Disclosure of Invention
The invention aims to provide a comprehensive body-building apparatus, which solves the technical problems that aerobic exercise and anaerobic exercise cannot be performed by one body-building apparatus at present, and different body-building requirements cannot be met.
The above object of the present invention can be achieved by the following technical solutions:
The invention provides an integrated body building apparatus for aerobic exercise and anaerobic exercise, which comprises a running machine running table, a bottom frame, a stand column, a resistance mechanism and at least two multidirectional adjusting arms, wherein one end of the running machine running table is connected with the bottom frame, the stand column is arranged on the bottom frame, the resistance mechanism is arranged on the bottom frame, the stand column or the running machine running table, at least two multidirectional adjusting arms are arranged on the upper part of the stand column, an operation structure is arranged on each multidirectional adjusting arm, at least two operation structures are connected with the resistance mechanism through a transmission structure, the multidirectional adjusting arms can rotate around a horizontal axis and a vertical axis which are perpendicular to each other, and the multidirectional adjusting arms can extend or shorten along the axial direction of the multidirectional adjusting arms, so that the multidirectional adjusting arms adapt to various exercise postures.
In the embodiment of the invention, the two multidirectional adjusting arms can be adjusted to the upper part of the running platform of the running machine to form an armrest under the state that the running platform of the running machine runs for aerobic exercise.
In an embodiment of the invention, two multidirectional adjusting arms are respectively arranged on the upper part of the upright post through a rotating joint, the rotating joint comprises a rotating seat, a horizontal rotating shaft and a vertical rotating shaft, the rotating seat is hinged on the upright post through the horizontal rotating shaft, and the multidirectional adjusting arms are hinged on the rotating seat through the vertical rotating shaft.
In an embodiment of the invention, the multi-directional adjusting arm comprises a large arm and a small arm, wherein the large arm is connected with the upright post through the rotating joint, and the large arm and the small arm are in sliding fit along the axial direction of the multi-directional adjusting arm.
In an embodiment of the invention, the transmission structure comprises a transmission stay wire, a transmission pulley seat and at least one transmission pulley, wherein the transmission pulley is arranged on the transmission pulley seat, and the transmission stay wire bypasses the transmission pulley to be connected with the two operation structures and is connected with the resistance mechanism through the transmission pulley seat.
In the embodiment of the invention, the upright post is also provided with a fixed pulley seat, the fixed pulley seat is provided with a plurality of first fixed pulleys, the transmission pulley seat is provided with at least two transmission pulleys, and the transmission stay wire alternately bypasses the plurality of first fixed pulleys and the at least two transmission pulleys one by one.
In the embodiment of the invention, the first end of the multidirectional adjusting arm is provided with the second fixed pulley, the second end of the multidirectional adjusting arm is provided with the third fixed pulley, the transmission stay wire is arranged in the multidirectional adjusting arm in a penetrating way, one end of the transmission stay wire is connected with the operation structure by bypassing the second fixed pulley, and the other end of the transmission stay wire extends into the upright post by bypassing the third fixed pulley.
In an embodiment of the invention, the operating structure comprises a hand pull ring, and the hand pull ring is connected with the transmission pull wire.
In an embodiment of the invention, the hand pull ring is detachably connected with the transmission pull wire.
In an embodiment of the present invention, the integrated exercise apparatus further includes a seat foldably installed at a middle portion of the upright, the seat being capable of being unfolded and placed on the running deck in a stopped state of the running deck.
In an embodiment of the invention, the seat comprises a first supporting part, a second supporting part, a third supporting part, a seat part and a backrest, wherein the first end of the first supporting part is hinged with the upright post, the second end of the first supporting part is hinged with the first end of the second supporting part through a hinge shaft, the second end of the second supporting part is supported on the running platform of the running machine, the backrest is hinged with the seat part, the seat part is rotatably mounted on the hinge shaft, the first end of the third supporting part is hinged on the back of the backrest, the seat part can drive the backrest to be arranged opposite to the upright post so that the second end of the third supporting part is supported on the second supporting part, and the seat part can drive the backrest to be arranged opposite to the upright post so that the second end of the third supporting part is supported on the first supporting part.
In an embodiment of the invention, one end of the running platform of the running machine is hinged with the underframe, and the running platform of the running machine can be folded and placed on the underframe.
In the embodiment of the invention, the underframe is embedded in an installation space on the wall body, and the installation space can also be used for placing the running platform of the running machine in a folded state.
The invention has the characteristics and advantages that:
The comprehensive body-building apparatus can perform aerobic running exercise on a running platform of a running machine, can overcome the resistance provided by the resistance mechanism to perform force training by operating the operation structure connected with the resistance mechanism on the multidirectional adjusting arm, and can adapt to various exercise postures by rotating the multidirectional adjusting arm around a horizontal axis and a vertical axis which are vertical to each other and extending or shortening the multidirectional adjusting arm along the axial direction of the multidirectional adjusting arm, so that muscles at each part can be fully exercised, and the phenomenon that the exercise postures are single to cause boring can be avoided. Therefore, the comprehensive body-building apparatus can perform running and strength training, and can realize movement in various postures, so that different body-building requirements are met, the occupied space is small, and the practicability is better.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments of the present invention, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of the structure of the integrated exercise machine of the present invention.
Fig. 2 is an enlarged view of a portion of the integrated exercise machine of the present invention.
Fig. 3 is a front view of the integrated exercise machine of the present invention.
Figure 4 is a side view of the integrated exercise machine of the present invention.
In the figure:
1. Treadmill deck, 11, mounting deck, 12, treadmill belt, 13, control module, 14, treadmill belt locking structure, 2, upright post, 21, deck, 22, storage area, 23, deck, 24, folding area, 3, chassis, 4, resistance mechanism, 41, motor resistance device, 5, multi-directional adjustment arm, 5', armrest, 51, swivel joint, 511, horizontal rotation shaft, 512, vertical rotation shaft, 513, rotation seat, 514, first angle locking structure, 5141, first angle locking member, 5142, first fixed hole, 515, second angle locking structure, 52, big arm, 53, small arm, 54, telescoping adjustment member, 55, small arm locking structure, 551, locking block, 552, locking buckle, 56, support seat, 57, limiting member, 6, operating structure, 61, hand ring, 62, clasp, 63, connection ring, 7, transmission structure, 71, transmission wire, 72, transmission pulley, 73, transmission pulley seat, 74, first pulley, 75, second fixed pulley, 76, third pulley, 77, third fixed pulley, 78, support shaft, support groove, 82, support groove, 81, support groove, and support groove.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
As shown in fig. 1 and 3, the present invention provides an integrated exercise apparatus for performing aerobic running exercise and anaerobic strength training, the integrated exercise apparatus includes a running machine table 1, a bottom frame 3, a column 2, a resistance mechanism 4, and at least two multi-directional adjusting arms 5, one end of the running machine table 1 is connected with the bottom frame 3, the column 2 is mounted on the bottom frame 3, the resistance mechanism 4 is mounted on the bottom frame 3, the column 2 or the running machine table 1, at least two multi-directional adjusting arms 5 are mounted on the upper portion of the column 2, an operation structure 6 is provided on the multi-directional adjusting arms 5, at least two operation structures 6 are connected with the resistance mechanism 4 through a transmission structure 7, the multi-directional adjusting arms 5 can rotate around a horizontal axis and a vertical axis which are perpendicular to each other, and the multi-directional adjusting arms 5 can extend or shorten along the axial directions thereof, so that a plurality of exercise postures can be adapted between the at least two operation structures 6. When the operation structure 6 is connected with the resistance mechanism 4 for strength training, the multidirectional adjusting arm 5 is utilized to form an anchor point, namely, a bearing point when the transmission structure 7 transmits resistance provided by the resistance mechanism 4, so that the stability of transmission of the transmission structure 7 is ensured, and the device is suitable for various movement postures.
The comprehensive exercise equipment can perform aerobic running exercise on the running platform 1 of the running machine, can overcome the resistance provided by the resistance mechanism 4 by operating the operating structure 6 connected with the resistance mechanism 4 on the multidirectional adjusting arm 5, realizes strength training, and can adapt to various exercise postures by rotating the multidirectional adjusting arm 5 around a horizontal axis and a vertical axis which are perpendicular to each other and extending or shortening the multidirectional adjusting arm along the axial direction, so that muscles at various positions can be fully exercised, and the phenomenon of boring caused by single exercise posture can be avoided. Therefore, the comprehensive body-building apparatus can perform running and strength training, and can realize movement in various postures, so that different body-building requirements are met, the occupied space is small, and the practicability is better.
Specifically, the angle of unfolding of at least two multi-directional adjusting arms 5 to two sides is adjusted by rotating the multi-directional adjusting arms 5 around the vertical axis Z, the angle of unfolding of at least two multi-directional adjusting arms 5 to two sides or to the upper side is adjusted by rotating the multi-directional adjusting arms 5 around the horizontal axis X, the length of unfolding of at least two multi-directional adjusting arms 5 to two sides or to the upper and lower sides is adjusted by extending or shortening the multi-directional adjusting arms 5 along the axial direction of the multi-directional adjusting arms 5, therefore, by carrying out the adjustment on the multi-directional adjusting arms 5, a sporter can not only unfold the arms to two sides or to the upper and lower sides by different angles, but also unfold the arms to two sides or to the upper and lower sides by different angles, and further the operation structure 6 on the multi-directional adjusting arms 5 is operated by overcoming the resistance mechanism 4, so that strength training under different movement postures is realized, and the applicability is stronger for sporters with different arm lengths. In the embodiment, the resistance mechanism 4 is arranged in the underframe 3, so that the stability is good. Optionally, the resistance mechanism is mounted within the treadmill deck. Alternatively, the resistance mechanism 4 is mounted in a column.
As shown in fig. 4, the two multidirectional adjusting arms 5 can be adjusted to the upper side of the running deck 1 to constitute the handrail 5' in a state where the running deck 1 runs to perform an aerobic exercise. The handrails 5' used in running are not required to be additionally arranged on the upright posts 2, so that the occupied space of the whole equipment is reduced. Specifically, only two multidirectional adjusting arms 5 are arranged on the upright 2. The multidirectional regulating arm 5 is substantially horizontally regulated and is positioned directly above the treadmill deck 1 to form a handrail 5'. The support seats 56 are arranged on two sides of the upright post 2, when the multidirectional adjusting arm 5 is adjusted to be in a handrail 5 'state, the multidirectional adjusting arm 5 just rotates to the upper portion of the support seats 56, so that the support seats 56 are utilized to support the multidirectional adjusting arm 5, and the stability of the handrail 5' is guaranteed.
As shown in fig. 3 and 4, a control module 13 for controlling the running platform 1 of the running machine is installed at the top end of the upright post 2, and speed regulating shortcut keys electrically connected with the control module 13 for regulating the speed of the running platform 1 of the running machine are further arranged at two sides of the upright post 2, and are positioned at the inner side of the handrail 5', so that the speed of the running platform 1 of the running machine can be regulated during running.
As shown in fig. 2, in the embodiment of the present invention, the multi-directional adjusting arm 5 is mounted on the upper portion of the upright 2 through a rotation joint 51, the rotation joint 51 includes a rotation seat 513, a horizontal rotation shaft 511, and a vertical rotation shaft 512, the rotation seat 513 is hinged to the upright 2 through the horizontal rotation shaft 511, and the multi-directional adjusting arm 5 is hinged to the rotation seat 513 through the vertical rotation shaft 512. The rotating seat 513 drives the multi-directional adjusting arm 5 to rotate around the horizontal rotating shaft 511 relative to the upright post 2, so that the angle of the multi-directional adjusting arm 5 expanding upwards and downwards is adjusted, and meanwhile, the multi-directional adjusting arm 5 can also rotate around the vertical rotating shaft 512 relative to the rotating seat 513, so that the angle of the multi-directional adjusting arm 5 expanding towards two sides is adjusted.
Referring to fig. 4, in detail, the rotating base 513 is fixed by the first angle locking structure 514 after rotating around the horizontal rotating shaft 511 by different angles. The first angle locking structure 514 includes a plurality of first fixing holes 5142 arranged on the upright post 2 along the circumferential direction of the horizontal rotating shaft 511, and the rotating seat 513 is provided with first angle locking members 5141, so that when the multi-directional adjusting arm 5 drives the rotating seat 513 to rotate around the horizontal rotating shaft 511 for different angles, the first angle locking members 5141 are inserted into the corresponding first fixing holes 5142, and the rotating seat 513 is locked. The multi-directional adjusting arm 5 is fixed by the second angle locking structure 515 after being rotated around the vertical rotation shaft 512 by different angles. The second angle locking structure 515 includes a plurality of second fixing holes arranged on the vertical rotation shaft 512 along the circumferential direction of the vertical rotation shaft 512, and second angle locking pieces are arranged on the multi-directional adjusting arm 5, and when the multi-directional adjusting arm 5 rotates around the vertical rotation shaft 512 for different angles, the second locking pieces are inserted into the corresponding second fixing holes, so that the multi-directional adjusting arm 5 is locked. Optionally, the rotating seat 513 is hinged to the upright 2 through a vertical rotation shaft 512, and the multidirectional adjusting arm 5 is hinged to the rotating seat 513 through a horizontal rotation shaft 511.
As shown in fig. 2, the multi-directional adjusting arm 5 includes a large arm 52 and a small arm 53, the large arm 52 is connected with the upright post 2 through a rotary joint 51, and the large arm 52 and the small arm 53 are slidably fitted along the axial direction of the multi-directional adjusting arm 5. The arm 53 is slid in the axial direction of the multi-directional adjustment arm 5, whereby the multi-directional adjustment arm 5 is extended or shortened.
Specifically, the large arm 52 has a generally tubular structure, and the small arm 53 is inserted into the large arm 52. The large arm 52 is provided with a telescopic adjusting piece 54, the telescopic adjusting piece 54 is connected with the small arm 53, and the small arm 53 is driven to slide by operating the telescopic adjusting piece 54. The first end of the large arm 52 is connected to the column 2 by a pivot joint 51, and the first end of the small arm 53 is inserted into the large arm 52 from the second end of the large arm 52. When the multi-directional adjusting arm 5 is adjusted to the armrest 5', the forearm 53 is connected to the large arm 52 by the forearm locking structure 55. The small arm locking structure 55 includes a locking block 551 and a locking buckle 552, the locking block 551 is disposed on the second end of the small arm 53, the locking buckle 552 is disposed on the second end of the large arm 52, and the small arm 53 cannot slide by connecting the locking buckle 552 with the locking block 551, so as to ensure the stability of the armrest 5'. In this embodiment, the telescopic adjusting member 54 is connected to the small arm 53 in a structure capable of converting the rotation motion into the linear reciprocation motion, and the small arm 53 can be driven to reciprocate along the axial direction of the multi-directional adjusting arm 5 by rotating the telescopic adjusting member 54. Optionally, the telescopic adjusting piece is driven with the forearm through a structure of matching a gear and a rack. Optionally, the telescopic adjusting member and the forearm are driven by other structures in the prior art capable of converting rotary motion into linear reciprocating motion. Optionally, the forearm is sleeved on the big arm.
As shown in fig. 1 and 2, in the embodiment of the present invention, the transmission structure 7 includes a transmission wire 71, a transmission pulley seat 73 and at least one transmission pulley 72, the transmission pulley 72 is mounted on the transmission pulley seat 73, and the transmission wire 71 bypasses the transmission pulley 72 to be connected with the two operation structures 6 and is connected with the resistance mechanism 4 through the transmission pulley seat 73. During strength training, the anchor points on the two multidirectional adjusting arms 5 are collinear, so that the stress of any point on the transmission stay wire 71 is provided by the resistance mechanism 4, and all anchor points on the multidirectional adjusting arms 5 are uniformly stressed. By connecting the two operating structures 6 at the two ends of the same transmission pull wire 71, the same resistance transmitted to the two operating structures 6 can be ensured, the same stress on the two sides of the sportsman during strength training can be ensured, and the muscles at the symmetrical parts of the sportsman can also be exercised more uniformly. The resistance provided by the resistance mechanism 4 is transmitted to the operation structure 6 through the transmission stay wire 71 and the transmission pulley 72, so that the loss is small, and the operation structure 6 can be pulled towards any direction to overcome the same resistance for strength training. Specifically, the transmission pulley mount 73 is connected to the resistance mechanism 4 through a connection wire 77. In this embodiment, the resistance mechanism 4 employs a motor resistance device 41. The sportsman can adjust the resistance provided by the resistance mechanism 4 according to the training intensity of the sportsman. Alternatively, the resistance mechanism employs a magnetic control resistance device. Optionally, the resistance mechanism employs a plurality of weights.
As shown in fig. 1 and 2, the upright 2 is further provided with a fixed pulley seat 78, the fixed pulley seat 78 is provided with a plurality of first fixed pulleys 74, the transmission pulley seat 73 is provided with at least two transmission pulleys 72, and the transmission stay wire 71 alternately bypasses the plurality of first fixed pulleys 74 and the at least two transmission pulleys 72 one by one. The transmission stay 71 is circulated and reciprocated between the fixed pulley seat 78 and the transmission pulley seat 73 for a plurality of times by arranging the plurality of first fixed pulleys 74 and the at least two transmission pulleys 72 to match with the transmission stay 71, so that the transmission stay 71 can reserve enough length to adapt to the stroke of the multidirectional adjusting arm 5 during telescopic adjustment and the stroke of the operating structure 6 during strength training, namely, the multidirectional adjusting arm 5 stretches to the maximum length to meet the requirement of a person with longer arm length for strength training, and the operating structure 6 can also be pulled to a sufficient length of stroke to form a movement gesture meeting the requirement.
In this embodiment, three first fixed pulleys 74 are mounted on the fixed pulley seat 78, and two transmission pulleys 72 are mounted on the transmission pulley seat 73, so that the transmission wire 71 circulates three times between the fixed pulley seat 78 and the transmission pulley seat 73. Specifically, the upright 2 is generally in the form of a "n" shaped frame. The resistance mechanism 4 is mounted on the chassis 3, and three first fixed pulleys 74 are mounted side by side on the inner top surface of the upright 2 and are located right above the transmission pulley seat 73.
As shown in fig. 1 and 2, the first end of the multi-directional adjusting arm 5 is provided with a second fixed pulley 75, the second end of the multi-directional adjusting arm 5 is provided with a third fixed pulley 76, the transmission stay wire 71 is arranged in the multi-directional adjusting arm 5 in a penetrating way, one end of the transmission stay wire 71 bypasses the second fixed pulley 75 to be connected with the operation structure 6, and the other end of the transmission stay wire 71 bypasses the third fixed pulley 76 to extend into the upright post 2. By providing the second fixed pulley 75 and the third fixed pulley 76, the multidirectional adjusting arm 5 is adjusted to any angle, so that the transmission stay wire 71 can accurately transmit the resistance provided by the resistance mechanism 4 to the operation structure 6, and the transmission of the transmission stay wire 71 and the adjustment of the multidirectional adjusting arm 5 cannot interfere with each other. Specifically, a wire passing groove is provided in the horizontal rotary shaft 511, and the transmission wire 71 passes through the wire passing groove and extends into the upright post 2.
As shown in fig. 1 and 2, in the embodiment of the present invention, the operating structure 6 includes a hand ring 61, and the hand ring 61 is connected to a transmission wire 71. The athlete can exercise by grasping the hand tab 61 to overcome the resistance provided by the resistance mechanism 4. Alternatively, the operating structure may be another type of operating structure such as an operating lever, an operating handle, or the like.
As shown in fig. 2 and 3, the hand ring 61 is detachably connected to the transmission wire 71, and the column 2 is provided with a storage area 22 for the hand ring 61. When the strength training is not needed, the hand pull ring 61 can be detached and placed in the storage area 22 on the upright post 2, so that the space is saved, and the hand pull ring 61 is not easy to lose. Specifically, the two ends of the transmission stay 71 are provided with connection rings 63, and the hand-pulling ring 61 is connected with the connection rings 63 through a snap ring 62. The transmission stay 71 passes around the third fixed pulley 76 and extends out from the first end of the multi-directional adjusting arm 5, and the first end of the multi-directional adjusting arm 5 is provided with a limiting piece 57 to limit the transmission stay 71 to be always matched with the third fixed pulley 76. The front of the upright post 2 of the hand pull ring 61 is provided with a panel 21, a groove is arranged on the panel 21 and is hinged with a cover plate 23, a storage area 22 for placing the hand pull ring 61 is formed in the groove, and the groove can be opened or covered by overturning the cover plate 23.
As shown in fig. 3 and 4, in the embodiment of the present invention, the integrated exercise apparatus further includes a seat 8, the seat 8 is foldably installed at the middle of the upright 2, and the seat 8 can be unfolded and placed on the running machine deck 1in the stopped state of the running machine deck 1. Through setting up seat 8, the sportsman can carry out strength training on seat 8 to can adapt to more motion postures, satisfy more body-building demands, and seat 8 can not increase the occupation space of whole equipment. In particular, the panel 21 is provided with a further recess, forming a fold 24 of the seat 8. Referring to fig. 4, the running deck 1 includes a mounting deck 11 and a running belt 12, and a driving structure for driving the running belt 12 to move is mounted on the mounting deck 11. The running belt locking structure 14 is mounted on the underframe 3 and is used for locking the driving structure or the running belt 12 so that the running belt 12 cannot rotate, and the running belt 12 cannot roll after the seat 8 is unfolded and when a sportsman stands on the running platform 1 for strength training.
As shown in fig. 4, the seat 8 includes a first support portion 83, a second support portion 84, a third support portion 85, a seat portion 81, and a backrest 82, wherein a first end of the first support portion 83 is hinged to the upright 2, a second end of the first support portion 83 is hinged to a first end of the second support portion 84 through a hinge shaft 87, a second end of the second support portion 84 is supported on the running table 1, the backrest 82 is hinged to the seat portion 81, the seat portion 81 is rotatably mounted on the hinge shaft 87, a first end of the third support portion 85 is hinged to a back surface of the backrest 82, the seat portion 81 can drive the backrest 82 to be disposed opposite to the upright 2 so that a second end of the third support portion 85 is supported on the second support portion 84, and the seat portion 81 can drive the backrest 82 to be disposed opposite to the upright 2 so that a second end of the third support portion 85 is supported on the first support portion 83. Through rotating the seat 81, the sportsman can just pull the operation structure 6 to the stand 2 and carry out strength training to temper chest muscle better, can also carry out strength training against the stand 2 and pull the operation structure 6, thereby temper back muscle better. The height of the seat 81 is adjusted by adjusting the angle between the first support 83 and the second support 84 to accommodate sportsmen of different heights. The inclination angle of the backrest 82 is adjusted by adjusting the angle between the third support portion 85 and the backrest 82. Further, the exercising person can exercise other exercises such as sit-ups and abdomen-rolling by using the seat 8. Specifically, a plurality of support grooves 86 matching with the second ends of the third support parts 85 are arranged on the first support parts 83 and the second support parts 84 at intervals along the rotation direction of the third support parts 85.
In the embodiment of the invention, one end of the running platform 1 is hinged with the underframe 3, and the running platform 1 can be folded and placed on the underframe 3. When not in use, the running platform 1 of the running machine is folded and stored, so that the occupied space of the equipment is reduced, and the running platform is more convenient. The underframe 3 is embedded in an installation space on the wall body, and the installation space can also be used for placing the running platform 1 of the running machine in a folded state, so that the stability of the equipment is high, and the occupied space of the equipment can be further reduced. In addition, the integrated exercise machine of the present invention can also be installed in a conventional manner.
The foregoing is merely a few embodiments of the present invention and those skilled in the art may make various modifications or alterations to the embodiments of the present invention in light of the disclosure herein without departing from the spirit and scope of the invention.