Adsorption conveying mechanism for injection molding part

Through the material suction transmission module driven by the X-axis, Y-axis and Z-axis transmission modules, the inconvenience and inefficiency of manual delivery and discharge of injection molded parts is solved, and efficient and accurate automatic material collection is achieved.

CN223186861UActive Publication Date: 2025-08-05DONGGUAN SAITUO PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202421252348.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-03
Publication Date
2025-08-05
Estimated Expiration
2034-06-03

AI Technical Summary

Technical Problem

The existing feeding and unloading methods of injection molded parts have problems such as inconvenient operation, insecurity, low work efficiency, high labor intensity, time-consuming and labor-intensive and high labor costs.

Method used

The material-absorbing transmission module driven by X-axis transmission module, Y-axis transmission module and Z-axis transmission module are used to absorb injection molded parts through the adsorption module, and position adjustment is achieved through the three-axis transmission module to achieve automatic material collection.

Benefits of technology

It improves the material collection efficiency of injection molded parts, reduces labor intensity, improves material collection accuracy and speed, and enhances the degree of automation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223186861U_ABST
Patent Text Reader

Abstract

The utility model discloses an adsorption conveying mechanism for injection molded parts, which comprises a material adsorption module for adsorbing materials to the injection molded parts and a material adsorption transmission module for driving the material adsorption module to adjust the position, and the material adsorption transmission module comprises an X-axis transmission module, a Y-axis transmission module and a Z-axis transmission module, the Z-axis transmission module is movably arranged on the Y-axis transmission module, the X-axis transmission module is movably arranged on the Z-axis transmission module, the material adsorption module comprises a fixed support and a plurality of adsorption parts, the fixed support is fixed on the X-axis transmission module, and the adsorption parts are fixed on the fixed support; the Y-axis transmission module is used for driving the Z-axis transmission module, the X-axis transmission module and the material adsorption module to move in the Y-axis direction, the Z-axis transmission module is used for driving the X-axis transmission module and the material adsorption module to move in the Z-axis direction, the X-axis transmission module is used for driving the material adsorption module to move in the X-axis direction, and the adsorption part is used for adsorbing injection molding parts.
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Description

Technical Field

[0001] The utility model relates to the technical field of adsorption and transmission, in particular to an adsorption and transmission mechanism for injection molded parts. Background Art

[0002] Injection molded parts are plastic products of various shapes made by injection molding machines using thermoplastics or thermosetting plastics in plastic molding molds. They are widely used in various fields. After injection molding, existing injection molded parts need to be removed and manually transported. This method of transporting and unloading is very inconvenient and unsafe, with low work efficiency, high labor intensity, time-consuming and labor-intensive, and high labor costs.

[0003] In view of the problems in the related technology of manually conveying and unloading injection molded parts, such as being very inconvenient and unsafe to operate, low work efficiency, high labor intensity, time-consuming and labor-intensive, and high labor costs, there is still a lack of a better technical solution. Utility Model Content

[0004] In view of this, it is necessary to provide an adsorption conveying mechanism for injection molded parts to at least solve the problems in the related art of manual conveying and unloading of injection molded parts, such as very inconvenient and unsafe operation, low work efficiency, high labor intensity, time-consuming and labor-intensive, and high labor costs.

[0005] An embodiment of the present application provides an adsorption and conveying mechanism for injection molded parts, which includes a material adsorption module for adsorbing materials onto injection molded parts, and a material adsorption transmission module for driving the material adsorption module to adjust its position, the material adsorption transmission module includes an X-axis transmission module, a Y-axis transmission module and a Z-axis transmission module, the Z-axis transmission module is movably arranged on the Y-axis transmission module, the X-axis transmission module is movably arranged on the Z-axis transmission module, the material adsorption module includes a fixed bracket and a plurality of adsorption parts, the fixed bracket is fixed on the X-axis transmission module, and the plurality of adsorption parts are fixed on the fixed bracket; wherein, the Y-axis transmission module is used to drive the Z-axis transmission module, the X-axis transmission module and the material adsorption module to move along the Y-axis direction, the Z-axis transmission module is used to drive the X-axis transmission module and the material adsorption module to move along the Z-axis direction, the X-axis transmission module is used to drive the material adsorption module to move along the X-axis direction, and the adsorption part is used to adsorb the injection molded parts.

[0006] In one embodiment, the Y-axis transmission module includes a Y-axis fixed seat, a Y-axis driving device, a Y-axis transmission device and a Y-axis movable seat, the Y-axis driving device and the Y-axis transmission device are both arranged on the Y-axis fixed seat, the Y-axis driving device is transmission-connected to the Y-axis transmission device, the Y-axis movable seat is arranged on the Y-axis transmission device, and the Z-axis transmission module is arranged on the Y-axis movable seat; wherein, the Y-axis driving device drives the Y-axis movable seat to move on the Y-axis fixed seat through the Y-axis transmission device, thereby driving the Z-axis transmission module to move along the Y-axis direction.

[0007] In one embodiment, the Y-axis driving device includes a Y-axis driving member and a Y-axis coupling, the Y-axis transmission device includes a Y-axis screw, a Y-axis screw nut, a Y-axis transmission bearing, a Y-axis bearing fixing seat, a Y-axis slide rail and a Y-axis slider, the Y-axis driving member, the Y-axis bearing fixing seat and the Y-axis slide rail are all fixed on the Y-axis fixing seat, the Y-axis coupling is arranged between the Y-axis screw and the Y-axis driving member, the Y-axis screw and the Y-axis driving member are connected by the Y-axis coupling, and the Y-axis transmission bearing is rotatably arranged on the Y-axis. The Y-axis bearing is fixed on the seat and sleeved on the Y-axis screw, the Y-axis screw nut is sleeved on the Y-axis screw, the Y-axis movable seat is fixed on the Y-axis screw nut, and the Y-axis slider is fixed to the lower end of the Y-axis movable seat and slidably arranged on the surface of the Y-axis slide rail; wherein, the Y-axis driving member drives the Y-axis coupling, the Y-axis transmission bearing and the Y-axis screw to rotate, thereby driving the Y-axis screw nut to move on the Y-axis screw, and then driving the Y-axis movable seat and the Y-axis slider to move on the Y-axis slide rail.

[0008] In one embodiment, the Y-axis driving member is any one of a driving motor and a rotary cylinder.

[0009] In one embodiment, the Z-axis transmission module includes a Z-axis fixed seat, a Z-axis driving device, a Z-axis transmission device and a Z-axis movable seat, the Z-axis fixed seat is arranged on the Y-axis movable seat, the Z-axis driving device and the Z-axis transmission device are both arranged on the Z-axis fixed seat, the Z-axis driving device is transmission-connected to the Z-axis transmission device, the Z-axis movable seat is arranged on the Z-axis transmission device, and the X-axis transmission module is arranged on the Z-axis movable seat; wherein, the Z-axis driving device drives the Z-axis movable seat to move on the Z-axis fixed seat through the Z-axis transmission device, thereby driving the X-axis transmission module to move along the Z-axis direction.

[0010] In one embodiment, the Z-axis drive device includes a Z-axis drive member and a Z-axis coupling, the Z-axis transmission device includes a Z-axis screw, a Z-axis screw nut, a Z-axis transmission bearing, a Z-axis bearing fixing seat, a Z-axis slide rail and a Z-axis slider, the Z-axis drive member, the Z-axis bearing fixing seat and the Z-axis slide rail are all fixed on the Z-axis fixing seat, the Z-axis coupling is arranged between the Z-axis screw and the Z-axis drive member, the Z-axis screw and the Z-axis drive member are connected by the Z-axis coupling, and the Z-axis transmission bearing is rotated and arranged on the Z-axis. The Z-axis bearing is fixed on the seat and sleeved on the Z-axis screw, the Z-axis screw nut is sleeved on the Z-axis screw, the Z-axis movable seat is fixed on the Z-axis screw nut, and the Z-axis slider is fixed to the lower end of the Z-axis movable seat and slidably arranged on the surface of the Z-axis slide rail; wherein, the Z-axis driving member drives the Z-axis coupling, the Z-axis transmission bearing and the Z-axis screw to rotate, thereby driving the Z-axis screw nut to move on the Z-axis screw, and then driving the Z-axis movable seat and the Z-axis slider to move on the Z-axis slide rail.

[0011] In one embodiment, the Z-axis driving component is any one of a driving motor and a rotary cylinder.

[0012] In one embodiment, the X-axis transmission module includes an X-axis fixed seat, an X-axis driving device, an X-axis transmission device and an X-axis movable seat, the X-axis fixed seat is arranged on the Z-axis movable seat, the X-axis driving device and the X-axis transmission device are both arranged on the X-axis fixed seat, the X-axis driving device is transmission-connected to the X-axis transmission device, the X-axis movable seat is arranged on the X-axis transmission device, and the material adsorption module is arranged on the X-axis movable seat; wherein, the X-axis driving device drives the X-axis movable seat and moves on the X-axis fixed seat through the X-axis transmission device, thereby driving the material adsorption module to move along the X-axis direction.

[0013] In one embodiment, the X-axis drive device includes an X-axis drive member and an X-axis coupling, the X-axis transmission device includes an X-axis screw, an X-axis screw nut, an X-axis transmission bearing, an X-axis bearing fixing seat, an X-axis slide rail and an X-axis slider, the X-axis drive member, the X-axis bearing fixing seat and the X-axis slide rail are all fixed on the X-axis fixing seat, the X-axis coupling is arranged between the X-axis screw and the X-axis drive member, the X-axis screw and the X-axis drive member are connected by the X-axis coupling, and the X-axis transmission bearing is rotated and arranged on the X-axis. The X-axis bearing is fixed on the seat and sleeved on the X-axis screw, the X-axis screw nut is sleeved on the X-axis screw, the X-axis movable seat is fixed on the X-axis screw nut, and the X-axis slider is fixed to the lower end of the X-axis movable seat and slidably arranged on the surface of the X-axis slide rail; wherein, the X-axis driving member drives the X-axis coupling, the X-axis transmission bearing and the X-axis screw to rotate, thereby driving the X-axis screw nut to move on the X-axis screw, and then driving the X-axis movable seat and the X-axis slider to move on the X-axis slide rail.

[0014] In one embodiment, the X-axis driving member is any one of a driving motor and a rotary cylinder.

[0015] The beneficial effects of the present utility model are as follows: the present application uses the driving motor or rotary cylinder of the X-axis transmission module, the Y-axis transmission module, and the Z-axis transmission module to deliver the material adsorption module to the specified position, and then realizes the adsorption and material picking of the injection molded parts. The mechanism is simple to operate and can quickly realize the injection molded parts material picking work, while improving the detection work efficiency and greatly reducing the labor intensity. The position of the material adsorption module can be adjusted up and down, left and right, front and back, thereby improving the material picking accuracy of the material adsorption module and the speed of material picking and feeding. It has a high degree of automation and strong practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present application;

[0017] Figure 2 This is a schematic structural diagram of the Y-axis transmission module according to an embodiment of the present application;

[0018] Figure 3 This is a schematic structural diagram of the Z-axis transmission module according to an embodiment of the present application;

[0019] Figure 4 This is a structural diagram of the X-axis transmission module and the material adsorption module of an embodiment of the present application;

[0020] Figure 5 This is a structural diagram of the X-axis transmission module of an embodiment of the present application. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] It should be noted that when a component is referred to as being "mounted on" another component, it may be mounted directly on the other component or there may be a central component. When a component is considered to be "set on" another component, it may be directly set on the other component or there may be a central component. When a component is considered to be "fixed to" another component, it may be directly fixed to the other component or there may be a central component.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meanings as those commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of this invention are for the purpose of describing specific embodiments only and are not intended to limit this invention. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.

[0024] See also Figures 1 to 5 The embodiment of the present application provides an adsorption and conveying mechanism for injection molded parts, which includes a material adsorption module 100 for adsorbing materials onto the injection molded parts, and a feed transmission module 200 for driving the material adsorption module 100 to adjust its position. The feed transmission module 200 includes an X-axis transmission module 21, a Y-axis transmission module 22, and a Z-axis transmission module 23. The Z-axis transmission module 23 is movably arranged on the Y-axis transmission module 22, and the X-axis transmission module 21 is movably arranged on the Z-axis transmission module 23. The material adsorption module 100 includes a fixed bracket 11 and a plurality of adsorption members 12. The fixed bracket 11 is fixed to the X-axis transmission module 21, and the plurality of adsorption members 12 are fixed to the fixed bracket 11.

[0025] It should be noted that the Y-axis transmission module 22 is used to drive the Z-axis transmission module 23, the X-axis transmission module 21 and the material adsorption module 100 to move along the Y-axis direction, the Z-axis transmission module 23 is used to drive the X-axis transmission module 21 and the material adsorption module 100 to move along the Z-axis direction, the X-axis transmission module 21 is used to drive the material adsorption module 100 to move along the X-axis direction, and the adsorption part 12 is used to adsorb the injection molded parts.

[0026] In some optional embodiments, the Y-axis transmission module 22 includes a Y-axis fixed seat 221, a Y-axis driving device, a Y-axis transmission device and a Y-axis movable seat 222. The Y-axis driving device and the Y-axis transmission device are both arranged on the Y-axis fixed seat 221, the Y-axis driving device is connected to the Y-axis transmission device for transmission, the Y-axis movable seat 222 is arranged on the Y-axis transmission device, and the Z-axis transmission module 23 is arranged on the Y-axis movable seat 222; wherein, the Y-axis driving device drives the Y-axis movable seat 222 to move on the Y-axis fixed seat 221 through the Y-axis transmission device, thereby driving the Z-axis transmission module 23 to move along the Y-axis direction.

[0027] In some optional embodiments, the Y-axis driving device includes a Y-axis driving member 223 and a Y-axis coupling 224, and the Y-axis transmission device includes a Y-axis screw 225, a Y-axis screw nut 226, a Y-axis transmission bearing, a Y-axis bearing fixing seat 227, a Y-axis slide rail 228 and a Y-axis slider 229. The Y-axis driving member 223, the Y-axis bearing fixing seat 227 and the Y-axis slide rail 228 are all fixed on the Y-axis fixing seat 221, and the Y-axis coupling 224 is provided on the Y-axis screw 225. The Y-axis screw rod 225 is connected to the Y-axis driving member 223 through the Y-axis coupling 224. The Y-axis transmission bearing is rotatably mounted on the Y-axis bearing fixing seat 227 and sleeved on the Y-axis screw rod 225. The Y-axis screw rod nut 226 sleeves on the Y-axis screw rod 225. The Y-axis movable seat 222 is fixed on the Y-axis screw rod nut 226. The Y-axis slider 229 is fixed to the lower end of the Y-axis movable seat 222 and slidably mounted on the surface of the Y-axis slide rail 228.

[0028] It should be noted that the Y-axis driving member 223 drives the Y-axis coupling 224, the Y-axis transmission bearing and the Y-axis screw 225 to rotate, thereby driving the Y-axis screw nut 226 to move on the Y-axis screw 225, and then driving the Y-axis moving seat 222 and the Y-axis slider 229 to move on the Y-axis slide rail 228.

[0029] In some optional embodiments, the Y-axis driving member 223 is any one of a driving motor and a rotary cylinder.

[0030] In some optional embodiments, the Z-axis transmission module 23 includes a Z-axis fixed base 231, a Z-axis driving device, a Z-axis transmission device and a Z-axis movable base 232, the Z-axis fixed base 231 is provided on the Y-axis movable base 222, the Z-axis driving device and the Z-axis transmission device are both provided on the Z-axis fixed base 231, the Z-axis driving device is transmission-connected to the Z-axis transmission device, the Z-axis movable base 232 is provided on the Z-axis transmission device, and the X-axis transmission module 21 is provided on the Z-axis movable base 232;

[0031] It should be noted that the Z-axis driving device drives the Z-axis moving seat 232 to move on the Z-axis fixing seat 231 through the Z-axis transmission device, thereby driving the X-axis transmission module 21 to move along the Z-axis direction.

[0032] In some optional embodiments, the Z-axis drive device includes a Z-axis drive member 233 and a Z-axis coupling 234, and the Z-axis transmission device includes a Z-axis screw 235, a Z-axis screw nut 236, a Z-axis transmission bearing, a Z-axis bearing fixing seat 237, a Z-axis slide rail 238 and a Z-axis slider 239. The Z-axis drive member 233, the Z-axis bearing fixing seat 237 and the Z-axis slide rail 238 are all fixed on the Z-axis fixing seat 231, and the Z-axis coupling 234 is provided on the Z-axis screw 235. The Z-axis screw rod 235 is connected to the Z-axis driving member 233 through the Z-axis coupling 234. The Z-axis transmission bearing is rotatably arranged on the Z-axis bearing fixing seat 237 and sleeved on the Z-axis screw rod 235. The Z-axis screw rod nut 236 sleeves on the Z-axis screw rod 235. The Z-axis movable seat 232 is fixed on the Z-axis screw rod nut 236. The Z-axis slider 239 is fixed to the lower end of the Z-axis movable seat 232 and slidably arranged on the surface of the Z-axis slide rail 238.

[0033] It should be noted that the Z-axis driving component 233 drives the Z-axis coupling 234, the Z-axis transmission bearing and the Z-axis screw 235 to rotate, thereby driving the Z-axis screw nut 236 to move on the Z-axis screw 235, and then driving the Z-axis moving seat 232 and the Z-axis slider 239 to move on the Z-axis slide rail 238.

[0034] In some optional embodiments, the Z-axis driving member 233 is any one of a driving motor and a rotary cylinder.

[0035] In some optional embodiments, the X-axis transmission module 21 includes an X-axis fixed base 211, an X-axis driving device, an X-axis transmission device and an X-axis movable base 212, the X-axis fixed base 211 is provided on the Z-axis movable base 232, the X-axis driving device and the X-axis transmission device are both provided on the X-axis fixed base 211, the X-axis driving device is transmission-connected to the X-axis transmission device, the X-axis movable base 212 is provided on the X-axis transmission device, and the material adsorption module 100 is provided on the X-axis movable base 212;

[0036] It should be noted that the X-axis driving device drives the X-axis moving base 212 to move on the X-axis fixed base 211 through the X-axis transmission device, thereby driving the material adsorption module 100 to move along the X-axis direction.

[0037] In some optional embodiments, the X-axis drive device includes an X-axis drive member 213 and an X-axis coupling 214, and the X-axis transmission device includes an X-axis screw 215, an X-axis screw nut 216, an X-axis transmission bearing, an X-axis bearing fixing seat 217, an X-axis slide rail 218 and an X-axis slider 219. The X-axis drive member 213, the X-axis bearing fixing seat 217 and the X-axis slide rail 218 are all fixed on the X-axis fixing seat 211, and the X-axis coupling 214 is provided on the X-axis screw 215. The X-axis screw rod 215 is connected to the X-axis driving member 213 through the X-axis coupling 214. The X-axis transmission bearing is rotatably arranged on the X-axis bearing fixing seat 217 and sleeved on the X-axis screw rod 215. The X-axis screw rod nut 216 sleeves on the X-axis screw rod 215. The X-axis movable seat 212 is fixed on the X-axis screw rod nut 216. The X-axis slider 219 is fixed to the lower end of the X-axis movable seat 212 and slidably arranged on the surface of the X-axis slide rail 218.

[0038] It should be noted that the X-axis driving member 213 drives the X-axis coupling 214, the X-axis transmission bearing and the X-axis screw 215 to rotate, thereby driving the X-axis screw nut 216 to move on the X-axis screw 215, and then driving the X-axis moving seat 212 and the X-axis slider 219 to move on the X-axis slide rail 218.

[0039] In some optional embodiments, the X-axis driving member 213 is any one of a driving motor and a rotary cylinder.

[0040] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0041] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An adsorption conveying mechanism for injection molded parts, characterized in that: It includes a material adsorption module for adsorbing materials to injection molded parts, and a material suction transmission module for driving the material adsorption module to adjust its position, the material suction transmission module includes an X-axis transmission module, a Y-axis transmission module and a Z-axis transmission module, the Z-axis transmission module is movably arranged on the Y-axis transmission module, the X-axis transmission module is movably arranged on the Z-axis transmission module, the material adsorption module includes a fixed bracket and a plurality of adsorption parts, the fixed bracket is fixed on the X-axis transmission module, and the plurality of adsorption parts are fixed on the fixed bracket; wherein, the Y-axis transmission module is used to drive the Z-axis transmission module, the X-axis transmission module and the material adsorption module to move along the Y-axis direction, the Z-axis transmission module is used to drive the X-axis transmission module and the material adsorption module to move along the Z-axis direction, the X-axis transmission module is used to drive the material adsorption module to move along the X-axis direction, and the adsorption part is used to adsorb the injection molded parts.

2. The adsorption conveying mechanism for injection molded parts according to claim 1, characterized in that: The Y-axis transmission module includes a Y-axis fixed seat, a Y-axis driving device, a Y-axis transmission device and a Y-axis movable seat. The Y-axis driving device and the Y-axis transmission device are both arranged on the Y-axis fixed seat, the Y-axis driving device is in transmission connection with the Y-axis transmission device, the Y-axis movable seat is arranged on the Y-axis transmission device, and the Z-axis transmission module is arranged on the Y-axis movable seat; wherein, the Y-axis driving device drives the Y-axis movable seat to move on the Y-axis fixed seat through the Y-axis transmission device, thereby driving the Z-axis transmission module to move along the Y-axis direction.

3. The adsorption conveying mechanism for injection molded parts according to claim 2, characterized in that: The Y-axis driving device includes a Y-axis driving member and a Y-axis coupling. The Y-axis transmission device includes a Y-axis screw, a Y-axis screw nut, a Y-axis transmission bearing, a Y-axis bearing fixing seat, a Y-axis slide rail and a Y-axis slider. The Y-axis driving member, the Y-axis bearing fixing seat and the Y-axis slide rail are all fixed on the Y-axis fixing seat. The Y-axis coupling is arranged between the Y-axis screw and the Y-axis driving member. The Y-axis screw and the Y-axis driving member are connected by the Y-axis coupling. The Y-axis transmission bearing is rotatably arranged on the Y-axis bearing. The Y-axis guide rail is fixed on a fixed seat and sleeved on the Y-axis screw rod, the Y-axis screw nut is sleeved on the Y-axis screw rod, the Y-axis movable seat is fixed on the Y-axis screw nut, and the Y-axis slider is fixed to the lower end of the Y-axis movable seat and slidably arranged on the surface of the Y-axis slide rail; wherein, the Y-axis driving member drives the Y-axis coupling, the Y-axis transmission bearing and the Y-axis screw rod to rotate, thereby driving the Y-axis screw nut to move on the Y-axis screw rod, and then driving the Y-axis movable seat and the Y-axis slider to move on the Y-axis slide rail.

4. The adsorption conveying mechanism for injection molded parts according to claim 3, characterized in that: The Y-axis driving component is any one of a driving motor and a rotary cylinder.

5. The adsorption conveying mechanism for injection molded parts according to claim 2, characterized in that: The Z-axis transmission module includes a Z-axis fixed seat, a Z-axis driving device, a Z-axis transmission device and a Z-axis movable seat. The Z-axis fixed seat is arranged on the Y-axis movable seat, the Z-axis driving device and the Z-axis transmission device are both arranged on the Z-axis fixed seat, the Z-axis driving device is connected to the Z-axis transmission device in a transmission manner, the Z-axis movable seat is arranged on the Z-axis transmission device, and the X-axis transmission module is arranged on the Z-axis movable seat; wherein, the Z-axis driving device drives the Z-axis movable seat to move on the Z-axis fixed seat through the Z-axis transmission device, thereby driving the X-axis transmission module to move along the Z-axis direction.

6. The adsorption conveying mechanism for injection molded parts according to claim 5, characterized in that: The Z-axis drive device includes a Z-axis drive member and a Z-axis coupling. The Z-axis transmission device includes a Z-axis screw, a Z-axis screw nut, a Z-axis transmission bearing, a Z-axis bearing fixing seat, a Z-axis slide rail and a Z-axis slider. The Z-axis drive member, the Z-axis bearing fixing seat and the Z-axis slide rail are all fixed on the Z-axis fixing seat. The Z-axis coupling is arranged between the Z-axis screw and the Z-axis drive member. The Z-axis screw and the Z-axis drive member are connected by the Z-axis coupling. The Z-axis transmission bearing is rotatably arranged on the Z-axis bearing. The Z-axis drive member drives the Z-axis coupling, the Z-axis transmission bearing and the Z-axis screw to rotate, thereby driving the Z-axis screw nut to move on the Z-axis screw, and then driving the Z-axis moving seat and the Z-axis slider to move on the Z-axis slide rail.

7. The adsorption conveying mechanism for injection molded parts according to claim 6, characterized in that: The Z-axis driving component is any one of a driving motor and a rotary cylinder.

8. The adsorption conveying mechanism for injection molded parts according to claim 5, characterized in that: The X-axis transmission module includes an X-axis fixed seat, an X-axis driving device, an X-axis transmission device and an X-axis movable seat. The X-axis fixed seat is arranged on the Z-axis movable seat, the X-axis driving device and the X-axis transmission device are both arranged on the X-axis fixed seat, the X-axis driving device is transmission-connected to the X-axis transmission device, the X-axis movable seat is arranged on the X-axis transmission device, and the material adsorption module is arranged on the X-axis movable seat; wherein, the X-axis driving device drives the X-axis movable seat and moves on the X-axis fixed seat through the X-axis transmission device, thereby driving the material adsorption module to move along the X-axis direction.

9. The adsorption conveying mechanism for injection molded parts according to claim 8, characterized in that: The X-axis drive device includes an X-axis drive member and an X-axis coupling. The X-axis transmission device includes an X-axis screw, an X-axis screw nut, an X-axis transmission bearing, an X-axis bearing fixing seat, an X-axis slide rail and an X-axis slider. The X-axis drive member, the X-axis bearing fixing seat and the X-axis slide rail are all fixed on the X-axis fixing seat. The X-axis coupling is arranged between the X-axis screw and the X-axis drive member. The X-axis screw and the X-axis drive member are connected by the X-axis coupling. The X-axis transmission bearing is rotatably arranged on the X-axis bearing. The X-axis movable seat is fixed on the X-axis movable seat and is sleeved on the X-axis screw, the X-axis screw nut is sleeved on the X-axis screw, the X-axis movable seat is fixed on the X-axis screw nut, and the X-axis slider is fixed to the lower end of the X-axis movable seat and is slidably arranged on the surface of the X-axis slide rail; wherein, the X-axis driving member drives the X-axis coupling, the X-axis transmission bearing and the X-axis screw to rotate, thereby driving the X-axis screw nut to move on the X-axis screw, and then driving the X-axis movable seat and the X-axis slider to move on the X-axis slide rail.

10. The adsorption conveying mechanism for injection molded parts according to claim 9, characterized in that: The X-axis driving component is any one of a driving motor and a rotary cylinder.