CN208696765U - Electric-motor pump forming equipment in a kind of compressor - Google Patents

Electric-motor pump forming equipment in a kind of compressor Download PDF

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Publication number
CN208696765U
CN208696765U CN201821451326.6U CN201821451326U CN208696765U CN 208696765 U CN208696765 U CN 208696765U CN 201821451326 U CN201821451326 U CN 201821451326U CN 208696765 U CN208696765 U CN 208696765U
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CN
China
Prior art keywords
workbench
slide plate
workpiece
power component
pedestal
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Active
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CN201821451326.6U
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Chinese (zh)
Inventor
胡坚
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NINGBO ANUODAN MACHINERY Co Ltd
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NINGBO ANUODAN MACHINERY Co Ltd
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Priority to CN201821451326.6U priority Critical patent/CN208696765U/en
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Abstract

The utility model discloses electric-motor pump forming equipments in a kind of compressor, including Power Component, it further include rotatable microscope carrier, end mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and tapper mechanism, microscope carrier is cylindrical and side is equipped with 6 identical workbench at predetermined intervals, end mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and tapper mechanism arrange that 6 workbench are used equally for installation workpiece and each workbench is equipped with clamping component around microscope carrier.The utility model multistation is combined as a whole, in whole process, it is participated in from clamping workpiece to workpiece shaping prosthetic, labor intensity of workers reduction, production efficiency is not only made to be improved, and since workpiece is not removed from workbench in process, ensure the consistency of work pieces process, but also the precision of work pieces process is improved.

Description

Electric-motor pump forming equipment in a kind of compressor
Technical field
The utility model relates to compressor electric motor components manufacturing fields, more particularly, to the motor pump housing in a kind of compressor Molding equipment.
Background technique
Refrigeration compressor is the core energy-consuming parts of refrigeration system, refrigeration system it is excellent be by the ability of compressor come It embodies, the most direct effective means for improving refrigerant system efficiency is to improve the efficiency of compressor.Refrigeration compressor application is very Extensively, such as refrigerator, refrigerator-freezer, fresh-keeping, air-conditioning etc..For refrigeration compressor, motor is essential.Motor can will be electric It can be converted into mechanical energy, external rotor electric machine and inner rotor motor can be divided into according to its rotor and stator mounting means.
The pump housing is components important in motor, is as shown in figure a pump body structure, set on the pump housing 111 there are four Support column 112, each support column 112 are equipped with an axis hole 113, and traditional axis hole processing for the pump housing is by manually existing It is drilled to realize one by one on drilling machine, be needed again after drilling by manually carrying out chamfering on chamfering device, Not only processing efficiency is low in this way, but also the machining accuracy of the pump housing is not also high.
Therefore, technical staff has specially designed and developed a equipment for being exclusively used in the processing of the motor pump housing.
Summary of the invention
The technical problem to be solved by the utility model is to provide electric-motor pump forming equipments in a kind of compressor, are intended to pass through The equipment comes, punching, chamfering, tapping flat to pump housing progress end face milling.
Technical solution adopted by the utility model to solve the above technical problems is as follows: electric-motor pump is body formed in a kind of compressor Equipment, including Power Component further include rotatable microscope carrier, end mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfering Mechanism and tapper mechanism, the microscope carrier is cylindrical and side is equipped with 6 identical workbench at predetermined intervals, described End mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and tapper mechanism arranged around microscope carrier, described 6 Workbench is used equally for installation workpiece and each workbench is equipped with clamping component, and 6 workbench press clock-wise order It is respectively set as workbench A, workbench B, workbench C, workbench D, workbench E, workbench F;
The end mill mechanism is right against workbench B, the end mill mechanism can will be shelved on the workpiece on workbench B into Row milling;
First perforating mechanism is right against workbench C, and first perforating mechanism can will be shelved on workbench C Workpiece punched;
Second perforating mechanism is right against workbench D, and second perforating mechanism can will be shelved on workbench D Workpiece punched;
The chamfer mechanism is right against workbench E, the chamfer mechanism can will be shelved on the workpiece on workbench E into Row chamfering;
The tapper mechanism is right against workbench F, the tapper mechanism can will be shelved on the workpiece on workbench F into Row chamfering;
Microscope carrier, end mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and the tapper mechanism with Power Component connection, the microscope carrier can be rotated clockwise;
Whenever the microscope carrier rotation is primary, the workbench A is turned at workbench B location, the workbench B It turns at workbench location of C, the workbench C is turned at the position workbench D, and the workbench D turns to work At the position platform E, the workbench E is turned at the position workbench F, and the workbench F is turned at workbench location A, The initial position setting of the workbench A is clamping workpiece position.
It is further improved as the utility model, the end mill mechanism includes the first pedestal and the first slide plate, described First pedestal is equipped with sliding slot, and first slide plate is movably arranged in sliding slot, and first slide plate and Power Component connect It connects and can be translated along sliding slot, first slide plate is equipped with the milling component connecting with Power Component.
It is further improved as the utility model, the milling component includes the first milling cutter, the second milling cutter and third milling Knife, first milling cutter are suspended at the top of the first slide plate, and second milling cutter, third milling cutter are in parallel horizontal the up and down One slide plate side, second milling cutter and the first milling cutter are orthogonal.First milling cutter is used to carry out in the top planes of workpiece Milling, the second milling cutter, third milling cutter are used to carry out milling to the end face of the support column of workpiece.
It is further improved as the utility model, first perforating mechanism includes the second pedestal and the second slide plate, institute The second slide plate stated is movably arranged on the second pedestal and connect with Power Component, and second pedestal is equipped with and Power Component Several first drill bits of connection, the Power Component can drive several first bits, and second slide plate can be with Several first drill bits are mobile towards workpiece.Several first drill bits are for drilling out macropore to workpiece support styletable face.
It is further improved as the utility model, second perforating mechanism includes third pedestal and third slide plate, institute The third slide plate stated is movably arranged on third pedestal and connect with Power Component, and the third slide plate is equipped with and Power Component Several second drill bits of connection, the Power Component can drive several second bits, and the third slide plate can be with Several second drill bits are mobile towards workpiece, and the mobile stroke of the third slide plate is greater than the mobile stroke of the second slide plate, described The diameters of several second drill bits be respectively less than the diameters of several first drill bits.Several second drill bits are used for workpiece support column macropore Inside drill out aperture.
It is further improved as the utility model, the chamfer mechanism includes the 4th pedestal and the 4th slide plate, described 4th slide plate is movably arranged on the 4th pedestal and connect with Power Component, and the 4th slide plate is equipped with and connect with Power Component Several ball head knifes, the Power Component can drive ball head knife to rotate, and the 4th slide plate can be with several ball head knife courts It is mobile to workpiece.Ball head knife is used to carry out rounding to bore edges big on workpiece.
It is further improved as the utility model, the tapper mechanism includes the 5th pedestal and bracket, the bracket It is movably arranged at the top of the 5th pedestal and is connect with Power Component, the frame bottom is equipped with screw tap, and the screw tap is located at Above workbench F, the Power Component can driving arm rotation move downward.The setting of screw tap at the top of workpiece for carrying out Tapping.
Compared with prior art, the utility model has the advantage of multistation to be combined as a whole, in whole process, from Clamping workpiece is participated in workpiece shaping prosthetic, and labor intensity of workers reduction, production efficiency is not only made to be improved, but also Since workpiece is not removed from workbench in process, it is ensured that the consistency of work pieces process, but also work pieces process Precision is improved.
Detailed description of the invention
Fig. 1 is pump body structure schematic diagram;
Fig. 2 is the utility model structure diagram one;
Fig. 3 is the utility model structure diagram two;
Fig. 4 is the utility model structure diagram two;
Fig. 5 is the utility model structure diagram three;
Fig. 6 is the utility model structure diagram four;
Fig. 7 is the utility model structure diagram five.
Specific embodiment
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only to explain this Utility model is not used to limit the utility model.
As shown in Figures 1 to 7: electric-motor pump forming equipment in a kind of compressor, including Power Component, further include rotatable Microscope carrier (1), end mill mechanism (2), the first perforating mechanism (3), the second perforating mechanism (4), chamfer mechanism (5) and tapper mechanism (6), microscope carrier (1) is cylindrical and side is equipped with 6 identical workbench, end mill mechanism (2), first dozen at predetermined intervals Holes mechanism (3), the second perforating mechanism (4), chamfer mechanism (5) and tapper mechanism (6) arrange that 6 workbench are equal around microscope carrier (1) It can be used for installing workpiece and each workbench be equipped with clamping component (7), 6 workbench are respectively set as work by clock-wise order Make platform A(8), workbench B(9), workbench C(10), workbench D(11), workbench E(12), workbench F(13);
End mill mechanism (2) is right against workbench B(9), end mill mechanism (2) can will be shelved on workbench B(9) on workpiece into Row milling;
First perforating mechanism (3) is right against workbench C(10), the first perforating mechanism (3) can will be shelved on workbench C(10) On workpiece punched;
Second perforating mechanism (4) is right against workbench D(11), the second perforating mechanism (4) can will be shelved on workbench D(11) On workpiece punched;
Chamfer mechanism (5) is right against workbench E(12), chamfer mechanism (5) can will be shelved on workbench E(12) on workpiece Carry out chamfering;
Tapper mechanism (6) is right against workbench F(13), tapper mechanism (6) can will be shelved on workbench F(13) on workpiece Carry out chamfering;
Microscope carrier (1), end mill mechanism (2), the first perforating mechanism (3), the second perforating mechanism (4), chamfer mechanism (5) and tapping Mechanism (6) is connect with Power Component, and microscope carrier (1) can be rotated clockwise;
Whenever microscope carrier (1), rotation is primary, workbench A(8) turn to workbench B(9) at position, workbench B(9) it turns to Workbench C(10) at position, workbench C(10) turn to workbench D(11) and at position, workbench D(11) turn to workbench E (12) at position, workbench E(12) turn to workbench F(13) at position, workbench F(13) turn to workbench A(8) position Place, workbench A(8) initial position setting be clamping workpiece position.
End mill mechanism (2) includes the first pedestal (21) and the first slide plate (22), and the first pedestal (21) is equipped with sliding slot, and first Slide plate (22) is movably arranged in sliding slot, and the first slide plate (22) connect with Power Component and can translate along sliding slot, the first slide plate (22) it is equipped with the milling component connecting with Power Component.
Milling component includes the first milling cutter (23), the second milling cutter (24) and third milling cutter (25), the first milling cutter (23) suspension At the top of the first slide plate (22), the second milling cutter (24), third milling cutter (25) in parallel horizontal in the first slide plate (22) side up and down, Second milling cutter (24) and the first milling cutter (23) are orthogonal.
First perforating mechanism (3) includes the second pedestal (31) and the second slide plate (32), and the second slide plate (32) is movably arranged at the It is connect on two pedestals (31) and with Power Component, the second pedestal (31) is equipped with several first drill bits connecting with Power Component (33), Power Component can drive several first drill bits (33) to rotate, and the second slide plate (32) can be with several first drill bit (33) courts It is mobile to workpiece.
Second perforating mechanism (4) includes third pedestal (42) and third slide plate (43), and third slide plate (43) is movably arranged at It is connect on three pedestals (42) and with Power Component, third slide plate (43) is equipped with several second drill bits connecting with Power Component (44), Power Component can drive several second drill bits (44) to rotate, and third slide plate (43) can be with several second drill bit (44) courts Mobile to workpiece, the mobile stroke of third slide plate (43) is greater than the second slide plate (32) mobile stroke, several second drill bits (44) Diameter be respectively less than the diameters of several first drill bits (33).
Chamfer mechanism (5) includes the 4th pedestal (52) and the 4th slide plate (53), and the 4th slide plate (53) is movably arranged at the 4th base It is connect on seat (52) and with Power Component, the 4th slide plate (53) is equipped with several ball head knifes (54) connecting with Power Component, moves Power component can drive ball head knife (54) to rotate, and the 4th slide plate (53) can be mobile towards workpiece with several ball head knifes (54).
Tapper mechanism (6) includes the 5th pedestal (62) and bracket (63), and bracket (63) is movably arranged on the 5th pedestal (62) Top and it is connect with Power Component, bracket (63) bottom is equipped with screw tap (64), and screw tap (64) is located at workbench F(13) top, it is dynamic Power component can driving arm (63) rotation move downward.
Workpiece process: workpiece A is first packed into workbench A(8) with to be processed, then microscope carrier driven by Power Component (1) primary rotation, workbench A(8) turn to workbench B(9) initial position, other each workbench have also become position accordingly It sets, then the end face by Power Component driving end mill mechanism (2) to the support column of the workpiece A on workbench A(8), Yi Jigong Plane at the top of part A carries out milling, simultaneously as workbench F(13) be rotated to workbench A(8) initial position, working Platform F(13) on be packed into workpiece B;
After to workpiece A milling, then pass through second of rotation of Power Component driving microscope carrier (1), workbench A(8) rotation To the initial position of workbench C(10), other each workbench have also become position accordingly, then pass through Power Component driving the One perforating mechanism (3) is to drilling out macropore, corresponding workbench F(13 on the support column of the workpiece A on workbench A(8)) it turns to Workbench B(9) initial position, workbench E(12) be rotated to workbench A(8) initial position, driven by Power Component Moved end milling mechanism (2) carries out milling (consistent with the milling process of workpiece A) to workpiece B, and workpiece C is packed on workbench E(12);
To workpiece A, drilling is finished for the first time, after workpiece B milling, then passes through Power Component driving microscope carrier (1) third time Rotation, workbench A(8) turn to workbench D(11) initial position, other each workbench have also become position accordingly, have connect By drilling out aperture, phase in Power Component driving the second perforating mechanism (4) macropore for drilling out to the workpiece A on workbench A(8) The workbench F(13 answered) be rotated to workbench C(10) initial position, workbench E(12) turn to workbench B(9) just Beginning position, workbench D(11) turn to workbench A(8) initial position, pass through Power Component driving the first perforating mechanism (3) First time drilling (consistent with the first time boring procedure of workpiece A) is carried out to workpiece B, end mill mechanism is driven by Power Component (2) milling (consistent with the milling process of workpiece A) is carried out to workpiece C, workpiece D is packed on workbench D(11);
It drills and finishes to second of workpiece A, drilling finishes workpiece B for the first time, after workpiece C milling, then passes through power Component driver microscope carrier (1) the 4th time rotation, workbench A(8) turn to workbench E(12) initial position, other each work Platform has become position accordingly, then by Power Component driving chamfer mechanism (5) to the side of the workpiece A macropore on workbench A(8) Edge carry out chamfering, corresponding workbench F(13) turn to workbench D(11) initial position, workbench E(12) turn to work Platform C(10) initial position, workbench D(11) turn to workbench B(9) initial position, workbench C(10) turn to work Platform A(8) initial position, second drilling is carried out (with workpiece A to workpiece B by Power Component driving the second perforating mechanism (4) Second of boring procedure it is consistent), by Power Component driving the first perforating mechanism (3) to workpiece C carry out first time drilling (with The first time boring procedure of workpiece A is consistent), milling is carried out (with workpiece A to workpiece D by Power Component driving end mill mechanism (2) Milling process it is consistent), on workbench C(10) be packed into workpiece E;
It is finished to workpiece A chamfering, second of drilling of workpiece B finishes, and drilling finishes workpiece C for the first time, and workpiece D milling finishes Afterwards, then pass through Power Component drive microscope carrier (1) the 5th time rotation, workbench A(8) turn to workbench F(13) initial position, Other each workbench have become position accordingly, then by Power Component driving tapper mechanism (6) on workbench A(8) Workpiece A top planes carry out tapping, corresponding workbench F(13) turn to workbench E(12) initial position, workbench E (12) turn to workbench D(11) initial position, workbench D(11) turn to workbench C(10) initial position, workbench C(10) turn to workbench B(9) initial position, workbench B(9) turn to workbench A(8) initial position, pass through power Component driver chamfer mechanism (5) carries out chamfering (consistent with the chamfer process of workpiece A) to workpiece B, passes through Power Component driving the Secondary perforating mechanism carries out second of drilling (consistent with second of boring procedure of workpiece A) to workpiece C, is driven by Power Component Dynamic first time perforating mechanism carries out first time drilling (consistent with the first time boring procedure of workpiece A) to workpiece D, passes through power packages Part drives end mill mechanism (2) to carry out milling to workpiece E, and workpiece F is packed on workbench B(9);
It is finished to workpiece A tapping, workpiece B chamfering finishes, and second of punching of workpiece C finishes, and workpiece D has been punched for the first time Finish, after workpiece E milling, microscope carrier (1) the 6th time rotation, workbench A(8 driven by Power Component) turn to workbench A (8) initial position, other workbench have also become position accordingly, and the workpiece A completed the process is finally removed from workbench A(8);
Unprocessed workpiece A is packed on workbench A(8) again, repetitive cycling carries out above-mentioned process.
Above-mentioned workpiece A, workpiece B, workpiece C, workpiece D, workpiece E, workpiece F are with a batch of workpiece.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Made any modifications, equivalent replacements, and improvements etc., should be included in the utility model within the spirit and principle of utility model Protection scope within.

Claims (8)

1. electric-motor pump forming equipment in a kind of compressor, including Power Component, it is characterised in that further include rotatable microscope carrier, End mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and tapper mechanism, the microscope carrier is cylindrical and side Portion is equipped with 6 identical workbench at predetermined intervals, the end mill mechanism, the first perforating mechanism, the second perforating mechanism, Chamfer mechanism and tapper mechanism arrange that 6 workbench are used equally on installation workpiece and each workbench around microscope carrier Equipped with clamping component, 6 workbench are respectively set as workbench A, workbench B, workbench C, work by clock-wise order Make platform D, workbench E, workbench F;
The end mill mechanism is right against workbench B, and the end mill mechanism can mill the workpiece being shelved on workbench B It cuts;
First perforating mechanism is right against workbench C, and first perforating mechanism can will be shelved on the work on workbench C Part is punched;
Second perforating mechanism is right against workbench D, and second perforating mechanism can will be shelved on the work on workbench D Part is punched;
The chamfer mechanism is right against workbench E, and the chamfer mechanism can fall the workpiece being shelved on workbench E Angle;
The tapper mechanism is right against workbench F, and the tapper mechanism can fall the workpiece being shelved on workbench F Angle;
Microscope carrier, end mill mechanism, the first perforating mechanism, the second perforating mechanism, chamfer mechanism and the tapper mechanism is and power Component connection, the microscope carrier can be rotated clockwise;
Whenever the microscope carrier rotation is primary, the workbench A is turned at workbench B location, the workbench B rotation To workbench location of C, the workbench C is turned at the position workbench D, and the workbench D turns to workbench E Place is set, the workbench E is turned at the position workbench F, and the workbench F is turned at workbench location A, described The initial position setting of workbench A is clamping workpiece position.
2. electric-motor pump forming equipment in a kind of compressor according to claim 1, it is characterised in that the end milling machine Structure includes the first pedestal and the first slide plate, and first pedestal is equipped with sliding slot, and first slide plate is movably arranged on cunning In slot, first slide plate connect with Power Component and can translate along sliding slot, and first slide plate is equipped with and power The milling component of component connection.
3. electric-motor pump forming equipment in a kind of compressor according to claim 2, it is characterised in that the milling group Part includes the first milling cutter, the second milling cutter and third milling cutter, and first milling cutter is suspended at the top of the first slide plate, and described second In parallel horizontal in the first slide plate side up and down, second milling cutter and the first milling cutter are orthogonal for milling cutter, third milling cutter.
4. electric-motor pump forming equipment in a kind of compressor according to claim 2, it is characterised in that described first dozen Holes mechanism includes the second pedestal and the second slide plate, and second slide plate is movably arranged on the second pedestal and connects with Power Component It connects, second pedestal is equipped with several first drill bits connecting with Power Component, and the Power Component can drive several First bit, second slide plate can be mobile towards workpiece with several first drill bits.
5. electric-motor pump forming equipment in a kind of compressor according to claim 4, it is characterised in that described second dozen Holes mechanism includes third pedestal and third slide plate, and the third slide plate is movably arranged on third pedestal and connects with Power Component It connects, the third slide plate is equipped with several second drill bits connecting with Power Component, and the Power Component can drive several Second bit, the third slide plate can be mobile towards workpiece with several second drill bits, and the third slide plate is mobile Stroke be greater than the mobile stroke of the second slide plate, the diameter of several second drill bits is respectively less than the straight of several first drill bits Diameter.
6. electric-motor pump forming equipment in a kind of compressor according to claim 5, it is characterised in that the beveler Structure includes the 4th pedestal and the 4th slide plate, and the 4th slide plate is movably arranged on the 4th pedestal and connect with Power Component, institute The 4th slide plate stated is equipped with several ball head knifes connecting with Power Component, and the Power Component can drive ball head knife to rotate, 4th slide plate can be mobile towards workpiece with several ball head knifes.
7. electric-motor pump forming equipment in a kind of compressor according to claim 6, it is characterised in that the tapping machine Structure includes the 5th pedestal and bracket, and the bracket is movably arranged at the top of the 5th pedestal and connect with Power Component, described Frame bottom is equipped with screw tap, and the screw tap is located above workbench F, and the Power Component can the downward fortune of driving arm rotation It is dynamic.
8. electric-motor pump forming equipment in a kind of compressor according to claim 1, it is characterised in that the power packages Part includes several rotating electric machines and several servo motors.
CN201821451326.6U 2018-09-05 2018-09-05 Electric-motor pump forming equipment in a kind of compressor Active CN208696765U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821451326.6U CN208696765U (en) 2018-09-05 2018-09-05 Electric-motor pump forming equipment in a kind of compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821451326.6U CN208696765U (en) 2018-09-05 2018-09-05 Electric-motor pump forming equipment in a kind of compressor

Publications (1)

Publication Number Publication Date
CN208696765U true CN208696765U (en) 2019-04-05

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Application Number Title Priority Date Filing Date
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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108942241A (en) * 2018-09-05 2018-12-07 宁波阿诺丹机械有限公司 Electric-motor pump forming equipment in a kind of compressor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108942241A (en) * 2018-09-05 2018-12-07 宁波阿诺丹机械有限公司 Electric-motor pump forming equipment in a kind of compressor

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A forming equipment for motor pump body in compressor

Effective date of registration: 20211216

Granted publication date: 20190405

Pledgee: China Construction Bank Corporation Ninghai sub branch

Pledgor: NINGBO ANUODAN MACHINERY Co.,Ltd.

Registration number: Y2021330002558