CN1661178A - Forming die for component of die body - Google Patents

Forming die for component of die body Download PDF

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Publication number
CN1661178A
CN1661178A CN 200410005692 CN200410005692A CN1661178A CN 1661178 A CN1661178 A CN 1661178A CN 200410005692 CN200410005692 CN 200410005692 CN 200410005692 A CN200410005692 A CN 200410005692A CN 1661178 A CN1661178 A CN 1661178A
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China
Prior art keywords
template
face
formpiston
side form
die
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Granted
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CN 200410005692
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Chinese (zh)
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CN100363581C (en
Inventor
邱则有
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Hunan Qiuzeyou Patent Strategy Planning Co Ltd
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邱则有
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Priority to CNB2004100056925A priority Critical patent/CN100363581C/en
Publication of CN1661178A publication Critical patent/CN1661178A/en
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Publication of CN100363581C publication Critical patent/CN100363581C/en
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Abstract

A die for forming die shell component uses side die surface and bottom die surface to set up a formpiston. It is featured as piecing together at least two templates being used as side die surface and bottom die surface to form the formpiston, setting the piecing device on template for convenient demould and having one corner of die surface prepared as curve or arc transitional surface to satisfy different demand so as to use the die to form thin wall pipe or box and to form thin wall pipe or box with opening.

Description

A kind of die-shell component forming die
(1) technical field
The present invention relates to a kind of die-shell component forming die.
(2) background technology
At present, cast-in-situ reinforcing steel bar concrete hollow slab, particularly cast-in-situ reinforcing steel bar concrete hollow slab non-core-drawing pore-creating technology generally adopt light-wall pipe or thin-walled box filled, can satisfy the find time needs of concrete of various different hollowcore slabs.The applicant on the November 29th, 1999 of SEPARATE APPLICATION simultaneously application number be that 99115665.X, name are called the patent of invention of " fiber reinforcement-type light-wall conduit for reinforcing steel bar concrete filling (box) and manufacture method thereof ", and application number is 99115666.8, name is called the patent of invention of " fiber-reinforced thin-wall box for filling cast-in-place reinforced concrete and manufacture method thereof ", prepared light-wall pipe or thin-walled box can be openings, seal the light-wall pipe that then can make sealing or the thin-walled box of sealing if having; The mould that is adopted in its manufacture method has former or formpiston.As formpiston, from they accompanying drawing as can be seen, it comprises side form face and lower die face (or backform face), side form face and lower die face surround formpiston, and this formpiston is the formpiston of integral mold plate, in actual use, demoulding inconvenience, therefore the light-wall pipe of opening or thin-walled box cracky, develop a kind of novel die-shell component forming die for being badly in need of.
(3) summary of the invention
The object of the present invention is to provide a kind of die-shell component forming die, have be convenient in demoulding, simple in structure, easy to manufacture, characteristics such as intensity is high, cost is low.
Solution of the present invention is on the basis of existing technology, comprise side form face, lower die face, side form face and lower die face surround formpiston, the side form face and the lower die face that it is characterized in that described formpiston are made of template, formpiston is made up of at least two template amalgamations, the template of amalgamation is provided with split unit, and at least one rotation angle position of die face is set to curve or arc transiting surface.Like this, owing to formpiston is made up of at least two template amalgamations, thereby during actual the use, the demoulding is very convenient; Simultaneously, at least one rotation angle position of die face is set to curve or arc transiting surface, when producing shuttering member, can form curve or arc transiting surface by corresponding rotation angle position at shuttering member, can satisfy the needs of various different hollow building covers; In addition, mould also has characteristics such as simple in structure, easy to manufacture, that intensity is high, cost is low, thereby has reached purpose of the present invention, is applicable to make light-wall pipe or thin-walled box, is particularly useful for making the light-wall pipe of opening or the thin-walled box of opening.
Feature of the present invention is that also described curve or arc transiting surface are fixed on the template.Like this, the curve of rotation angle position setting or arc transiting surface are fixed on the template, have improved the globality and the durability of mould, thereby have prolonged the application life of mould, have reduced mould user's die cost indirectly.
Feature of the present invention is that also described curve or arc transiting surface are movable.Like this, according to different production needs, can select to be provided with or to remove curve or arc transiting surface, to meet the demands, realize one module multiple usages, the user has saved die cost for mould.
Feature of the present invention is that also described curve or arc transiting surface are arranged on the template of rotation angle position.Like this, when curve or arc transiting surface were arranged on the template of rotation angle position, the fractionation of mould or install had all very conveniently reduced operation easier, has improved operating efficiency, has reduced the cost of manufacture of shuttering member.
Feature of the present invention is that also described curve or arc transiting surface are arranged on two templates of rotation angle position.Like this, when curve or arc transiting surface are separately positioned on two templates of rotation angle position, reduce mould demoulding difficulty in use significantly, made that mould is easier to be deviate from from product, reduced the demoulding proportion of goods damageds of product.
Feature of the present invention is that also described curve or arc transiting surface are detachable, removable, rotatable, replaceable, telescopic transition faces.Like this, when curve or arc transiting surface are detachable, removable, rotatable, replaceable, telescopic transition face, make the style of mould have multifarious characteristics, same mould can be produced various multi-form shuttering members by the style that changes transition face, realized one module multiple usages, for the mould user has saved a large amount of die costs.
Feature of the present invention is that also described curve or arc transiting surface are flexible die.Like this, when curve or arc transiting surface were flexible die, in the form removal operation, flexible die can provide loosening space in a small amount, made that mould is easier to be deviate from from product.
Feature of the present invention is that also the rotation angle position between the described side form face is set to curve or arc transiting surface.Like this, when the rotation angle position between the side form face is curve or arc transiting surface, in the mould application process, be convenient in demoulding, be difficult for the integrality of the rotation angle position of bond damage shuttering member, simultaneously, can produce the shuttering member that vertical corner is curve or arc angle corner.
Feature of the present invention is that also the rotation angle position between described side form face and the lower die face is set to curve or arc transiting surface.Like this, when the rotation angle position between side form face and the lower die face is set to curve or arc transiting surface, in the mould application process, be convenient in demoulding, be difficult for the integrality of the rotation angle position of bond damage shuttering member, simultaneously, can produce the shuttering member that horizontal corner is curve or arc corner.
Feature of the present invention is that also all rotation angle positions of described die face all are set to curve or arc transiting surface.Like this, when using above-mentioned die production, can produce rotation angle position is the shuttering member product of curve transition or arc corner, can fully satisfy the needs of design and construction unit.
Feature of the present invention is that also at least one position of described at least one template is compressible flexible position.Like this, after compressible flexible position was set on the template, when using this kind die production shuttering member, when the demoulding, compressible flexible part potential energy provided certain loosening space, makes stripping process become more simple, has made things convenient for production.
Feature of the present invention is that also described at least one template is Flexible formwork assembly.As rubber form, plastic formwork, canvas template etc.Like this, when in mould, having one or polylith template to be Flexible formwork assembly, make things convenient for deviating from of when producing shuttering member mould, improved production efficiency greatly, simultaneously, also reduced the breakage rate of shuttering member form removal significantly.
Feature of the present invention is that also described side form face is made of two, three, four, six, eight, ten or 12 templates.Like this, the side form face of die-shell component forming die is made of the polylith template, has fractionation conveniently, simply, and assembling combination is easy, can increase substantially production efficiency, simultaneously, is particularly conducive to the making of large mold.
Feature of the present invention is that also described lower die face is an at least one template.Like this, the lower die face of die-shell component forming die is that a template constitutes, and has production and processing conveniently, and manufacture craft is simple, simultaneously, makes things convenient for the demoulding of mould.
Feature of the present invention is that also described split unit is at least one in linkage or take-up or the positioner.Like this, the split unit kind is many, is convenient to produce select for use, and split unit also can be the device that has connection, degree of tightness or location simultaneously simultaneously, can reduce its complexity, makes its easier applying.
Feature of the present invention is that also described linkage is at least a in hinge, hinge, latch hinge, film, tongue and groove or the tenon.Like this, the diversity of linkage and generality greatly reduce the cost of manufacture of mould, simultaneously, can rationally select above-mentioned linkage for use according to different actual conditions.
Feature of the present invention is that also described take-up is at least a in bolt, camlock, latch, sliding sleeve, draw-in groove, cutting ferrule or the iron wire.Like this, the diversity of take-up and generality greatly reduce the cost of manufacture of mould, simultaneously, can rationally select above-mentioned take-up for use according to different actual conditions.
Feature of the present invention is that also described positioner is at least a in locating hole, alignment pin, locating slot, positioning step or the locating piece.Like this, the diversity of positioner and generality greatly reduce the cost of manufacture of mould, simultaneously, can rationally select above-mentioned positioner for use according to different actual conditions.
Feature of the present invention also is the rotation angle position of the amalgamation position of described template in die face.Like this, because of the amalgamation position of the template rotation angle position in die face, the joint close gap is little, makes mould in use not be prone to the phenomenon of oozing in the slurry, has improved the production quality, and simultaneously, the demoulding is more convenient.
Feature of the present invention is that also described split unit is arranged on the template of rotation angle position of die face.Like this, be arranged on because of the split unit of template on the template of rotation angle position of die face, the joint close gap is little, makes mould in use not be prone to the excessive phenomenon of slurry, has improved the fabricating quality of product, and simultaneously, the demoulding is more convenient.
Feature of the present invention is that also the rotation angle position of described die face is provided with convex configuration or concave configuration.Like this, after the rotation angle position of die face is provided with convex configuration or concave configuration, the convex configuration or the concave configuration that form shuttering member at rotation angle position can be correspondingly produced, the needs of various different shuttering member productions can be satisfied.
Feature of the present invention is that also described convex configuration is raised line or projection or nose bar.Like this, after the rotation angle position of die face is provided with raised line or projection or nose bar, raised line or projection or nose bar that rotation angle position forms shuttering member can be correspondingly produced, the needs of producing various different shuttering member products can be satisfied.
Feature of the present invention is that also described concave configuration is at least a in groove, pit, pothole, seam or the hole.Like this, the concave configuration kind is many, when using the die production formwork, can be on shuttering member the various multi-form concave configuration of corresponding formation, make things convenient for design, production and unit in charge of construction to select for use, to satisfy the needs of different occasions.
Feature of the present invention is that also described split unit is rotating split unit.Like this, when split unit is rotating split unit, can reduce the assembly unit difficulty of mould, simplify installation procedure, increase work efficiency.
Feature of the present invention is that also described split unit is dismountable split unit.Like this, when split unit is dismountable split unit, can make mould in application process, assembly unit quickly and easily and dismounting.
Feature of the present invention is that also described dismountable split unit is telescopic split unit.Like this, when dismountable split unit is telescopic split unit, greatly reduce the difficulty of the amalgamation and the dismounting of mould, simultaneously, also can adjust the free gap between the template flexibly, it is fully met the needs of production, thereby, enhance productivity effectively.
Feature of the present invention is that also described telescopic split unit is the telescopic split unit of umbrella.Like this, when telescopic split unit is the telescopic split unit of umbrella, shorten demould time greatly, effectively improved production efficiency, reduced the cost of production of shuttering member indirectly.
Feature of the present invention is that also the side form face of at least one side of described formpiston has at least two templates that can relatively move, and regulates mobile by the mobile device that is arranged on the formpiston between the template.Like this,, can regulate the height or the width of mould arbitrarily, realize one module multiple usages, greatly reduce mould user's die cost expense according to the requirement of the different size of the product of being produced.
Feature of the present invention is that also the lower die face of described formpiston has at least two templates that can relatively move, and regulates mobile by the mobile device that is arranged on the formpiston between the template.Like this, according to the different size requirement of the product of being produced, can suitably adjust the size of lower die face, thereby obtain to satisfy the shuttering member of application requirements, make things convenient for the mould user, reduce its die cost expense.
Feature of the present invention also be described side form face or lower die face at least one be provided with at least a at least one convex configuration or the concave configuration.Like this, when the mould that application side die face or bed die face are provided with convex configuration or concave configuration is produced, can correspondingly produce has the shuttering member of convex configuration or concave configuration product on sidewall or the bottom surface, can fully satisfy the needs of various different situations.
Feature of the present invention also is described convex configuration or concave configuration self or parallel each other or crossing or grade separation setting.Like this, when the mould that uses die face to be provided with above-mentioned structure is produced, can correspondingly obtain formation self or parallel each other or crossing or the convex configuration of grade separation layout or the shuttering member product of concave configuration on the wall, to satisfy the needs of various different designs and construction.
Feature of the present invention is that also the template of the side form face of described formpiston is connected with the hemming die panel.Like this, when using the above-mentioned mould that has the hemming die panel to produce, according to the different requirements of different product, installation or removal hemming die panel is produced difform formwork product at any time, can fully meet the different needs.
Feature of the present invention is that also described template is provided with the thickness stopping means.Like this, when stating template in the use and being provided with the mould of thickness stopping means, can the wall thickness of product be control effectively, when guaranteeing the shuttering member product quality, carry out cost control, reduce its cost.
Feature of the present invention is that also the inwall of the template of the template of side form face of described formpiston or lower die face is provided with the stiffener of formpiston.Like this, strengthen the strength and stiffness of the template of formpiston greatly, made it not yielding or damage in application process, in the application life of having improved mould, reduced the cost of mould indirectly.
Feature of the present invention is that also described stiffener is at least a in angle steel, band iron, channel-section steel, reinforcing bar or the wooden a tree, used in making timber for boats.Like this, stiffener is wide in variety, conveniently selects for use, greatly reduces the cost of mould.
Feature of the present invention is that also described formpiston is provided with bracing frame.Like this, after formpiston is provided with bracing frame, increase the terrain clearance of mould application producers work planes, it has not been needed or only need bend over a little and can operate, greatly reduced the difficulty of manufacturing of shuttering member product, improved production efficiency.
Feature of the present invention is that also the die face on the described at least one template is at least a in plane, folding face or the curved surface.Like this, after using above-mentioned mould and producing, the shuttering member product that corresponding site forms plane, folding face or curved surface can be obtained, the needs of various different situations can be fully satisfied.
Feature of the present invention is that also described at least one template is the disposable template of serving as the shuttering member parts.Like this, adopt disposable template to make mould and can omit the form removal operation, simultaneously, can form iterative structure formwork wall again, improved the intensity and the production efficiency of shuttering member greatly, reduced the cost of manufacture of shuttering member.
Feature of the present invention is that also at least one template in the described formpiston is topotype or platform mould or split pattern.Like this, simplified the structure of mould greatly, when having reduced material cost, dress mould and stripping process also are simplified, and make it be easier to use production.
(4) description of drawings
Fig. 1 is the structural representation of the embodiment of the invention 1.In each accompanying drawing, 1 is the side form face, and 2 is lower die face, and 3 is template, and 4 is split unit, and 5 is curve or arc transiting surface, below in each accompanying drawing, number identically, its explanation is identical.As shown in Figure 1, side form face 1 and lower die face 2 surround formpiston, and the side form face 1 and the lower die face 2 of its described formpiston are made of template 3, and formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5.
Fig. 2 is the structural representation of the embodiment of the invention 2, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and its described arc transiting surface 5 is fixed on the template 3.
Fig. 3 is the structural representation of the embodiment of the invention 3, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is movable dismountable.
Fig. 4 is the structural representation of the embodiment of the invention 4, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is arranged on the template 3 of rotation angle position.
Fig. 5 is the structural representation of the embodiment of the invention 5, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is separately positioned on two templates 3 of rotation angle position, forms arc transiting surface 5 after two template 3 amalgamations.
Fig. 6 is the structural representation of the embodiment of the invention 6, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is rotating transition faces.
Fig. 7 is the structural representation of the embodiment of the invention 7, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is a flexible die.
Fig. 8 is the structural representation of the embodiment of the invention 8, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between its described side form face 1 and the lower die face 2 is set to arc transiting surface 5.
Fig. 9 is the structural representation of the embodiment of the invention 9, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and all rotation angle positions of its described die face all are set to arc transiting surface 5.
Figure 10 is the structural representation of the embodiment of the invention 10, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, in its described template 3 Flexible formwork assembly is arranged, and the template 3 of illustrated side die face 1 is a rubber form.
Figure 11 is the structural representation of the embodiment of the invention 11, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described lower die face 2 is made of two templates 3.
Figure 12 is the structural representation of the embodiment of the invention 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, in its described split unit 4 linkage 6, take-up 7, positioner 8 is arranged.
Figure 13 is the structural representation of the embodiment of the invention 13, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of template 3 is at the rotation angle position of die face, and the rotation angle position of its described die face is provided with convex configuration 9 and concave configuration 10.
Figure 14 is the structural representation of the embodiment of the invention 14, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described split unit 4 is rotating split unit.
Figure 15 is the structural representation of the embodiment of the invention 15, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described split unit 4 is dismountable split unit.
Figure 16 is the structural representation of the embodiment of the invention 16, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and split unit 4 is dismountable split unit, and its described dismountable split unit 4 is telescopic split unit.
Figure 17 is the structural representation of the embodiment of the invention 17, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the side form face 1 of its described formpiston has two templates that relatively move 3, regulates mobile by the mobile device 11 that is arranged on the formpiston between the template 3.
Figure 18 is the structural representation of the embodiment of the invention 18, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, is provided with convex configuration 9 and concave configuration 10 simultaneously on its described side form face 1.
Figure 19 is the structural representation of the embodiment of the invention 19, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and the template 3 of the side form face 1 of its described formpiston is connected with rotating flanging template 12.
Figure 20 is the structural representation of the embodiment of the invention 20, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the inwall of the template 3 of the side form face 1 of its described formpiston is provided with the stiffener 14 of formpiston.
Figure 21 is the structural representation of the embodiment of the invention 21, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described formpiston is provided with bracing frame 15.
Figure 22 is the structural representation of the embodiment of the invention 22, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the template 3 of its described lower die face 2 is served as the disposable template of shuttering member parts, disposable template 3 can be revealed muscle or reveal net, is illustrated as the dew muscle.
Figure 23 is the structural representation of the embodiment of the invention 23, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the template 3 of the lower die face 2 of its described formpiston is a topotype.
(5) specific embodiment
The present invention is further illustrated below in conjunction with drawings and Examples.
The present invention as shown in drawings, comprise side form face 1, lower die face 2, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 that it is characterized in that described formpiston are made of template 3, formpiston is made up of 3 amalgamations of at least two templates, the template 3 of amalgamation is provided with split unit 4, and at least one rotation angle position of die face is set to curve or arc transiting surface 5.Fig. 1 is the structural representation of the embodiment of the invention 1.In each accompanying drawing, 1 is the side form face, and 2 is lower die face, and 3 is template, and 4 is split unit, and 5 is curve or arc transiting surface, below in each accompanying drawing, number identically, its explanation is identical.As shown in Figure 1, side form face 1 and lower die face 2 surround formpiston, and the side form face 1 and the lower die face 2 of its described formpiston are made of template 3, and formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5.
Feature of the present invention is that also described curve or arc transiting surface 5 are fixed on the template 3.Fig. 2 is the structural representation of the embodiment of the invention 2, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and its described arc transiting surface 5 is fixed on the template 3.
Feature of the present invention is that also described curve or arc transiting surface 5 are movable.Fig. 3 is the structural representation of the embodiment of the invention 3, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is movable dismountable.
Feature of the present invention is that also described curve or arc transiting surface 5 are arranged on the template 3 of rotation angle position.Fig. 4 is the structural representation of the embodiment of the invention 4, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is arranged on the template 3 of rotation angle position.
Feature of the present invention is that also described curve or arc transiting surface 5 are arranged on two templates 3 of rotation angle position.Fig. 5 is the structural representation of the embodiment of the invention 5, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is separately positioned on two templates 3 of rotation angle position, forms arc transiting surface 5 after two template 3 amalgamations.
Feature of the present invention is that also described curve or arc transiting surface 5 are detachable, removable, rotatable, replaceable, telescopic transition faces.Fig. 6 is the structural representation of the embodiment of the invention 6, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is rotating transition faces.
Feature of the present invention is that also described curve or arc transiting surface 5 are flexible die.Fig. 7 is the structural representation of the embodiment of the invention 7, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described arc transiting surface 5 is a flexible die.
Feature of the present invention is that also the rotation angle position between the described side form face 1 is set to curve or arc transiting surface 5.As shown in Figure 7, side form face 1 and lower die face 2 surround formpiston, and the side form face 1 and the lower die face 2 of formpiston are made of template 3, and formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between its described side form face 1 is set to flexible arc-shaped transition face 5.
Feature of the present invention is that also the rotation angle position between described side form face 1 and the lower die face 2 is set to curve or arc transiting surface 5.Fig. 8 is the structural representation of the embodiment of the invention 8, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between its described side form face 1 and the lower die face 2 is set to arc transiting surface 5.
Feature of the present invention is that also all rotation angle positions of described die face all are set to curve or arc transiting surface 5.Fig. 9 is the structural representation of the embodiment of the invention 9, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and all rotation angle positions of its described die face all are set to arc transiting surface 5.
Feature of the present invention is that also at least one position of described at least one template 3 is compressible flexible position.As shown in Figure 7, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the two ends of its described side form face 1 are flexible position.
Feature of the present invention is that also described at least one template 3 is Flexible formwork assembly.As rubber form, plastic formwork, canvas template etc.Figure 10 is the structural representation of the embodiment of the invention 10, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, in its described template 3 Flexible formwork assembly is arranged, and the template 3 of illustrated side die face 1 is a rubber form.
Feature of the present invention is that also described side form face 1 is made of two, three, four, six, eight, ten or 12 templates 3.As shown in figure 10, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described side form face 1 is made of four templates.
Feature of the present invention is that also described lower die face 2 is at least one template 3.Figure 11 is the structural representation of the embodiment of the invention 11, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described lower die face 2 is made of two templates 3.
Feature of the present invention is that also described split unit 4 is at least one in linkage 6 or take-up 7 or the positioner 8.Figure 12 is the structural representation of the embodiment of the invention 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, in its described split unit 4 linkage 6, take-up 7, positioner 8 is arranged.
Feature of the present invention also is at least a in hinge, hinge, latch hinge, film, tongue and groove or the tenon of described linkage 6.As shown in figure 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, linkage 6, take-up 7, positioner 8 are arranged in the split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described linkage 6 is a hinge.
Feature of the present invention also is at least a in bolt, camlock, latch, sliding sleeve, draw-in groove, cutting ferrule or the iron wire of described take-up 7.As shown in figure 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, linkage 6, take-up 7, positioner 8 are arranged in the split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described take-up 7 is a bolt.
Feature of the present invention also is at least a in locating hole, alignment pin, locating slot, positioning step or the locating piece of described positioner 8.As shown in figure 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, linkage 6, take-up 7, positioner 8 are arranged in the split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described positioner 8 is a locating hole.
Feature of the present invention also is the rotation angle position of the amalgamation position of described template 3 in die face.As shown in figure 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of its described template 3 is at the rotation angle position of die face.
Feature of the present invention is that also described split unit 4 is arranged on the template 3 of rotation angle position of die face.As shown in figure 12, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of template 3 is at the rotation angle position of die face, and its described amalgamation position 4 is arranged on the template 3 of rotation angle position of die face.
Feature of the present invention is that also the rotation angle position of described die face is provided with convex configuration 9 or concave configuration 10.Figure 13 is the structural representation of the embodiment of the invention 13, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of template 3 is at the rotation angle position of die face, and the rotation angle position of its described die face is provided with convex configuration 9 and concave configuration 10.
Feature of the present invention is that also described convex configuration 9 is raised line or projection or nose bar.As shown in figure 13, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of template 3 is at the rotation angle position of die face, the rotation angle position of die face is provided with convex configuration 9 and concave configuration 10, and its described convex configuration 9 is a raised line.
Feature of the present invention also is at least a in groove, pit, pothole, seam or the hole of described concave configuration 10.As shown in figure 13, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the amalgamation position of template 3 is at the rotation angle position of die face, the rotation angle position of die face is provided with convex configuration 9 and concave configuration 10, and its described concave configuration is a re-entrant angle.
Feature of the present invention is that also described split unit 4 is rotating split unit.Figure 14 is the structural representation of the embodiment of the invention 14, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described split unit 4 is rotating split unit.
Feature of the present invention is that also described split unit 4 is dismountable split unit.Figure 15 is the structural representation of the embodiment of the invention 15, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described split unit 4 is dismountable split unit.
Feature of the present invention is that also described dismountable split unit 4 is telescopic split unit.Figure 16 is the structural representation of the embodiment of the invention 16, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and split unit 4 is dismountable split unit, and its described dismountable split unit 4 is telescopic split unit.
Feature of the present invention is that also described telescopic split unit 4 is the telescopic split unit of umbrella.As shown in figure 16, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and split unit 4 is dismountable telescopic split unit, the telescopic split unit that its described telescopic split unit 4 is a umbrella.
Feature of the present invention is that also the side form face 1 of at least one side of described formpiston has at least two templates that can relatively move 3, regulates mobile by the mobile device 11 that is arranged on the formpiston between the template 3.Figure 17 is the structural representation of the embodiment of the invention 17, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the side form face 1 of its described formpiston has two templates that relatively move 3, regulates mobile by the mobile device 11 that is arranged on the formpiston between the template 3.
Feature of the present invention is that also the lower die face 2 of described formpiston has at least two templates that can relatively move 3, regulates mobile by the mobile device 11 that is arranged on the formpiston between the template 3.As shown in figure 17, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the lower die face 2 of its described formpiston has two templates that relatively move 3, regulates mobile by the mobile device 11 that is arranged on the formpiston between the template 3.
Feature of the present invention also be described side form face 1 or lower die face 2 at least one be provided with at least a at least one convex configuration 9 or the concave configuration 10.Figure 18 is the structural representation of the embodiment of the invention 18, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, is provided with convex configuration 9 and concave configuration 10 simultaneously on its described side form face 1.
Feature of the present invention also is described convex configuration 9 or concave configuration 10 self or parallel each other or crossing or grade separation setting.As shown in figure 18, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, is provided with convex configuration 9 and concave configuration 10 on the side form face 1 simultaneously, and its described convex configuration 9 and concave configuration 10 be arranged in parallel each other.
Feature of the present invention is that also the template 3 of the side form face 1 of described formpiston is connected with hemming die panel 12.Figure 19 is the structural representation of the embodiment of the invention 19, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and the template 3 of the side form face 1 of its described formpiston is connected with rotating flanging template 12.
Feature of the present invention is that also described template 3 is provided with thickness stopping means 13.As described in Figure 19, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between side form face 1 and the lower die face 2 is set to camber line shape transition face 5, and its described template 3 is provided with thickness stopping means 13.
Feature of the present invention is that also the inwall of the template 3 of the template 3 of side form face 1 of described formpiston or lower die face 2 is provided with the stiffener 14 of formpiston.Figure 20 is the structural representation of the embodiment of the invention 20, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the inwall of the template 3 of the side form face 1 of its described formpiston is provided with the stiffener 14 of formpiston.
Feature of the present invention also is at least a in angle steel, band iron, channel-section steel, reinforcing bar or the wooden a tree, used in making timber for boats of described stiffener 14.As shown in figure 20, side form face 1 and lower die face 2 surround formpiston, the side form face 1 and the lower die face 2 of formpiston are made of template 3, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the inwall of the template 3 of the side form face 1 of formpiston is provided with the stiffener 14 of formpiston, and its described stiffener is the combination of angle steel and band steel.
Feature of the present invention is that also described formpiston is provided with bracing frame 15.Figure 21 is the structural representation of the embodiment of the invention 21, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and its described formpiston is provided with bracing frame 15.
Feature of the present invention is that also the die face on the described at least one template 3 is at least a in plane, folding face or the curved surface.As shown in figure 21, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the side form face of its described template is a curved surface.
Feature of the present invention also is the disposable template of described at least one template 3 for serving as the shuttering member parts.Figure 22 is the structural representation of the embodiment of the invention 22, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, and the rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the template 3 of its described lower die face 2 is served as the disposable template of shuttering member parts, disposable template 3 can be revealed muscle or reveal net, is illustrated as the dew muscle.
Feature of the present invention is that also at least one template 3 in the described formpiston is topotype or platform mould or split pattern.Figure 23 is the structural representation of the embodiment of the invention 23, side form face 1 and lower die face 2 surround formpiston, constitute by template 3 between the side form face 1 of formpiston and the lower die face 2, formpiston is made up of 3 amalgamations of polylith template, the template 3 of amalgamation is provided with split unit 4, rotation angle position between the side form face 1 is set to camber line shape transition face 5, and the template 3 of the lower die face 2 of its described formpiston is a topotype.
During the invention process, can adopt steel sheet or sheet materials such as iron sheet or tin plate or engineering plastics, model, specification blanking according to shuttering member, make side form face 1 and bed die face 2 template used 3, with reinforcement materials such as angle steel, band steels each die face is strengthened then, after determining the installation site of good split unit 4 then, the template 3 that will form side form face 1 and lower die face 2 with split unit 4 is connected amalgamation, and at least one rotation angle position of die face curve or arc transiting surface 5 are set, get final product described mould.

Claims (21)

1, a kind of die-shell component forming die, comprise side form face (1), lower die face (2), side form face (1) and lower die face (2) surround formpiston, the side form face (1) and the lower die face (2) that it is characterized in that described formpiston are made of template (3), formpiston is made up of at least two templates (3) amalgamation, the template of amalgamation (3) is provided with split unit (4), and at least one rotation angle position of die face is set to curve or arc transiting surface (5).
2, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are fixed on the template (3).
3, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are movable.
4, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are arranged on the template (3) of rotation angle position.
5, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are arranged on two templates (3) of rotation angle position.
6, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are detachable, removable, rotatable, replaceable, telescopic transition faces.
7, a kind of die-shell component forming die according to claim 1 is characterized in that described curve or arc transiting surface (5) are flexible die.
8, a kind of die-shell component forming die according to claim 1 is characterized in that the rotation angle position between the described side form face (1) is set to curve or arc transiting surface (5).
9, a kind of die-shell component forming die according to claim 1 is characterized in that the rotation angle position between described side form face (1) and the lower die face (2) is set to curve or arc transiting surface (5).
10, a kind of die-shell component forming die according to claim 1 is characterized in that all rotation angle positions of described die face all are set to curve or arc transiting surface (5).
11, a kind of die-shell component forming die according to claim 1, at least one position that it is characterized in that described at least one template (3) are compressible flexible position.
12, a kind of die-shell component forming die according to claim 1 is characterized in that described at least one template (3) is Flexible formwork assembly.
13, a kind of die-shell component forming die according to claim 1 is characterized in that described side form face (1) is by two, three, four, six, eight, ten or 12 templates (3) formation.
14, a kind of die-shell component forming die according to claim 1 is characterized in that described lower die face (2) is at least one template (3).
15, a kind of die-shell component forming die according to claim 1 is characterized in that described split unit (4) is at least one in linkage (6) or take-up (7) or the positioner (8); Perhaps linkage (6) is at least a in hinge, hinge, latch hinge, film, tongue and groove or the tenon; Perhaps take-up (7) is at least a in bolt, camlock, latch, sliding sleeve, draw-in groove, cutting ferrule or the iron wire; Perhaps positioner (8) is at least a in locating hole, alignment pin, locating slot, positioning step or the locating piece.
16, a kind of die-shell component forming die according to claim 1 is characterized in that the rotation angle position of the amalgamation position of described template (3) in die face; Perhaps split unit (4) is arranged on the template (3) of the rotation angle position of die face; Perhaps the rotation angle position of die face is provided with convex configuration (9) or concave configuration (10); Perhaps convex configuration (9) is raised line or projection or nose bar; Perhaps concave configuration (10) is at least a in groove, pit, pothole, seam or the hole.
17, a kind of die-shell component forming die according to claim 1 is characterized in that described split unit (4) is rotating split unit; Perhaps split unit (4) is dismountable split unit; Perhaps dismountable split unit (4) is telescopic split unit; Perhaps telescopic split unit (4) is the telescopic split unit of umbrella.
18, a kind of die-shell component forming die according to claim 1, the side form face (1) that it is characterized in that at least one side of described formpiston has at least two templates that can relatively move (3), regulates mobile by the mobile device (11) that is arranged on the formpiston between the template (3); Perhaps the lower die face of formpiston (2) has at least two templates that can relatively move (3), regulates mobile by the mobile device (11) that is arranged on the formpiston between the template (3).
19, a kind of die-shell component forming die according to claim 1, at least one that it is characterized in that described side form face (1) or lower die face (2) are provided with at least a at least one convex configuration (9) or the concave configuration (10); Perhaps convex configuration (9) or concave configuration (10) self or parallel each other or crossing or grade separation setting.
20, a kind of die-shell component forming die according to claim 1 is characterized in that the template (3) of the side form face (1) of described formpiston is connected with hemming die panel (12); Perhaps template (3) is provided with thickness stopping means (13); Perhaps the inwall of the template (3) of the template (3) of the side form face (1) of formpiston or lower die face (2) is provided with the stiffener (14) of formpiston; Perhaps stiffener (14) is at least a in angle steel, band iron, channel-section steel, reinforcing bar or the wooden a tree, used in making timber for boats; Perhaps formpiston is provided with bracing frame (15).
21, a kind of die-shell component forming die according to claim 1 is characterized in that die face on the described at least one template (3) is at least a in plane, folding face or the curved surface; Perhaps at least one template (3) is the disposable template of serving as the shuttering member parts; Perhaps at least one template (3) in the formpiston is topotype or platform mould or split pattern.
CNB2004100056925A 2004-02-27 2004-02-27 Forming die for component of die body Expired - Fee Related CN100363581C (en)

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CNB2004100056925A CN100363581C (en) 2004-02-27 2004-02-27 Forming die for component of die body

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CNB2004100056925A CN100363581C (en) 2004-02-27 2004-02-27 Forming die for component of die body

Related Child Applications (1)

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CN 200710307471 Division CN101195248B (en) 2004-02-27 2004-02-27 A formwork component shaping mould

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Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB292425A (en) * 1927-12-23 1928-06-21 Edward William Roberts Improvements in or relating to the casting or formation of bodies having hollow passages
GB770388A (en) * 1954-08-20 1957-03-20 David Mcilvenna Improvements in or relating to stop-end shuttering moulds for use in the construction of concrete roofs, floors and the like structures
RU2094222C1 (en) * 1992-02-04 1997-10-27 Полоцкий государственный университет Method for producing articles with protrusions
JPH0734659A (en) * 1993-07-16 1995-02-03 Idemitsu Petrochem Co Ltd Concrete formwork
CN1212242A (en) * 1997-09-19 1999-03-31 沈继昌 Light weight disposable building form and its making method

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