Forming device for anchor bolt machining
By designing a forming device for anchor bolt processing, the problem of frequent manual loading and unloading in anchor bolt processing is solved, and automatic loading and conveying is realized, efficiency is improved and operational hazards are reduced.
Patent Information
- Application Number
- CN202421517262.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-29
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-29
AI Technical Summary
Frequent manual loading and unloading of anchor bolts is required during the processing of anchor bolts, which leads to inefficiency and high operating risk.
A molding device for anchor bolt processing is designed, including a base plate, a material box, a conveyor rack, a loading mechanism, a conveyor and a batch mechanism. Through the cooperation of these components, an automated blank loading and transportation is realized.
It improves the efficiency of anchor bolt forming, reduces the risk of operators, and reduces the labor intensity in manpower.
Smart Images

Figure CN222830651U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of anchor bolt processing, in particular to a forming device for anchor bolt processing. Background Art
[0002] Anchor bolts refer to the general term for all post-anchoring components. They have a wide range and are divided into metal anchor bolts and non-metal anchor bolts according to different raw materials. They are divided into expansion anchor bolts, expansion hole anchor bolts, bonding anchor bolts, concrete screws, nails and concrete nails according to different anchoring mechanisms.
[0003] The anchor bolts need to be formed by a cold heading machine during the processing. When the cold heading machine is in use, the operator is required to place the blank in the cold heading machine for cold heading. After the cold heading is completed, the operator is required to take out the formed anchor bolts and put in new blanks for cold heading. This processing method requires the operator to frequently load and unload materials manually, which is time-consuming and labor-intensive, reduces the efficiency of anchor bolt forming, and is more dangerous for the operator. Utility Model Content
[0004] The utility model provides a forming device for anchor bolt processing, which solves the problem in the related art that operators need to frequently load and unload materials manually, which is time-consuming and labor-intensive, reduces the efficiency of anchor bolt forming, and is highly dangerous for operators.
[0005] The technical solution of the utility model is as follows: a forming device for anchor bolt processing, comprising: a bottom plate, a material box, a conveying frame, a feeding mechanism, a conveying mechanism and an intermittent mechanism;
[0006] The material box is fixedly connected to the top of the bottom plate, and a material outlet is provided on the material box;
[0007] The conveyor frame is located at the discharge port of the material box, one end of the conveyor frame is arranged in an arc shape, and the conveyor frame and the material box are arranged on the bottom plate in an inclined state;
[0008] The feeding mechanism is arranged in the material box and is used for feeding the blanks;
[0009] The conveying mechanism is arranged on the conveying frame and is used for conveying the blank;
[0010] The gap mechanism is arranged on the conveying frame and is used for intermittent feeding of blanks.
[0011] Preferably, the feeding mechanism comprises: a guide frame, a feeding plate and a driving assembly;
[0012] The guide frame is fixedly connected in the material box, and a plurality of guide grooves are provided on the guide frame;
[0013] There are multiple loading plates, and the multiple loading plates are rotatably arranged in the material box, and the multiple loading plates correspond to the multiple guide grooves one by one respectively;
[0014] The driving assembly is arranged on the material box and is used for driving a plurality of loading plates to rotate.
[0015] Further, the driving assembly includes: a rotating rod, a rotating gear, a driving gear and a first motor;
[0016] The rotating rod is rotatably arranged in the material box;
[0017] The rotating gear is fixedly connected to the rotating rod;
[0018] The driving gear is meshed with the rotating gear;
[0019] The first motor is arranged on the material box, and the output end of the first motor is fixedly connected to the driving gear.
[0020] Furthermore, the conveying mechanism includes: a guide cylinder, a support frame, a slide frame, a first spring and a power assembly;
[0021] The guide cylinder is fixedly connected in the conveying frame;
[0022] There are two support frames, and both support frames are fixedly connected to the conveying frame;
[0023] There are two slides, both of which are fixedly connected to the bottom plate, and the two support frames are slidably arranged on the two slides respectively;
[0024] Two first springs are provided on each of the two slides;
[0025] The power assembly is arranged between the two slides and is used to drive the conveying frame to vibrate back and forth on the slides.
[0026] As a further solution of the present application, the power assembly includes: a force-bearing frame, a stabilizing frame, a driving wheel and a second motor;
[0027] The force-bearing frame is fixedly connected to the conveying frame;
[0028] The stabilizing frame is fixedly connected between the two sliding frames;
[0029] The driving wheel is rotatably arranged on the stabilizing frame;
[0030] The second motor is arranged on the stabilizing frame, and the output end of the second motor is fixedly connected to the driving wheel.
[0031] As a further solution of the present application, the intermittent mechanism includes: a rotating frame, a slide box, a third motor and a contact assembly;
[0032] The stabilizing frame is fixedly connected to the conveying frame;
[0033] There are multiple slide boxes, and the multiple slide boxes are rotatably arranged in the rotating frame;
[0034] The third motor is arranged on the rotating frame, and the output end of the third motor is fixedly connected to a plurality of sliding boxes;
[0035] There are multiple contact components, and the multiple contact components are respectively arranged in multiple sliding boxes.
[0036] On the basis of the above scheme, the contact assembly comprises: a slider, a second spring, a contact rod and a contact head;
[0037] The slider is slidably arranged in the slide box;
[0038] The second spring is arranged in the slide box, and the slide block is fixedly connected to the second spring;
[0039] The contact rod is fixedly connected to the slider;
[0040] The contact head is fixedly connected to the contact rod.
[0041] On the basis of the above scheme, a power rod is rotatably connected in the rotating frame, the plurality of sliding boxes are fixedly connected to the power rod, and the output end of the third motor is fixedly connected to the power rod.
[0042] Further on the basis of the above-mentioned solution, two baffles are fixedly connected to the material box, and the two baffles are arranged on the material box in a relatively inclined manner.
[0043] Further on the basis of the above solution, a groove is provided on the contact head, and the contact head is made of rubber.
[0044] The working principle and beneficial effects of the utility model are:
[0045] 1. In the utility model, the cooperation among the feeding mechanism, the conveying mechanism and the gap mechanism facilitates automatic feeding of the blanks instead of manpower.
[0046] 2. In the utility model, the bottom plate, the material box, the conveying frame, the loading mechanism, the conveying mechanism and the intermittent mechanism are coordinated to facilitate automatic intermittent loading of the blanks instead of manpower, thereby improving the efficiency of cold heading of the blanks and reducing the danger to the operators. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] The utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods.
[0048] Figure 1It is a schematic diagram of the overall structure of the utility model;
[0049] Figure 2 It is a structural schematic diagram of the utility model from another angle;
[0050] Figure 3 It is a structural schematic diagram of a cutaway view of a material box of the utility model;
[0051] Figure 4 For this utility model Figure 1 Schematic diagram of the partially enlarged structure at point A in the middle.
[0052] In the figure: 1, bottom plate; 2, material box; 3, conveying frame; 4, guide frame; 5, loading plate; 6, rotating rod; 7, rotating gear; 8, driving gear; 9, first motor; 10, guide cylinder; 11, supporting frame; 12, slide frame; 13, first spring; 14, force frame; 15, stabilizing frame; 16, driving wheel; 17, second motor; 18, rotating frame; 19, slide box; 20, third motor; 21, slider; 22, second spring; 23, contact rod; 24, contact head; 25, power rod; 26, baffle. DETAILED DESCRIPTION
[0053] The following will be combined with the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0054] like Figure 1~Figure 4 As shown, this embodiment proposes a forming device for anchor bolt processing, including: a base plate 1, a material box 2, a conveying frame 3, a loading mechanism, a conveying mechanism and an intermittent mechanism, two baffles 26 are fixedly connected to the material box 2, and the two baffles 26 are relatively inclinedly arranged on the material box 2, the material box 2 is fixedly connected to the top of the base plate 1, and a discharge port is opened on the material box 2. The conveying frame 3 is located at the discharge port of the material box 2, and one end of the conveying frame 3 is arranged in an arc shape. The conveying frame 3 and the material box 2 are both arranged in an inclined state on the base plate 1. Through the cooperation between the base plate 1, the material box 2, the conveying frame 3, the loading mechanism, the conveying mechanism and the intermittent mechanism, it is convenient to replace manpower to automatically and intermittently load the blank, thereby improving the efficiency of cold heading of the blank and reducing the danger to the operator.
[0055] Among them, the feeding mechanism is arranged in the material box 2, which is used for feeding the blanks. The feeding mechanism includes: a guide frame 4, a feeding plate 5 and a driving assembly. The guide frame 4 is fixedly connected in the material box 2. A plurality of guide grooves are opened on the guide frame 4. A plurality of feeding plates 5 are provided. The plurality of feeding plates 5 are rotatably arranged in the material box 2. The plurality of feeding plates 5 correspond to the plurality of guide grooves one by one. The driving assembly is arranged on the material box 2, which is used to drive the plurality of feeding plates 5 to rotate. The driving assembly includes: a rotating rod 6, a rotating gear 7, a driving gear 8 and a first motor 9. The rotating rod 6 is rotatably arranged in the material box 2. The rotating gear 7 is fixedly connected to the rotating rod 6. The driving gear 8 is meshed with the rotating gear 7. The first motor 9 is arranged on the material box 2, and the output end of the first motor 9 is fixedly connected to the driving gear 8. Specifically, the driving gear 8 and the rotating gear 7 are driven to rotate by the first motor 9 arranged on the material box 2. When the rotating gear 7 rotates, the rotating rod 6 and the feeding plate 5 are driven to rotate, so that the blanks scattered on the guide frame 4 are transferred to the conveying frame 3.
[0056] Among them, the conveying mechanism is arranged on the conveying frame 3, which is used to convey the blank. The conveying mechanism includes: a guide cylinder 10, a support frame 11, a slide 12, a first spring 13 and a power assembly. The guide cylinder 10 is fixedly connected in the conveying frame 3, and two support frames 11 are provided. The two support frames 11 are fixedly connected to the conveying frame 3. There are two slides 12, and the two slides 12 are fixedly connected to the bottom plate 1. The two support frames 11 are respectively slidably arranged on the two slides 12. Two first springs 13 are provided on the two slides 12. The power assembly is arranged between the two slides 12, which is used to drive the conveying frame 3 to vibrate back and forth on the slide 12. The power assembly includes: a force frame 14, a stabilizing frame 15, driving wheel 16 and second motor 17, the force frame 14 is fixedly connected to the conveying frame 3, the stabilizing frame 15 is fixedly connected between the two slides 12, the driving wheel 16 is rotatably set on the stabilizing frame 15, the second motor 17 is set on the stabilizing frame 15, and the output end of the second motor 17 is fixedly connected to the driving wheel 16. Specifically, the driving wheel 16 is driven to rotate in the force frame 14 by the second motor 17 set on the stabilizing frame 15. Due to the eccentric setting of the driving wheel 16, the support frame 11 is driven to slide back and forth on the slide 12 during rotation, and through the support of the first spring 13, the conveying frame 3 is vibrated, so that the blanks are transported in the conveying frame 3 in an orderly manner.
[0057] Among them, the gap mechanism is arranged on the conveying frame 3, which is used for intermittent feeding of the blank. The intermittent mechanism includes: a rotating frame 18, a slide box 19, a third motor 20 and a contact assembly. A power rod 25 is rotatably connected in the rotating frame 18, and multiple slide boxes 19 are fixedly connected to the power rod 25. The output end of the third motor 20 is fixedly connected to the power rod 25. The stabilizing frame 15 is fixedly connected to the conveying frame 3. There are multiple slide boxes 19, and multiple slide boxes 19 are rotatably arranged in the rotating frame 18. The third motor 20 is arranged on the rotating frame 18, and the output end of the third motor 20 is fixedly connected to the multiple slide boxes 19. There are multiple contact assemblies, and multiple contact assemblies are respectively arranged in multiple slide boxes 19. The contact assembly includes: a slider 21, a second spring 22, a contact rod 23 and a contact head 24. A groove is provided on the contact 24, and the contact head 24 is made of rubber. The slider 21 is slidably arranged in the slide box 19, and the second spring 22 is arranged in the slide box 19. The slider 21 is fixedly connected to the second spring 22, and the contact rod 23 is fixedly connected to the slider 21, and the contact head 24 is fixedly connected to the contact rod 23. Specifically, the power rod 25 is driven to rotate by the third motor 20 arranged on the rotating frame 18, and the power rod 25 drives the slide box 19 and the contact rod 23 to rotate when it rotates. When the contact rod 23 rotates, it drives the contact head 24 to press the blank and push the blank for loading. When the contact head 24 presses the blank, the slider 21 is supported by the second spring 22 and stops rotating, thereby blocking the blank from loading. When it continues to rotate, the contact head 24 will move the blank to continue loading.
[0058] In this embodiment, when it is necessary to load the blanks, more blanks are poured into the feed box 2, and the first motor 9 arranged on the feed box 2 drives the driving gear 8 and the rotating gear 7 to rotate. When the rotating gear 7 rotates, it drives the rotating rod 6 and the loading plate 5 to rotate, so that the blanks scattered on the guide frame 4 are transferred to the conveying frame 3, and the second motor 17 arranged on the stabilizing frame 15 drives the driving wheel 16 to rotate in the force frame 14. Due to the eccentric setting of the driving wheel 16, the supporting frame 11 is driven to slide back and forth on the slide 12 during rotation, and the first spring is used to move the supporting frame 11 back and forth on the slide 12. The support of the spring 13 causes the conveying frame 3 to vibrate, so that the blanks are transported in the conveying frame 3 in an orderly manner. The third motor 20 arranged on the rotating frame 18 drives the power rod 25 to rotate. When the power rod 25 rotates, it drives the slide box 19 and the contact rod 23 to rotate. When the contact rod 23 rotates, it drives the contact head 24 to press the blank and push the blank for loading. When the contact head 24 presses the blank, the slider 21 is supported by the second spring 22 and stops rotating, thereby blocking the blank from being loaded. When it continues to rotate, the contact head 24 will move the blank for further loading.
[0059] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A forming device for anchor bolt processing, characterized in that: include: Bottom plate (1); A material box (2), the material box (2) being fixedly connected to the top of the bottom plate (1), and the material box (2) being provided with a material discharge port; A conveying frame (3), the conveying frame (3) being located at the material outlet of the material box (2), one end of the conveying frame (3) being arranged in an arc shape, and the conveying frame (3) and the material box (2) being arranged on the bottom plate (1) in an inclined state; A feeding mechanism, the feeding mechanism being arranged in the material box (2) and being used for feeding the blanks; A conveying mechanism, the conveying mechanism being arranged on the conveying frame (3) and being used for conveying the blank; An intermittent mechanism, wherein the intermittent mechanism is arranged on the conveying frame (3) and is used for intermittent feeding of blanks.
2. The anchor bolt forming device according to claim 1, characterized in that: The feeding mechanism comprises: A guide frame (4), the guide frame (4) being fixedly connected in the material box (2), and the guide frame (4) being provided with a plurality of guide grooves; A loading plate (5), wherein a plurality of the loading plates (5) are provided, and the plurality of loading plates (5) are all rotatably arranged in the material box (2), and the plurality of loading plates (5) respectively correspond one-to-one to the plurality of guide grooves; A driving assembly, wherein the driving assembly is arranged on the material box (2) and is used to drive the plurality of loading plates (5) to rotate.
3. The anchor bolt forming device according to claim 2, characterized in that: The drive assembly comprises: A rotating rod (6), the rotating rod (6) being rotatably disposed in the material box (2); A rotating gear (7), the rotating gear (7) being fixedly connected to the rotating rod (6); A driving gear (8), the driving gear (8) meshing with the rotating gear (7); A first motor (9), wherein the first motor (9) is arranged on the material box (2), and an output end of the first motor (9) is fixedly connected to the driving gear (8).
4. The anchor bolt forming device according to claim 3, characterized in that: The conveying mechanism comprises: A guide cylinder (10), the guide cylinder (10) being fixedly connected inside the conveying frame (3); A support frame (11), wherein two support frames (11) are provided, and both support frames (11) are fixedly connected to the conveying frame (3); A slide (12), wherein two slides (12) are provided, the two slides (12) are both fixedly connected to the bottom plate (1), and the two support frames (11) are respectively slidably arranged on the two slides (12); A first spring (13), wherein two first springs (13) are provided on each of the two slide frames (12); A power assembly, wherein the power assembly is arranged between the two slides (12) and is used to drive the conveying frame (3) to vibrate back and forth on the slides (12).
5. The anchor bolt forming device according to claim 4, characterized in that: The power assembly comprises: A force-bearing frame (14), wherein the force-bearing frame (14) is fixedly connected to the conveying frame (3); A stabilizing frame (15), the stabilizing frame (15) being fixedly connected between the two slide frames (12); a driving wheel (16), the driving wheel (16) being rotatably disposed on the stabilizing frame (15); A second motor (17), wherein the second motor (17) is arranged on the stabilizing frame (15), and an output end of the second motor (17) is fixedly connected to the driving wheel (16).
6. The anchor bolt forming device according to claim 5, characterized in that: The intermittent mechanism comprises: A rotating frame (18), wherein the stabilizing frame (15) is fixedly connected to the conveying frame (3); A sliding box (19), wherein a plurality of sliding boxes (19) are provided, and the plurality of sliding boxes (19) are rotatably disposed in the rotating frame (18); a third motor (20), the third motor (20) being arranged on the rotating frame (18), the output end of the third motor (20) being fixedly connected to the plurality of sliding boxes (19); A contact assembly, wherein a plurality of the contact assemblies are provided, and the plurality of the contact assemblies are respectively arranged in a plurality of the sliding boxes (19).
7. The anchor bolt forming device according to claim 6, characterized in that: The contact assembly comprises: A slider (21), the slider (21) being slidably disposed in the slide box (19); a second spring (22), the second spring (22) being arranged in the slide box (19), the slide block (21) being fixedly connected to the second spring (22); A contact rod (23), the contact rod (23) being fixedly connected to the slider (21); A contact head (24), wherein the contact head (24) is fixedly connected to the contact rod (23).
8. The anchor bolt forming device according to claim 7, characterized in that: A power rod (25) is rotatably connected inside the rotating frame (18), a plurality of the sliding boxes (19) are fixedly connected to the power rod (25), and an output end of the third motor (20) is fixedly connected to the power rod (25).
9. The anchor bolt forming device according to claim 8, characterized in that: Two baffles (26) are fixedly connected to the material box (2), and the two baffles (26) are arranged on the material box (2) in a relatively inclined manner.
10. The anchor bolt forming device according to claim 9, characterized in that: A groove is provided on the contact head (24), and the contact head (24) is made of rubber.