CN211614862U - Assembly detection device for rotor machining - Google Patents

Assembly detection device for rotor machining Download PDF

Info

Publication number
CN211614862U
CN211614862U CN202020134075.XU CN202020134075U CN211614862U CN 211614862 U CN211614862 U CN 211614862U CN 202020134075 U CN202020134075 U CN 202020134075U CN 211614862 U CN211614862 U CN 211614862U
Authority
CN
China
Prior art keywords
blanking
plate
press
cylinder
connecting plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202020134075.XU
Other languages
Chinese (zh)
Inventor
章宏亮
叶国强
赵鑫
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Juli Aoxuan Technology Zhejiang Co ltd
Original Assignee
ZHEJIANG JULI ELECTRICAL MACHINERY EQUIPMENT CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ZHEJIANG JULI ELECTRICAL MACHINERY EQUIPMENT CO Ltd filed Critical ZHEJIANG JULI ELECTRICAL MACHINERY EQUIPMENT CO Ltd
Priority to CN202020134075.XU priority Critical patent/CN211614862U/en
Application granted granted Critical
Publication of CN211614862U publication Critical patent/CN211614862U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • A Measuring Device Byusing Mechanical Method (AREA)

Abstract

The utility model discloses an assembly detection device for rotor processing, which comprises a blanking mechanism, a press mounting height detection mechanism, a tension plate press mounting mechanism, a signal magnet press mounting mechanism, a carrying mechanism and a bracket, wherein the blanking mechanism, the press mounting height detection mechanism, the tension plate press mounting mechanism and the signal magnet press mounting mechanism are sequentially arranged on the bracket from the right side to the left side, and the carrying mechanism is arranged at the same side of the press mounting height detection mechanism, the tension plate press mounting mechanism and the signal magnet press mounting mechanism; the tension plate press-mounting mechanism and the signal magnet press-mounting mechanism are arranged on the same processing frame; the utility model provides a simple structure, safe and reliable, the parameter can be established, the assembly detection device of the rotor processing that highly can examine simultaneously.

Description

Assembly detection device for rotor machining
Technical Field
The utility model relates to a pressure equipment technical field, more specifically the saying so, it relates to the assembly detection device of rotor processing.
Background
At present, the requirement of a client for single-machine operation equipment is higher and higher along with the technical development, particularly, the pressing technology is required, the operation is simple, the safety and the reliability are realized, the parameters can be set, the height can be detected, the defective product removal needs to be known by the equipment, the high efficiency is realized, and a new piece of equipment is urgently needed according to the requirement.
Disclosure of Invention
The utility model overcomes prior art's is not enough, provides a simple structure, safe and reliable, and the parameter can be established, the assembly detection device of the rotor processing that highly can examine simultaneously.
In order to solve the technical problem, the technical scheme of the utility model as follows:
the assembly detection device for rotor processing comprises a blanking mechanism, a press mounting height detection mechanism, a tension plate press mounting mechanism, a signal magnet press mounting mechanism, a carrying mechanism and a bracket, wherein the blanking mechanism, the press mounting height detection mechanism, the tension plate press mounting mechanism and the signal magnet press mounting mechanism are sequentially arranged on the bracket from right to left; wherein, the tension plate press-fitting mechanism and the signal magnet press-fitting mechanism are arranged on the same processing frame.
Further, the blanking mechanism comprises a blanking fixing plate, a blanking connecting plate and a blanking mechanism body; the blanking fixing plate is fixed on the bracket through bolts or rivets and is connected with the blanking mechanism body through a blanking connecting plate; the blanking connecting plates adopt L-shaped connecting plates with two sizes and are arranged on two sides of the blanking mechanism body; the blanking mechanism body comprises a blanking guide plate, a blanking guide rail, a blanking motor, a blanking connecting column and a blanking limiting plate, wherein the two ends of the blanking guide plate are respectively provided with the blanking motor and the blanking limiting plate, the two sides of the blanking guide plate are provided with the blanking guide rail, and the blanking guide rail and the blanking motor are connected and fixed through the blanking connecting column; a groove for transporting the tension plate is arranged on the blanking guide plate;
the blanking fixing plate comprises a blanking support fixing plate, a blanking transverse connecting plate and a blanking longitudinal connecting plate, the blanking support fixing plate is integrally L-shaped, and a blanking right-angle triangular fixing plate is arranged on one side of the L shape; the blanking transverse connecting plate is placed on the blanking right-angle triangular fixing plate, one end of the blanking transverse connecting plate is fixed on the blanking support fixing plate, and the other end of the blanking transverse connecting plate is fixed through the blanking longitudinal connecting plate.
Further, the press-fitting height detection mechanism comprises a press-fitting height detection manipulator, a press-fitting height detection position determination structure and a press-fitting height detection position determination structure, wherein the press-fitting height detection manipulator is arranged at one end of the press-fitting height detection position determination structure, which is close to the press-fitting height detection position determination structure;
the press mounting height detection manipulator comprises a first control cylinder, a first manipulator body, a first linking arm and a first clamping piece, wherein the first control cylinder is arranged in the first manipulator body, one end of the first linking arm is hinged with one end, close to the press mounting height detection position measurement structure, of the first manipulator body, the other end of the first linking arm is connected with the first clamping piece, the first clamping piece is integrally L-shaped, and the shape of one end, away from the first control cylinder, of the first clamping piece is matched with the shape of a workpiece to be processed and detected;
the press mounting height detection position measuring structure comprises a first support, a first air cylinder, a first connecting plate, a first upper displacement ruler and a second air cylinder; the first air cylinder is arranged at the upper end of the first support, the lower end of the first air cylinder is connected with a first connecting plate in an adjustable mode, one end of the first connecting plate is connected to the first support, the other end of the first connecting plate is connected with a first upper displacement ruler, the first upper displacement ruler is connected with the second air cylinder, and one end of the second air cylinder is in contact with a workpiece to be processed and detected; the first connecting plate can move up and down on the first support, the first connecting plate is fixedly linked with the first upper displacement ruler, the second cylinder is transversely provided with a limiting plate, and the moving distance of the first connecting plate is limited by the limiting plate;
the press mounting height detection position determining structure comprises a first fixed placing frame, a first limit detection structure and a first lower displacement ruler, wherein a workpiece to be processed and detected is arranged on the first fixed placing frame, the first limit detection structure is arranged below the first fixed placing frame, and a first lower displacement ruler and a first sensor matched with the first lower displacement ruler are arranged at one end, away from the workpiece to be processed and detected, of the first limit detection structure; wherein, the middle of the first fixed placing frame is provided with a corresponding placing hole for placing a first limit detection structure; the first limiting detection structure comprises a first probe, a first guide shaft and a first fixing plate, the first probe is connected with the first fixing plate through the first guide shaft, and one side, far away from the first probe, of the first fixing plate is connected with a first lower displacement ruler; wherein, the first probe is convex as a whole, and the protruding part is cylindrical.
Further, the signal magnet press-fitting mechanism comprises a third cylinder, a cylinder connecting plate, a displacement ruler measuring auxiliary frame, a displacement ruler fixing frame, a second displacement ruler, a signal magnet end, a first press-fitting lower end and a second manipulator; the third cylinder is arranged on the left side of the machining frame, a cylinder connecting plate is arranged at one end of the third cylinder, the cylinder connecting plate is connected with the displacement ruler measuring auxiliary frame through a corresponding telescopic rod, the displacement ruler fixing frame is arranged at the position of the machining frame corresponding to the displacement ruler measuring auxiliary frame, and the second displacement ruler is arranged on the displacement ruler fixing frame;
the signal magnet end is arranged at the same end of the third cylinder connecting plate provided with the cylinder, the first press mounting lower end corresponds to the signal magnet end, and a workpiece to be processed and detected is arranged between the first press mounting lower end and the first press mounting lower end; wherein, set up the second manipulator on the first pressure equipment lower extreme and carry out the centre gripping fixed.
Furthermore, the third cylinder, the telescopic rod and the cylinder connecting plate are fixedly connected through arranging corresponding grooves and bosses.
Further, the tension plate press-mounting mechanism comprises an upper press-mounting structure and a lower press-mounting structure, the upper press-mounting structure comprises a fourth cylinder, a press-mounting rod and a first fixing frame, and the lower press-mounting structure comprises a second expansion bracket, a fifth cylinder, a supporting column, a third displacement ruler and a limiting structure; wherein, a workpiece to be processed and detected is placed between the upper press mounting structure and the lower press mounting structure;
the fourth cylinder is arranged on the right side of the processing frame, one end of the fourth cylinder is connected with the press-mounting rod, and the press-mounting rod is connected with the processing frame through the inverted-door-shaped first fixing frame;
the second telescopic frame is integrally in a shape of Chinese character 'ri', and the second telescopic frame is telescopic through a telescopic rod; keep away from one side of waiting to process the detection work piece on the hypoplastron of second expansion bracket and set up the fifth cylinder, set up L shape fixed plate on the intermediate lamella of second expansion bracket, and the one end of this L shape fixed plate sets up the third displacement chi, set up in the middle of the upper plate of second expansion bracket and wait to process the detection work piece, one side that is close to the fifth cylinder in the middle of the upper plate of second expansion bracket sets up the support column, and the side that the upper plate of second expansion bracket and third displacement chi correspond sets up limit structure, and this limit structure has the auxiliary measuring effect.
Further, the carrying mechanism comprises a carrying longitudinal cylinder, a carrying longitudinal base plate, a carrying longitudinal moving guide rail, a carrying transverse cylinder, a carrying transverse base plate and a carrying transverse moving guide rail, wherein the carrying longitudinal cylinder is arranged at the upper end of the carrying longitudinal base plate, the carrying longitudinal moving guide rail is arranged on the carrying longitudinal base plate, the carrying transverse base plate is connected with the carrying longitudinal moving guide rail, the carrying transverse cylinder is arranged above the carrying transverse base plate, a clamping manipulator is arranged on one side of the carrying transverse base plate, which is far away from the carrying longitudinal base plate, and the clamping manipulator clamps the workpiece to be processed; wherein, the one end of carrying horizontal base plate is connected with pressure equipment height detection mechanism.
Compared with the prior art, the utility model the advantage lies in:
the utility model discloses equipment operation is simple (it is convenient to put three material), and safe and reliable, the parameter can be established, highly can examine simultaneously, and defective products rejection apparatus learns easily to it is high efficiency completion, whole beat is about 8.5 s. The signal magnet is pressed on the same shaft relative to a shaft end face reference, the tension plate is pressed, press-mounting parameters can be set respectively, the press-mounting heights are detected together, and materials are discharged automatically. During press mounting, fly ash on a press-mounted object is automatically blown and sucked, and the fly ash is efficiently and stably transferred among stations.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the blanking mechanism of the present invention;
FIG. 3 is another schematic view of the blanking mechanism of the present invention;
FIG. 4 is a schematic view of the press-fitting height detection mechanism of the present invention;
FIG. 5 is an enlarged schematic view of a part of the press-fitting height detection mechanism of the present invention;
fig. 6 is a schematic view of the press-fitting height detection position determination structure in fig. 5 according to the present invention;
fig. 7 is a schematic view of the first limit detection structure in fig. 6 according to the present invention;
fig. 8 is a schematic view of the carrying mechanism of the present invention;
fig. 9 is another schematic view of the carrying mechanism of the present invention;
fig. 10 is a schematic view of the tension plate press-fitting mechanism and the signal magnet press-fitting mechanism of the present invention;
fig. 11 is a schematic view of a lower press-fitting structure of the tension plate press-fitting mechanism of the present invention;
fig. 12 is another schematic side view of the lower press-fitting structure of the tension plate press-fitting mechanism of the present invention;
fig. 13 is a partially enlarged schematic view of fig. 10 according to the present invention;
fig. 14 is another schematic view of fig. 13 according to the present invention.
The labels in the figure are: the blanking mechanism comprises a blanking mechanism 1, a blanking fixing plate 11, a blanking bracket fixing plate 111, a blanking right-angle triangle fixing plate 112, a blanking transverse connecting plate 113, a blanking longitudinal connecting plate 114, a blanking connecting plate 12, a blanking mechanism body 13, a blanking guide plate 131, a blanking guide rail 132, a blanking motor 133, a blanking connecting column 134 and a blanking limiting plate 135;
the press-fitting height detection device comprises a press-fitting height detection mechanism 2, a press-fitting height detection manipulator 21, a first control cylinder 211, a first manipulator body 212, a first connecting arm 213, a first clamping piece 214, a press-fitting height detection position measuring structure 22, a first support 221, a first cylinder 222, a first connecting plate 223, a first upper displacement ruler 224, a second cylinder 225, a press-fitting height detection position determining structure 23, a first fixed placing frame 231, a first limit detection structure 232, a first probe 2321, a first guide shaft 2322, a first fixed plate 2323, a first lower displacement ruler 233 and a first sensor 234;
the device comprises a tension plate press-fitting mechanism 3, an upper press-fitting structure 31, a fourth cylinder 311, a press-fitting rod 312, a first fixed frame 313, a lower press-fitting structure 32, a second telescopic frame 321, a fifth cylinder 322, a supporting column 323, a third displacement ruler 324 and a limiting structure 325;
the device comprises a signal magnet press-fitting mechanism 4, a third air cylinder 41, an air cylinder connecting plate 42, a displacement ruler measuring auxiliary frame 43, a displacement ruler fixing frame 44, a second displacement ruler 45, a signal magnet end 46, a first press-fitting lower end 47 and a second manipulator 48;
a conveying mechanism 5, a conveying vertical cylinder 51, a conveying vertical substrate 52, a conveying vertical moving guide rail 53, a conveying horizontal cylinder 54, a conveying horizontal substrate 55, a conveying horizontal moving guide rail 56, and a clamping robot 57; support 6, processing frame 7.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1 to 14, the assembly detection device for rotor machining includes a blanking mechanism 1, a press-fitting height detection mechanism 2, a tension plate press-fitting mechanism 3, a signal magnet press-fitting mechanism 4, a carrying mechanism 5 and a bracket 6, wherein the blanking mechanism 1, the press-fitting height detection mechanism 2, the tension plate press-fitting mechanism 3 and the signal magnet press-fitting mechanism 4 are sequentially arranged on the bracket 6 from right to left, and the carrying mechanism 5 is arranged on the same side of the press-fitting height detection mechanism 2, the tension plate press-fitting mechanism 3 and the signal magnet press-fitting mechanism 4; wherein, the tension plate press-fitting mechanism 3 and the signal magnet press-fitting mechanism 4 are arranged on the same processing frame 7.
The blanking mechanism 1 comprises a blanking fixing plate 11, a blanking connecting plate 12 and a blanking mechanism body 13; the blanking fixing plate 11 is fixed on the bracket 6 through bolts or rivets, and the blanking fixing plate 11 is connected with the blanking mechanism body 13 through a blanking connecting plate 12; the blanking connecting plates 12 are L-shaped connecting plates with two sizes, and the blanking connecting plates 12 are arranged on two sides of the blanking mechanism body 13; the blanking mechanism body 13 comprises a blanking guide plate 131, a blanking guide rail 132, a blanking motor 133, a blanking connecting column 134 and a blanking limiting plate 135, wherein the blanking motor 133 and the blanking limiting plate 135 are respectively arranged at two ends of the blanking guide plate 131, the blanking guide rails 132 are arranged at two sides of the blanking guide plate 131, and the blanking guide rails 132 and the blanking motor 133 are connected and fixed through the blanking connecting column 134; the blanking guide plate 131 is provided with a groove for transporting the tension plate;
the blanking fixing plate 11 comprises a blanking support 6 fixing plate 111, a blanking transverse connecting plate 113 and a blanking longitudinal connecting plate 114, the blanking support 6 fixing plate 111 is integrally L-shaped, and a blanking right-angle triangular fixing plate 112 is arranged on one side of the L shape; the blanking transverse connecting plate 113 is placed on the blanking right-angled triangle fixing plate 112, and one end thereof is fixed on the fixing plate 111 of the blanking bracket 6, and the other end thereof is fixed by the blanking longitudinal connecting plate 114.
The press-fitting height detection mechanism 2 comprises a press-fitting height detection manipulator 21, a press-fitting height detection position determination structure 22 and a press-fitting height detection position determination structure 23, wherein the press-fitting height detection manipulator 21 is arranged at one end, close to the press-fitting height detection position determination structure 23, of the press-fitting height detection position determination structure 22;
the press mounting height detection manipulator 21 comprises a first control cylinder 211, a first manipulator body 212, a first connecting arm 213 and a first clamping piece 214, wherein the first control cylinder 211 is arranged in the first manipulator body 212, one end of the first connecting arm 213 is hinged with one end, close to the press mounting height detection position measuring structure 22, of the first manipulator body 212, the other end of the first connecting arm 213 is connected with the first clamping piece 214, the first clamping piece 214 is L-shaped as a whole, and the shape of one end, away from the first control cylinder 211, of the first clamping piece 214 is matched with the shape of a workpiece to be processed and detected;
the press-fitting height detection position measuring structure 22 includes a first bracket 6221, a first cylinder 222, a first connecting plate 223, a first upper displacement ruler 224, a second cylinder 225; the first air cylinder 222 is arranged at the upper end of the first support 6221, the lower end of the first air cylinder 222 is adjustably connected with a first connecting plate 223, one end of the first connecting plate 223 is connected to the first support 6221, the other end of the first connecting plate 223 is connected with a first upper displacement ruler 224, the first upper displacement ruler 224 is connected with a second air cylinder 225, and one end of the second air cylinder 225 is in contact with a workpiece to be processed and detected; wherein, the first connecting plate 223 can move up and down on the first support 6221, the first connecting plate 223 is fixedly linked with the first upper displacement ruler 224, the second cylinder 225 is transversely provided with a limit plate, and the moving distance of the first connecting plate 223 is limited by the limit plate;
the press mounting height detection position determining structure 23 comprises a first fixed placing frame 231, a first limit detection structure 232 and a first lower displacement ruler 233, wherein the workpiece to be processed and detected is arranged on the first fixed placing frame 231, the first limit detection structure 232 is arranged below the first fixed placing frame 231, and the first lower displacement ruler 233 and a first sensor 234 matched with the first lower displacement ruler 233 are arranged at one end, away from the workpiece to be processed and detected, of the first limit detection structure 232; wherein, the middle of the first fixed placing frame 231 is provided with a corresponding placing hole for placing the first limit detection structure 232; the first limit detection structure 232 comprises a first probe 2321, a first guide shaft 2322 and a first fixing plate 2323, the first probe 2321 is connected with the first fixing plate 2323 through the first guide shaft 2322, and one side of the first fixing plate 2323 away from the first probe 2321 is connected with a first lower displacement scale 233; wherein the first probe 2321 is convex as a whole, and the protruding portion is cylindrical.
The signal magnet press-fitting mechanism 4 comprises a third air cylinder 41, an air cylinder connecting plate 42, a displacement ruler measuring auxiliary frame 43, a displacement ruler fixing frame 44, a second displacement ruler 45, a signal magnet end 46, a first press-fitting lower end 47 and a second manipulator 48; the third cylinder 41 is arranged on the left side of the processing frame 7, one end of the third cylinder 41 is provided with a cylinder connecting plate 42, the cylinder connecting plate 42 is connected with the displacement ruler measurement auxiliary frame 43 through a corresponding telescopic rod, the displacement ruler fixing frame 44 is arranged at the position of the processing frame 7 corresponding to the displacement ruler measurement auxiliary frame 43, and the second displacement ruler 45 is arranged on the displacement ruler fixing frame 44;
the signal magnet end 46 is arranged at the same end of the third cylinder 41 where the cylinder connecting plate 42 is arranged, the first press-fitting lower end 47 corresponds to the signal magnet end, and a workpiece to be processed and detected is arranged between the signal magnet end and the first press-fitting lower end 47; wherein, a second manipulator 48 is arranged on the first press-fitting lower end 47 for clamping and fixing. The third cylinder 41, the telescopic rod and the cylinder connecting plate 42 are fixedly connected by arranging corresponding grooves and bosses.
The tension plate press-fitting mechanism 3 comprises an upper press-fitting structure 31 and a lower press-fitting structure 32, the upper press-fitting structure 31 comprises a fourth cylinder 311, a press-fitting rod 312 and a first fixing frame 313, and the lower press-fitting structure 32 comprises a second telescopic frame 321, a fifth cylinder 322, a supporting column 323, a third displacement ruler 324 and a limiting structure 325; wherein, a workpiece to be processed and detected is placed between the upper press-fitting structure 31 and the lower press-fitting structure 32;
the fourth cylinder 311 is arranged on the right side of the processing frame 7, one end of the fourth cylinder 311 is connected with the press-fitting rod 312, and the press-fitting rod 312 is connected with the processing frame 7 through the inverted-door-shaped first fixing frame 313;
the second expansion bracket 321 is in a shape of Chinese character ri as a whole, and the second expansion bracket 321 expands and contracts through an expansion rod; keep away from one side of waiting to process the detection work piece on the hypoplastron of second expansion bracket 321 and set up fifth cylinder 322, set up L shape fixed plate on the intermediate lamella of second expansion bracket 321, and the one end of this L shape fixed plate sets up third displacement chi 324, set up in the middle of the upper lamella of second expansion bracket 321 and wait to process the detection work piece, one side that is close to fifth cylinder 322 in the middle of the upper lamella of second expansion bracket 321 sets up support column 323, and the side that the upper lamella of second expansion bracket 321 and third displacement chi 324 correspond sets up limit structure 325, and this limit structure 325 has supplementary measuring effect.
The conveying mechanism 5 comprises a conveying longitudinal cylinder 51, a conveying longitudinal base plate 52, a conveying longitudinal moving guide rail 53, a conveying transverse cylinder 54, a conveying transverse base plate 55 and a conveying transverse moving guide rail 56, wherein the conveying longitudinal cylinder 51 is arranged at the upper end of the conveying longitudinal base plate 52, the conveying longitudinal moving guide rail 53 is arranged on the conveying longitudinal base plate 52, the conveying transverse base plate 55 is connected with the conveying longitudinal moving guide rail 53, the conveying transverse cylinder 54 is arranged above the conveying transverse base plate 55, a clamping manipulator 57 is arranged on one side of the conveying transverse base plate 55 far away from the conveying longitudinal base plate 52, and the clamping manipulator 57 clamps the detected workpiece to be processed; one end of the conveyance cross base 55 is connected to the press-fitting height detection mechanism 2.
To sum up, this scheme equipment operation is simple (it is convenient to put three material), safe and reliable, and the parameter can be established, highly can examine simultaneously, and defective products rejection apparatus learns easily to it is high efficiency completion, whole beat is about 8.5 s. The signal magnet is pressed on the same shaft relative to a shaft end face reference, the tension plate is pressed, press-mounting parameters can be set respectively, the press-mounting heights are detected together, and materials are discharged automatically. During press mounting, fly ash on a press-mounted object is automatically blown and sucked, and the fly ash is efficiently and stably transferred among stations.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the concept of the present invention, and these improvements and decorations should also be considered as the protection scope of the present invention.

Claims (7)

1. The assembly detection device for rotor machining is characterized by comprising a blanking mechanism, a press mounting height detection mechanism, a tension plate press mounting mechanism, a signal magnet press mounting mechanism, a carrying mechanism and a support, wherein the blanking mechanism, the press mounting height detection mechanism, the tension plate press mounting mechanism and the signal magnet press mounting mechanism are sequentially arranged on the support from right to left; wherein, the tension plate press-fitting mechanism and the signal magnet press-fitting mechanism are arranged on the same processing frame.
2. The assembly detection device for rotor machining according to claim 1, characterized in that: the blanking mechanism comprises a blanking fixing plate, a blanking connecting plate and a blanking mechanism body; the blanking fixing plate is fixed on the bracket through bolts or rivets and is connected with the blanking mechanism body through a blanking connecting plate; the blanking connecting plates adopt L-shaped connecting plates with two sizes and are arranged on two sides of the blanking mechanism body; the blanking mechanism body comprises a blanking guide plate, a blanking guide rail, a blanking motor, a blanking connecting column and a blanking limiting plate, wherein the two ends of the blanking guide plate are respectively provided with the blanking motor and the blanking limiting plate, the two sides of the blanking guide plate are provided with the blanking guide rail, and the blanking guide rail and the blanking motor are connected and fixed through the blanking connecting column; a groove for transporting the tension plate is arranged on the blanking guide plate;
the blanking fixing plate comprises a blanking support fixing plate, a blanking transverse connecting plate and a blanking longitudinal connecting plate, the blanking support fixing plate is integrally L-shaped, and a blanking right-angle triangular fixing plate is arranged on one side of the L shape; the blanking transverse connecting plate is placed on the blanking right-angle triangular fixing plate, one end of the blanking transverse connecting plate is fixed on the blanking support fixing plate, and the other end of the blanking transverse connecting plate is fixed through the blanking longitudinal connecting plate.
3. The assembly detection device for rotor machining according to claim 1, characterized in that: the press mounting height detection mechanism comprises a press mounting height detection manipulator, a press mounting height detection position determination structure and a press mounting height detection position determination structure, wherein the press mounting height detection manipulator is arranged at one end of the press mounting height detection position determination structure close to the press mounting height detection position determination structure;
the press mounting height detection manipulator comprises a first control cylinder, a first manipulator body, a first linking arm and a first clamping piece, wherein the first control cylinder is arranged in the first manipulator body, one end of the first linking arm is hinged with one end, close to the press mounting height detection position measurement structure, of the first manipulator body, the other end of the first linking arm is connected with the first clamping piece, the first clamping piece is integrally L-shaped, and the shape of one end, away from the first control cylinder, of the first clamping piece is matched with the shape of a workpiece to be processed and detected;
the press mounting height detection position measuring structure comprises a first support, a first air cylinder, a first connecting plate, a first upper displacement ruler and a second air cylinder; the first air cylinder is arranged at the upper end of the first support, the lower end of the first air cylinder is connected with a first connecting plate in an adjustable mode, one end of the first connecting plate is connected to the first support, the other end of the first connecting plate is connected with a first upper displacement ruler, the first upper displacement ruler is connected with the second air cylinder, and one end of the second air cylinder is in contact with a workpiece to be processed and detected; the first connecting plate can move up and down on the first support, the first connecting plate is fixedly linked with the first upper displacement ruler, the second cylinder is transversely provided with a limiting plate, and the moving distance of the first connecting plate is limited by the limiting plate;
the press mounting height detection position determining structure comprises a first fixed placing frame, a first limit detection structure and a first lower displacement ruler, wherein a workpiece to be processed and detected is arranged on the first fixed placing frame, the first limit detection structure is arranged below the first fixed placing frame, and a first lower displacement ruler and a first sensor matched with the first lower displacement ruler are arranged at one end, away from the workpiece to be processed and detected, of the first limit detection structure; wherein, the middle of the first fixed placing frame is provided with a corresponding placing hole for placing a first limit detection structure; the first limiting detection structure comprises a first probe, a first guide shaft and a first fixing plate, the first probe is connected with the first fixing plate through the first guide shaft, and one side, far away from the first probe, of the first fixing plate is connected with a first lower displacement ruler; wherein, the first probe is convex as a whole, and the protruding part is cylindrical.
4. The assembly detection device for rotor machining according to claim 1, characterized in that: the signal magnet press-fitting mechanism comprises a third cylinder, a cylinder connecting plate, a displacement ruler measuring auxiliary frame, a displacement ruler fixing frame, a second displacement ruler, a signal magnet end, a first press-fitting lower end and a second manipulator; the third cylinder is arranged on the left side of the machining frame, a cylinder connecting plate is arranged at one end of the third cylinder, the cylinder connecting plate is connected with the displacement ruler measuring auxiliary frame through a corresponding telescopic rod, the displacement ruler fixing frame is arranged at the position of the machining frame corresponding to the displacement ruler measuring auxiliary frame, and the second displacement ruler is arranged on the displacement ruler fixing frame;
the signal magnet end is arranged at the same end of the third cylinder connecting plate provided with the cylinder, the first press mounting lower end corresponds to the signal magnet end, and a workpiece to be processed and detected is arranged between the first press mounting lower end and the first press mounting lower end; wherein, set up the second manipulator on the first pressure equipment lower extreme and carry out the centre gripping fixed.
5. The assembly detection device for rotor machining according to claim 4, characterized in that: the third cylinder, the telescopic rod and the cylinder connecting plate are fixedly connected through corresponding grooves and bosses.
6. The assembly detection device for rotor machining according to claim 1, characterized in that: the tension plate press-mounting mechanism comprises an upper press-mounting structure and a lower press-mounting structure, the upper press-mounting structure comprises a fourth cylinder, a press-mounting rod and a first fixing frame, and the lower press-mounting structure comprises a second telescopic frame, a fifth cylinder, a supporting column, a third displacement ruler and a limiting structure; wherein, a workpiece to be processed and detected is placed between the upper press mounting structure and the lower press mounting structure;
the fourth cylinder is arranged on the right side of the processing frame, one end of the fourth cylinder is connected with the press-mounting rod, and the press-mounting rod is connected with the processing frame through the inverted-door-shaped first fixing frame;
the second telescopic frame is integrally in a shape of Chinese character 'ri', and the second telescopic frame is telescopic through a telescopic rod; keep away from one side of waiting to process the detection work piece on the hypoplastron of second expansion bracket and set up the fifth cylinder, set up L shape fixed plate on the intermediate lamella of second expansion bracket, and the one end of this L shape fixed plate sets up the third displacement chi, set up in the middle of the upper plate of second expansion bracket and wait to process the detection work piece, one side that is close to the fifth cylinder in the middle of the upper plate of second expansion bracket sets up the support column, and the side that the upper plate of second expansion bracket and third displacement chi correspond sets up limit structure, and this limit structure has the auxiliary measuring effect.
7. The assembly detection device for rotor machining according to claim 1, characterized in that: the conveying mechanism comprises a conveying longitudinal cylinder, a conveying longitudinal base plate, a conveying longitudinal moving guide rail, a conveying transverse cylinder, a conveying transverse base plate and a conveying transverse moving guide rail, the conveying longitudinal cylinder is arranged at the upper end of the conveying longitudinal base plate, the conveying longitudinal moving guide rail is arranged on the conveying longitudinal base plate, the conveying transverse base plate is connected with the conveying longitudinal moving guide rail, the conveying transverse cylinder is arranged above the conveying transverse base plate, a clamping manipulator is arranged on one side, away from the conveying longitudinal base plate, of the conveying transverse base plate, and the clamping manipulator clamps a workpiece to be processed; wherein, the one end of carrying horizontal base plate is connected with pressure equipment height detection mechanism.
CN202020134075.XU 2020-01-21 2020-01-21 Assembly detection device for rotor machining Active CN211614862U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020134075.XU CN211614862U (en) 2020-01-21 2020-01-21 Assembly detection device for rotor machining

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020134075.XU CN211614862U (en) 2020-01-21 2020-01-21 Assembly detection device for rotor machining

Publications (1)

Publication Number Publication Date
CN211614862U true CN211614862U (en) 2020-10-02

Family

ID=72618968

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020134075.XU Active CN211614862U (en) 2020-01-21 2020-01-21 Assembly detection device for rotor machining

Country Status (1)

Country Link
CN (1) CN211614862U (en)

Similar Documents

Publication Publication Date Title
CN111168382B (en) Assembly detection device for rotor machining
CN108387276B (en) Lithium battery checking equipment
CN110125026B (en) Thickness measuring equipment
CN108775887A (en) A kind of detection method of lithium battery
CN106824829A (en) ICT turntable testers
CN111230494A (en) Bearing pressing machine
CN108507518A (en) A kind of lithium battery inspection equipment
CN108598592A (en) Lithium battery examines equipment
CN214024437U (en) General type terminal assembly quality
CN112758677A (en) Automatic jig cover plate elasticity testing device and testing method
CN111168381B (en) Structure for detecting height of double pressed workpieces simultaneously
CN108372132A (en) A kind of defective work detects separator automatically
CN211614862U (en) Assembly detection device for rotor machining
CN211614861U (en) Structure for detecting height of double pressed workpieces simultaneously
CN108767285A (en) A kind of quadrate lithium battery checking machine
CN208390475U (en) A kind of rejected product detects separator automatically
CN209249428U (en) A kind of chip gold thread detection machine
CN213230485U (en) Side pushes away feed mechanism
CN108759750A (en) New energy cell inspection equipment
CN219227962U (en) High-precision automatic plate fixing machine
CN211463952U (en) Full-automatic height detection machine for precision part
CN218352364U (en) Motor gasket and clamp spring mounting equipment
CN214702068U (en) Automatic detection line for motor rotor iron core
CN214894791U (en) Stator vibration test equipment
CN213495042U (en) Automatic pressure detection device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20221215

Address after: No. 28, Guangming Middle Road, Haiyou Street, Sanmen County, Taizhou, Zhejiang 318000

Patentee after: Juli Aoxuan Technology (Zhejiang) Co.,Ltd.

Address before: No.8, Guangming Middle Road, Chengguan, Sanmen County, Taizhou City, Zhejiang Province, 317100

Patentee before: ZHEJIANG JULI ELECTRICAL MACHINERY EQUIPMENT Co.,Ltd.