CN212016562U - Multi-direction trainer - Google Patents
Multi-direction trainer Download PDFInfo
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- CN212016562U CN212016562U CN201921619532.8U CN201921619532U CN212016562U CN 212016562 U CN212016562 U CN 212016562U CN 201921619532 U CN201921619532 U CN 201921619532U CN 212016562 U CN212016562 U CN 212016562U
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- frame
- positioning
- sliding
- rod
- trainer
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Abstract
The utility model discloses a multi-azimuth trainer, which is characterized in that a positioning plate is arranged on a stand column, a guide column is arranged near the stand column, a sliding frame is arranged on the guide column to erect an austenite rod, the austenite rod is connected with the sliding frame by adopting a rotating frame, and the rotating frame can realize the three-dimensional swing of the austenite rod and the sliding frame; the top of each upright post is provided with a guide wheel, and the device connects a balance weight inside the upright post with the sliding frame, so that the resistance can be reduced when the sliding frame is lifted or descended; in order to be safer to use, the positioning frame is arranged under each sliding frame, the sliding frame can be prevented from falling under the state of the load of the Olympic pole through the blocking of the positioning frame, the potential safety hazard of users can be eliminated, and the multi-direction trainer is an ideal multi-direction trainer.
Description
Technical Field
The utility model belongs to the technical field of body-building apparatus, concretely relates to diversified training ware.
Background
It is known that in the field of fitness equipment, the existing three-dimensional smith instrument completes the training of muscles of each part of a body by up-down and front-back movement of an austenite rod after adding a weight plate.
However, the existing three-dimensional smith instrument can only move up and down or back and forth simultaneously, is lack of flexibility, and when the strength of a trainer is not enough to support the weight of the Aoji rod, the Aoji rod cannot get rid of the weight of the Aoji rod on the body of the trainer in time and cannot stop training in time, so that great potential safety hazards exist.
Various drawbacks to the three-dimensional training apparatus on the market at present are taken as technical personnel in the industry, how to design a three-dimensional multi-azimuth trainer through the design of a novel structure, the trainer can realize the flexible movement of the body in a three-dimensional state, and the technical problem that the technical personnel in the industry need to solve urgently can be solved by preventing the Aoji pole from timely breaking away from under the condition of incapable bearing.
Disclosure of Invention
For overcoming prior art not enough, the utility model provides a diversified training ware, it is through setting up the counter weight device on the support body, connects through with the ao pole, can reduce the weight of the vertical regulation of ao pole, and it still is provided with vertical positioning device, realizes the vertical fixed of the ao pole through vertical positioning, prevents that it from weighing down in the twinkling of an eye and causing the injury to the training personnel.
In order to achieve the technical purpose, the utility model adopts the following scheme: a multi-azimuth trainer comprises a bottom frame, wherein four upright posts are vertically arranged at four corners of the bottom frame, and top beams are arranged at the tops of the upright posts, so that the whole trainer frame structure is realized; a guide post is arranged beside each upright post, a positioning plate is fixed on one side surface of each upright post facing the guide post, and a plurality of positioning holes are vertically arranged on the positioning plate at intervals; the upright posts are arranged in a bilateral symmetry mode, and parts mounted on the left side and the right side of the upright posts are the same and are arranged in a symmetry mode; a sliding frame is jointly fixed on the two upright columns on the left side, the sliding frame can slide on the upright columns, a horizontal connecting rod is arranged on the outer side of the sliding frame, two ends of the horizontal connecting rod are respectively connected with the guide columns in a sliding mode through vertical sliding sleeves, an austenite rod is jointly erected on the horizontal connecting rods on the upright columns on the left side and the right side, the austenite rods are connected with the connecting rods through rotating frames, and the rotating frames can swing in the three-dimensional direction; be provided with the floodgate handle on the ox pole, pass through floodgate line and carriage internal connection on the floodgate handle, the inside telescopic link that is provided with of carriage, the draft control telescopic link through the floodgate line is flexible in the locating hole in order to realize the location of carriage.
The top of each stand is provided with a leading wheel, the carriage is provided with a dead lever, the dead lever connect behind the cable wire around on the leading wheel and get into the stand inside, the stand inside be provided with the balancing weight.
The lower part of the sliding frame is respectively provided with a positioning frame on the stand columns at the left side and the right side, the positioning frame is provided with a positioning sliding sleeve and a stand column in sliding fit, a telescopic rod device is arranged inside the positioning frame, and the telescopic rod device is controlled by the traction of a brake cable traction device on the positioning frame to stretch in a positioning hole so as to realize the positioning of the positioning frame.
And a buffer cushion block is arranged on the upright post between the positioning frame and the sliding frame.
The bar is provided with at least two brake handles, and the left end and the right end of the bar extend to the outer side of the upright post and form a barbell hanging part.
The rotating frame consists of three parts, namely a top rotating sleeve in sliding connection with the austenite pole and a bottom sliding sleeve in sliding connection with the connecting rod, wherein a vertical rotating sleeve is arranged between the top rotating sleeve and the bottom sliding sleeve; the top rotating sleeve and the bottom sliding sleeve are arranged at a 90-degree right angle; the top rotating sleeve is connected with the bottom sliding sleeve through a vertical rod, and a vertical rotating sleeve is arranged between the vertical rod and the top rotating sleeve or between the vertical rod and the bottom sliding sleeve.
The telescopic rod device comprises an outer pipe stop bolt fixed on the sliding frame or the positioning frame, the outer pipe stop bolt and the pull rod are connected into a whole, the pull rod is fixedly connected with the swinging shaft, and the swinging shaft is respectively hinged with the two traction rods; the pull rod or directly articulated with the telescopic link, the telescopic link passes telescopic tube and exposes the location arch in telescopic tube's outer end, the telescopic link is provided with reset spring in telescopic tube inside, realize the horizontal reset removal of telescopic link through reset spring.
The utility model has the advantages that: through the design, the utility model arranges the positioning plate on the upright post, arranges the guide post close to the upright post, arranges the sliding frame on the guide post to erect the austenite pole, the austenite pole is connected with the sliding frame by adopting the rotating frame, and the rotating frame can realize the three-dimensional swing of the austenite pole and the sliding frame; the top of each upright post is provided with a guide wheel, and the device connects a balance weight inside the upright post with the sliding frame, so that the resistance can be reduced when the sliding frame is lifted or descended; in order to be safer to use, the positioning frame is arranged under each sliding frame, the sliding frame can be prevented from falling under the state of the load of the Olympic pole through the blocking of the positioning frame, the potential safety hazard of users can be eliminated, and the multi-direction trainer is an ideal multi-direction trainer.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic perspective view II of the present invention;
FIG. 3 is an enlarged view of the structure in the direction A of FIG. 2;
FIG. 4 is an enlarged view of the structure in the direction B of FIG. 2;
FIG. 5 is a schematic side view of the present invention;
FIG. 6 is a front view of the present invention;
fig. 7 is a schematic top view of the present invention;
fig. 8 is a schematic view of the driving structure of the telescopic rod of the present invention;
fig. 9 is a schematic view ii of the driving structure of the telescopic rod of the present invention;
in the drawing, 1, an underframe, 10, a guide post, 11, a cushion block, 2, a stand column, 20, a positioning plate, 21, a positioning hole, 3, a top beam, 4, a guide wheel, 40, a steel cable, 41, a fixed rod, 5, a rotating frame, 50, an Aoji rod, 51, a brake handle, 52, a barbell hanging part, 53, a top rotating sleeve, 54, a vertical rotating sleeve, 55, a bottom sliding sleeve, 56, a horizontal connecting rod, 57, a vertical sliding sleeve, 6, a positioning frame, 61, a positioning sliding sleeve, 62, a brake cable pulling device, 63, a connecting seat, 7, a telescopic rod device, 71, an outer tube stop bolt, 72, a pull rod, 73, a telescopic rod, 74, a telescopic sleeve, 75, a reset spring, 76, a positioning bulge, 77, a pull rod, 78, a swinging shaft, 8 and a sliding.
Detailed Description
As shown with reference to the accompanying drawings,
a multi-azimuth trainer comprises a bottom frame 1, wherein four upright posts 2 are vertically arranged at four corners of the bottom frame 1, top beams 3 are arranged at the tops of the upright posts 2, and the whole trainer frame structure is realized through the arrangement of the top beams; a guide post 10 is arranged beside each upright post 2, a positioning plate 20 is fixed on one side surface of each upright post 2 facing the guide post 10, and a plurality of positioning holes 21 are vertically arranged on the positioning plate 20 at intervals; the upright posts 2 are arranged in a bilateral symmetry way, and the parts arranged on the left side and the right side of the upright posts are the same and are arranged symmetrically; explaining by taking the left side as an example, a sliding frame 8 is jointly fixed on two upright columns on the left side, the sliding frame 8 can slide on the upright columns 2, a horizontal connecting rod 56 is arranged on the outer side of the sliding frame 8, two ends of the horizontal connecting rod 56 are respectively in sliding connection with the guide columns 10 through vertical sliding sleeves 57, the vertical sliding sleeves 57 are fixedly connected with the sliding frame 8 through connecting seats 63, an austenite rod 50 is jointly erected on the horizontal connecting rods 56 on the upright columns 2 on the left side and the right side of the frame body, the austenite rod 50 is connected with the horizontal connecting rods 56 through a rotating frame 5, and the rotating frame 5 can swing in the three-dimensional direction; the gate handle 51 is arranged on the gate rod 50, the gate handle 51 is connected with the inside of the sliding frame 8 through a gate line, the telescopic rod device 7 is arranged inside the sliding frame 8, and the telescopic rod 73 is controlled by the stretching of the gate line to be inserted in the positioning hole 21 in a telescopic mode so as to achieve the positioning of the sliding frame 8.
Through the structure, the screw rod 50 is provided with at least two brake handles 51, the left end and the right end of the screw rod 50 extend to the outer side of the upright post 1 to form a barbell hanging part 52, and the external load can be fixed through the barbell hanging part 52.
The above-mentioned ao rod 50 and the horizontal connecting rod 56 are connected and fixed by the rotating frame 5, the rotating frame 5 is arranged to realize the swing in the three-dimensional direction, and the function is realized by the following structure:
the rotating frame consists of three parts, namely a top rotating sleeve 53 in sliding connection with the austenite pole 50, a bottom sliding sleeve 55 in sliding connection with a connecting rod 56 and a vertical rotating sleeve 54, wherein the top rotating sleeve 53 and the bottom sliding sleeve 55 are arranged at a right angle of 90 degrees; the top rotating sleeve 53 is connected with the bottom sliding sleeve 55 through a vertical rod, and a vertical rotating sleeve 54 is arranged between the vertical rod and the top rotating sleeve 53 or between the vertical rod and the bottom sliding sleeve 22. Through the arrangement of the structure, the otto rod 50 can slide and rotate in place on the connecting rod 56, and can swing horizontally on the bottom sliding sleeve 55 and rotate in place on the top rotating sleeve 53.
The multi-direction trainer does not have the defect of falling during movement, and is mainly designed in the way that the telescopic rod device is matched with the positioning hole 21 in a positioning way; as shown in fig. 8 and 9, fig. 8 is a telescopic rod device fixed inside a sliding frame 8, which includes an outer tube stop 71 fixed on the sliding frame 8, the outer tube stop 71 and a pull rod 72 are connected into a whole, the pull rod 72 is connected and fixed with a swing shaft 78, the swing shaft 78 is hinged with two pull rods 77, the pull rod 77 is connected with a telescopic rod 73, the telescopic rod 73 passes through a telescopic sleeve 74 and exposes a positioning protrusion 76 at the outer end of the telescopic sleeve 74, the telescopic rod 73 is provided with a return spring 75 inside the telescopic sleeve 74, the horizontal return movement of the telescopic rod 73 is realized by the return spring 75, as shown in fig. 8, when the cable is pulled through a brake handle 51, the cable pulls the pull rod 72 to drive the swing shaft 78 to rotate, the swing shaft 78 drives the pull rod 77 to swing to realize the pulling of the telescopic rod 73, when the telescopic rod 73 is contracted, the positioning protrusion, the carriage 8 can now be displaced vertically on the guide column 10; when the brake handle 51 is released, the positioning lug 76 on the telescopic rod 73 is extended out under the action of the return spring 75 and is inserted into the positioning hole to realize the positioning of the whole sliding frame 8.
Further, this device is provided with a leading wheel 4 at the top of every stand 2, is provided with a dead lever 57 on the carriage 8, dead lever 57 connect behind the cable wire around on leading wheel 4 the back get into stand 2 inside, stand 2 inside be provided with the balancing weight, through this kind of design, when user's adjustment carriage 8 height, can realize no resistance or little resistance sliding motion under the effect of the balancing weight of the inside setting of stand 2.
Furthermore, a positioning frame 6 is respectively arranged on the upright columns at the left side and the right side below the sliding frame 8, a positioning sliding sleeve 61 is fixedly arranged on the positioning frame 6 through a connecting seat 63 and is in sliding fit with the upright column 2, a telescopic rod device 7 is arranged inside the positioning frame 6, and the telescopic rod device 7 is controlled to extend and retract in the positioning hole 21 through the drawing of a brake cable drawing device 62 on the positioning frame 6 so as to realize the positioning of the positioning frame 6; and a buffer cushion block 11 is arranged on the upright post between the positioning frame 6 and the sliding frame 8. Through above structure setting, can realize that locating rack 6 blocks to the vertical ascending of carriage 8, after setting for carriage 8 position, remove locating rack 6 to carriage 8 under to this effective location who realizes the carriage.
The above-mentioned telescopic rod device 7 fixed inside the positioning frame 6 can be driven by the structure shown in fig. 9, a corresponding brake cable pulling device 62 is arranged at each positioning protrusion 76, the brake cable is controlled by the pulling driving of the brake cable pulling device 62, an outer tube stop bolt 71 is fixed inside the positioning frame 6, the outer tube stop bolt 71 and the pull rod 72 are connected into a whole, the pull rod 72 is connected with a telescopic rod 73, the telescopic rod 73 passes through the telescopic sleeve 74 and exposes out of the positioning protrusion 76 at the outer end of the telescopic sleeve 74, the telescopic rod 73 is provided with a return spring 75 inside the telescopic sleeve 74, the horizontal return movement of the telescopic rod 73 is realized by the return spring 75, and the height adjustment of the positioning frame 6 is realized by the structure.
Through the design, the positioning plate 20 is arranged on the stand column 2, the guide column 10 is arranged close to the stand column, the sliding frame 8 is arranged on the guide column 10 to erect the austenite rod 50, the austenite rod 50 is connected with the sliding frame 8 through the rotating frame 5, and the rotating frame 5 can realize the three-dimensional swing of the austenite rod 50 and the sliding frame 8; the top of each upright post 2 is provided with a guide wheel 4, and the device connects a balance weight inside the upright post 2 with the sliding frame 8, so that the resistance can be reduced when the sliding frame 8 is lifted or descended; for using safelyr, this device is provided with a locating rack 6 under every carriage, through blockking of locating rack 6, can prevent that carriage 8 from falling under the stage of ox pole loading state, gets rid of user of personnel's potential safety hazard, is the diversified training ware of an ideal.
Claims (7)
1. A multi-azimuth trainer comprises a bottom frame, wherein four upright posts are vertically arranged at four corners of the bottom frame, and top beams are arranged at the tops of the upright posts, so that the whole trainer frame structure is realized; the method is characterized in that: a guide post is arranged beside each upright post, a positioning plate is fixed on one side surface of each upright post facing the guide post, and a plurality of positioning holes are vertically arranged on the positioning plate at intervals; the upright posts are arranged in a bilateral symmetry mode, and parts mounted on the left side and the right side of the upright posts are the same and are arranged in a symmetry mode; a sliding frame is jointly fixed on the two upright columns on the left side, the sliding frame can slide on the upright columns, a horizontal connecting rod is arranged on the outer side of the sliding frame, two ends of the horizontal connecting rod are respectively connected with the guide columns in a sliding mode through vertical sliding sleeves, an austenite rod is jointly erected on the horizontal connecting rods on the upright columns on the left side and the right side, the austenite rods are connected with the connecting rods through rotating frames, and the rotating frames can swing in the three-dimensional direction; the bars of the Olympic Games are provided with brake handles, the brake handles are connected with the inner part of the sliding frame through brake cables, telescopic rods are arranged in the sliding frame, and the telescopic rods are controlled by the traction of the brake cables to stretch in the positioning holes so as to realize the positioning of the sliding frame.
2. The multi-azimuth trainer as claimed in claim 1, wherein: the top of each stand is provided with a leading wheel, the carriage is provided with a dead lever, the dead lever connect behind the cable wire around on the leading wheel and get into the stand inside, the stand inside be provided with the balancing weight.
3. The multi-azimuth trainer as claimed in claim 1, wherein: the lower part of the sliding frame is respectively provided with a positioning frame on the stand columns at the left side and the right side, the positioning frame is provided with a positioning sliding sleeve and a stand column in sliding fit, a telescopic rod device is arranged inside the positioning frame, and the telescopic rod device is controlled by the traction of a brake cable traction device on the positioning frame to stretch in a positioning hole so as to realize the positioning of the positioning frame.
4. The multi-azimuth trainer as claimed in claim 3, wherein: and a buffer cushion block is arranged on the upright post between the positioning frame and the sliding frame.
5. The multi-azimuth trainer as claimed in claim 1, wherein: the bar is provided with at least two brake handles, and the left end and the right end of the bar extend to the outer side of the upright post and form a barbell hanging part.
6. The multi-azimuth trainer as claimed in claim 1, wherein: the rotating frame consists of three parts, namely a top rotating sleeve in sliding connection with the austenite pole and a bottom sliding sleeve in sliding connection with the connecting rod, wherein a vertical rotating sleeve is arranged between the top rotating sleeve and the bottom sliding sleeve; the top rotating sleeve and the bottom sliding sleeve are arranged at a 90-degree right angle; the top rotating sleeve is connected with the bottom sliding sleeve through a vertical rod, and a vertical rotating sleeve is arranged between the vertical rod and the top rotating sleeve or between the vertical rod and the bottom sliding sleeve.
7. The multi-azimuth trainer as claimed in claim 3, wherein: the telescopic rod device comprises an outer pipe stop bolt fixed on the sliding frame or the positioning frame, the outer pipe stop bolt and the pull rod are connected into a whole, the pull rod is fixedly connected with the swinging shaft, and the swinging shaft is respectively hinged with the two traction rods; the pull rod or directly articulated with the telescopic link, the telescopic link passes telescopic tube and exposes the location arch in telescopic tube's outer end, the telescopic link is provided with reset spring in telescopic tube inside, realize the horizontal reset removal of telescopic link through reset spring.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921619532.8U CN212016562U (en) | 2019-09-26 | 2019-09-26 | Multi-direction trainer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921619532.8U CN212016562U (en) | 2019-09-26 | 2019-09-26 | Multi-direction trainer |
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CN212016562U true CN212016562U (en) | 2020-11-27 |
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CN201921619532.8U Expired - Fee Related CN212016562U (en) | 2019-09-26 | 2019-09-26 | Multi-direction trainer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110465042A (en) * | 2019-09-26 | 2019-11-19 | 山东力之星健身科技有限公司 | Multi-faceted training aids |
-
2019
- 2019-09-26 CN CN201921619532.8U patent/CN212016562U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110465042A (en) * | 2019-09-26 | 2019-11-19 | 山东力之星健身科技有限公司 | Multi-faceted training aids |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20201127 Termination date: 20210926 |