 113-second connecting plate, 114-third wedge block, 115-fourth wedge block, 116-third spring.
Detailed Description
The invention will be further described with reference to examples of embodiments shown in the drawings.
Example 1
The utility model provides a new material detects anti mar equipment, as shown in fig. 1-4, including mount 1, first backup pad 2, first pivot 3, stay cord 4, mar needle 5, moving mechanism 6, clamping mechanism 7 and manual discharge mechanism 8, both sides all are connected with first backup pad 2 around mount 1 middle part, 2 upper portion equal rotary type of two first backup pads are connected with first pivot 3, all around having stay cord 4 on two first pivots 3, 4 bottom of two stay cords all are connected with mar needle 5, mar needle 5 can be hard metal material, the resistance to wear is strong, and mar needle 5 has certain weight, moving mechanism 6 is installed at mount 1 top, install clamping mechanism 7 on moving mechanism 6, install manual discharge mechanism 8 on the clamping mechanism 7.
The moving mechanism 6 comprises a first fixing plate 60, a screw rod 61 and a first movable block 62, the first fixing plate 60 is connected to the front side and the rear side of the top of the fixing frame 1, the screw rod 61 is mounted on the outer side of the first fixing plate 60 in an equal rotating mode, the first movable block 62 is arranged between the two screw rods 61 in a threaded mode, and the first movable block 62 is in sliding fit with the first fixing plate 60.
The clamping mechanism 7 comprises a second fixing plate 70, a second movable block 71 and first springs 72, the front side and the rear side of the top of the first movable block 62 are connected with the second fixing plate 70, the second movable blocks 71 are arranged on the two second fixing plates 70 in a sliding mode, the two second movable blocks 71 are provided with three first springs 72, and two ends of each first spring 72 are connected with the second fixing plate 70 and the second movable block 71 respectively.
Manual discharging mechanism 8 is including second backup pad 80, first activity post 81, first wedge 82 and second spring 83, the left and right sides of first activity piece 62 top front side all is connected with second backup pad 80, the left and right sides of first activity piece 62 top rear side also is connected with second backup pad 80, slidingtype is equipped with first activity post 81 between two second backup pads 80 of homonymy, two first activity post 81 middle parts all are connected with first wedge 82, two first wedges 82 contact with two second activity pieces 71 respectively, be connected with second spring 83 between second backup pad 80 and the first activity post 81.
People pull the second movable block 71 outwards, the first spring 72 is compressed, new materials are placed on the first movable block 62, the second movable block 71 is loosened, the second movable block 71 moves inwards under the action of the first spring 72 to clamp the new materials, people rotate the first rotating shaft 3 again, the pull rope 4 is loosened, the scratching needle 5 moves downwards under the action of self gravity, after the scratching needle 5 moves downwards for a certain distance, people rotate the screw rod 61 clockwise, the screw rod 61 drives the first movable block 62 to move rightwards, the new materials move rightwards, when the new materials touch the scratching needle 5 rightwards, the scratching needle 5 marks a trace on the new materials, after the trace is marked, people stop rotating the screw rod 61, then the depth of the trace on the new materials is observed, the quality of the new materials is judged, the deeper the trace on the new materials is, and the poorer the quality of the new materials is shown, on the contrary, the quality of the new material is better, when the quality of the new material is judged, people reversely rotate the first rotating shaft 3, the scratch needles 5 are driven by the pull ropes 4 to reset upwards, then people rotate the screw rod 61 anticlockwise, the screw rod 61 drives the first movable block 62 to move leftwards, when the first movable block 62 moves leftwards to the initial position, people stop rotating the screw rod 61, then the first wedge block 82 is pushed outwards, the first wedge block 82 drives the first movable column 81 to move outwards, the second spring 83 is compressed, meanwhile, the first wedge block 82 can push the second movable block 71 to move outwards, the new material is loosened, the first spring 72 is compressed, then people take the new material away, then the first wedge block 82 is loosened, the first movable column 81 resets inwards under the action of the second spring 83, and the second movable block 71 resets inwards under the action of the first spring 72.
Example 2
On the basis of embodiment 1, as shown in fig. 1, fig. 5, fig. 6, fig. 7 and fig. 8, the lifting device further comprises a lifting mechanism 9, the lifting mechanism 9 comprises a third fixing plate 90, a rack 91, a gear 92 and a torsion spring 93, the front side and the rear side of the right side of the top of the first movable block 62 are both connected with the third fixing plate 90, the third fixing plate 90 is located on the right side of the right second support plate 80, the tops of the two third fixing plates 90 are both connected with the rack 91, the gear 92 is mounted at the outer end of the first rotating shaft 3, the gear 92 is matched with the rack 91, the torsion springs 93 are arranged on the two first rotating shafts 3, and the two ends of each torsion spring 93 are respectively connected with the gear 92 and the first support plate 2.
When the first movable block 62 moves rightwards, the first movable block 62 drives the third fixed plate 90 and the rack 91 to move rightwards, when the rack 91 moves rightwards and is meshed with the gear 92, the rack 91 drives the gear 92 to rotate, the gear 92 drives the first rotating shaft 3 to rotate, the torsion spring 93 is twisted, the pull rope 4 is loosened, the scratching needle 5 moves downwards under the action of self gravity, when the rack 91 moves rightwards and the gear 92 is not meshed, the first rotating shaft 3 rotates reversely under the action of the torsion spring 93, the scratching needle 5 is driven to reset upwards through the pull rope 4, the lifting of the scratching needle 5 is controlled automatically, manual operation is reduced, and time is saved.
The automatic transmission mechanism is characterized by further comprising a driving mechanism 10, wherein the driving mechanism 10 comprises a servo motor 100, a second rotating shaft 101 and a transmission assembly 102, the servo motor 100 is connected to the front portion of the right side of the fixing frame 1, the second rotating shaft 101 is connected to the right ends of the two lead screws 61, the right end of the second rotating shaft 101 at the front side is connected with an output shaft of the servo motor 100, the transmission assembly 102 is arranged between the two second rotating shafts 101, the transmission assembly 102 is composed of two transmission wheels and a transmission belt, the two transmission wheels are respectively installed on the two second rotating shafts 101, and the transmission belt is wound between the two transmission wheels.
People control the servo motor 100 to rotate clockwise, the servo motor 100 drives the second rotating shaft 101 at the front side to rotate clockwise, the transmission assembly 102 drives the second rotating shaft 101 at the rear side to rotate clockwise, so that the two screw rods 61 can be driven to rotate clockwise, the first movable block 62 and the new material can be driven to move rightwards, after a trace is marked on the new material, people close the servo motor 100, when the first movable block 62 needs to move back to the original position, people control the servo motor 100 to rotate anticlockwise, the servo motor 100 drives the second rotating shaft 101 at the front side to rotate anticlockwise, the transmission assembly 102 drives the second rotating shaft 101 at the rear side to rotate anticlockwise, so that the two screw rods 61 can be driven to rotate anticlockwise, so that the first movable block 62 can be driven to move leftwards, when the first movable block 62 moves leftwards to the initial position, people close the servo motor 100, the screw rod 61 does not need to be manually rotated by people, and the operation difficulty is reduced.
Still including automatic unloading mechanism 11, automatic unloading mechanism 11 is including first even board 110, second wedge 111, second activity post 112, second even board 113, third wedge 114, fourth wedge 115 and third spring 116, the second fixed plate 70 outside all is connected with first even board 110, two first even board 110 bottoms all are connected with second wedge 111, both sides all are slided around the mount 1 right part and are equipped with second activity post 112, be connected with third spring 116 between mount 1 and the second activity post 112 bottom, second activity post 112 inner all is connected with second even board 113, two second even board 113 left sides all are connected with third wedge 114, third wedge 114 and the cooperation of second wedge 111, two second even board 113 bottoms all are connected with fourth wedge 115, fourth wedge 115 and the cooperation of first wedge 82.
When the second fixing plate 70 moves rightwards, the second fixing plate 70 drives the first connecting plate 110 and the second wedge block 111 to move rightwards, when the second wedge block 111 moves rightwards and touches the third wedge block 114, the second wedge block 111 pushes the third wedge block 114 to move downwards, the third wedge block 114 drives the second connecting plate 113 and the second movable column 112 to move downwards, the third spring 116 is compressed, the second connecting plate 113 drives the fourth wedge block 115 to move downwards, the fourth wedge block 115 pushes the first wedge block 82 to move outwards, the first wedge block 82 drives the first movable column 81 to move outwards, the second spring 83 is compressed, meanwhile, the first wedge block 82 pushes the second movable block 71 to move outwards, the new material is released, the first spring 72 is compressed, the new material can be taken out, when the second fixing plate 70 moves leftwards, the second fixing plate 70 drives the first connecting plate 110 and the second wedge block 111 to move leftwards, the second wedge block 111 and the third wedge block 114 are not in contact, the second movable column 112 is reset upwards under the action of the third spring 116, the fourth wedge block 115 moves upwards along with the second wedge block, the fourth wedge block 115 is not in contact with the first wedge block 82, the first movable column 81 is reset inwards under the action of the second spring 83, and the second movable block 71 is reset inwards under the action of the first spring 72.
It should be understood by those skilled in the art that the above embodiments do not limit the present invention in any way, and all technical solutions obtained by adopting equivalent replacement or equivalent transformation fall within the protection scope of the present invention.

Claims (8)

1. The utility model provides a new material detects anti mar equipment which characterized by, including:
the fixing frame comprises a fixing frame (1) and first supporting plates (2), wherein the first supporting plates (2) are fixedly connected to two sides of the fixing frame (1);
the first rotating shafts (3) are rotatably connected to the first supporting plates (2);
the pull ropes (4) are wound on the first rotating shaft (3);
the scratching needles (5) are fixedly connected to the pull ropes (4);
the moving mechanism (6) is installed on the upper side of the fixed frame (1);
the clamping mechanism (7) is mounted on the moving mechanism (6);
and the manual discharging mechanism (8) is arranged on the clamping mechanism (7).
2. A new material inspection scratch resistant device according to claim 1, wherein the moving mechanism (6) comprises:
the number of the first fixing plates (60) is two, and the first fixing plates (60) are respectively arranged on two sides of the top of the fixing frame (1);
the screw rods (61) are rotatably mounted on the outer sides of the first fixing plates (60);
the first movable block (62) is arranged between the screw rods (61) in a threaded mode, and the first movable block (62) is in sliding fit with the first fixing plate (60).
3. New material inspection scratch-resistant device according to claim 2, characterized in that the clamping mechanism (7) comprises:
the number of the second fixing plates (70) is two, and the second fixing plates (70) are respectively arranged on two sides of the top of the first movable block (62);
the second movable blocks (71) are arranged on the second fixed plate (70) in a sliding manner;
the two ends of the first spring (72) are respectively connected with the second fixed plate (70) and the second movable block (71).
4. A new material inspection scratch-resistant device according to claim 3, wherein the manual discharging mechanism (8) comprises:
two sides of the top of the first movable block (62) are fixedly connected with at least two second supporting plates (80);
the first movable column (81) is arranged between the second supporting plates (80) on the same side in a sliding manner;
the first wedge-shaped blocks (82) are fixedly connected to the first movable columns (81), and the first wedge-shaped blocks (82) are in contact with the second movable blocks (71);
a second spring (83), the second spring (83) being disposed between the second support plate (80) and the first movable post (81).
5. A new material detection scratch-resistant device according to claim 4, further comprising a lowering mechanism (9), the lowering mechanism (9) comprising:
the number of the third fixing plates (90) is two, and the third fixing plates (90) are respectively arranged on two sides of the top of the first movable block (62);
the racks (91) are mounted on the third fixing plate (90);
the gears (92) are mounted at the outer ends of the first rotating shafts (3), and the gears (92) are matched with the racks (91);
the first rotating shaft (3) is provided with a torsion spring (93), and two ends of the torsion spring (93) are connected with the gear (92) and the first supporting plate (2) respectively.
6. A new material inspection scratch resistant device according to claim 5, further comprising a driving mechanism (10), the driving mechanism (10) comprising:
the servo motor (100), the said servo motor (100) is installed on one side of the said fixed mount (1);
the screw rods (61) are fixedly connected with second rotating shafts (101), and one of the second rotating shafts (101) is fixedly connected with an output shaft of the servo motor (100);
a transmission assembly (102), the transmission assembly (102) being disposed between the second shafts (101).
7. The new material detection scratch resistant device according to claim 6, further comprising an automatic blanking mechanism (11), wherein the automatic blanking mechanism (11) comprises:
the outer sides of the second fixing plates (70) are fixedly connected with the first connecting plates (110);
the lower sides of the first connecting plates (110) are fixedly connected with second wedge blocks (111);
the number of the second movable columns (112) is two, and the second movable columns (112) are respectively arranged on two sides of the fixed frame (1) in a sliding manner;
the inner ends of the second movable columns (112) are fixedly connected with second connecting plates (113);
the second connecting plate (113) is fixedly connected with a third wedge block (114), and the third wedge block (114) is matched with the second wedge block (111);
the number of the fourth wedge blocks (115) is two, the fourth wedge blocks (115) are respectively arranged on the lower sides of the two second connecting plates (113), and the fourth wedge blocks (115) are matched with the first wedge blocks (82);
a third spring (116), the third spring (116) being disposed between the stationary frame (1) and the second movable column (112).
8. A new material detection scratch-resistant device according to claim 6, wherein said transmission assembly (102) is composed of two transmission wheels mounted on the two second shafts (101), respectively, and a belt wound between the two transmission wheels.
CN202122337347.3U 2021-09-26 2021-09-26 New material detects anti mar equipment Active CN216013094U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122337347.3U CN216013094U (en) 2021-09-26 2021-09-26 New material detects anti mar equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122337347.3U CN216013094U (en) 2021-09-26 2021-09-26 New material detects anti mar equipment

Publications (1)

Publication Number Publication Date
CN216013094U true CN216013094U (en) 2022-03-11

Family

ID=80530878

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122337347.3U Active CN216013094U (en) 2021-09-26 2021-09-26 New material detects anti mar equipment

Country Status (1)

Country Link
CN (1) CN216013094U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20231030

Address after: 017000 Room 102, Building 15, European Style Project, Zhizhi West Street, Dongsheng District, Ordos City, Inner Mongolia Autonomous Region

Patentee after: Ordos Dongsheng District Housing Transportation Engineering Quality Inspection Co.,Ltd.

Address before: 510000 No. 13, Wenbao street, Huangpu District, Guangzhou, Guangdong

Patentee before: Cheng Bitang

TR01 Transfer of patent right