CN203401576U - Steel wire cutting apparatus with linear guide rails and capable of sliding to and fro - Google Patents
Steel wire cutting apparatus with linear guide rails and capable of sliding to and fro Download PDFInfo
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- CN203401576U CN203401576U CN201320302094.9U CN201320302094U CN203401576U CN 203401576 U CN203401576 U CN 203401576U CN 201320302094 U CN201320302094 U CN 201320302094U CN 203401576 U CN203401576 U CN 203401576U
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- steel wire
- lower beam
- linear guides
- sliding sleeve
- rectangle frame
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Abstract
The utility model discloses a steel wire cutting apparatus with linear guide rails and capable of sliding to and fro. The steel wire cutting apparatus comprises a driving device, an upper part beam and a lower part beam. The steel wire cutting apparatus further comprises two rectangular frames. A plurality of hooks are respectively arranged on the upper part beam and the lower part beam; cutting steel wires are fixed arranged between the hooks on the upper part beam and the hooks on the lower part beam; one end of the cutting steel wire or two ends thereof is connected with a spring; two ends of the upper part beam are fixedly connected with the upper parts of the rectangular frames; the bottom edges of the rectangular frames are respectively provided with the linear guide rails; each sliding sleeve is arranged on the linear guide rails; the sliding sleeve is slideably connected with the linear guide rails on the bottom edges of the rectangular frames; the lower part beam is fixedly arranged between the sliding sleeves of the two rectangular frames; a lateral side of the lower part beam is provided with a protruding block; a connecting rod is axially connected to the protruding block; a driving shaft is arranged on the driving device; and the driving shaft is provided with an eccentric wheel or the driving shaft is designed to be a bent shaft. The steel wire cutting apparatus with linear guide rails and capable of sliding to and fro is simply structured with convenient usage, low cost and maintenance expense, high cutting efficiency and strong combination capacity.
Description
Technical field:
The utility model relates to the cutting technique field of earth goods blank, cement products blank etc., particularly relates to a kind of linear guides reciprocating slide type steel wire cutter sweep.
Background technology:
Current, in cement based foam (foaming) heat insulation material product industry, existing blank cutting mode, mostly adopt alloy saw blade combination cutter sweep, also have indivedual enterprises to adopt circular saw bit combination cutter sweep, both shortcomings all: cutting efficiency is low, and blank waste is many, saw blade loss is fast, and cost performance is not high.On March 26th, 2013, one, table mountain, Henan man is by motorcycle time, and neck is hurt by a kite string being scattered, and blood is gushed.Doctor introduces, and this man's neck wound has 26cm long, and throat muscle layer all disconnects, the most of fracture in thyroid cartilage top, right side internal carotid local damage.Fortunately rescue in time, otherwise only internal carotid is damaged, just likely allow his excessive blood loss dead.By experiment, verified the power that kite string is rarely known by the people---leading the fine rule of kite in the sky, when high-speed mobile, just as being suspended in sharp sword in midair, the disconnected meat of cutting the dish, easy.Through professional person, calculate, φ 0.2mm kite string contacts 10cm with human body, is equivalent to pressing 210Kg weight on nail cover.Moreover, in life, usually with foods such as fine rule cutting lime-preserved egg.In view of this, can consider silk thread to be applied to the cutting production of cement based foam (foaming) heat preservation construction material goods completely, and the silk thread cutting tool that wherein has most industrial applications to be worth is exactly steel wire undoubtedly.In brickmaking and fly ash aerated building block industry, mostly adopt steel wire cutter sweep.In existing steel wire cutting equipment, as derive from the cutter sweep of the Full-automatic ground roll-over cutter of peninsula machinery (Germany) international industry group Wuhan peninsula brick machine equipment Co., Ltd of Germany technology, full-automatic air overturn cutting machine (substep is cutting machine fixedly), German Riamb manufacture and jewelling tool Co., Ltd, large-scale and large equipment entirely, quite heavy, be not suitable for the popularization and application in cement based foam (foaming) heat insulation material product industry; And domestic fragment of brick blank cutter, the steel wire cutting machines such as the automatic slicing of producing as Gongyi City, Henan Zheng Tai machinery plant, blank cutter, dovetail drum-type blank cutter, because the difference of the aspect such as textural association, operational mode, be difficult to equally be applicable to the demand of cement based foam (foaming) heat insulation material product industry.In view of above-mentioned reality, to be badly in need of a kind of simple in structurely, easy to use, with low cost, maintenance cost is few, cutting efficiency is high, the strong Novel steel wire cutter sweep of combination production capacity.
Summary of the invention:
This practical purpose is to overcome the shortcoming of prior art, provides a kind of simple in structure, easy to use, with low cost, and maintenance cost is few, cutting efficiency is high, the strong Novel steel wire cutter sweep of combination production capacity.
To achieve these goals, the utility model provides a kind of linear guides (to claim again: linear slide rail) reciprocating slide type steel wire cutter sweep, comprise drive unit, upper beam and lower beam, it is characterized in that, further comprise two rectangle frames, one side of described rectangle frame is linear guides, in described upper beam and described lower beam, be provided with some hooks, corresponding one by one between described hook in described upper beam and described hook in described lower beam, described upper beam is parallel to described lower beam, between described hook in described upper beam and the described hook in described lower beam, be provided with cutting steel wire.
The one or both ends of described cutting steel wire are connected with spring, between described spring and described cutting steel wire, described hook, are connected.
The two ends of described upper beam are fixedly connected with the top of described rectangle frame, the base of described rectangle frame is set to linear guides, on described linear guides, be provided with sliding sleeve, described sliding sleeve and described linear guides are slidably connected, between described sliding sleeve on two described rectangle frames, be provided with described lower beam, between described lower beam and described sliding sleeve, be fixedly connected with.
The two ends of described upper beam are further fixedly installed column, described upper beam is perpendicular to described column, the bottom of described column is fixedly connected with ground, the middle part of described column is fixedly installed described rectangle frame, between one side of described rectangle frame and described column, be fixedly connected with, described rectangle frame another side is fixedly installed linear guides, on described linear guides, be provided with described sliding sleeve, between described sliding sleeve on two described rectangle frames, be provided with described lower beam, between described lower beam and described sliding sleeve, be fixedly connected with, between described sliding sleeve and described rectangle frame, be slidably connected.
The side of described lower beam is provided with projection, on described projection, axle is connected with connecting rod, described drive unit is positioned at a side of described lower beam, on described drive unit, be provided with driving shaft, on described driving shaft, be provided with eccentric wheel, between one end of described connecting rod and described projection, axle is connected, and between the other end and described eccentric wheel, axle is connected.
Described drive unit is any one in motor, gasoline engine, diesel engine, steam engine, gas turbine.
The side of described lower beam is provided with projection, on described projection, axle is connected with connecting rod, described drive unit is positioned at a side of described lower beam, on described drive unit, be provided with driving shaft, described driving shaft is bent axle, between one end of described connecting rod and described projection, axle is connected, and between the other end and described bent axle, axle is connected.
Outstanding advantages of the present utility model is: simple in structure, easy to use, with low cost, maintenance cost is few, cutting efficiency is high, combination production capacity is strong, is specially:
The utility model utilizes eccentric wheel or bent axle, realization slides over that on a limit of rectangle frame, (this limit of this rectangle frame is set to hard-wired linear guides,, linear guides forms a limit of this rectangle frame) linear reciprocal movement, and then make the slight displacement of cutting steel wire generating period, be used for cutting cement based foam (foaming) material, moulded pottery not yet put in a kiln to bake material, simple in structure, with low cost.A kind of for drive unit drives eccentric wheel rotation, and then drivening rod reciprocating motion, connecting rod drives sliding sleeve to reciprocatingly slide along the linear guides of rectangle frame, makes cutting steel wire realize displacement, and then realizes cutting operation.Another kind is that the bent axle on drive unit rotates, and then drivening rod reciprocating motion, and connecting rod drives sliding sleeve to reciprocatingly slide along the linear guides of rectangle frame, makes cutting steel wire realize displacement, and then realizes cutting operation.
Accompanying drawing explanation:
Fig. 1 is the structural representation of embodiment one of the present utility model.
Fig. 2 is the structural representation of embodiment two of the present utility model.
Fig. 3 is the structural representation of embodiment three of the present utility model.
Fig. 4 is the structural representation of embodiment four of the present utility model.
Accompanying drawing sign:
1, rectangle frame 2, upper beam 3, cutting steel wire
4, link up with 5, drive unit 6, driving shaft
7, connecting rod 8, projection 9, lower beam
10, sliding sleeve 11, eccentric wheel 12, column
13, linear guides
The specific embodiment:
Below in conjunction with accompanying drawing, the utility model is described.
As shown in Figure 1, Fig. 1 is the structural representation of embodiment one of the present utility model.Comprise drive unit 5, upper beam 2 and lower beam 9, wherein, further comprise two rectangle frames 1, one side of rectangle frame 1 is linear guides 13, in upper beam 2 and lower beam 9, be provided with some hooks 4, corresponding one by one between hook 4 in upper beam 2 and hook 4 in lower beam 9, upper beam 2 is parallel to lower beam 9, between the hook 4 in upper beam 2 and the hook 4 in lower beam 9, is fixedly installed cutting steel wire 3.The one or both ends of cutting steel wire 3 are connected with spring, and spring is connected with cutting steel wire 3, between linking up with 4.The two ends of upper beam 2 are fixedly connected with the top of rectangle frame 1, the base of rectangle frame 1 is provided with sliding sleeve 10, the base of rectangle frame 1 is linear guides 13, sliding sleeve 10 is slidably connected with linear guides 13, between sliding sleeve 10 on two rectangle frames 1, be provided with lower beam 9, between lower beam 9 and sliding sleeve 10, be fixedly connected with.The side of lower beam 9 is provided with projection 8, on projection 8, axle is connected with connecting rod 7, drive unit 5 is positioned at a side of lower beam 9, on drive unit 5, be provided with driving shaft 6, on driving shaft 6, be provided with eccentric wheel 11, between one end of connecting rod 7 and projection 8, axle is connected, and between the other end and eccentric wheel 11, axle is connected.
As shown in Figure 2, Fig. 2 is the structural representation of embodiment two of the present utility model.Comprise drive unit 5, upper beam 2 and lower beam 9, wherein, further comprise two rectangle frames 1, one side of rectangle frame 1 is linear guides 13, in upper beam 2 and lower beam 9, be provided with some hooks 4, corresponding one by one between hook 4 in upper beam 2 and hook 4 in lower beam 9, upper beam 2 is parallel to lower beam 9, between the hook 4 in upper beam 2 and the hook 4 in lower beam 9, is fixedly installed cutting steel wire 3.The one or both ends of cutting steel wire 3 are connected with spring, and spring is connected with cutting steel wire 3, between linking up with 4.The two ends of upper beam 2 are fixedly connected with the top of rectangle frame 1, the base of rectangle frame 1 is provided with sliding sleeve 10, the base of rectangle frame 1 is linear guides 13, sliding sleeve 10 is slidably connected with linear guides 13, between sliding sleeve 10 on two rectangle frames 1, be provided with lower beam 9, between lower beam 9 and sliding sleeve 10, be fixedly connected with.The side of lower beam 9 is provided with projection 8, and on projection 8, axle is connected with connecting rod 7, and drive unit 5 is positioned at a side of lower beam 9, on drive unit 5, be provided with driving shaft 6, driving shaft 6 is bent axle, and between one end of connecting rod 7 and projection 8, axle is connected, and between the other end and bent axle, axle is connected.
As shown in Figure 3, Fig. 3 is the structural representation of embodiment three of the present utility model.Comprise drive unit 5, upper beam 2 and lower beam 9, wherein, further comprise two rectangle frames 1, one side of rectangle frame 1 is linear guides 13, in upper beam 2 and lower beam 9, be provided with some hooks 4, corresponding one by one between hook 4 in upper beam 2 and hook 4 in lower beam 9, upper beam 2 is parallel to lower beam 9, between the hook 4 in upper beam 2 and the hook 4 in lower beam 9, is fixedly installed cutting steel wire 3.The one or both ends of cutting steel wire 3 are connected with spring, and spring is connected with cutting steel wire 3, between linking up with 4.The two ends of upper beam 2 are fixedly installed column 12, upper beam 2 is perpendicular to column 12, the bottom of column 12 is fixedly connected with ground, the middle and lower part of column 12 is provided with rectangle frame 1, rectangle frame 1 is fixedly connected with on one side with between column 12, rectangle frame 1 another side is set to linear guides 13, on linear guides 13, be provided with sliding sleeve 10, between sliding sleeve 10 on two rectangle frames 1, be provided with lower beam 9, between lower beam 9 and sliding sleeve 10, be fixedly connected with, between the linear guides 13 on sliding sleeve 10 and rectangle frame 1, be slidably connected.The side of lower beam 9 is provided with projection 8, on projection 8, axle is connected with connecting rod 7, drive unit 5 is positioned at a side of lower beam 9, on drive unit 5, be provided with driving shaft 6, on driving shaft 6, be provided with eccentric wheel 11, between one end of connecting rod 7 and projection 8, axle is connected, and between the other end and eccentric wheel 11, axle is connected.
As shown in Figure 4, Fig. 4 is the structural representation of embodiment four of the present utility model.Comprise drive unit 5, upper beam 2 and lower beam 9, wherein, further comprise two rectangle frames 1, one side of rectangle frame 1 is linear guides 13, in upper beam 2 and lower beam 9, be provided with some hooks 4, corresponding one by one between hook 4 in upper beam 2 and hook 4 in lower beam 9, upper beam 2 is parallel to lower beam 9, between the hook 4 in upper beam 2 and the hook 4 in lower beam 9, is fixedly installed cutting steel wire 3.The one or both ends of cutting steel wire 3 are provided with spring, and spring is connected with cutting steel wire 3, between linking up with 4.The two ends of upper beam 2 are fixedly installed column 12, upper beam 2 is perpendicular to column 12, the bottom of column 12 is fixedly connected with ground, the middle and lower part of column 12 is provided with rectangle frame 1, rectangle frame 1 is fixedly connected with on one side with between column 12, rectangle frame 1 another side is set to linear guides 13, on linear guides 13, be provided with sliding sleeve 10, between sliding sleeve 10 on two rectangle frames 1, be provided with lower beam 9, between lower beam 9 and sliding sleeve 10, be fixedly connected with, between the linear guides 13 on sliding sleeve 10 and rectangle frame 1, be slidably connected.The side of lower beam 9 is provided with projection 8, and on projection 8, axle is connected with connecting rod 7, and drive unit 5 is positioned at a side of lower beam 9, on drive unit 5, be provided with driving shaft 6, driving shaft 6 is bent axle, and between one end of connecting rod 7 and projection 8, axle is connected, and between the other end and bent axle, axle is connected.
Outstanding advantages of the present utility model is: simple in structure, easy to use, with low cost, maintenance cost is few, cutting efficiency is high, combination production capacity is strong, the utility model utilizes eccentric wheel or bent axle, realization slides over that on a limit of rectangle frame, (this limit of this rectangle frame is set to hard-wired linear guides, , linear guides forms a limit of this rectangle frame) linear reciprocal movement, and then make the slight displacement of cutting steel wire generating period, generation is similar to the action of cutting, be used for cutting cement based foam (foaming) material, moulded pottery not yet put in a kiln to bake material, simple in structure, with low cost.A kind of for drive unit drives eccentric wheel rotation, and then drivening rod reciprocating motion, connecting rod drives sliding sleeve to reciprocatingly slide along the linear guides of rectangle frame, makes cutting steel wire realize displacement, and then realizes cutting operation.Another kind is that the bent axle on drive unit rotates, and then drivening rod reciprocating motion, and connecting rod drives sliding sleeve to reciprocatingly slide along the linear guides of rectangle frame, makes cutting steel wire realize displacement, and then realizes cutting operation.
Claims (6)
1. a linear guides reciprocating slide type steel wire cutter sweep, comprise drive unit, upper beam and lower beam, it is characterized in that, further comprise two rectangle frames, one side of described rectangle frame is linear guides, in described upper beam and described lower beam, be provided with some hooks, corresponding one by one between described hook in described upper beam and described hook in described lower beam, described upper beam is parallel to described lower beam, between the described hook in described upper beam and the described hook in described lower beam, is provided with cutting steel wire.
2. linear guides reciprocating slide type steel wire cutter sweep according to claim 1, is characterized in that, the one or both ends of described cutting steel wire are connected with spring, between described spring and described cutting steel wire, described hook, is connected.
3. linear guides reciprocating slide type steel wire cutter sweep according to claim 1, it is characterized in that, the two ends of described upper beam are fixedly connected with the top of described rectangle frame, the base of described rectangle frame is set to linear guides, on described linear guides, be provided with sliding sleeve, described sliding sleeve and described linear guides are slidably connected, and between the described sliding sleeve on two described rectangle frames, are provided with described lower beam, between described lower beam and described sliding sleeve, are fixedly connected with.
4. linear guides reciprocating slide type steel wire cutter sweep according to claim 1, it is characterized in that, the two ends of described upper beam are further fixedly installed column, described upper beam is perpendicular to described column, the bottom of described column is fixedly connected with ground, the middle part of described column is fixedly installed described rectangle frame, between one side of described rectangle frame and described column, be fixedly connected with, described rectangle frame another side is fixedly installed linear guides, on described linear guides, be provided with sliding sleeve, between sliding sleeve on two described rectangle frames, be provided with described lower beam, between described lower beam and sliding sleeve, be fixedly connected with, between sliding sleeve and described rectangle frame, be slidably connected.
5. according to linear guides reciprocating slide type steel wire cutter sweep described in claim 3 or 4, it is characterized in that, the side of described lower beam is provided with projection, on described projection, axle is connected with connecting rod, described drive unit is positioned at a side of described lower beam, on described drive unit, is provided with driving shaft, on described driving shaft, is provided with eccentric wheel, between one end of described connecting rod and described projection, axle is connected, and between the other end and described eccentric wheel, axle is connected.
6. according to linear guides reciprocating slide type steel wire cutter sweep described in claim 3 or 4, it is characterized in that, the side of described lower beam is provided with projection, on described projection, axle is connected with connecting rod, described drive unit is positioned at a side of described lower beam, on described drive unit, is provided with driving shaft, and described driving shaft is bent axle, between one end of described connecting rod and described projection, axle is connected, and between the other end and described bent axle, axle is connected.
Priority Applications (1)
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CN201320302094.9U CN203401576U (en) | 2013-05-20 | 2013-05-20 | Steel wire cutting apparatus with linear guide rails and capable of sliding to and fro |
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CN201320302094.9U CN203401576U (en) | 2013-05-20 | 2013-05-20 | Steel wire cutting apparatus with linear guide rails and capable of sliding to and fro |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN103895093A (en) * | 2014-04-18 | 2014-07-02 | 芜湖科达新铭丰机电有限公司 | Building block cutting machine |
CN104385446A (en) * | 2014-12-07 | 2015-03-04 | 东岳机械集团有限公司 | Cross topping and cutting device on basis of vapor-pressure aerating building block |
CN106217657A (en) * | 2016-08-05 | 2016-12-14 | 徐州工程学院 | A kind of air entrained concrete shearing device and method of work thereof |
CN106553271A (en) * | 2016-10-25 | 2017-04-05 | 来安县木石创意装饰有限公司 | A kind of stone curtain wall making stone cutting device |
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2013
- 2013-05-20 CN CN201320302094.9U patent/CN203401576U/en not_active Expired - Fee Related
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103895093A (en) * | 2014-04-18 | 2014-07-02 | 芜湖科达新铭丰机电有限公司 | Building block cutting machine |
CN104385446A (en) * | 2014-12-07 | 2015-03-04 | 东岳机械集团有限公司 | Cross topping and cutting device on basis of vapor-pressure aerating building block |
CN106217657A (en) * | 2016-08-05 | 2016-12-14 | 徐州工程学院 | A kind of air entrained concrete shearing device and method of work thereof |
CN106217657B (en) * | 2016-08-05 | 2018-01-26 | 徐州工程学院 | A kind of air entrained concrete shearing device and its method of work |
CN106553271A (en) * | 2016-10-25 | 2017-04-05 | 来安县木石创意装饰有限公司 | A kind of stone curtain wall making stone cutting device |
CN106553271B (en) * | 2016-10-25 | 2018-06-26 | 贵州亚美装饰有限公司 | A kind of stone curtain wall making stone cutting device |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140122 Termination date: 20180520 |
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CF01 | Termination of patent right due to non-payment of annual fee |