Wire arranging device and wire cutting equipment
By designing a wire routing device with swingable guide wheels and counterweights, the problems of wire deviation and vibration caused by guide wheel wear were solved, thus improving the stability and reliability of the wire EDM equipment.
Patent Information
- Application Number
- CN202520223400.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-12
AI Technical Summary
The guide wheels of existing wire-laying devices are easily worn by the diamond cutting wire, causing problems such as wire deviation, vibration, detachment, or breakage.
A wire winding device is designed in which a guide wheel can swing around the swing axis of the swinging component, and remains tangent to the outermost cutting line of the winding device as the cutting wire is wound up. A counterweight is used to balance the weight and reduce the wear of the guide wheel.
It reduces wear on the guide wheel, improves the cutting line deviation and vibration, and reduces the risk of the cutting line detaching or breaking.
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Figure CN223671561U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wire cutting device technical field, specifically, it relates to a wire arranging device and wire cutting equipment. BACKGROUND
[0002] In the natural stone processing technological process, the rough cutting is a more important step, if the saw blade, the rope saw, the band saw and the like are used to cut the stone, the problems such as big cutting saw joint, waste stone, big vibration in the cutting process, easy to pull plate and the like are prone to appear, and when the saw blade and the like hard cutter is used to cut the stone, the cutter and the stone form rigid contact, the stone is stripped by pulling the cutter through external force, and big vibration is generated, which is easy to cause the stone to break in the processing process, so that the thick board with the thickness of 10mm and above can be usually cut. In order to improve the above problems, the related technology uses the diamond cutting wire to cut the stone, so as to utilize the flexible contact between the diamond cutting wire and the stone, to ensure that there is no instantaneous impact load when the diamond cutting wire contacts the stone, and to improve the problem that big vibration is generated when the stone is cut, so as to reduce the phenomenon of stone cutting and breaking, and realize the cutting of thinner stone plate, and the wire diameter of the diamond cutting wire is small (generally not more than 1mm), which can reduce the cutting saw joint, so as to improve the yield of stone cutting.
[0003] When the diamond cutting wire is used to cut the stone, the diamond cutting wire needs to be reeled and unreeled through the reeling and unreeled device, that is, the reeling and unreeeled device is used to reel in one end of the diamond cutting wire and release the other end of the diamond cutting wire, so that the diamond cutting wire can reciprocate, and the reciprocating diamond cutting wire can be used to cut the stone, and in the process of reeling in, the wire arranging device is used to arrange the diamond cutting wire in front of the reeling and unreeled roller, so that the diamond cutting wire can be orderly wound on the reeling and unreeled roller.
[0004] The wire arranging device includes a guide wheel for guiding the movement of the diamond cutting wire, so as to improve the stability of the movement path of the diamond cutting wire when winding on the reeling and unreeled roller. However, the guide wheel of the wire arranging device provided by the related technology is easy to be worn by the diamond cutting wire in the process of arranging the wire, and it is difficult to effectively guide the diamond cutting wire stably, the diamond cutting wire is easy to deviate, and the diamond cutting wire slides along the radial direction of the guide groove of the guide wheel and shakes, and further aggravates the wear of the diamond cutting wire on the guide wheel, and even causes the diamond cutting wire to be separated from the guide groove or be torn off. SUMMARY
[0005] The utility model discloses a purpose includes providing a wire arrangement and wire cutting equipment, and the wire arrangement can be used for wire cutting equipment, and the wire arrangement can arrange wire in the front end of take -up device, the guide wheel of wire arrangement is not easy to be worn by cutting line, can improve the problem of cutting line deviation, and reduce the phenomenon that cutting line occurs jitter, improve the phenomenon that cutting line is separated from guide wheel or is torn.
[0006] The embodiment of the utility model can be realized as follows:
[0007] In a first aspect, the utility model provides a wire arrangement, comprising:
[0008] A support;
[0009] A swing piece, which is swingably assembled to the support; and
[0010] A guide wheel, which is rotatably assembled to the swing piece and is used to guide the winding and unwinding of the cutting line in the take -up device of the wire cutting equipment; wherein
[0011] With the cutting line stored in the take -up device, the guide wheel can swing around the swing axis of the swing piece under the pulling of the cutting line, so that the rotation plane of the guide wheel is always tangent to the cutting line stored in the outermost layer of the take -up device.
[0012] In an optional embodiment, the wire arrangement further comprises a counterweight, and the guide wheel and the counterweight are respectively assembled to two ends of the swing piece.
[0013] In an optional embodiment, the wire arrangement further comprises a swing shaft and a bearing assembly connected to the swing shaft, one of the support and the swing piece is connected to the swing shaft, and the other of the support and the swing piece is connected to the bearing assembly, and the swing piece is configured to swing around the axis of the swing shaft.
[0014] In an optional embodiment, the swing piece is provided with an assembly hole, and the bearing assembly is assembled in the assembly hole.
[0015] In an optional embodiment, the swing piece comprises a swing arm, an assembly part and a gland, the assembly part is connected to one end of the swing arm, the guide wheel is assembled to the other end of the swing arm, the assembly part is provided with an assembly hole, the first end and the second end of the assembly hole along the axial direction both penetrate through the assembly part, the bearing assembly is assembled in the assembly hole from the first end, and the swing shaft extends out of the assembly hole from the second end and is connected to the support; the gland is connected to the assembly part and covers the first end, and the gland is used to prevent the bearing assembly from coming out of the assembly hole.
[0016] In an optional embodiment, the wire arrangement further comprises a first driving mechanism, the first driving mechanism is in transmission connection with the support and is used to drive the support to move along the set axis.
[0017] In an optional embodiment, the first driving mechanism comprises a guide, the support is in sliding fit with the guide, and the guide is used to guide the support to move along the set axis.
[0018] In an optional embodiment, the guide comprises at least two guide rods, the support is in sliding fit with the at least two guide rods simultaneously, and the at least two guide rods jointly guide the support to move along the set axis.
[0019] In an optional embodiment, the swing axis of the swing member is parallel to the set axis.
[0020] In a second aspect, the utility model provides a wire cutting equipment, including cutting line, take -up and the wire arrangement of any one of preceding embodiment, cutting line is taut in guide pulley, and can be taken -up in take -up.
[0021] The wire arrangement of the utility model embodiment has the beneficial effects that the wire arrangement comprises a support, a swing member and a guide pulley, the swing member is swingably assembled to the support, the guide pulley is rotatably assembled to the swing member, and the guide pulley is used to guide the cutting line to be taken -up or released in the take -up of the wire cutting equipment, wherein, along with the cutting line being stored in the take -up, the guide pulley can swing around the swing axis of the swing member under the pulling of the cutting line, so that the rotation plane where the guide pulley is located is always tangent to the cutting line stored in the outermost layer of the take -up. In this way, the guide pulley can swing flexibly and freely along with the storage of the cutting line, so as to reduce the force exerted by the cutting line on the guide pulley, further reduce the abrasion of the guide pulley, improve the deviation of the cutting line, reduce the phenomenon of the cutting line shaking, and improve the phenomenon of the cutting line being separated from the guide pulley or being torn.
[0022] The wire cutting equipment of the utility model embodiment has all the beneficial effects of the wire arrangement, for example, the guide pulley can swing flexibly and freely along with the storage of the cutting line, so as to reduce the force exerted by the cutting line on the guide pulley, further reduce the abrasion of the guide pulley, improve the deviation of the cutting line, reduce the phenomenon of the cutting line shaking, and improve the phenomenon of the cutting line being separated from the guide pulley or being torn. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme of the utility model embodiment, the following will briefly introduce the drawings needed to be used in the embodiment, and it should be understood that the following drawings only show some embodiments of the utility model, and should not be regarded as limiting the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0024] Figure 1 It is the structural schematic diagram of the wire cutting equipment in the utility model embodiment;
[0025] Figure 2 It is a structure schematic view of the wire arranging device in the first visual angle in the embodiment of the utility model;
[0026] Figure 3 It is a schematic view of the wire arranging device and the winding and unwinding device winding and unwinding the cutting wire in the related art;
[0027] Figure 4 It is a schematic view of the wire arranging device and the winding and unwinding device winding and unwinding the cutting wire in the embodiment of the utility model;
[0028] Figure 5 It is a partial sectional view of the wire arranging device in the embodiment of the utility model;
[0029] Figure 6 It is Figure 5 The enlarged view of VI in the middle.
[0030] Icon: 010-wire cutting equipment; 100-cutting wire; 200-adjusting device; 210-first adjusting assembly; 221-first guide wheel; 222-second guide wheel; 300-tensioning device; 310-second adjusting assembly; 321-third guide wheel; 400-wire arranging device; 410-bracket; 411-bracket body; 412-supporting arm; 420-oscillating piece; 421-assembly hole; 422-oscillating arm; 423-assembly part; 424-pressing cover; 430-fourth guide wheel; 440-counterweight piece; 450-oscillating shaft; 460-bearing assembly; 461-bearing; 462-separation sleeve; 470-first driving mechanism; 471-motor; 472-screw rod; 480-guiding piece; 481-guiding rod; 482-base; 500-take-up device; 510-winding and unwinding roller; 520-second driving mechanism; a-set axis. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. The components of the embodiments of the utility model described and shown in the drawings can be arranged and designed in various different configurations.
[0032] Therefore, the following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the claimed utility model, but only represents selected embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those of ordinary skill in the art without creative labor belong to the scope of protection of the utility model.
[0033] It should be noted that like reference numerals and letters refer to like items in the several views, and that once an item is defined in one view, it should not require further defining and explaining in subsequent views.
[0034] In the description of the utility model, it should be explained that if the terms such as ''upper'', ''lower'', ''inner'', ''outer'' and the like indicate the orientation or position relationship based on the orientation or position relationship shown in the drawings, or the orientation or position relationship of the utility model product in common use, it is only for the convenience of describing the utility model and simplifying the description, and it does not indicate or imply that the device or element must have a particular orientation, structure and operation, therefore it cannot be understood as a limitation on the utility model.
[0035] In addition, if the terms ''first'', ''second'' and the like appear, they are only used for distinguishing description, and cannot be understood as indicating or implying relative importance.
[0036] It should be noted that the features in the embodiments of the utility model can be combined with each other without conflict.
[0037] Please refer to Figure 1 The embodiment provides a wire cutting equipment 010, which comprises a cutting wire 100, an adjusting device 200, a tensioning device 300, a wire arranging device 400 and a wire collecting device 500, the cutting wire 100 can be wound on the adjusting device 200, the tensioning device 300 and the wire arranging device 400 in sequence and then wound on the wire collecting device 500, and the wire collecting device 500 is used for realizing the winding and unwinding of the cutting wire 100, so that the cutting wire 100 can move back and forth, and the stone can be cut by using the cutting wire 100 moving back and forth.
[0038] The structure of the adjusting device 200 and the tensioning device 300 is similar to the related art. For example, the adjusting device 200 includes a first adjusting assembly 210, a first guide wheel 221 and a second guide wheel 222. The first guide wheel 221 and the first adjusting assembly 210 are both mounted on the frame of the wire cutting device 010. The first adjusting assembly 210 is in driving connection with the second guide wheel 222. The first adjusting assembly 210 is used to drive the second guide wheel 222 to move relative to the first guide wheel 221, so as to adjust the distance between the first guide wheel 221 and the second guide wheel 222. The cutting wire 100 is wound around the first guide wheel 221 and the second guide wheel 222 in sequence. The part of the cutting wire 100 between the first guide wheel 221 and the second guide wheel 222 can be used to cut the stone. Adjusting the distance between the first guide wheel 221 and the second guide wheel 222 can adjust the length of the cutting wire 100 between the two guide wheels, so as to adjust the working width of the wire saw, so as to facilitate the cutting of stone of various sizes. For example, the tensioning device 300 includes a second adjusting assembly 310 and a third guide wheel 321. The second adjusting assembly 310 is mounted on the frame of the wire cutting device 010. The third guide wheel 321 is used to wind the cutting wire 100 pulled out from the second guide wheel 222. The second adjusting assembly 310 is in driving connection with the third guide wheel 321. The second adjusting assembly 310 is used to drive the third guide wheel 321 to move, so that the cutting wire 100 wound around the third guide wheel 321 is tensioned, so as to ensure better wire cutting effect.
[0039] Optionally, the first adjusting assembly 210 and the second adjusting assembly 310 both include but are not limited to a lead screw driving assembly and a push rod driving assembly.
[0040] Please refer to Figure 1 and Figure 2The wire arrangement 400 of the embodiment includes a guide wheel (hereinafter referred to as a fourth guide wheel 430) and a first driving mechanism 470, which is arranged on the frame of the wire cutting device 010 and in driving cooperation with the fourth guide wheel 430 for driving the fourth guide wheel 430 to move along the set axis a; the wire winding device 500 includes a wire winding and unwinding roller 510 and a second driving mechanism 520 (for example, a motor), which is arranged on the frame of the wire cutting device 010 and in driving connection with the wire winding and unwinding roller 510 for driving the wire winding and unwinding roller 510 to rotate around its rotation axis, so that the wire winding and unwinding roller 510 can wind or release the cutting wire 100, and the rotation axis of the wire winding and unwinding roller 510 is parallel to the set axis a. The cutting wire 100 pulled out from the third guide wheel 321 is wound on the fourth guide wheel 430 and then wound on the wire winding and unwinding roller 510 or released from the wire winding and unwinding roller 510 in a circle by circle manner; wherein the rotation axis of the wire winding and unwinding roller 510 is parallel to the set axis a, and the first driving mechanism 470 drives the fourth guide wheel 430 to move along the set axis a, which is conducive to the orderly winding and unwinding of the cutting wire 100 on the wire winding and unwinding roller 510, that is, while the fourth guide wheel 430 moves along the set axis a, the wire winding and unwinding roller 510 rotates around its rotation axis, so that the cutting wire 100 can be stably and orderly wound or released on the wire winding and unwinding roller 510 in a circle by circle manner.
[0041] Further, the fourth guide wheel 430 is configured to be able to rotate around its rotation axis, so as to more smoothly guide the winding and unwinding of the cutting wire 100 on the wire winding and unwinding roller 510.
[0042] Still further, the first guide wheel 221, the second guide wheel 222, the third guide wheel 321 and the fourth guide wheel 430 are all provided with guide grooves for accommodating and guiding the cutting wire 100; through the arrangement of the guide grooves, the reliability of the guide of each guide wheel to the cutting wire 100 can be improved.
[0043] Optionally, the first guide wheel 221, the second guide wheel 222 and the third guide wheel 321 are all configured to be able to rotate around their rotation axes, that is, the first guide wheel 221 is rotatably arranged on the frame, the second guide wheel 222 is rotatably connected with the first adjusting assembly 210, and the third guide wheel 321 is rotatably connected with the second adjusting assembly 310; in this way, the smoothness of the guide of each guide wheel to the cutting wire 100 can be improved, and the abrasion of the cutting wire 100 to each guide wheel can be reduced.
[0044] It should be noted that the rotating power of the first guide wheel 221, the second guide wheel 222, the third guide wheel 321 and the fourth guide wheel 430 is provided by the cutting wire 100 wound on each guide wheel, that is, when the cutting wire 100 is wound on or taken off the take-up reel 510, the cutting wire 100 wound on each guide wheel can drive each guide wheel to rotate around its own rotation axis by friction.
[0045] The inventor found that in the process of guiding the cutting wire 100 to be wound on and taken off the take-up reel 510, the fourth guide wheel 430 can be driven by the first driving mechanism 470 to move back and forth along the set axis a, so that the number of layers of the cutting wire 100 wound on the take-up reel 510 gradually increases, thereby increasing the amount of the cutting wire 100 taken off. However, as the cutting wire 100 is wound layer by layer on the take-up reel 510, the total outer diameter of the take-up reel 510 and the cutting wire 100 wound thereon is larger than that of the take-up reel 510 without the cutting wire 100 wound thereon, and the rotation plane of the fourth guide wheel 430 will form an angle θ (as shown in Figure 3 ) with the segment of the cutting wire 100 connected between the fourth guide wheel 430 and the take-up reel 510, which will cause the force exerted by the cutting wire 100 on the fourth guide wheel 430 to increase, that is, the force exerted by the cutting wire 100 on the guide groove of the fourth guide wheel 430 will increase due to the existence of the above-mentioned angle, thereby increasing the wear of the cutting wire 100 on the fourth guide wheel 430 (the wear includes but is not limited to the deformation of the shape of the guide groove of the fourth guide wheel 430, for example, causing the guide groove to no longer be a reverse triangle), and it is difficult to effectively guide the cutting wire 100 stably, the cutting wire 100 is easy to deviate, and it will slide along the radial direction of the guide groove of the fourth guide wheel 430 to vibrate, further aggravating the wear of the cutting wire 100 on the guide wheel, and even causing the cutting wire 100 to be separated from the guide groove or be torn off.
[0046] Please refer to Figure 2 and Figure 4In order to improve the above technical problems, the wire arranging device 400 of the embodiment further comprises a support 410 and a swing member 420, the first driving mechanism 470 is in transmission connection with the support 410, the swing member 420 is swingably assembled to the support 410, and the fourth guide wheel 430 is rotatably assembled to the swing member 420, that is, the fourth guide wheel 430 is in transmission connection with the first driving mechanism 470 through the swing member 420 and the support 410, so as to drive the support 410 to drive the swing member 420 and the fourth guide wheel 430 to move along the set axis a by using the first driving mechanism 470; wherein, with the cutting wire 100 being received in the take-up and pay-off roller 510 of the wire collecting device 500, the fourth guide wheel 430 can swing around the swing axis of the swing member 420 under the pulling of the cutting wire 100, so as to make the rotation plane where the fourth guide wheel 430 is located always tangent to the cutting wire 100 received in the outermost layer of the take-up and pay-off roller 510, that is, to make the rotation plane where the fourth guide wheel 430 is located coincide with or parallel to the segment of the cutting wire 100 connected between the fourth guide wheel 430 and the take-up and pay-off roller 510. In this way, the fourth guide wheel 430 can swing flexibly and freely with the receiving of the cutting wire 100, so as to reduce the force applied by the cutting wire 100 on the fourth guide wheel 430, and further reduce the abrasion of the fourth guide wheel 430, improve the deviation of the cutting wire 100, reduce the phenomenon of the cutting wire 100 shaking, and improve the phenomenon of the cutting wire 100 being separated from the fourth guide wheel 430 or being torn.
[0047] Please refer to Figure 2 and Figure 5 The wire arranging device 400 of the embodiment further comprises a counterweight 440, and the fourth guide wheel 430 and the counterweight 440 are respectively assembled to two ends of the swing member 420. The counterweight 440 can be used to balance the weight of the swing member 420 and the fourth guide wheel 430, so as to facilitate the center of mass of the swing member 420 and the fourth guide wheel 430 to always remain on the swing axis of the swing member 420, so as to ensure that the fourth guide wheel 430 reliably swings along the swing axis of the swing member 420, and further ensure that the rotation plane where the fourth guide wheel 430 is located remains in the state of being tangent to the cutting wire 100 received in the outermost layer of the take-up and pay-off roller 510 when the cutting wire 100 is received in the take-up and pay-off roller 510, so as to reduce the abrasion of the fourth guide wheel 430 caused by the cutting wire 100.
[0048] Further, please refer to Figure 6 The wire arranging device 400 further comprises a swing shaft 450 and a bearing assembly 460 connected with the swing shaft 450, the swing shaft 450 is connected with the support 410, the bearing assembly 460 is connected with the swing member 420, and the swing member 420 is configured to swing around the axis of the swing shaft 450. Through the setting of the bearing assembly 460, the swing smoothness of the fourth guide wheel 430 and the swing member 420 under the pulling of the cutting wire 100 can be improved.
[0049] Of course, in other embodiments, the swing shaft 450 is connected with the swing member 420, and the bearing assembly 460 is connected with the support 410.
[0050] Optionally, the swing shaft 450 is connected with the support 410 by a fastener such as a bolt. Alternatively, in other embodiments, the swing shaft 450 can also be welded with the support 410, etc., which is not specifically limited here.
[0051] Further, the swing member 420 is provided with an assembly hole 421, and the bearing assembly 460 is assembled in the assembly hole 421. In this way, the reliability of the bearing assembly 460 assembled in the swing member 420 can be ensured, and the compactness of the assembly structure can be ensured.
[0052] Please refer to Figure 5 and Figure 6 , the structure of the swing member 420 can be set as needed; in the embodiment, the swing member 420 includes a swing arm 422, an assembly part 423, and a gland 424, the assembly part 423 is connected to one end of the swing arm 422, the fourth guide wheel 430 is assembled at the other end of the swing arm 422, the counterweight 440 is connected with the assembly part 423, and the length extension direction of the counterweight 440 coincides with or is parallel to the swing arm 422, so that the counterweight 440 and the fourth guide wheel 430 are located at both ends of the swing member 420 respectively; the assembly part 423 is provided with an assembly hole 421, the first end and the second end of the assembly hole 421 along the axial direction both penetrate through the assembly part 423, the bearing assembly 460 is assembled in the assembly hole 421 from the first end, and the swing shaft 450 extends out of the assembly hole 421 from the second end and is connected with the support 410; the gland 424 is connected with the assembly part 423 and covers the first end, and the gland 424 is used to prevent the bearing assembly 460 from being pulled out of the assembly hole 421. In this way, on the one hand, the easy assembly of the swing shaft 450 and the bearing assembly 460 can be ensured, and on the other hand, the reliability of the bearing assembly 460 assembled in the assembly hole 421 can be ensured.
[0053] Optionally, the connection mode of the gland 424 and the assembly part 423 includes but is not limited to connection by a fastener such as a bolt, clamping, welding, etc.
[0054] The structure of the bearing assembly 460 can be selected as needed. For example, please refer to Figure 6 , the bearing assembly 460 includes a spacer sleeve 462 and two bearings 461, the spacer sleeve 462 is arranged between the two bearings 461 to separate the two bearings 461, the swing shaft 450 is inserted with the spacer sleeve 462 and the two bearings 461, and the swing shaft 450 is fixedly connected with the inner rings of the two bearings 461, and the outer rings of the two bearings 461 are fixedly connected with the hole wall of the assembly hole 421; in this way, the reliability of the swing member 420 swinging around the axis of the swing shaft 450 can be ensured by using the two bearings 461.
[0055] The fixed connection between the swing shaft 450 and the inner ring of the bearing 461, and the fixed connection between the hole wall of the assembly hole 421 and the outer ring of the bearing 461 can include but are not limited to interference fit, bonding, and welding.
[0056] Of course, in other embodiments, the bearing assembly 460 can also include only one bearing 461, which is not specifically limited here.
[0057] Please refer to Figure 4 and Figure 5 In this embodiment, the swing axis of the swing piece 420 is parallel to the set axis a; in this way, it can be ensured that the fourth guide wheel 430 can be reliably swung to be tangent to the outermost cutting line 100 wound on the take-up reel 510 under the pulling of the cutting line 100, thereby effectively reducing the problem of wear of the fourth guide wheel 430.
[0058] Optionally, please refer to Figure 2 and Figure 4 The first driving mechanism 470 includes a driving piece and a guide piece 480, both of which are assembled to the rack, and the driving piece is in transmission connection with the support 410 for driving the movement of the support 410 along the set axis a; the support 410 is also in sliding fit with the guide rack, and the guide piece 480 is used to guide the movement of the support 410 along the set axis a. Through the arrangement of the guide piece 480, the stability of the sliding of the support 410 along the set axis a can be improved, and the problem of deviation of the movement path of the support 410 can be improved.
[0059] Further, the guide piece 480 includes two guide rods 481, which are parallelly distributed, and the support 410 is in sliding connection with both of the guide rods 481; in this way, when the support 410 slides along the set axis a, the shaking of the support 410, the swing piece 420 and the fourth guide wheel 430 can be reduced, thereby improving the reliability and smoothness of the wire arrangement.
[0060] Of course, in other embodiments, the number of guide rods 481 can also be one, three, four, etc., which is not specifically limited here.
[0061] Optionally, the guide piece 480 can be assembled to the support 410 through a base 482; specifically, the two guide rods 481 can be assembled to the support 410 through the same base 482, so as to improve the operability of the assembly.
[0062] Optionally, please refer to Figure 5The support 410 comprises a support body 411 and a support arm 412, the driving member is in transmission connection with the support body 411, the support body 411 is in sliding connection with the guide frame, one end of the support arm 412 is connected with the support body 411, and the other end is connected with the swing shaft 450. In this way, the position of the swing member 420 rotatably arranged on the support arm 412 through the bearing assembly 460 and the swing shaft 450 from the guide member 480 can be adjusted by optimizing the length of the support arm 412, and the distance between the swing member 420 and the fourth guide member 480 and the guide member 480 can be shortened by shortening the length of the support arm 412, thereby reducing the shaking of the support 410, the swing member 420 and the fourth guide wheel 430, and improving the reliability and smoothness of the wire.
[0063] Optionally, the driving member includes but is not limited to a screw rod driving member, an electric push rod and the like, which are not limited herein. The structure and driving principle of the screw rod driving member will be introduced exemplarily below, please refer to Figure 4 and Figure 5 The screw rod driving member comprises a motor 471 and a screw rod 472 in transmission connection with an output shaft of the motor 471, the screw rod 472 extends along a set axis a, and the support 410 is in threaded cooperation with the screw rod 472; when the motor 471 drives the screw rod 472 to rotate, the support 410 can move along the length extension direction of the screw rod.
[0064] In summary, the wire arranging device 400 can be used in the wire cutting equipment 010, and the wire arranging device 400 can arrange the wire at the front end of the wire collecting device 500, the guide wheel of the wire arranging device 400 is not easy to be worn by the cutting wire 100, the problem of deviation of the cutting wire 100 can be improved, the phenomenon of shaking of the cutting wire 100 is reduced, and the phenomenon of disengagement or being torn off of the cutting wire 100 from the guide wheel is improved.
[0065] The above is only a specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.
Claims
1. A wire arranging device characterized by comprising: The device comprises: a bracket (410); a swing member (420) swingably assembled to the bracket (410); and a guide wheel rotatably assembled to the swing member (420) and used for guiding the winding and unwinding of a cutting wire (100) in a wire cutting device; wherein as the cutting wire (100) is wound in the winding device (500), the guide wheel can swing around the swing axis of the swing member (420) under the pulling of the cutting wire (100) so that the rotation plane of the guide wheel is always tangent to the cutting wire (100) wound in the outermost layer of the winding device (500). The winding device further comprises a counterweight (440), and the guide wheel and the counterweight (440) are respectively assembled to two ends of the swing member (420).
2. The wire routing device of claim 1, wherein, The winding device further comprises a swing shaft (450) and a bearing assembly (460) connected to the swing shaft (450), the swing shaft (450) is connected to one of the bracket (410) and the swing member (420), the bearing assembly (460) is connected to the other one of the bracket (410) and the swing member (420), and the swing member (420) is configured to swing around the axis of the swing shaft (450).
3. The cable management device of claim 1, wherein, The swing member (420) is provided with an assembly hole (421), and the bearing assembly (460) is assembled in the assembly hole (421).
4. The wire routing device of claim 3, wherein The swing member (420) comprises a swing arm (422), an assembly part (423) and a gland (424), the assembly part (423) is connected to one end of the swing arm (422), the guide wheel is assembled to the other end of the swing arm (422), the assembly part (423) is provided with the assembly hole (421), the assembly hole (421) penetrates the assembly part (423) at its first end and second end along the axial direction, the bearing assembly (460) is assembled in the assembly hole (421) from the first end, and the swing shaft (450) is connected to the bracket (410) after extending out of the assembly hole (421) from the second end; the gland (424) is connected to the assembly part (423) and covers the first end, and the gland (424) is used for preventing the bearing assembly (460) from being pulled out of the assembly hole (421).
5. The wire routing device of claim 4, wherein, The winding device further comprises a first driving mechanism (470) in driving connection with the bracket (410) and used for driving the bracket (410) to move along a set axis (a).
6. The cable management device of any one of claims 1-5, wherein, The first driving mechanism (470) comprises a guide member (480), the bracket (410) is in sliding fit with the guide member (480), and the guide member (480) is used for guiding the bracket (410) to move along the set axis (a).
7. The wire routing device of claim 6, wherein, 8. The wire routing device of claim 7, wherein, The guide (480) comprises at least two guide rods (481), the bracket (410) is in sliding fit with the at least two guide rods (481) simultaneously, and the at least two guide rods (481) jointly guide the bracket (410) to move along the set axis (a).
9. The wire routing device of claim 6, wherein, The swing axis of the swing member (420) is parallel to the set axis (a).
10. A wire saw apparatus, characterized by, The cutting line (100) is in tension on the guide wheel and can be wound and unwound on the take-up device (500).