CN212256697U - Circle body forming lathe tool teaching aid based on 3D prints - Google Patents

Circle body forming lathe tool teaching aid based on 3D prints Download PDF

Info

Publication number
CN212256697U
CN212256697U CN201821555655.5U CN201821555655U CN212256697U CN 212256697 U CN212256697 U CN 212256697U CN 201821555655 U CN201821555655 U CN 201821555655U CN 212256697 U CN212256697 U CN 212256697U
Authority
CN
China
Prior art keywords
body forming
teaching aid
turning tool
round body
blade
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
CN201821555655.5U
Other languages
Chinese (zh)
Inventor
李国和
赵梦迎
刘蒙
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.)
Tianjin Vocational And Technical Normal University
Tianjin University of Technology
Original Assignee
Tianjin Vocational And Technical Normal University
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 Tianjin Vocational And Technical Normal University filed Critical Tianjin Vocational And Technical Normal University
Priority to CN201821555655.5U priority Critical patent/CN212256697U/en
Application granted granted Critical
Publication of CN212256697U publication Critical patent/CN212256697U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Knives (AREA)

Abstract

The invention relates to a round body forming turning tool teaching aid based on 3D printing, which comprises a tool handle (1), a blade (2), a shaft (3), a nut (4), a screw (5) and a pin (6), wherein the whole structure of the round body forming turning tool is displayed after assembly, and the round body forming turning tool teaching aid is characterized in that: all parts are printed through 3D, the structure of the knife handle (1), the blade (2), the shaft (3), the nut (4), the screw (5) and the pin (6) can be displayed independently, and the whole structure can also be assembled and displayed. The spare part adopts the material of different colours to print, strengthens demonstration effect, and the assembly is firm and convenient to use. The part with larger size adopts a hollow structure for 3D printing. The teaching aid makes full use of the advantages of the 3D printing technology in the aspect of model manufacturing, adopts the visual three-dimensional model, shows the component parts and the overall structure of the round body forming turning tool, and has the advantages of high strength, small quality, no peculiar smell, cleanness, environmental protection, low price, no material waste and low cost.

Description

Circle body forming lathe tool teaching aid based on 3D prints
Technical Field
The invention relates to a turning tool teaching aid for circular forming based on 3D printing, and belongs to the field of teaching instruments.
Background
The students cultured in the machine manufacturing engineering course have the basic capability of reasonably selecting machine tools and cutters and determining the processing method of typical parts, and lay a foundation for learning of special courses of numerical control processing and mold design. Wherein knowledge of the knife requires that students be familiar with the knife structure. Most students are difficult to imagine the base structure of the cutter due to the weak basic knowledge of mechanical drawing and the lack of space imagination. The traditional tool teaching model is manufactured by adopting an organic glass plate adhesion splicing method, and has the problems of less reflected section information, inconvenient and reliable connection of components and lower strength. The 3D printing technique, also called additive manufacturing, is a technique for constructing objects by layer-by-layer printing using bondable materials such as metal powder or plastic wire based on digital model files. The technology is applied to the fields of mold manufacturing, model manufacturing in the field of industrial design and direct manufacturing of parts at a later time, and has application in the fields of automobiles, aerospace, medical treatment, education, geographic information, civil engineering and the like. With the maturity of desktop 3D printers and the reduction of material costs, the application field in the aspect of modeling is rapidly expanding. Therefore, based on the 3D printing technology, various teaching aid models are developed, a good idea is provided for the design and manufacture of teaching instruments, and the classroom teaching requirements are better met.
Disclosure of Invention
The invention provides a round body forming turning tool teaching aid based on 3D printing, which makes full use of the advantages of a 3D printing technology in the aspect of model manufacturing, visually displays the tool structure of a round body forming turning tool and better meets the requirements of classroom teaching.
The technical scheme adopted by the invention for solving the technical problems is as follows:
1. the utility model provides a circle body forming lathe tool teaching aid based on 3D prints, includes handle of a knife (1), blade (2), axle (3), nut (4), screw (5) and round pin (6), can demonstrate the overall structure of circle body forming lathe tool after the assembly.
2. A circle body shaping lathe tool teaching aid based on 3D prints, its characterized in that: all parts are printed through 3D, the structure of the knife handle (1), the blade (2), the shaft (3), the nut (4), the screw (5) and the pin (6) can be displayed independently, and the whole structure can also be assembled and displayed.
3. A circle body shaping lathe tool teaching aid based on 3D prints, its characterized in that: the parts are printed by adopting materials with different colors, so that the demonstration effect of the teaching aid is enhanced.
4. A circle body shaping lathe tool teaching aid based on 3D prints, its characterized in that: the great part of size adopts the hollow structure that 3D printed, and intensity is high and the quality is little.
The beneficial effects obtained by the invention are as follows:
1. and a simple and visual three-dimensional model is adopted to display the components and the integral structure of the round body forming turning tool.
2. All parts are printed through 3D and made, and the parts are printed by adopting materials with different colors. The requirement of assembly precision is met, the assembly is firm, and the use is convenient.
3. The great part of size all adopts 3D to print hollow structure, and intensity is high and the quality is little, has no peculiar smell, clean environmental protection, low price, no material waste, advantage with low costs simultaneously.
Drawings
Fig. 1 is an assembled model of a round body forming turning tool.
Detailed Description
The present invention will be further described with reference to the following examples.
Example 1 was carried out:
the device comprises a tool shank (1), a blade (2), a shaft (3), a nut (4), a screw (5), a pin (6), a part display part and a round body forming turning tool assembling model display part, and is shown in figure 1. The blade (2) is arranged on the cutter handle (1) through the shaft (3), the position of the blade (2) is fixed through the bolts (5) and (6), and the blade (2) is clamped on the cutter handle (1) through the nut (4), so that the assembly of the round-body forming turning tool model is completed. And the integral structure of the round body forming lathe tool is displayed through the assembling model, and all the components are displayed after being disassembled.

Claims (1)

1. The utility model provides a circle body forming lathe tool teaching aid based on 3D prints, includes handle of a knife (1), blade (2), axle (3), nut (4), screw (5) and round pin (6), can demonstrate the overall structure of circle body forming lathe tool after the assembly, its characterized in that: all spare parts are printed through 3D and are accomplished, and handle of a knife (1), blade (2), axle (3), nut (4), screw (5) and round pin (6) can demonstrate alone, and spare part adopts the material of different colours to print.
CN201821555655.5U 2018-09-25 2018-09-25 Circle body forming lathe tool teaching aid based on 3D prints Active CN212256697U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821555655.5U CN212256697U (en) 2018-09-25 2018-09-25 Circle body forming lathe tool teaching aid based on 3D prints

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821555655.5U CN212256697U (en) 2018-09-25 2018-09-25 Circle body forming lathe tool teaching aid based on 3D prints

Publications (1)

Publication Number Publication Date
CN212256697U true CN212256697U (en) 2020-12-29

Family

ID=73971189

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821555655.5U Active CN212256697U (en) 2018-09-25 2018-09-25 Circle body forming lathe tool teaching aid based on 3D prints

Country Status (1)

Country Link
CN (1) CN212256697U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113878876A (en) * 2021-09-15 2022-01-04 中国第一汽车股份有限公司 3D printing structure of large-size automotive interior part and 3D printing manufacturing method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113878876A (en) * 2021-09-15 2022-01-04 中国第一汽车股份有限公司 3D printing structure of large-size automotive interior part and 3D printing manufacturing method thereof

Similar Documents

Publication Publication Date Title
Lacey 3D printing brings designs to life
Junk et al. New approach to introduction of 3D digital technologies in design education
CN212256697U (en) Circle body forming lathe tool teaching aid based on 3D prints
CN205318728U (en) Medical teaching model of liver and gall pipeline of 3D preparation
Pai et al. Application of 3D printing in education
CN212239224U (en) Upper pressure type mechanically-clamped indexable turning tool teaching aid based on 3D printing
CN212239203U (en) CA6140 lathe headstock teaching aid based on 3D prints
Naprstkova Students connecting to production problems resolutions in CAD/CAM area.
CN206697130U (en) A kind of split type billmpse tool cutting-tool angle teaching aid based on 3D printing
Junk et al. New approaches to teaching design for additive manufacturing
Abreu et al. On the use of a 3D printer in mechatronics projects
Junk et al. Workshop Rapid Prototyping-A new approach to introduce digital manufacturing in engineering education
CN206741778U (en) Arithmetic progression shows teaching aid
CN111597599A (en) Method for manufacturing grid combined type graphic model based on magnetism principle
CN109166442A (en) A kind of Polygonum macrophyllum D. Don teaching aid based on 3D printing
CN210223285U (en) Gear hobbing machine teaching aid based on gear generating method
CN109166445A (en) A kind of split type standard fluted drill teaching aid based on 3D printing
Hong Teaching Reform and Practice of Mold Design and Manufacture Course Based College-Enterprise United Running
Martin et al. Ornament & distortion
Nemec et al. Mapping the Using 3D Printers and the Overview of Printed Models on the 3D Printers at Primary (Lower Secondary) Schools in the Czech Republic
CN204856971U (en) Teaching aid is assisted to rotator technique of painting
Fletcher 3D printing in design engineering education
Fayzullayev et al. The Application of 3d Modeling in the Manufacture of Visual Aids and Models of Laboratory Facilities for Studying the Course Mechanics
Junk et al. New Approaches to the Application of Additive Manufacturing and Reverse Engineering in Design Education
WISEMAN et al. Injection Molding in the Engineering Classroom: Lowering the Barrier of Entry through 3D Printing.

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant